WO2018101173A1 - Coin delivery device - Google Patents

Coin delivery device Download PDF

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Publication number
WO2018101173A1
WO2018101173A1 PCT/JP2017/042269 JP2017042269W WO2018101173A1 WO 2018101173 A1 WO2018101173 A1 WO 2018101173A1 JP 2017042269 W JP2017042269 W JP 2017042269W WO 2018101173 A1 WO2018101173 A1 WO 2018101173A1
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WO
WIPO (PCT)
Prior art keywords
coin
disk
belt
transport
conveyance
Prior art date
Application number
PCT/JP2017/042269
Other languages
French (fr)
Japanese (ja)
Inventor
日野祐司
田中秀和
長谷川涼
前▲高▼剛
竹澤慶悟
田中美津男
Original Assignee
グローリー株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from JP2016233168A external-priority patent/JP2018092257A/en
Priority claimed from JP2016233169A external-priority patent/JP2018092258A/en
Application filed by グローリー株式会社 filed Critical グローリー株式会社
Publication of WO2018101173A1 publication Critical patent/WO2018101173A1/en

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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07DHANDLING OF COINS OR VALUABLE PAPERS, e.g. TESTING, SORTING BY DENOMINATIONS, COUNTING, DISPENSING, CHANGING OR DEPOSITING
    • G07D1/00Coin dispensers

Definitions

  • the present invention relates to a coin feeding device for feeding coins one by one.
  • the coin feeding device is a device built in a coin depositing / dispensing machine, ATM, or the like, and stores the inserted coins and feeds them one by one at a high speed.
  • the coins fed out from the coin feeding device to the transport path are transported in a single-layer state, the denomination is identified by the discriminating unit, and sorted by denomination by the sorting unit.
  • the coin feeding device of Patent Document 1 includes a rotating disk that is inclined at a predetermined angle with respect to a vertical direction and is rotated in an inclined posture.
  • a plurality of protruding members are provided on the surface of the rotating disk on the coin storage space side. By hooking the coin with the protruding member, the coin in the lower area of the rotating disk is conveyed to the upper area of the rotating disk by the rotation of the rotating disk.
  • This type of coin feeding device has an advantage that the coin can be reliably conveyed by the protruding member.
  • the interval between the coins to be paid out is determined by the arrangement interval of the protruding members, both large coins and small coins are drawn out at the same interval.
  • the coin feeding device of Patent Document 1 has room for improving the coin feeding efficiency and speeding up the processing. When the rotational speed of the rotating disk is increased to increase the processing speed, the centrifugal force also increases, and there are cases where double feed coins (coins that are not caught by the protruding members) are transported to the upper region.
  • the coin feeding device of Patent Document 2 includes an inclined disk and a reverse rotation roller.
  • the tilting disk When the tilting disk is rotated, only the coins that are in surface contact with the tilting disk move to the upper side in the tilt direction among the unaligned coins, and the coins that are not in surface contact roll to the lower side in the tilt direction. drop down.
  • the coins moved to the upper side in the tilt direction pass under the reverse rotation roller, if they are in an overlapped state, only the upper coin is returned by the reverse rotation roller to be surely made into one sheet.
  • Coins that pass under the reversing roller are sent out from the coin feed outlet.
  • Such a coin feeding device of this type can be speeded up because the feeding interval of coins is not affected by the spacing of the protruding members.
  • the reverse rotation roller is supported with an interval through which only one coin can pass with respect to the inclined disk. If it does so, the thickness of the coin which can be processed will be restrict
  • the coin feeding device is a coin feeding device having a coin transport disk, an elastic member, and a moving mechanism,
  • the coin transport disk has a friction transport part and a step part, and rotates in a posture inclined with respect to the vertical direction,
  • the friction conveyance part is formed along the outer periphery of the coin conveyance disk on the upper surface of the coin conveyance disk, and the coin that has contacted the friction conveyance part is caused to be absorbed by the friction force of the coin with the coin conveyance disk.
  • the step portion is a portion that is formed on the inner surface of the friction conveyance portion on the upper surface of the coin conveyance disk and protrudes with respect to the friction conveyance portion, and is a portion that faces the outer periphery of the coin conveyance disk.
  • Has an outer peripheral part The distance between the upper end of the outer peripheral part and the upper surface of the friction conveyance part is smaller than the minimum thickness of the processing target coins to be processed by the coin feeding device,
  • the moving mechanism moves the elastic member toward the inside of the coin transport disk along the upper surface of the coin transport disk in the upper region of the coin transport disk, The elastic member is elastically deformed by contacting a coin on the friction conveyance part, and moves the coin toward the step part.
  • the friction conveying portion of the coin conveying disk conveys the coin to the upper region, the interval between the coins on the coin conveying disk becomes arbitrary, and the coin is dispensed with a narrow interval. Is possible. That is, it is possible to improve the feeding efficiency and speed up the processing. Further, even coins having a large diameter difference can be reliably fed out one by one by the cooperative action of the stepped portion, the elastic member, and the moving mechanism. In addition, since the foreign matter is prevented from being conveyed to the upper region by the coin carrier disk, it is possible to enhance the foreign matter removal capability.
  • the elastic member moves the coin on the friction conveyance part toward the step part, it is possible to surely throw the double feeding coin. If it demonstrates, when a some coin is conveyed to the upper area
  • the coin feeding apparatus can respond
  • the moving mechanism may be configured to move the elastic member from the top of the friction transfer part to the outside of the coin transfer disk and move the coin to the outside of the coin transfer disk.
  • the distance between the coin transport disc and the end of the elastic member on the coin transport disc side is configured to be smaller than the minimum thickness of the processing target coin to be processed by the coin feeding device. May be.
  • the moving mechanism includes a pulley, the elastic member is a belt wound around the pulley, and the rotation axis of the pulley is substantially parallel to the rotation axis of the coin transport disk.
  • the belt may be configured such that an end portion in the width direction of the belt is in contact with a coin on the friction conveyance portion.
  • the coin feeding device has a lever member, and the lever member is disposed upstream of the elastic member in the coin conveyance direction by the coin conveyance disk, and the coin above the friction conveyance portion and It may be configured to contact and move the coin toward the stepped portion.
  • the coin feeding device has an outer peripheral belt, and the outer peripheral belt is adjacent to the coin transport disk in a lower region of the coin transport disk in a posture in which the transport surface faces the outer periphery of the coin transport disk. It is arranged to move in the same direction as the rotation direction of the coin conveyance disk, and contact the coins on the friction conveyance part to assist the coin conveyance by the coin conveyance disk.
  • the coin feeding device has a pressing member and an urging mechanism, and the pressing member is positioned in a lower region of the coin transport disk in a posture facing the friction transport portion of the coin transport disk. It is arrange
  • the coin feeding device includes a pressing member, a coin detecting unit, and a pressing mechanism, and the pressing member is positioned below the coin conveying disk in a posture facing the friction conveying part of the coin conveying disk.
  • the coin detection unit is disposed above the coin transport disk in the region, the coin detection unit detects the amount of coins on the coin transport disk, and the pressing mechanism is based on the amount of coins detected by the coin detection unit.
  • the pressing member may be moved to change the distance between the pressing member and the coin transport disk, and the pressing member may press the coin against the coin transport disk.
  • the coin feeding device has a cover member, the cover member forms a coin storage space for storing coins with the coin transport disk, and the cover member opens and closes to discharge foreign matter in the coin storage space. You may comprise so that it may have a site
  • the coin feeding device is a coin feeding device having a coin transport disk and an outer peripheral belt
  • the coin transport disk has a friction transport part and a step part, and rotates in a posture inclined with respect to the vertical direction
  • the friction conveyance part is formed along the outer periphery of the upper surface of the coin conveyance disk, and conveys the coin that has contacted the friction conveyance part to the upper region of the coin conveyance disk by the frictional force with the coin
  • the outer peripheral belt is disposed adjacent to the coin transport disk in a lower region of the coin transport disk in a posture in which the transport surface faces the outer periphery of the coin transport disk, and is the same as the rotation direction of the coin transport disk. It moves to a direction, contacts the coin on the said friction conveyance site
  • the friction conveying portion of the coin conveying disk conveys the coin to the upper region, the interval between the coins on the coin conveying disk becomes arbitrary, and the coin is dispensed with a narrow interval. Is possible. That is, it is possible to improve the feeding efficiency and speed up the processing. In addition, since the foreign matter is prevented from being conveyed to the upper region by the coin carrier disk, it is possible to enhance the foreign matter removal capability.
  • the outer peripheral belt assists the coin transport by the coin transport disk, the processing of the coin feeding device can be further speeded up, which is preferable.
  • the coin feeding device is a coin feeding device having a rotating coin transport disk, a step member, a belt, and a belt driving mechanism.
  • the coin transport disk transports the coins in contact toward the belt
  • the step member is arranged on the upper side of the coin transport disk, and has an outer peripheral part that is a part facing the outer periphery of the coin transport disk, The distance between the upper end of the outer peripheral portion and the upper surface of the coin transport disk is smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device,
  • the belt drive mechanism causes the belt to travel along the upper surface of the coin transport disk toward the inside of the coin transport disk, The belt is elastically deformed in contact with a coin on the coin transport disk, and moves the coin toward the step member.
  • the belt moves the coins toward the stepped member, so that it is possible to reliably throw the double feed coins. If it explains, when a plurality of coins are conveyed toward a belt in the state where it overlapped, the coin with which the belt overlapped will be moved toward a level difference member. Then, the lowermost layer coin in contact with the coin transport disk is in contact with the step member, but other coins cannot contact the step member and are pushed out beyond the step member. In this way, one layer of coins is aligned on the coin transport disk. Further, even when the small diameter coins are arranged in the radial direction of the coin transport disk, they are aligned in a line in the feeding direction by the pressing action of the belt.
  • the coin feeding apparatus can respond to coins of various thickness.
  • the belt can move the coins toward the step member so that the coins can be reliably fed out in a single row. That is, according to the above-described configuration, it is possible to provide a coin feeding device that can reliably carry out multi-feed coins and small-diameter coins even when processing is speeded up and can feed coins one by one. It becomes.
  • the belt driving mechanism may be configured to cause the belt to travel from the top of the coin transport disk to the outside of the coin transport disk and move the coin to the outside of the coin transport disk.
  • the distance between the coin transport disk and the end of the belt on the coin transport disk side is configured to be smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device. May be.
  • the belt drive mechanism includes a pulley, the belt is wound around the pulley, and a rotation axis of the pulley is substantially parallel to a rotation axis of the coin transport disk, and the belt The end in the width direction may be configured to come into contact with a coin on the coin transport disk.
  • the belt may be configured such that when the belt comes into contact with a coin on the coin transport disk, an end portion in the width direction of the belt is elastically deformed toward the inside of the pulley.
  • the belt has an elastic deformation portion, and the elastic deformation portion is a portion protruding toward the coin transport disc from the pulley in the width direction of the belt, When the belt contacts a coin on the coin transport disk, the elastic deformation portion may be configured to contact the coin and elastically deform.
  • the bending rigidity of the elastic deformation portion in the thickness direction of the belt may be configured to be lower than the bending rigidity of the elastic deformation portion in the running direction of the belt.
  • the elastic deformation portion may be divided along the running direction of the belt.
  • the elastic deformation portion may be configured to have a plurality of rod-like portions that are spaced apart along the running direction of the belt.
  • FIG. 6 is a sectional view taken along the line VI-VI in FIG. 3 showing the structure of the pressing member and the urging mechanism.
  • FIG. 4 is a cross-sectional view taken along the line VII-VII in FIG.
  • FIG. 10 is a cross-sectional view taken along the line XX in FIG.
  • FIG. 10 are functional block diagrams of a coin depositing and dispensing machine. These are explanatory drawings which show the state of pressing and conveying coins by a belt.
  • FIG. 3 is a perspective view showing a structure of a belt. These are explanatory drawings which show the state of pressing and conveying coins by a belt. These are perspective views which show the structure of a coin feeding apparatus.
  • the coin depositing and dispensing machine 10 includes a housing 12, a coin receiving port 14, a depositing and conveying unit 20, a coin feeding device 30, a temporary holding unit 40, a storage and feeding device 50, a conveying unit 60, A collection box 70, a control unit 80, and a defect detection unit 90 are included.
  • the housing 12 is a substantially rectangular parallelepiped housing, and accommodates each device constituting the coin depositing and dispensing machine 10.
  • the coin receiving port 14 receives coins from outside the housing 12.
  • the coin feeding device 30 sends and stores coins received at the coin receiving port 14 and feeds the stored coins one by one.
  • the deposit conveyance unit 20 conveys coins fed from the coin feeding device 30 one by one.
  • the deposit conveyance unit 20 includes an identification unit 22 and a selection unit 24.
  • the identification unit 22 identifies the coins conveyed by the deposit conveyance unit 20.
  • the sorting unit 24 sorts coins based on the coin identification result by the identifying unit 22.
  • the temporary holding unit 40 temporarily holds the coins sorted by the sorting unit 24 in a state of being classified for each denomination.
  • the temporary holding unit 40 is provided in the housing 12 below the deposit conveyance unit 20. Coins temporarily held in the temporary holding unit 40 are sent from the temporary holding unit 40 to the storage and feeding device 50.
  • the storage and feeding device 50 feeds out the stored coins one by one.
  • the plurality of storage and feeding devices 50 are arranged below the temporary storage unit 40 so as to form a plurality of rows along the horizontal plane.
  • the collection box 70 is disposed below the plurality of storage and feeding devices 50.
  • the collection box 70 is detachably provided with a drawer 72 used in a checkout office or the like, and coins fed out from each storage and feeding device 50 are transferred to the drawer 72 attached to the collection box 70 for each denomination. It is designed to be stored in a state of being divided into two.
  • the control unit 80 is a control unit that controls each component of the coin depositing and dispensing machine 10, and is disposed inside the housing 12.
  • a coin receiving port 14 that receives a coin inserted from the outside of the housing 12 is provided in the upper portion of the housing 12, and the coin received in the coin receiving port 14 is self-weight. Is sent to the coin feeding device 30. Coins sent from the coin receiving port 14 to the coin feeding device 30 are temporarily stored in the coin feeding device 30.
  • the coin feeding device 30 includes a base member 31, a coin transport disk 32, a belt 33 (an example of an elastic member), a belt drive mechanism 34 (an example of a moving mechanism), a cover member 35, and a coin storage space 36.
  • the outer peripheral belt 37, the guide member 38, and the lever member 39 are included.
  • the base member 31 is a substantially plate-like member, and is a member to which each component of the coin feeding device 30 is attached.
  • the coin transport disc 32 is a disc that rotates in a posture inclined with respect to the vertical direction, and transports the coins stored in the coin storage space 36 from the lower region to the upper region of the coin transport disc 32. That is, the coin transport disk 32 transports the coins that are in contact toward the belt 33.
  • the belt 33 is an example of an elastic member, and moves in contact with the coins on the coin transport disk 32, so that the multi-feed coins are spread.
  • the belt driving mechanism 34 is an example of a moving mechanism, and moves the belt 33 toward the inside of the coin transport disk 32.
  • the cover member 35 is a resin member that covers the lower region of the coin transport disk 32, and forms a coin storage space 36 with the coin transport disk 32.
  • the coin storage space 36 is a space for storing coins sent from the coin receiving port 14, and is a space formed between the coin transport disk 32 and the cover member 35.
  • the outer peripheral belt 37 contacts the coins in the lower region of the coin transport disk 32 and assists the transport of coins by the coin transport disk 32.
  • the guide member 38 contacts the coins on the coin transport disk 32 and guides the coins transported by the belt 33 to the deposit transport unit 20.
  • the lever member 39 is disposed upstream of the belt 33 in the direction in which coins are conveyed by the coin conveyance disk 32, contacts the coins on the friction conveyance portion 32c, and moves the coins to the step portion 32d (an example of a step member). ).
  • the coin transport disk 32 is a disk that rotates with the rotation shaft 32 a as a rotation shaft in a posture inclined with respect to the vertical direction, and stores the coins stored in the coin storage space 36 below the coin transport disk 32. It is conveyed from the region to the upper region, that is, toward the belt 33.
  • the coin conveyance disk 32 is configured to have a friction conveyance portion 32c and a step portion 32d.
  • the coin transport disc 32 is disposed so that the upper surface of the friction transport portion 32c is located on the same plane as the upper surface of the base member 31 and is in parallel, that is, in a flush relationship. .
  • the rotation shaft 32 a is perpendicular to the base member 31.
  • the inclination angle of the coin transport disk 32 is preferably 35 ° or more, and more preferably 35 ° or more and 40 ° or less.
  • the friction transfer part 32 c is an annular part formed along the outer periphery 32 b of the coin transfer disk 32 on the upper surface of the coin transfer disk 32.
  • the width of the friction conveyance part 32c is larger than the maximum diameter of the coins to be processed by the coin depositing and dispensing machine 10.
  • the friction conveyance part 32c is a part formed so as to increase the friction with the coin, and specifically, is formed by attaching rubber, resin or the like to the surface of the coin conveyance disk 32.
  • the friction conveyance part 32c conveys the coin contacted with the friction conveyance part 32c to the upper region of the coin conveyance disk 32 by the frictional force with the coin.
  • the step part 32d is a part protruding from the friction transfer part 32c formed on the inner side of the friction transfer part 32c on the upper surface of the coin transfer disk 32.
  • the stepped portion 32d is formed by attaching a disk-shaped thin plate member to the upper surface of the coin transport disk 32 in a state where the central axis thereof coincides with the rotation shaft 32a of the coin transport disk 32. .
  • the step portion 32d is formed inside the friction conveyance portion 32c.
  • the outer peripheral part 32e which is a part facing the outer periphery of the coin transport disc 32 of the step part 32d, the inner peripheral side end and the outer peripheral end of the friction transport part 32c, and the outer peripheral part 32b of the coin transport disc 32 These are all circular with the rotation axis 32 a of the coin transport disk 32 as the center.
  • the upper surface of the step portion 32d is located above the upper surface of the friction conveyance portion 32c.
  • an inclined portion 32f is formed in the vicinity of the outer periphery of the step portion 32d (see FIG. 6), and the periphery of the step portion 32d is a so-called tapered shape.
  • the distance between the upper end of the outer peripheral part 32e of the step part 32d and the upper surface of the friction transfer part 32c is smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device 30.
  • the belt 33 is an example of an elastic member, and moves in contact with the coins on the coin transport disk 32 so as to spread double-feed coins. Specifically, the belt 33 is elastically deformed by contacting the coin on the friction conveyance portion 32c, and moves the coin toward the step portion 32d.
  • the belt 33 is wound around the first pulley 34a and the second pulley 34e, and is driven and moved by the first pulley 34a.
  • the belt 33 has a main body portion 33a and an elastic deformation portion 33b.
  • the main body portion 33a is an annular belt, and has a convex portion for meshing with the outer periphery of the first pulley 34a.
  • the main body portion 33a is formed as a wide belt having a rectangular cross section, and the surface corresponding to the long side of the cross section is disposed in contact with the first pulley 34a.
  • the elastic deformation portion 33 b is a portion configured to be elastically deformable in the belt 33.
  • the elastically deformable portion 33b is a portion protruding in the width direction from the main body portion 33a, and is formed as a bar-like portion separated from each other. That is, in the present embodiment, the elastic deformation portion 33b is configured to have a plurality of rod-like portions that are spaced apart along the longitudinal direction of the belt 33 (that is, the running direction of the belt 33). The spacing between the elastic deformation portions 33b is approximately the same as the width of the elastic deformation portion 33b (the dimension along the longitudinal direction of the belt 33).
  • the length of the elastic deformation portion 33b that is, the length by which the elastic deformation portion 33b protrudes from the main body portion 33a is larger than the maximum thickness of the coins to be processed that are processed by the coin feeding device 30.
  • the cross section of the elastic deformation portion 33b is rectangular, the short side of the rectangular cross section coincides with the thickness direction of the belt 33, and the long side of the rectangular cross section coincides with the longitudinal direction of the belt 33.
  • the bending rigidity of the elastic deformation portion 33b in the thickness direction of the belt 33 is lower than the bending rigidity of the elastic deformation portion 33b in the longitudinal direction of the belt 33 (that is, the running direction of the belt 33).
  • the belt driving mechanism 34 is an example of a moving mechanism, and moves the belt 33 toward the inside of the coin transport disk 32.
  • the belt drive mechanism 34 includes a first pulley 34a, an upper surface pressing pulley 34c, a side surface pressing pulley 34d, and a second pulley 34e.
  • the first pulley 34a is disposed on the base member 31 in a posture in which the rotation shaft 34b is perpendicular to the base member 31 and the coin transport disk 32.
  • the second pulley 34 e is disposed in the deposit conveyance unit 20 in a posture in which the rotation axis is perpendicular to the coin conveyance disk 32.
  • the rotating shaft 32 a of the coin transport disk 32 is also perpendicular to the base member 31, the rotating shaft 34 b of the first pulley 34 a is parallel to the rotating shaft 32 a of the coin transport disk 32.
  • the first pulley 34a is rotationally driven around the rotation shaft 34b by a motor (not shown).
  • the upper surface pressing pulley 34c is arranged in a state in which the rotating shaft is in contact with the upper surface of the belt 33 in a posture in which the rotating shaft is parallel to the base member 31.
  • the upper surface pressing pulley 34c suppresses upward movement due to elastic deformation of the belt 33 in contact with coins.
  • the side pressing pulley 34d is disposed in contact with the side surface of the belt 33 in a posture in which the rotation shaft is perpendicular to the base member 31.
  • the side surface pressing pulley 34d suppresses movement in the lateral direction (vertical direction in FIG. 3) due to the belt 33 coming into contact with coins and elastically deforming.
  • FIG. 5 is an explanatory view showing the state of pressing and transporting coins by the belt 33, but in order to explain the deformation state of the belt 33 in contact with the coins, sectional views from a plurality of directions are shown in combination.
  • the belt 33 runs around the first pulley 34a and the second pulley 34e in the direction of the arrow shown in FIG. 3, that is, counterclockwise in FIG. (Moving. Specifically, the belt 33 moves (runs) by the belt drive mechanism 34 as follows.
  • the belt 33 moves along the outer periphery of the first pulley 34a, and enters the coin transport disk 32 from the upper side of the coin transport disk 32 toward the rotary shaft 32a, that is, in the diameter direction.
  • the belt 33 gradually changes the moving direction along the outer periphery of the first pulley 34a.
  • the belt 33 moves along a circular path centering on the rotation shaft 34b of the first pulley 34a.
  • the belt 33 travels in the vicinity of the step portion 32d of the coin transport disk 32.
  • the belt 33 moves away from the first pulley 34 a toward the second pulley 34 e in the right direction in FIG. 3, and then retreats from the coin transport disk 32.
  • the belt 33 moves (runs) from the top of the coin transport disk 32 to the outside of the coin transport disk 32.
  • the belt 33 enters the deposit conveyance unit 20, passes through the identification unit 22, and travels on the conveyance path 21 a.
  • the belt 33 moves along the outer periphery of the second pulley 34e and circulates to the first pulley 34a.
  • the coin C32 conveyed toward the belt 33 by the coin conveying disk 32 comes into contact with the belt 33, is pressed toward the stepped portion 32d by the belt 33, contacts the stepped portion 32d, and is below the belt 33 ( That is, it sneaks into (between the belt 33 and the coin transport disc 32) (state of the coin C50 in FIG. 5).
  • the coin C32 moves toward the belt 33 by the coin transport disk 32, and the coin C32 moves to the belt 33.
  • the coin C32 rotates with the coin transport disk 32 and moves to the right while in contact with the stepped portion 32d, the coin C32 moves the belt 33 toward the rotating shaft 34b of the first pulley 34a, that is, the first. It will push toward the inside of the pulley 34a.
  • the belt 33 is elastically deformed toward the rotation shaft 34b of the first pulley 34a, that is, toward the inside of the first pulley 34a.
  • the belt 33 moves along the outer periphery of the 1st pulley 34a, and moves to the upper side of the coin C32 (state of the coin C50 of FIG. 5).
  • the state of the coin C50 in FIG. 5 shows a state in which the coin C50 has elastically deformed the belt 33, specifically, the elastic deformation portion 33b of the belt 33, and has entered between the belt 33 and the coin transport disk 32. At this time, the plurality of elastic deformation portions 33b of the belt 33 are bent by the coin C50 in the middle in the longitudinal direction of the elastic deformation portion 33b, and are elastically deformed toward the inside of the first pulley 34a.
  • the state of the coin C51 in FIG. 5 shows a state where a coin smaller and thinner than the coin C50 has entered between the belt 33 and the coin transport disk 32. At this time, the three elastic deformation portions 33b are elastically deformed by the coin C51. And the coin C51 is pressed toward the coin conveyance disk 32 (friction conveyance part 32c) by the elastically deformed elastic part 33b.
  • the state of the coin C52 in FIG. 5 shows a state in which a thicker and larger coin than the coin C51 has entered between the belt 33 and the coin transport disk 32. At this time, the five elastic deformation portions 33b are elastically deformed by the coin C52. The coin C52 is pressed toward the base member 31 by the elastically deformed elastic portion 33b.
  • the length of the region where the elastic deformation portion 33b of the belt 33 is deformed by the coin C52 (the length along the traveling direction of the belt 33) is larger than the length of the region where the belt 33 is deformed.
  • the amount of deformation of the elastic deformation portion 33b by the coin C52 (for example, the length of the bent portion, the amount of displacement to the inside of the first pulley 34a, etc.) is larger than the amount of deformation by the coin C51. In this way, the belt 33 (and the elastic deformation portion 33b) is elastically deformed according to the size and thickness of the coins to be contacted.
  • the distance D1 between the coin transport disc 32 and the tip of the elastic deformation portion 33b is smaller than the minimum thickness of the coins to be processed by the coin feeding device 30. That is, the distance between the coin transport disc 32 and the end of the belt 33 (elastic member) on the coin transport disc 32 side is smaller than the minimum thickness of the processing target coin that is processed by the coin feeding device 30. . Further, the distance D2 between the coin transport disk 32 and the base of the elastically deformable portion 33b is larger than the maximum thickness of the coins to be processed by the coin feeding device 30. Thereby, even if it is a coin with the smallest thickness among processing object coins, the tip of elastic deformation part 33b can contact and can move the coin toward level difference part 32d. Moreover, even if it is a coin with the largest thickness among process target coins, the said coin does not contact the main body part 33a, but the elastic deformation part 33b can be elastically deformed by the said coin.
  • the coins C50, C51, and C52 pressed by the elastically deforming portion 33b are moved from the top of the friction conveying portion 32c to the top of the base member 31, as the belt 33 is moved by the belt driving mechanism 34. It moves out of the coin transport disc 32 and moves to the deposit transport unit 20.
  • the cover member 35 is a resin member that covers the lower region of the coin transport disk 32, and forms a coin storage space 36 with the coin transport disk 32.
  • the cover member 35 includes an opening / closing part 35a, a shaft member 35b, and a pressing member 35c, and is attached to the base member 31 via an urging mechanism 35d.
  • the urging mechanism 35d is configured to include a column, a spring, and a plate-like member. The column is provided on the base member 31, and the plate-like member attached to the column via the spring transfers the cover member 35 to the coin transport disk. It is energizing towards 32.
  • the pressing member 35 c is a metal plate-like member, and is formed in a shape along the outer peripheral arc of the coin transport disk 32 and the cover member 35.
  • the pressing member 35c has a posture in which the outer arc is along the outer periphery of the cover member 35 and the surface of the cover member 35 on the coin transport disc 32 side at a position facing the friction transport portion 32c. It is attached.
  • the cover member 35 is urged toward the coin transport disk 32 by the urging mechanism 35d. Then, as shown in FIG. 6, when a coin enters between the pressing member 35 c and the friction conveying portion 32 c of the coin conveying disk 32, the pressing member 35 c presses the coin against the coin conveying disk 32.
  • the coin feeding device 30 includes a pressing member 35 c and an urging mechanism 35 d, and the pressing member 35 c is positioned in a lower region of the coin transport disc 32 in a posture facing the friction transport portion 32 c of the coin transport disc 32.
  • the urging mechanism 35d biases the pressing member 35c toward the coin transport disk 32, and the pressing member 35c presses the coin against the coin transport disk 32. If it does so, the frictional force between a coin and the friction conveyance site
  • the situation where the coins are reliably fed out and the coins not fed out to the coin feeding device 30 remain can be suppressed.
  • the frictional force between the coin and the friction conveyance portion 32c increases, the rotational speed of the coin conveyance disk 32 can be increased.
  • the opening / closing part 35a is a part formed in the cover member 35.
  • the foreign matter E for example, a clip or a key
  • the opening / closing part 35a is attached to the cover member 35 via a shaft member 35b, and is driven by a solenoid or the like to rotate around the shaft member 35b to perform an opening / closing operation.
  • the foreign substance E is discharged from the coin storage space 36 by opening and closing the opening / closing part 35a when no coins are stored in the coin storage space 36.
  • a sensor that detects the presence or absence of coins inside the coin storage space 36 is provided in the coin feeding device 30, and the control unit 80 controls the opening / closing of the opening / closing part 35 a based on the output of the sensor.
  • the control unit 80 opens and closes the opening / closing part 35a when the sensor does not detect a coin. Thereby, when there is a foreign substance inside the coin storage space 36, the foreign substance is discharged.
  • the control unit 80 may have a foreign object inside the coin storage space 36. Open / close part 35a is opened and closed. Thereby, the foreign material inside the coin storage space 36 is discharged.
  • the coin feeding device 30 has a cover member 35, the cover member 35 forms a coin storage space 36 for storing coins between the coin transport disk 32, and the cover member 35 discharges foreign matter in the coin storage space 36. It has an opening / closing part 35a. As a result, it is possible to eliminate foreign matters from the coin storage space 36, and the foreign matter removal capability of the coin feeding device 30 can be further enhanced, which is preferable.
  • the outer peripheral belt 37 contacts the coins in the lower region of the coin transport disk 32 and assists the transport of coins by the coin transport disk 32. As shown in FIGS. 3 and 6, the outer peripheral belt 37 is disposed adjacent to the coin transport disk 32 in the lower region of the coin transport disk 32 with the transport surface facing the outer periphery of the coin transport disk 32. Yes.
  • the outer peripheral belt 37 is a flat belt and is wound around three outer peripheral pulleys 37a.
  • the three outer peripheral pulleys 37a are freely rotatable.
  • the outer peripheral belt 37 is disposed between the peripheral wall 31 a of the base member 31 and the coin transport disk 32 in contact with the outer periphery 32 b of the coin transport disk 32.
  • the outer peripheral belt 37 moves together with the coin transport disk 32 while being in contact with the coin transport disk 32.
  • the coin C ⁇ b> 60 on the friction conveyance portion 32 c is conveyed by the coin conveyance disk 32 in a state where the outer periphery thereof is in contact with the outer peripheral belt 37.
  • the outer peripheral belt 37 runs in synchronization with the coin transport disk 32 and moves to the upper region of the coin transport disk 32 together with the coin C60. Therefore, when the coin C60 is transported, sliding between the coin C60 and the wall surface does not occur, and the transport of the coin C60 is performed smoothly. In other words, the coin C60 receives a force from both the friction transfer portion 32c of the coin transfer disk 32 and the outer peripheral belt 37 and is transferred to the upper region of the coin transfer disk 32.
  • the coin feeding device 30 has an outer peripheral belt 37, and the outer peripheral belt 37 is placed on the coin transport disk 32 in the lower region of the coin transport disk 32 with the transport surface facing the outer periphery 32 b of the coin transport disk 32. It arrange
  • the lever member 39 is disposed upstream of the belt 33 in the direction in which coins are transported by the coin transport disk 32, contacts the coins on the friction transport part 32c, and directs the coins toward the step part 32d.
  • the lever member 39 is a member that is curved in an arc as shown in FIG. 3, and has one end attached to the base member 31 in a state of being rotatable around the shaft 39 a. The other end of the lever member 39 is disposed on the friction transfer portion 32c of the coin transfer disc 32.
  • a spring 39 b is connected to the lever member 39, and when the lever member 39 is displaced toward the outside of the coin transport disk 32 by the coin on the coin transport disk 32, the spring 39 b causes the lever member 39 to move to the coin transport disk 32. Energize inward.
  • the coins transported by the coin transport disk 32 are transported by centrifugal force, for example, positioned near the outer periphery of the coin transport disk 32 like a coin C31 in FIG.
  • the coin comes into contact with the lever member 39, the coin is moved toward the inside of the coin transport disk 32 by the lever member 39 and contacts the stepped portion 32 d of the coin transport disk 32.
  • a plurality of coins may be transported one by one as in the case of coins C30 to C32 in FIG. 3 or as in the case of coins C91 to C97 in FIG. In some cases, it may be hardened or overlapped. This is remarkable when the coin transport disk 32 rotates at high speed and the centrifugal force increases.
  • the coin C92 in FIG. 9 is caught by the coin C91 and conveyed, but if it exceeds this position, there is a high possibility of falling downward due to the action of gravity.
  • the coin C94 is in contact with the lever member 39 and is moved toward the stepped portion 32d by the lever member 39. At this time, the lever member 39 is pushed upward by the coin C94 and displaced upward.
  • the coin C95 contacts the lever member 39 and is moved toward the stepped portion 32d. However, since the coin C95 overlaps the coin C94, the coin C95 does not get caught by the stepped portion 32d and falls downward due to the action of gravity.
  • the coin C96 is in a state where it contacts the belt 33 in contact with the stepped portion 32d and sneaks under the belt 33.
  • the coin C97 overlaps with the coin C96, it is in contact with the belt 33 without being in contact with the outer peripheral portion 32e of the stepped portion 32d.
  • the coin C97 cannot deform the elastic deformation portion 33b of the belt 33, cannot enter the belt 33, and is pushed down by the belt 33 and falls downward.
  • the double feed coins are whisked by the belt 33 (elastic member) of the coin feeding device 30 and the coins arranged in the radial direction (direction perpendicular to the feeding direction) of the coin transport disk 32 are also in a line.
  • the payout (coins C98, C99) in the one-line state to the deposit conveyance unit 20 is realized.
  • the deposit conveyance part 20 conveys the coins sent from the upper conveyance part 20a extending along the substantially horizontal direction, the upper conveyance part 20a, and the folding conveyance part 20b for changing the conveyance direction of the coins in this case,
  • the lower conveyance part 20c is provided below the upper conveyance part 20a, extends substantially in the horizontal direction, and conveys coins sent from the folded conveyance part 20b. Then, the coins fed out from the coin feeding device 30 are transported in the order of the upper transport portion 20a, the folded transport portion 20b, and the lower transport portion 20c. Further, as shown in FIGS. 1 and 3, the upper transport portion 20a and the lower transport portion 20c have sorting sections 24 (24a to 24h) for sorting coins based on the coin identification result by the identification section 22, respectively. A plurality are provided.
  • the upper transport portion 20a includes a transport path 21a extending along a substantially horizontal direction, and a belt 33 provided along the transport path 21a.
  • One coin is formed by the belt 33 along the transport path 21a. They are transported one by one.
  • the transport path 21a includes a transport path side surface 21c and a transport path bottom surface 21d, and the transport path side surface 21c is an inclined surface that is inclined at a predetermined angle with respect to the vertical direction.
  • coins are conveyed to the right in FIG. 3 along the conveyance path side surface 21c by the belt 33 so as to come into contact with the conveyance path bottom surface 21d by their own weight. Yes.
  • the belt 33 conveys the coin while holding the coin between the conveyance path side surface 21 c and the belt 33. Further, a plurality (specifically, five) sorting sections 24 (24a to 24e) are provided in the upper transport portion 20a. As shown in FIG. 3, an identification unit 22 is provided on the upstream side of each sorting unit 24 in the upper transport portion 20 a, and the identification unit 22 is a denomination of coins fed out from the coin feeding device 30. And authenticity are identified.
  • Each sorting unit 24 provided in the upper transport portion 20a sorts the coins transported by the upper transport portion 20a based on the coin identification result by the identification unit 22, and will be described later with a reject unit 47 and an overflow box 49, Alternatively, it is sent to the temporary holding unit 40. Specifically, out of a total of five sorting sections 24 provided in the upper transport portion 20a, the sorting section 24a located on the most upstream side in the coin transport direction functions as a reject sorting section for sorting reject coins. The reject coins are sorted by the sorting unit 24a and sent to the reject unit 47 (see FIG. 1).
  • the sorting section 24c arranged third from the upstream side in the coin transport direction has already been provided with the storage and feeding device 50 corresponding to the denomination. It functions as an overflow sorting unit that sorts overflow coins that are full, and the sorting unit 24c sorts the overflow coins and sends them to the overflow box 49 (see FIG. 2). .
  • the sorting units 24b, 24d, and 24e other than the sorting units 24a and 24c described above function as denomination sorting units that sort coins by denomination. It is supposed to be. More specifically, for example, when processing of euro (EURO) coins is performed in the coin depositing and dispensing machine 10 of the present embodiment, the sorting unit 24b disposed second from the upstream side in the coin transport direction is identified.
  • EUROP euro
  • a coin that has been identified as a 1-cent coin by the unit 22 is selected, and a sorting unit 24d that is arranged fourth from the upstream side in the coin transport direction is a coin that has been identified as a 5-cent coin by the identifying unit 22
  • the sorting unit 24e arranged fifth from the upstream side in the coin transport direction sorts the coins identified by the identifying unit 22 as being 10-cent coins.
  • each sorting unit 24 Details of the configuration of each sorting unit 24 will be described with reference to FIG.
  • openings 25 are provided on the conveyance path side surface 21 c of the conveyance path 21 a in the upper conveyance portion 20 a so as to correspond to the respective sorting sections 24.
  • a chute 26 (see FIGS. 1 and 2) is connected to each opening 25.
  • the coins correspond to the corresponding chute 26.
  • coins are sent to the reject unit 47, the overflow box 49, or the temporary storage unit 40 by its own weight via the chute 26.
  • each branch member 27 is normally positioned below the conveyance path bottom surface 21d in the conveyance path 21a, and is advanced above the conveyance path bottom surface 21d when coins are selected. More specifically, when the branch member 27 is located below the transport path bottom surface 21d of the transport path 21a, and the coins transported in the transport path 21a are not advanced upward from the transport path bottom surface 21d, the coins are branched. 27 is not pushed upward from the bottom 21d of the conveyance path. For this reason, the coin conveyed by the conveyance path 21 a does not enter the opening 25. On the other hand, when the branch member 27 advances upward from the transport path bottom surface 21d of the transport path 21a, the coins conveyed on the transport path 21a are lifted upward from the transport path bottom surface 21d by the branch member 27 in FIG. Will enter the opening 25.
  • each sorting unit 24 includes the opening 25, the branching member 27, and the like. By controlling whether the branching member 27 advances upward from the conveyance path bottom surface 21d by the control unit 80 described later, Each sorting unit 24 sorts coins.
  • the folded conveyance portion 20 b has an arc shape, more specifically a semicircular shape, when the coin depositing and dispensing machine 10 is viewed from the side. And in the return conveyance part 20b, a coin is conveyed from the upper conveyance part 20a to the lower conveyance part 20c by the fall by dead weight.
  • the lower conveyance portion 20c is configured by a first conveyance portion 20d where coins are sent from the folded conveyance portion 20b, and a second conveyance portion 20e provided on the downstream side of the first conveyance portion 20d in the coin conveyance direction.
  • the first conveyor portion 20d is provided with a conveyor belt 21e
  • the second conveyor portion 20e is also provided with a conveyor belt 21f.
  • a transport belt 21e provided in the first transport portion 20d is configured to transport the coins sent from the upper transport portion 20a due to falling by its own weight in the folded transport portion 20b to the left in FIG.
  • the transport belt 21f provided in the second transport portion 20e is configured to receive coins transported by the transport belt 21e, and the transport belt 21f receives the coins transferred from the transport belt 21e.
  • the sheet is conveyed leftward in FIG.
  • the conveyor belt 21e and the conveyor belt 21f can have the same structure as the belt 33 described above.
  • the conveyance speed of the coin by the conveyance belt 21f provided in the 2nd conveyance part 20e is larger than the conveyance speed of the coin by the conveyance belt 21e provided in the 1st conveyance part 20d.
  • the coin interval is widened when coins are transferred from the conveyor belt 21e provided in the first conveyor part 20d to the conveyor belt 21f provided in the second conveyor part 20e, and the coins can be reliably selected, Coins can be delivered smoothly without troubles such as jams.
  • the lower conveyance part 20c is provided with a conveyance path having the same configuration as the conveyance path 21a of the upper conveyance part 20a. Further, three sorting sections 24 (sorting sections 24f to 24h) are provided in the second transport section 20e in the lower transport section 20c. Each sorting unit 24 provided in the second transport portion 20e of the lower transport portion 20c sorts the coins transported by the second transport portion 20e based on the coin identification result by the identification unit 22, and temporarily holds the coins. 40 to send. Specifically, each of the sorting units 24f to 24h functions as a denomination sorting unit that sorts coins by denomination.
  • the sorting unit 24f arranged on the most upstream side in the coin transport direction is The sorting unit 24g arranged second from the upstream side in the coin conveyance direction sorts out the coins identified as 1 euro coins by sorting the coins identified as 2 euro coins.
  • the sorting unit 24h arranged third from the upstream side in the coin transport direction sorts the coins identified by the identifying unit 22 as being 2 cent coins.
  • an opening 24i is provided on the downstream side of these three sorting portions 24f to 24h in the coin transport direction, and each sorting portion is provided in the opening 24i.
  • the chute 26 is also connected to the opening 24 i, and the 20 cent coin that has entered the opening 24 i is sent to the temporary storage unit 40 via the chute 26.
  • the diameter of the coins to be sorted by the sorting unit 24 (sorting units 24b, 24d, 24e) provided in the upper transport portion 20a (specifically, one cent coin)
  • the diameter of the 5-cent coin and the 10-cent coin is the size of the diameter of the coin that is sorted by the sorting unit 24 (sorting unit 24f to 24h) provided in the lower transport portion 20c or enters the opening 24i. (Specifically, it is smaller than the diameter of 2 euro coin, 1 euro coin, 2 cent coin, 50 cent coin, 20 cent coin).
  • the coin conveyance speed by the conveyance belt 21f provided in the second conveyance part 20e of the lower conveyance part 20c is the same as the coin conveyance speed by the belt 33 provided in the upper conveyance part 20a.
  • the coin conveyance speed by the conveyance belt 21f provided in the second conveyance portion 20e is higher than the coin conveyance speed by the conveyance belt 21e provided in the first conveyance portion 20d.
  • the denomination of the coins sorted by the sorting unit 24 provided in each of the upper transport part 20a and the lower transport part 20c can be freely set for each sorting part 24. It has become. That is, for each of the sorting units 24a to 24h shown in FIG. 3, for example, when it is known in advance that the number of coins of a specific denomination among the coins to be processed is large, You may make it allocate a specific denomination.
  • each temporary holding unit 40 is divided into a plurality of holding parts.
  • the coins sorted by the sorting units 24 are temporarily held in the denominations in the plurality of holding portions in each temporary holding unit 40.
  • the coins temporarily held in the plurality of holding portions in each temporary holding unit 40 are selectively sent to the return box 48 or each storage and feeding device 50.
  • each temporary storage part 40 is provided with the coin full detection part 40b which detects this when any one of the several storage parts in the said temporary storage part 40 becomes a coin full state. (See FIG. 11).
  • a coin full sensor is provided in each holding portion, and when a coin full state is detected by the coin full sensor in at least one of the holding portions, the coin full detection unit 40b is a control unit 80 described later. A signal related to the coin full information is sent to.
  • the return box 48 is configured to be able to be pulled out from the inside of the housing 12, and the operator can take out the coins in the return box 48 by pulling the return box 48 out of the housing 12. It has become. As described above, the return box 48 is used to return the coin temporarily held in the temporary holding unit 40 to the outside of the housing 12. The return box 48 is configured to accommodate a plurality of denomination coins in a mixed state.
  • the return box 48 is not limited to such a configuration.
  • the return box 48 may be divided into a plurality of return parts in the same manner as the temporary holding units 40. In this case, the plurality of return parts separated from each other in the return box 48 correspond to the plurality of holding parts in each temporary holding part 40 so that coins are stored in these return parts in denominations. Become.
  • Each temporary storage unit 40 is movable between a first position as shown by a solid line in FIG. 2 and a second position as shown by a two-dot chain line in FIG. And when each temporary storage part 40 exists in a 1st position, the said temporary storage part 40 receives the coin sorted by each sorting part 24. When each temporary storage unit 40 moves from the first position to the second position, coins temporarily stored in the temporary storage unit 40 are sent to each storage and feeding device 50.
  • each temporary storage portion 40 has a frame body 42 whose top portion and bottom portion are opened, and a bottom plate 43 that selectively closes the opening of the bottom portion of the frame body 42. .
  • the frame body 42 and the bottom plate 43 move independently from each other between a first position as shown by a solid line in FIG. 2 and a second position as shown by a two-dot chain line in FIG. It is free.
  • a return box 48 is provided at a position directly below the frame body 42 at the first position.
  • a plurality of chutes 46 are provided corresponding to each holding portion at a position directly below the frame body 42 in the second position, and these chutes 46 are respectively stored and feeding devices 50 of the corresponding denominations. Communicating with
  • the temporary storage unit 40 receives the coins sorted by the respective sorting units 24 of the deposit conveyance unit 20 and sent via the chute 26 on the frame body 42. It is received through the opening at the top. At this time, since the opening at the bottom of the frame body 42 is closed by the bottom plate 43, the coins sent to the temporary storage unit 40 are temporarily stored in the temporary storage unit 40.
  • the frame body 42 moves from the first position to the second position while the bottom plate 43 is maintained at the first position, the coins temporarily held in the respective holding portions of the temporary holding unit 40 are temporarily stored. It passes through the opening provided in the holding part 40 and falls by its own weight, and is sent to each storing and feeding device 50 through each chute 46 provided corresponding to the holding part.
  • the bottom plate 43 is moved from the first position to the second position while the frame body 42 is maintained at the first position, the coins temporarily held in the respective holding portions of the temporary holding unit 40 are returned to the return box. 48.
  • the driving of the frame body 42 and the bottom plate 43 in each temporary storage unit 40 as described above is performed by a temporary storage unit drive unit 40p (see FIG. 11).
  • the coins temporarily held in the plurality of holding portions in each temporary holding unit 40 are collectively sent to each storing and feeding device 50 or the return box 48.
  • the structure of the temporary storage part 40 is not limited to such a thing.
  • coins temporarily held in each holding part in the temporary holding unit 40 may be individually sent to each storage and feeding device 50 or the return box 48 independently of other holding parts.
  • Each storage and feeding device 50 is arranged in a plurality of rows, specifically two rows along the horizontal plane. In each row, four storage and feeding devices 50 are provided.
  • each storage and feeding device 50 is provided with a chute 68 for guiding the coins fed from the storage and feeding device 50.
  • the plurality of chutes 68 are provided corresponding to the storage and feeding devices 50, respectively.
  • Each chute 68 is disposed on the side of each storage and feeding device 50 between the storage and feeding device 50 in one row and the storage and feeding device 50 in the other row.
  • Each storage and feeding device 50 includes a feeding unit 51 that feeds out coins, and a transport unit 60 that stores the coins sent from each temporary storage unit 40 and transports the stored coins to the feeding unit 51.
  • the feeding unit 51 of each storage and feeding device 50 is a coin storage that stores coins between a rotating disk 52 that is inclined at a predetermined angle with respect to the vertical direction and is rotated in an inclined posture, and the surface of the rotating disk 52. And a cover member 54 that forms a space 53.
  • On the surface of the rotating disk 52 a plurality of conveying projection members protruding from the surface are provided. These conveying projection members are arranged at a predetermined pitch along two rows of circumferential directions, ie, an inner circumferential direction and an outer circumferential direction.
  • Each conveying projection member on the outer peripheral side is arranged upstream of each conveying projection member on the inner circumferential side in the rotation direction of the rotary disk 52.
  • the inner circumferential side protruding projection member holds the coins one by one with the cover member 54 and picks up coins from the lower area of the rotary disk 52 to the upper area, thereby conveying the inner circumferential side.
  • Coins picked up in the upper region of the rotary disk 52 by the protruding member are pushed out toward the outlet of the storage and feeding device 50 by the conveying protruding member on the outer peripheral side.
  • a guide member is provided at a fixed position in the upper region of the rotating disk 52 in the feeding portion 51, and this guide member is disposed so as to cover the upper region of the rotating disk 52. More specifically, the guide member is disposed at a slight distance from the surface of the rotary disk 52 on the coin storage space 53 side.
  • the guide member is configured to guide the coins transported from the lower region to the upper region of the rotary disk 52 by the rotation of the rotary disk 52 to the outlet. Then, the coin guided to the outlet by the guide member is sent to the chute 68 corresponding to the storage and feeding device 50 and falls within the chute 68 by its own weight. Further, in the storage and feeding device 50, an exclusion protrusion member is provided on the surface of the rotating disk 52.
  • the exclusion projecting member is a part of the coin hooked on the transporting projection member when the coin is guided by the guide member in the upper region of the rotating disk 52.
  • the exclusion projecting member is a part of the coin hooked on the transporting projection member when the coin is guided by the guide member in the upper region of the rotating disk 52.
  • only one coin is not floated from the surface of the rotating disk 52, and the other coins are floated from the surface of the rotating disk 52.
  • the second and subsequent coins floating from the surface of the rotating disk 52 are scooped up by the tip portion of the guide member, and fall into the lower area of the rotating disk 52.
  • the conveyance unit 60 in each storage and feeding device 50 has an endless conveyance belt 62 extending in a substantially horizontal direction.
  • the coins sent from each temporary storage unit 40 are accumulated on the transport belt 62.
  • the conveyor belt 62 circulates, the piles of coins accumulated on the conveyor belt 62 are destroyed, and the coins are stored in the coins formed between the rotating disk 52 and the cover member 54 in the feeding portion 51. It is sent to the space 53.
  • the conveyance belt 62 in the conveyance unit 60 and the rotating disk 52 in the feeding unit 51 are operated in synchronization.
  • a collection box 70 (collection box) is detachably provided at the bottom of the housing 12 of the coin depositing and dispensing machine 10.
  • the collection box 70 can be pulled out from the front surface of the housing 12 to the front side.
  • the collection box 70 is provided with a caster (not shown) so that it can be pulled out from the housing 12 instead of a cart.
  • a drawer mount can be detachably mounted.
  • Various types of drawers 72 can be placed on the drawer platform.
  • the drawer 72 When the drawer 72 is mounted on the collection box 70 in a state where the drawer 72 is placed on the drawer platform, and the collection box 70 is accommodated in the housing 12, the coins fed out from the respective storage and feeding devices 50 are Then, it is stored in the drawer 72 attached to the collection box 70 via the chute 68 corresponding to the storage and feeding device 50.
  • each storage and feeding device 50 is provided.
  • the coins that are fed out and fallen by their own weight through the respective shoots 68 are stored in the collection box 70 in a denomination mixed state.
  • the collection box 70 is pulled out from the housing 12, the coins can be collected together with the collection box 70.
  • each storage and feeding device 50 is mounted by attaching the collection box 70 to the housing 12 with the drawer 72 removed from the collection box 70.
  • the coins fed out from 50 are stored in the collection box 70, and the operator can collect the coins together with the collection box 70.
  • a mounting state detection unit 78 that detects the mounting state of the collection box 70 in the lower part of the housing 12 is provided (see FIG. 11).
  • the mounting state detection unit 78 determines whether or not the collection box 70 is mounted on the lower portion of the housing 12, and if the collection box 70 is mounted on the lower portion of the housing 12, Whether or not the drawer 72 is attached is detected.
  • control part 80 which controls each component of the said coin depositing / withdrawing machine 10 is provided.
  • the configuration of the control unit 80 will be described with reference to FIG.
  • the control unit 80 drives a drive unit (not shown) that drives each of the conveyor belts 21 e and 21 f in the deposit conveyance unit 20, and drives the coin conveyance disk 32 in the identification unit 22 and the coin feeding device 30.
  • a signal related to the coin identification result by the identification unit 22 of the deposit conveyance unit 20 is sent to the control unit 80.
  • the control unit 80 includes a driving unit that drives the transport belts 21e and 21f in the deposit transport unit 20, a rotary disk drive unit 32p and a belt drive unit 34p in the coin feeding device 30, and a temporary storage unit in the temporary storage unit 40. Control signals are sent to the drive unit 40p, the feeding unit 51, the transport unit 60, and the like in the storage and feeding device 50 to control these components.
  • a mounting state detection unit 78 is connected to the control unit 80, and a signal related to detection information of the mounting state of the collection box 70 to the housing 12 detected by the mounting state detection unit 78 is transmitted to the control unit 80. To be sent to.
  • a notification unit 82 is connected to the control unit 80, and the notification unit 82 can perform various notifications to the operator by display, voice, or the like.
  • the control unit 80 is provided with an operation unit 84 for an operator to give various commands to the control unit 80.
  • a display unit that is provided on the front surface or the upper surface of the housing 12 and includes a touch panel integrated with the notification unit 82 and the operation unit 84 is known.
  • a storage unit 86 is connected to the control unit 80 so that information such as various settings of the coin depositing / dispensing machine 10 and processing results of coins by the coin depositing / dispensing machine 10 is stored in the storage unit 86. It has become. Specifically, information related to the setting of the denomination of coins selected by each sorting unit 24 provided in the deposit transport unit 20, the number of coins stored in each storage and feeding device 50 for each denomination, Information such as the amount of money is stored in the storage unit 86.
  • an interface 88 is connected to the control unit 80, and the control unit 80 can send and receive signals to and from an external device (for example, a host device) of the coin depositing and dispensing machine 10 via the interface 88. It is like that.
  • the coin depositing / dispensing machine 10 is provided with a defect detecting unit 90, and this defect detecting unit 90 detects this when an abnormality occurs in the coin depositing / dispensing machine 10.
  • the abnormality detection information by the defect detection unit 90 is sent to the control unit 80.
  • the coin feeding device 30 of the present embodiment includes the coin transport disk 32, the elastic member (belt 33), and the moving mechanism (belt drive mechanism 34).
  • the coin transport disk 32 is a friction transport part. 32c and a step portion 32d, which rotates in a posture inclined with respect to the vertical direction, and the friction transfer portion 32c is formed on the upper surface of the coin transfer disc 32 along the outer periphery 32b of the coin transfer disc 32. Then, the coin that has come into contact with the friction transfer part 32c is transferred to the upper region of the coin transfer disk 32 by the frictional force with the coin, and the step part 32d is formed on the upper surface of the coin transfer disk 32 by the friction transfer part 32c.
  • the distance from the upper surface of the feeding portion 32c is smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device 30, and the moving mechanism (belt drive mechanism 34)
  • the moving mechanism In the upper region of the coin transport disk 32, it is moved toward the inside of the coin transport disk 32 along the upper surface of the coin transport disk, and the elastic member (belt 33) contacts the coin on the friction transport part 32c. It is elastically deformed and the coin is moved toward the stepped portion 32d.
  • the friction transfer portion 32c of the coin transfer disk 32 transfers the coin to the upper region, the interval of the coins on the coin transfer disk 32 becomes arbitrary, and the interval of the coins is narrowed. It becomes possible to pay out. That is, it is possible to improve the feeding efficiency and speed up the processing. In addition, since the conveyance of foreign matter to the upper region by the coin conveyance disk 32 is suppressed, the foreign matter removal capability can be enhanced.
  • the elastic member (belt 33) moves the coins on the friction conveyance portion 32c toward the stepped portion 32d, it is possible to reliably throw the double feed coins and to feed the coins in a line. it can.
  • the elastic member (belt 33) moves these coins toward the stepped portion 32d. Then, the lowermost coin in contact with the friction conveyance portion 32c comes into contact with the stepped portion 32d, but other coins cannot contact the stepped portion 32d and fall below the stepped portion 32d. . In this way, one layer of coins is aligned on the coin transport disk 32.
  • the coin feeding apparatus 30 respond
  • the elastic member (belt 33) presses the coin on the friction conveyance portion 32c toward the coin conveyance disk 32 in a state of being elastically deformed, and moves the movement mechanism (belt drive mechanism 34). ) Moves the elastic member (belt 33) from the top of the friction transfer portion 32c to the outside of the coin transfer disc 32, and moves the coin to the outside of the coin transfer disc 32. For this reason, the elastically deformed elastic member (belt 33) presses the coin to stabilize the posture, and the coin can be fed out from the coin feeding device 30 in this state, which is advantageous in terms of speeding up the processing.
  • the distance between the coin transport disk 32 and the end of the elastic member (belt 33) on the coin transport disk 32 side is the object of processing by the coin feeding device 30. It is configured to be smaller than the minimum thickness of the coin to be processed.
  • the moving mechanism (belt drive mechanism 34) is configured to include a first pulley 34a, and the elastic member (belt 33) is a belt wound around the first pulley 34a.
  • the rotational axis of the first pulley 34a is substantially parallel to the rotational axis of the coin transport disk 32, and the end portion in the width direction of the belt 33 is configured to come into contact with the coin on the friction transport site 32c.
  • the coin feeding device 30 of the present embodiment has a lever member 39, and the lever member 39 is disposed upstream of the elastic member (belt 33) in the coin conveying direction by the coin conveying disk 32, and is frictionally disposed. It is configured to move the coin toward the stepped portion 32d in contact with the coin on the transporting portion 32c.
  • the coin feeding device 30 of the present embodiment has an outer peripheral belt 37, and the outer peripheral belt 37 has a coin in a lower region of the coin transport disk 32 in a posture in which the transport surface faces the outer periphery 32 b of the coin transport disk 32. It arrange
  • the outer peripheral belt 37 assists the conveyance of coins by the coin conveyance disk 32, it is preferable that the processing of the coin feeding device 30 can be further speeded up.
  • the coin feeding device 30 of the present embodiment includes a pressing member 35c and an urging mechanism 35d, and the pressing member 35c faces the friction transfer part 32c of the coin transfer disk 32, and the coin transfer disk 32.
  • the biasing mechanism 35d is configured to urge the pressing member 35c toward the coin transporting disc 32 so that the pressing member 35c presses the coin against the coin transporting disc 32. Is done.
  • the pressing member 35c presses the coin against the coin transport disc 32, the transport force of the coin by the coin transport disc 32 increases, so that the processing of the coin feeding device 30 can be further speeded up, and the coin remaining The generation can be suppressed, which is preferable.
  • the coin feeding device 30 of the present embodiment has a cover member 35, and the cover member 35 forms a coin storage space 36 for storing coins between the coin transport disk 32 and the cover member 35 is a coin storage space 36. It is comprised so that it may have the opening-and-closing part 35a which discharges the foreign material.
  • the coin feeding device 30 of the present embodiment includes a coin transport disk 32 and an outer peripheral belt 37.
  • the coin transport disk 32 includes a friction transport part 32c and a step part 32d, and is perpendicular to the vertical direction.
  • the friction conveying part 32c is rotated along an inclined posture, and is formed along the outer periphery 32b of the upper surface of the coin conveying disk 32.
  • the coin contacting the friction conveying part 32c is conveyed by a frictional force with the coin.
  • the outer peripheral belt 37 is transported to the upper region of the disk 32, and the outer peripheral belt 37 is disposed adjacent to the coin transport disk 32 in the lower region of the coin transport disk 32 with the transport surface facing the outer periphery 32 b of the coin transport disk 32.
  • the coin conveyance disk 32 moves in the same direction as the rotation direction, and contacts the coins on the friction conveyance part 32c to assist the coin conveyance by the coin conveyance disk 32.
  • the friction transfer part 32c of the coin transfer disk 32 transfers the coins to the upper region, the interval of the coins on the coin transfer disk 32 becomes arbitrary, and the coins can be fed out with a reduced interval. Further, even coins having a large diameter difference can be reliably fed out one by one by the cooperative action of the step portion 32d, the belt 33, and the moving mechanism. That is, it is possible to improve the feeding efficiency and speed up the processing. In addition, since the conveyance of foreign matter to the upper region by the coin conveyance disk 32 is suppressed, the foreign matter removal capability can be enhanced. In addition, since the outer peripheral belt 37 assists the transport of coins by the coin transport disk 32, the processing of the coin feeding device 30 can be further speeded up, which is preferable.
  • the coin feeding device 30 of the present embodiment includes a rotating coin transport disk 32, a step portion 32d (step member), a belt 33, and a belt drive mechanism 34, and the coin transport disk 32 is in contact with the coin transport disk 32.
  • the coin is transported toward the belt, and the step portion 32d is disposed on the upper side of the coin transport disc 32 and has an outer peripheral portion 32e that is a portion facing the outer periphery 32b of the coin transport disc 32.
  • the distance between the upper end and the upper surface of the coin transport disk 32 is smaller than the minimum thickness of the coins to be processed that are to be processed by the coin feeding device 30, and the belt drive mechanism 34 moves the belt 33 to the coin transport disk 32.
  • the belt 33 is made to travel toward the inside of the coin transport disk 32 along the upper surface of the belt, and the belt 33 comes into contact with the coin on the coin transport disk 32 and elastically deforms to move the coin toward the step portion 32d.
  • the belt 33 moves the coin toward the stepped portion 32d, so that it is possible to reliably throw the double feed coin. If it demonstrates, when it conveys toward the belt 33 in the state in which the some coin overlapped, the coin with which the belt 33 overlapped will be moved toward the level
  • the coin feeding apparatus 30 can respond to coins of various thicknesses. Further, the belt 33 moves the coins toward the stepped portion 32d, so that the coins can be reliably fed out in a line. That is, according to the above configuration, it is possible to provide a coin feeding device 30 that can reliably carry out multi-feed coins and small-diameter coins even when processing is speeded up, and can feed coins one by one. It becomes possible.
  • the belt 33 presses the coin on the coin transport disk 32 toward the coin transport disk 32 in an elastically deformed state, and the belt drive mechanism 34 transports the belt 33 to the coin. It is comprised so that it may run out of the coin conveyance disk 32 from the top of the disk 32, and a coin may be moved out of the coin conveyance disk 32. For this reason, the elastically deformed belt 33 presses the coin to stabilize the posture, and the coin can be fed from the coin feeding device 30 in this state, which is advantageous in terms of speeding up the processing.
  • the distance between the coin transport disk 32 and the end of the belt 33 on the coin transport disk 32 side is the processing target coin that the coin feeding device 30 is to process. It is configured to be smaller than the minimum thickness.
  • the belt drive mechanism 34 includes a first pulley 34a, the belt 33 is wound around the first pulley 34a, and the rotation shaft 34b of the first pulley 34a. Is substantially parallel to the rotation shaft 32 a of the coin transport disk 32, and is configured such that the end of the belt 33 in the width direction comes into contact with coins on the coin transport disk 32.
  • the end portion in the width direction of the belt 33 is elastically deformed toward the inside of the first pulley 34a. Composed.
  • the coin feeding device 30 of the present embodiment is configured such that the bending rigidity of the elastic deformation portion 33b in the thickness direction of the belt 33 is lower than the bending rigidity of the elastic deformation portion 33b in the running direction of the belt 33.
  • the coin feeding device 30 of the present embodiment is configured such that the elastic deformation portion 33b is divided along the running direction of the belt 33.
  • the coin feeding device 30 of the present embodiment is configured such that the elastically deformable portion 33b has a plurality of rod-like portions that are spaced apart along the running direction of the belt 33.
  • the cover member 35 has the urging mechanism 35d.
  • the coin feeding device 30 includes a coin detection unit, and the cover member 35 is configured to include a pressing mechanism instead of the urging mechanism 35d.
  • the cover member 35 is attached to the base member 31 via a pressing mechanism.
  • the coin detection unit is a sensor that detects the amount of coins on the coin transport disk 32, and includes, for example, a projector and an optical sensor, and outputs a control corresponding to the amount of coins on the coin transport disk 32 to the control unit. To 80.
  • the pressing mechanism moves the pressing member 35c and changes the distance between the pressing member 35c and the coin transport disk 32 based on the amount of coins on the coin transport disk 32 detected by the coin detection unit.
  • the pressing mechanism includes an actuator such as a motor, for example, and moves the cover member 35 with respect to the coin transport disk 32 in accordance with a signal from the control unit 80, so that the pressing member 35c and the coin are moved. The distance from the transport disk 32 is changed.
  • the control unit 80 instructs the pressing mechanism to move the cover member 35 based on the amount of coins on the coin transport disk 32 detected by the coin detection unit. For example, the distance between the cover member 35 and the pressing member 35c is increased as the amount of coins is increased, and the distance between the cover member 35 and the pressing member 35c is decreased as the amount of coins is decreased. For example, when the amount of coins is smaller than a predetermined threshold, the distance between the cover member 35 and the pressing member 35c is controlled to be smaller than the minimum thickness of the coins to be processed by the coin feeding device 30.
  • the coin feeding device 30 of the present embodiment includes a pressing member 35c, a coin detecting unit, and a pressing mechanism, and the pressing member 35c is a coin facing in a posture facing the friction transfer portion 32c of the coin transfer disk 32.
  • the coin detection unit detects the amount of coins on the coin transport disk 32
  • the pressing mechanism determines the amount of coins detected by the coin detection unit. Based on this, the pressing member 35c is moved to change the distance between the pressing member 35c and the coin transport disk 32, and the pressing member 35c is configured to press the coin against the coin transport disk 32.
  • the pressing mechanism moves the pressing member 35c based on the amount of coins detected by the coin detection unit to change the distance between the pressing member 35c and the coin transport disk 32, and the pressing member 35c transfers the coins to the coin transport disk. Since the coin conveying force by the coin conveying disk 32 is increased, the processing of the coin feeding device 30 can be further speeded up, and the occurrence of remaining coins can be suppressed.
  • the elastic deformation portion 33b of the belt 33 is formed as a bar-like portion that is separated from each other.
  • the form of the belt 33 the following different forms are possible. In the following description, the same components as those in the first embodiment are denoted by the same reference numerals, and description thereof is omitted.
  • the belt 201 includes a main body part 201a and an elastic deformation part 201b.
  • the elastic deformation part 201b is configured to have a wide part 201c and a narrow part 201d.
  • the width of the wide portion 201c (the width along the longitudinal direction of the belt 33) is larger than the width of the narrow portion 201d.
  • part 201d are arrange
  • the length of the wide portion 201c and the length of the narrow portion 201d are approximately the same.
  • the length of the wide part 201c (and the narrow part 201d), that is, the length by which the elastically deforming part 33b protrudes from the main body part 33a is larger than the maximum thickness of the coins to be processed that are processed by the coin feeding device 30. large.
  • the cross sections of the wide portion 201 c and the narrow portion 201 d are both rectangular, the short sides of the cross section rectangle coincide with the thickness direction of the belt 33, and the long sides of the cross section rectangle are the longitudinal direction of the belt 33.
  • the bending rigidity of the elastic deformation portion 33b (the wide portion 201c and the narrow portion 201d) in the thickness direction of the belt 33 is such that the elastic deformation portion 33b (in the longitudinal direction of the belt 33 (that is, the running direction of the belt 33)).
  • the bending rigidity of the wide part 201c and the narrow part 201d) is lower.
  • the state of the coin C120 in FIG. 12 shows a state where the coin C120 is elastically deformed by the belt 201, specifically, the elastic deformation portion 201b of the belt 201, and has entered between the belt 201 and the coin transport disk 32.
  • the plurality of elastic deformation portions 201b of the belt 201 are bent in the middle in the longitudinal direction of the elastic deformation portion 201b by the coin C120, and are elastically deformed toward the inside of the first pulley 34a.
  • the state of the coin C121 in FIG. 12 shows a state in which a coin smaller and thinner than the coin C120 has entered between the belt 201 and the coin transport disk 32.
  • the six elastic deformation parts 201b are elastically deformed by the coin C121.
  • the coin C121 is pressed toward the coin conveyance disk 32 (friction conveyance part 32c) by the elastically deformed elastic part 201b.
  • the state of the coin C122 in FIG. 12 shows a state in which a thicker and larger coin than the coin C121 has entered between the belt 201 and the coin transport disk 32. At this time, the eleven elastic deformation portions 201b are elastically deformed by the coin C122. The coin C122 is pressed toward the base member 31 by the elastically deformed elastic part 201b.
  • the length of the region where the elastic deformation portion 201b of the belt 201 is deformed by the coin C122 is larger than the length of the region where the belt 201 is deformed.
  • the amount of deformation of the elastic deformation portion 201b by the coin C122 is larger than the amount of deformation by the coin C121.
  • the belt 201 (and the elastic deformation portion 201b) is elastically deformed according to the size and thickness of the coins to be contacted.
  • the belt 301 according to the present embodiment includes a main body part 301 a and an elastic deformation part 301 b.
  • the elastic deformation part 301b is configured to have a thick part 301c and a thin part 301d.
  • the elastically deformable portion 301b according to the present embodiment is formed as a continuous member that is not separated or separated along the longitudinal direction of the belt 301.
  • the width of the thick portion 301c (the width along the longitudinal direction of the belt 33) is larger than the width of the thin portion 301d.
  • the thick part 301c and the thin part 301d are alternately arranged in a form adjacent to each other.
  • the length of the thick part 301c and the length of the thin part 301d are approximately the same.
  • the length of the thick portion 301c (and the thin portion 301d), that is, the length by which the elastic deformation portion 33b protrudes from the main body portion 33a is larger than the maximum thickness of the processing target coin that is processed by the coin feeding device 30. large.
  • the thickness of the thick part 301c is larger than the thickness of the thin part 301d.
  • the bending rigidity of the elastic deformation portion 33b (thick portion 301c and thin portion 301d) in the thickness direction of the belt 33 is the elastic deformation portion 33b (thick portion) in the longitudinal direction of the belt 33 (that is, the running direction of the belt 33). It is lower than the bending rigidity of 301c and thin part 301d).
  • the state of the coin C140 in FIG. 14 shows a state in which the coin C140 has elastically deformed the belt 301, specifically, the elastic deformation portion 301b of the belt 301, and has entered between the belt 301 and the coin transport disk 32. At this time, the elastic deformation portion 301b of the belt 301 is bent in the middle in the longitudinal direction of the elastic deformation portion 301b by the coin C140, and is elastically deformed toward the inside of the first pulley 34a.
  • FIG. 14 shows a state in which a coin smaller and thinner than the coin C140 has entered between the belt 301 and the coin transport disk 32.
  • the state of the coin C141 in FIG. At this time, the coin C141 is pressed toward the coin transport disc 32 (friction transport part 32c) by the elastically deformed elastic part 301b.
  • the state of the coin C142 in FIG. 14 shows a state in which a thicker and larger coin than the coin C141 has entered between the belt 301 and the coin transport disk 32. At this time, the coin C142 is pressed toward the base member 31 by the elastically deformed elastic portion 301b.
  • the length of the region where the elastic deformation portion 301b of the belt 301 is deformed by the coin C142 is larger than the length of the region deformed by the coin C141.
  • the amount of deformation of the elastic deformation portion 301b by the coin C142 is larger than the amount of deformation by the coin C141.
  • the belt 301 (and the elastic deformation portion 301b) is elastically deformed according to the size and thickness of the coins to be contacted.
  • the step portion 32d fixed to the coin transport disk 32 corresponds to the step member.
  • the step member may be a member fixed to the coin feeding device 30. That is, the step member is not a form that rotates together with the coin transport disk 32 as in the above-described embodiment, but may be a member that is stopped with respect to the coin feeding device 30.
  • part 32c is formed in the upper surface of the coin conveyance disk 32 along the outer periphery 32b of the coin conveyance disk 32, and the coin which contacted the said friction conveyance site
  • the coin feeding device 30 of this embodiment is configured to include a coin transport disc 401 and a step member 402 as shown in FIG.
  • the coin transport disc 401 is a disc that rotates around the rotation shaft 401 a in a posture inclined with respect to the vertical direction, and the coins stored in the coin storage space 36 are transferred from the lower region to the upper region of the coin transport disc 401. In other words, it is conveyed toward the belt 33.
  • a plurality of protruding portions 401 c are formed on the upper surface of the coin transport disc 401. These protruding portions 401 c are provided at equal intervals along the outer periphery of the coin transport disc 401.
  • each protrusion part 401c catches a coin on the surface of the coin conveyance disk 401,
  • region of the coin conveyance disk 401 is conveyed to an upper area
  • the step member 402 is a member provided at a fixed position with respect to the coin feeding device 30 and is located on the inner side of the protruding portion 401c of the coin transport disc 401 with a slight gap from the upper surface of the coin transport disc 401. Is arranged. The distance between the step member 402 and the coin transport disc 401 is smaller than the minimum thickness of the coins to be processed by the coin feeding device 30.
  • the step member 402 includes an outer peripheral part 402a, an inclined part 402b, and a guide part 402c.
  • the outer peripheral part 402 a is a part facing the outer periphery of the coin transport disc 401.
  • an inclined portion 402b is formed near the outer periphery of the step member 402 (see FIG. 15), and the periphery of the step member 402 has a so-called taper shape.
  • the distance between the upper end of the outer peripheral portion 402a of the step member 402 and the upper surface of the coin transport disc 401 is smaller than the minimum thickness of the processing target coin that is processed by the coin feeding device 30.
  • the conveyance of coins and the handling of double-fed coins in the coin feeding device 30 of the present embodiment will be described.
  • the coin is hooked on the protruding portion 401c of the coin transport disc 401 and transported.
  • Coins that are in contact with the coin transport disc 401 are transported in contact with the outer peripheral portion 402 a of the step member 402 and the protruding portion 401 c of the coin transport disc 401, as in the case of the coin C 150, and approach the belt 33.
  • the coin (coin C151) that has contacted the belt 33 is pushed by the outer peripheral portion 402a and the protruding portion 401c and contacts the elastically deformable portion 33b of the belt 33. Then, the end portion (elastic deformation portion 33b) in the width direction of the belt 33 pressed in contact with the coin C151 is elastically deformed toward the inside of the first pulley 34a. Then, the coin C151 enters between the belt 33 and the coin transport disc 401.
  • the coin C152 overlaps with the coin C151, the coin C152 contacts the belt 33 without contacting the outer peripheral portion 402a of the step member 402. Then, the coin C152 cannot deform the elastic deformation portion 33b of the belt 33, cannot enter under the belt 33, is pushed by the belt 33, and falls downward.
  • the coins C151 and C153 that have entered under the belt 33 are guided to the guide portion 402c of the step member 402 and the belt 33, and are conveyed to the deposit conveyance unit 20. In this way, the multi-feed coins are rolled up by the belt 33 of the coin feeding device 30, and the feeding in the one-line state to the deposit conveyance unit 20 is realized.
  • the height of the protruding portion 401c of the coin transport disc 401 is smaller than the minimum thickness of the coin to be processed by the coin feeding device 30.
  • the distance between the coin transport disc 401 and the end of the belt 33 on the coin transport disc 401 side (the tip of the elastic deformation portion 33b) is preferably smaller than the minimum thickness of the coins to be processed by the coin feeding device 30.
  • the coin feeding device 30 is preferably configured such that the protruding portion 401c of the coin transport disc 401 and the elastically deforming portion 33b of the belt 33 are not in contact with each other.
  • the belt 33 (elastic member) may be formed integrally with the main body portion 33a and the elastic deformation portion 33b as in the above-described embodiment, or may be formed as separate members, and the elastic deformation portion. You may attach 33b to the main-body site
  • the belt 33 may be formed of an elastic material such as rubber or resin, or may be configured by connecting non-elastic parts (or low elasticity) to each other by a hinge or an elastic member.
  • the elastic deformation portion 33b is formed as a bar-like portion that is separated from each other.
  • the cross section of the elastic deformation portion 33b can be circular or elliptical.
  • the interval between the elastic deformation portions 33b can be arbitrarily changed, and a configuration in which a plurality of elastic deformation portions 33b are adjacent to each other is also possible.
  • the elastic deformation portion 33 b can be configured to be continuous in the longitudinal direction of the belt 33.
  • the elastically deformable portion 33b can be formed in a fin shape thinner than the main body portion 33a, or a portion in which a portion having a large thickness and a portion having a small thickness are alternately arranged.
  • the belt 33 wound between the first pulley 34a and the second pulley 34e corresponds to the elastic member.
  • the elastic member is not limited to a belt-like member, and any elastic member may be used as long as it can be elastically deformed by contact with the coin on the friction conveyance portion 32c and move the coin toward the step portion 32d.
  • a spatula-like elastic member may be moved by a moving mechanism, contacted with a coin on the friction conveyance portion 32c and elastically deformed, and the coin may be moved toward the step portion 32d.
  • the pressing member 35 c is attached to the cover member 35.
  • the cover member 35 may also serve as the pressing member 35c.
  • the portion of the cover member 35 facing the friction conveyance portion 32c may be configured to press the coin against the coin conveyance disk 32 by the urging mechanism 35d or the pressing mechanism.
  • the cover member 35 is provided with the opening / closing part 35 a, and the foreign matter is discharged from the coin storage space 36.
  • the size of the opening / closing part 35a can be arbitrarily changed.
  • the entire cover member 35 may also serve as the opening / closing part 35a. That is, the cover member 35 may be configured to move (open and close) with respect to the coin storage space 36 and discharge foreign matter in the coin storage space 36.
  • the stepped portion 32d (stepped member) has an outer periphery (outer peripheral portion 32e) formed in an arc shape. Concavities and convexities may be formed on the outer periphery of the stepped portion 32d. For example, a mountain-shaped convex portion having an obtuse apex angle may be formed on the outer periphery of the stepped portion 32d. Thereby, the conveyance force which moves a coin to the rotation direction of the coin conveyance disk 32 increases.
  • the coin transport disk 32 (coin transport disk 401) is arranged in a posture inclined with respect to the vertical direction. It is also possible to arrange the coin transport disk horizontally.
  • the coin feeding device 30 can be applied to various devices in addition to the coin depositing and dispensing machine 10 described above.
  • the present invention can be applied to a device for processing coins such as an ATM, a currency processing device, a change machine, or a device for processing medals used in a gaming machine (medal counting machine or the like).
  • each configuration illustrated in the above-described embodiment is functionally schematic and does not necessarily need to be physically configured as illustrated. That is, the form of distribution / integration of each device is not limited to that shown in the figure, and all or a part thereof may be functionally or physically distributed / integrated in an arbitrary unit according to various loads or usage conditions. Can be configured.
  • the coin feeding device can increase the feeding efficiency of coins, speed up the processing, increase the foreign matter removal capability, and diversify the coins to be processed.

Abstract

Provided is a coin delivery device in which the coin delivery efficiency is enhanced and the speed of processing is increased, the capability to remove foreign matter is enhanced, and the variety of coins processed is expanded. The coin delivery device has a coin transportation disc, an elastic member, and a movement mechanism. The movement mechanism moves, in the upper region of the coin transportation disc, the elastic member along the upper surface of the coin transportation disc towards the inner side of the coin transportation disc. The elastic member comes into contact with a coin on a friction transportation portion and elastically deforms, and moves the coin towards a step portion.

Description

硬貨繰出装置Coin feeding device
 本発明は、硬貨を1枚ずつ繰り出す硬貨繰出装置に関する。 The present invention relates to a coin feeding device for feeding coins one by one.
 硬貨繰出装置は、硬貨入出金機やATM等に内蔵される装置であって、投入された硬貨を貯留し、1枚ずつ高速で繰り出す装置である。硬貨繰出装置から搬送路へ繰り出された硬貨は、一層一列状態で搬送され、識別部にて金種が識別され、選別部にて金種別に選別される。 The coin feeding device is a device built in a coin depositing / dispensing machine, ATM, or the like, and stores the inserted coins and feeds them one by one at a high speed. The coins fed out from the coin feeding device to the transport path are transported in a single-layer state, the denomination is identified by the discriminating unit, and sorted by denomination by the sorting unit.
特許第5775776号明細書Japanese Patent No. 5775776 特許第3266411号明細書Japanese Patent No. 3266411
 特許文献1の硬貨繰出装置は、鉛直方向に対して所定角度で傾斜しており傾斜姿勢で回転させられる回転円盤を有して構成される。回転円盤における硬貨収納空間側の表面には、複数の突起部材が設けられている。この突起部材で硬貨を引っ掛けることにより、回転円盤の下部領域にある硬貨が、回転円盤の回転によって、回転円盤の上部領域に搬送される。 The coin feeding device of Patent Document 1 includes a rotating disk that is inclined at a predetermined angle with respect to a vertical direction and is rotated in an inclined posture. A plurality of protruding members are provided on the surface of the rotating disk on the coin storage space side. By hooking the coin with the protruding member, the coin in the lower area of the rotating disk is conveyed to the upper area of the rotating disk by the rotation of the rotating disk.
 このような形式の硬貨繰出装置は、突起部材により硬貨を確実に搬送できるという利点がある。一方で、繰り出される硬貨の間隔は、突起部材の配置の間隔により決定されるから、大きな硬貨も小さな硬貨も同じ間隔で繰り出されることとなる。この点で、特許文献1の硬貨繰出装置には、硬貨の繰出効率を向上して処理を高速化する余地が存在する。処理を高速化すべく回転円盤の回転速度を大きくすると、遠心力も大きくなり、重送硬貨(突起部材に引っ掛かっていない硬貨)が上部領域に搬送されてしまう場合が生じる。また、処理対象硬貨の直径の多様化により、直径差が2倍以上異なる硬貨を処理対象とした場合に、小さい硬貨が同時に2枚繰出されてしまうという課題があった。加えて特許文献1の硬貨繰出装置では、突起部材により硬貨だけでなく異物(紙片、クリップ等)も上部領域に強制的に搬送される場合があり、異物の引っ掛かりや滞留が生じる場合があった。 This type of coin feeding device has an advantage that the coin can be reliably conveyed by the protruding member. On the other hand, since the interval between the coins to be paid out is determined by the arrangement interval of the protruding members, both large coins and small coins are drawn out at the same interval. In this regard, the coin feeding device of Patent Document 1 has room for improving the coin feeding efficiency and speeding up the processing. When the rotational speed of the rotating disk is increased to increase the processing speed, the centrifugal force also increases, and there are cases where double feed coins (coins that are not caught by the protruding members) are transported to the upper region. In addition, due to diversification of the diameters of the coins to be processed, there is a problem that two coins are fed out simultaneously when coins whose diameter difference is two or more times different are targeted for processing. In addition, in the coin feeding device of Patent Document 1, not only coins but also foreign matters (paper pieces, clips, etc.) may be forcibly conveyed to the upper region by the protruding member, and foreign matter may be caught or retained. .
 特許文献2の硬貨繰出装置は、傾斜円盤と逆転ローラとを有して構成される。傾斜円盤が回転されると、不整列状態の硬貨のうち、傾斜円盤に面接触している硬貨だけが傾斜方向の上部側へ移動し、面接触していない硬貨は傾斜方向の下部側へ転がり落ちる。傾斜方向の上部側へ移動された硬貨は逆転ローラの下を通過するときに、重なり状態であれば逆転ローラによって上側の硬貨だけが戻され、確実に1枚状態にされる。逆転ローラの下を通過した硬貨は、硬貨送出口から送り出される。 The coin feeding device of Patent Document 2 includes an inclined disk and a reverse rotation roller. When the tilting disk is rotated, only the coins that are in surface contact with the tilting disk move to the upper side in the tilt direction among the unaligned coins, and the coins that are not in surface contact roll to the lower side in the tilt direction. drop down. When the coins moved to the upper side in the tilt direction pass under the reverse rotation roller, if they are in an overlapped state, only the upper coin is returned by the reverse rotation roller to be surely made into one sheet. Coins that pass under the reversing roller are sent out from the coin feed outlet.
 このような形式の硬貨繰出装置は、硬貨の繰り出しの間隔が突起部材の間隔に影響されないため、高速化が可能である。しかし特許文献2の硬貨繰出装置では、逆転ローラは、傾斜円盤に対して硬貨1枚のみが通過可能な間隔を開けて支持されている。そうすると、処理が可能な硬貨の厚さは、この逆転ローラの構造・配置により制限される。すなわち特許文献2の硬貨繰出装置には、処理対象硬貨の厚さの多様化の点で改良の余地がある。 Such a coin feeding device of this type can be speeded up because the feeding interval of coins is not affected by the spacing of the protruding members. However, in the coin feeding device of Patent Document 2, the reverse rotation roller is supported with an interval through which only one coin can pass with respect to the inclined disk. If it does so, the thickness of the coin which can be processed will be restrict | limited by the structure and arrangement | positioning of this reverse rotation roller. That is, the coin feeding device of Patent Document 2 has room for improvement in terms of diversification of the thickness of the coins to be processed.
 そこで、硬貨の繰出効率を高めて処理を高速化し、異物の排除能力を高め、処理対象硬貨を多様化した硬貨繰出装置を提供することが求められている。また、処理を高速化した場合でも重送硬貨の捌きを確実に行うことができると共に、直径差が2倍以上異なる硬貨を処理対象とした場合でも硬貨を一列状態にして繰出すことができる硬貨繰出装置を提供することが求められている。 Therefore, it is required to provide a coin feeding device that increases the coin feeding efficiency, speeds up the processing, increases the foreign matter removal capability, and diversifies the processing target coins. In addition, even when processing is speeded up, it is possible to surely carry out multi-feed coins, and coins that can be fed out in a single row even when coins whose diameter differences are two or more times different are to be processed There is a need to provide a payout device.
 本発明の一態様における硬貨繰出装置は、硬貨搬送円盤と、弾性部材と、移動機構とを有する硬貨繰出装置であって、
 前記硬貨搬送円盤は、摩擦搬送部位と、段差部位とを有し、鉛直方向に対して傾斜した姿勢で回転し、
 前記摩擦搬送部位は、前記硬貨搬送円盤の上側の面において、前記硬貨搬送円盤の外周に沿って形成され、当該摩擦搬送部位に接触した硬貨を、当該硬貨との摩擦力により前記硬貨搬送円盤の上部領域に搬送し、
 前記段差部位は、前記硬貨搬送円盤の上側の面において前記摩擦搬送部位の内側に形成された、前記摩擦搬送部位に対して突出した部位であり、前記硬貨搬送円盤の外周に面する部位である外周部位を有し、
 前記外周部位の上端と、前記摩擦搬送部位の上側の面との距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さく、
 前記移動機構は、前記弾性部材を、前記硬貨搬送円盤の上部領域において前記硬貨搬送円盤の上側の面に沿って前記硬貨搬送円盤の内側に向けて移動させ、
 前記弾性部材は、前記摩擦搬送部位の上の硬貨に接触して弾性変形し、硬貨を前記段差部位に向けて移動させることを特徴とする。
The coin feeding device according to one aspect of the present invention is a coin feeding device having a coin transport disk, an elastic member, and a moving mechanism,
The coin transport disk has a friction transport part and a step part, and rotates in a posture inclined with respect to the vertical direction,
The friction conveyance part is formed along the outer periphery of the coin conveyance disk on the upper surface of the coin conveyance disk, and the coin that has contacted the friction conveyance part is caused to be absorbed by the friction force of the coin with the coin conveyance disk. Transport to the upper area,
The step portion is a portion that is formed on the inner surface of the friction conveyance portion on the upper surface of the coin conveyance disk and protrudes with respect to the friction conveyance portion, and is a portion that faces the outer periphery of the coin conveyance disk. Has an outer peripheral part,
The distance between the upper end of the outer peripheral part and the upper surface of the friction conveyance part is smaller than the minimum thickness of the processing target coins to be processed by the coin feeding device,
The moving mechanism moves the elastic member toward the inside of the coin transport disk along the upper surface of the coin transport disk in the upper region of the coin transport disk,
The elastic member is elastically deformed by contacting a coin on the friction conveyance part, and moves the coin toward the step part.
 このような硬貨繰出装置によれば、硬貨搬送円盤の摩擦搬送部位が硬貨を上部領域に搬送するので、硬貨搬送円盤上の硬貨の間隔は任意なものとなり、硬貨の間隔を狭くして繰り出すことが可能となる。すなわち、繰出効率を向上して処理を高速化することが可能となる。また、段差部位、弾性部材、移動機構の協働作用により直径差が大きな硬貨であっても1枚ずつ確実に繰出すことが可能となる。加えて、硬貨搬送円盤による上部領域への異物の搬送が抑制されるので、異物の排除能力を高めることが可能となる。 According to such a coin feeding device, since the friction conveying portion of the coin conveying disk conveys the coin to the upper region, the interval between the coins on the coin conveying disk becomes arbitrary, and the coin is dispensed with a narrow interval. Is possible. That is, it is possible to improve the feeding efficiency and speed up the processing. Further, even coins having a large diameter difference can be reliably fed out one by one by the cooperative action of the stepped portion, the elastic member, and the moving mechanism. In addition, since the foreign matter is prevented from being conveyed to the upper region by the coin carrier disk, it is possible to enhance the foreign matter removal capability.
 また、弾性部材が摩擦搬送部位の上の硬貨を段差部位に向けて移動させるので、重送硬貨を確実に捌くことができる。説明すると、複数の硬貨が重なった状態で上部領域に搬送された場合には、弾性部材がこれらの硬貨を段差部位に向けて移動させる。すると、摩擦搬送部位に接触している最下層の硬貨は段差部位に接触した状態となるが、他の硬貨は段差部位に接触し得ず、段差部位を越えて下方に落下する。このようにして硬貨搬送円盤の上には1層の硬貨が整列することとなる。そして弾性部材は、摩擦搬送部位の上の硬貨に接触して弾性変形し、上述の重送硬貨の捌きを行うので、硬貨繰出装置は様々な厚さの硬貨に対応することができる。すなわち上記の構成によれば、硬貨繰出装置の処理対象硬貨を多様化することが可能となる。 Also, since the elastic member moves the coin on the friction conveyance part toward the step part, it is possible to surely throw the double feeding coin. If it demonstrates, when a some coin is conveyed to the upper area | region in the state overlapped, an elastic member will move these coins toward a level | step difference site | part. Then, the lowermost coin that is in contact with the friction conveyance portion is in a state of being in contact with the step portion, but other coins cannot be in contact with the step portion, and falls downward across the step portion. In this way, one layer of coins is aligned on the coin transport disk. And since an elastic member contacts the coin on a friction conveyance site | part and elastically deforms and performs the above-mentioned double feeding coin, the coin feeding apparatus can respond | correspond to the coin of various thickness. That is, according to said structure, it becomes possible to diversify the processing object coin of a coin feeding apparatus.
 また、前記弾性部材は、弾性変形した状態で前記摩擦搬送部位の上の硬貨を前記硬貨搬送円盤に向けて押圧し、
 前記移動機構は、前記弾性部材を前記摩擦搬送部位の上から前記硬貨搬送円盤の外へ移動させて、硬貨を前記硬貨搬送円盤の外へ移動させるよう構成されてもよい。
Further, the elastic member presses the coin on the friction conveyance portion toward the coin conveyance disk in an elastically deformed state,
The moving mechanism may be configured to move the elastic member from the top of the friction transfer part to the outside of the coin transfer disk and move the coin to the outside of the coin transfer disk.
 また、前記硬貨搬送円盤と、前記弾性部材の前記硬貨搬送円盤の側の端部との間の距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さくなるよう構成されてもよい。 Further, the distance between the coin transport disc and the end of the elastic member on the coin transport disc side is configured to be smaller than the minimum thickness of the processing target coin to be processed by the coin feeding device. May be.
 また、前記移動機構は、プーリーを有して構成され、前記弾性部材は、前記プーリーに掛け回されたベルトであり、前記プーリーの回転軸は、前記硬貨搬送円盤の回転軸と略平行であり、前記ベルトの幅方向の端部が前記摩擦搬送部位の上の硬貨と接触するよう構成されてもよい。 The moving mechanism includes a pulley, the elastic member is a belt wound around the pulley, and the rotation axis of the pulley is substantially parallel to the rotation axis of the coin transport disk. The belt may be configured such that an end portion in the width direction of the belt is in contact with a coin on the friction conveyance portion.
 また、硬貨繰出装置は、レバー部材を有し、前記レバー部材は、前記弾性部材に対して、前記硬貨搬送円盤による硬貨の搬送方向の上流側に配置され、前記摩擦搬送部位の上の硬貨と接触して、硬貨を前記段差部位に向けて移動させるよう構成されてもよい。 Further, the coin feeding device has a lever member, and the lever member is disposed upstream of the elastic member in the coin conveyance direction by the coin conveyance disk, and the coin above the friction conveyance portion and It may be configured to contact and move the coin toward the stepped portion.
 また、硬貨繰出装置は、外周ベルトを有し、前記外周ベルトは、その搬送面が前記硬貨搬送円盤の外周に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤に隣接して配置され、前記硬貨搬送円盤の回転方向と同じ方向に移動し、前記摩擦搬送部位の上の硬貨と接触して前記硬貨搬送円盤による硬貨の搬送を補助するよう構成されてもよい。 The coin feeding device has an outer peripheral belt, and the outer peripheral belt is adjacent to the coin transport disk in a lower region of the coin transport disk in a posture in which the transport surface faces the outer periphery of the coin transport disk. It is arranged to move in the same direction as the rotation direction of the coin conveyance disk, and contact the coins on the friction conveyance part to assist the coin conveyance by the coin conveyance disk.
 また、硬貨繰出装置は、押圧部材と、付勢機構とを有し、前記押圧部材は、前記硬貨搬送円盤の前記摩擦搬送部位に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤の上側に配置され、前記付勢機構は、前記押圧部材を前記硬貨搬送円盤に向けて付勢して、前記押圧部材が硬貨を前記硬貨搬送円盤に押し付けるよう構成されてもよい。 Further, the coin feeding device has a pressing member and an urging mechanism, and the pressing member is positioned in a lower region of the coin transport disk in a posture facing the friction transport portion of the coin transport disk. It is arrange | positioned above a conveyance disk, and the said urging | biasing mechanism urges | biases the said press member toward the said coin conveyance disk, and may be comprised so that the said press member may press a coin against the said coin conveyance disk.
 また、硬貨繰出装置は、押圧部材と、硬貨検出部と、押圧機構とを有し、前記押圧部材は、前記硬貨搬送円盤の前記摩擦搬送部位に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤の上側に配置され、前記硬貨検出部は、前記硬貨搬送円盤の上の硬貨の量を検出し、前記押圧機構は、前記硬貨検出部が検出した硬貨の量に基づいて、前記押圧部材を移動させて前記押圧部材と前記硬貨搬送円盤との距離を変化させ、前記押圧部材が硬貨を前記硬貨搬送円盤に押し付けるよう構成されてもよい。 The coin feeding device includes a pressing member, a coin detecting unit, and a pressing mechanism, and the pressing member is positioned below the coin conveying disk in a posture facing the friction conveying part of the coin conveying disk. The coin detection unit is disposed above the coin transport disk in the region, the coin detection unit detects the amount of coins on the coin transport disk, and the pressing mechanism is based on the amount of coins detected by the coin detection unit. The pressing member may be moved to change the distance between the pressing member and the coin transport disk, and the pressing member may press the coin against the coin transport disk.
 また、硬貨繰出装置は、カバー部材を有し、前記カバー部材は前記硬貨搬送円盤との間に硬貨を収容する硬貨貯留空間を形成し、前記カバー部材は前記硬貨貯留空間の異物を排出する開閉部位を有するよう構成されてもよい。 In addition, the coin feeding device has a cover member, the cover member forms a coin storage space for storing coins with the coin transport disk, and the cover member opens and closes to discharge foreign matter in the coin storage space. You may comprise so that it may have a site | part.
 本発明の一態様における硬貨繰出装置は、硬貨搬送円盤と、外周ベルトとを有する硬貨繰出装置であって、
 前記硬貨搬送円盤は、摩擦搬送部位と、段差部位とを有し、鉛直方向に対して傾斜した姿勢で回転し、
 前記摩擦搬送部位は、前記硬貨搬送円盤の上側の面の外周に沿って形成され、当該摩擦搬送部位に接触した硬貨を、当該硬貨との摩擦力により前記硬貨搬送円盤の上部領域に搬送し、
 前記外周ベルトは、その搬送面が前記硬貨搬送円盤の外周に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤に隣接して配置され、前記硬貨搬送円盤の回転方向と同じ方向に移動し、前記摩擦搬送部位の上の硬貨と接触して前記硬貨搬送円盤による硬貨の搬送を補助することを特徴とする。
The coin feeding device according to one aspect of the present invention is a coin feeding device having a coin transport disk and an outer peripheral belt,
The coin transport disk has a friction transport part and a step part, and rotates in a posture inclined with respect to the vertical direction,
The friction conveyance part is formed along the outer periphery of the upper surface of the coin conveyance disk, and conveys the coin that has contacted the friction conveyance part to the upper region of the coin conveyance disk by the frictional force with the coin,
The outer peripheral belt is disposed adjacent to the coin transport disk in a lower region of the coin transport disk in a posture in which the transport surface faces the outer periphery of the coin transport disk, and is the same as the rotation direction of the coin transport disk. It moves to a direction, contacts the coin on the said friction conveyance site | part, and assists conveyance of the coin by the said coin conveyance disk.
 このような硬貨繰出装置によれば、硬貨搬送円盤の摩擦搬送部位が硬貨を上部領域に搬送するので、硬貨搬送円盤上の硬貨の間隔は任意なものとなり、硬貨の間隔を狭くして繰り出すことが可能となる。すなわち、繰出効率を向上して処理を高速化することが可能となる。加えて、硬貨搬送円盤による上部領域への異物の搬送が抑制されるので、異物の排除能力を高めることが可能となる。 According to such a coin feeding device, since the friction conveying portion of the coin conveying disk conveys the coin to the upper region, the interval between the coins on the coin conveying disk becomes arbitrary, and the coin is dispensed with a narrow interval. Is possible. That is, it is possible to improve the feeding efficiency and speed up the processing. In addition, since the foreign matter is prevented from being conveyed to the upper region by the coin carrier disk, it is possible to enhance the foreign matter removal capability.
 加えて、外周ベルトが硬貨搬送円盤による硬貨の搬送を補助するので、硬貨繰出装置の処理を更に高速化することができ好適である。 In addition, since the outer peripheral belt assists the coin transport by the coin transport disk, the processing of the coin feeding device can be further speeded up, which is preferable.
 本発明の一態様における硬貨繰出装置は、回転する硬貨搬送円盤と、段差部材と、ベルトと、ベルト駆動機構とを有する硬貨繰出装置であって、
 前記硬貨搬送円盤は、接触した硬貨を前記ベルトへ向けて搬送し、
 前記段差部材は、前記硬貨搬送円盤の上側に配置されており、前記硬貨搬送円盤の外周に面する部位である外周部位を有し、
 前記外周部位の上端と、前記硬貨搬送円盤の上側の面との距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さく、
 前記ベルト駆動機構は、前記ベルトを、前記硬貨搬送円盤の上側の面に沿って前記硬貨搬送円盤の内側に向けて走行させ、
 前記ベルトは、前記硬貨搬送円盤の上の硬貨に接触して弾性変形し、当該硬貨を前記段差部材に向けて移動させる、ことを特徴とする。
The coin feeding device according to one aspect of the present invention is a coin feeding device having a rotating coin transport disk, a step member, a belt, and a belt driving mechanism.
The coin transport disk transports the coins in contact toward the belt,
The step member is arranged on the upper side of the coin transport disk, and has an outer peripheral part that is a part facing the outer periphery of the coin transport disk,
The distance between the upper end of the outer peripheral portion and the upper surface of the coin transport disk is smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device,
The belt drive mechanism causes the belt to travel along the upper surface of the coin transport disk toward the inside of the coin transport disk,
The belt is elastically deformed in contact with a coin on the coin transport disk, and moves the coin toward the step member.
 このような硬貨繰出装置によれば、ベルトが硬貨を段差部材に向けて移動させるので、重送硬貨を確実に捌くことができる。説明すると、複数の硬貨が重なった状態でベルトに向けて搬送された場合、ベルトが重なった硬貨を段差部材に向けて移動させる。すると、硬貨搬送円盤に接触している最下層の硬貨は段差部材に接触した状態となるが、他の硬貨は段差部材に接触し得ず、段差部材を越えて押し出されることになる。このようにして硬貨搬送円盤の上には1層の硬貨が整列することとなる。また、小径硬貨が硬貨搬送円盤の径方向に並んでいる場合でも、ベルトの押圧作用により繰出し方向に一列に整列することとなる。そしてベルトは、硬貨搬送円盤の上の硬貨に接触して弾性変形し、上述の重送硬貨の捌きを行うので、硬貨繰出装置は様々な厚さの硬貨に対応することができる。また、ベルトが硬貨を段差部材に向けて移動させることにより、硬貨を確実に一列状態にして繰出すことができる。すなわち上記の構成によれば、処理を高速化した場合でも重送硬貨や小径硬貨の捌きを確実に行うことができ、硬貨を1枚ずつ繰出すことができる硬貨繰出装置を提供することが可能となる。 According to such a coin feeding device, the belt moves the coins toward the stepped member, so that it is possible to reliably throw the double feed coins. If it explains, when a plurality of coins are conveyed toward a belt in the state where it overlapped, the coin with which the belt overlapped will be moved toward a level difference member. Then, the lowermost layer coin in contact with the coin transport disk is in contact with the step member, but other coins cannot contact the step member and are pushed out beyond the step member. In this way, one layer of coins is aligned on the coin transport disk. Further, even when the small diameter coins are arranged in the radial direction of the coin transport disk, they are aligned in a line in the feeding direction by the pressing action of the belt. And since a belt contacts with the coin on a coin conveyance disk and elastically deforms and performs the above-mentioned double feeding coin, the coin feeding apparatus can respond to coins of various thickness. In addition, the belt can move the coins toward the step member so that the coins can be reliably fed out in a single row. That is, according to the above-described configuration, it is possible to provide a coin feeding device that can reliably carry out multi-feed coins and small-diameter coins even when processing is speeded up and can feed coins one by one. It becomes.
 また、前記ベルトは、弾性変形した状態で前記硬貨搬送円盤の上の硬貨を前記硬貨搬送円盤に向けて押圧し、
 前記ベルト駆動機構は、前記ベルトを前記硬貨搬送円盤の上から前記硬貨搬送円盤の外へ走行させて、硬貨を前記硬貨搬送円盤の外へ移動させるよう構成されてもよい。
Further, the belt presses a coin on the coin transport disk toward the coin transport disk in an elastically deformed state,
The belt driving mechanism may be configured to cause the belt to travel from the top of the coin transport disk to the outside of the coin transport disk and move the coin to the outside of the coin transport disk.
 また、前記硬貨搬送円盤と、前記ベルトの前記硬貨搬送円盤の側の端部との間の距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さくなるよう構成されてもよい。 Further, the distance between the coin transport disk and the end of the belt on the coin transport disk side is configured to be smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device. May be.
 また、前記ベルト駆動機構は、プーリーを有して構成され、前記ベルトは前記プーリーに掛け回されており、前記プーリーの回転軸は、前記硬貨搬送円盤の回転軸と略平行であり、前記ベルトの幅方向の端部が前記硬貨搬送円盤の上の硬貨と接触するよう構成されてもよい。 The belt drive mechanism includes a pulley, the belt is wound around the pulley, and a rotation axis of the pulley is substantially parallel to a rotation axis of the coin transport disk, and the belt The end in the width direction may be configured to come into contact with a coin on the coin transport disk.
 また、前記ベルトは、前記硬貨搬送円盤の上の硬貨に接触した際、前記ベルトの幅方向の端部が前記プーリーの内側に向かって弾性変形するよう構成されてもよい。 Further, the belt may be configured such that when the belt comes into contact with a coin on the coin transport disk, an end portion in the width direction of the belt is elastically deformed toward the inside of the pulley.
 また、前記ベルトは、弾性変形部位を有しており、前記弾性変形部位は、前記ベルトの幅方向において前記プーリーよりも前記硬貨搬送円盤の側に突出した部位であり、
 前記ベルトが前記硬貨搬送円盤の上の硬貨に接触する際に、前記弾性変形部位が硬貨に接触して弾性変形するよう構成されてもよい。
Further, the belt has an elastic deformation portion, and the elastic deformation portion is a portion protruding toward the coin transport disc from the pulley in the width direction of the belt,
When the belt contacts a coin on the coin transport disk, the elastic deformation portion may be configured to contact the coin and elastically deform.
 また、前記ベルトの厚さ方向についての前記弾性変形部位の曲げ剛性が、前記ベルトの走行方向についての前記弾性変形部位の曲げ剛性よりも低いよう構成されてもよい。 Further, the bending rigidity of the elastic deformation portion in the thickness direction of the belt may be configured to be lower than the bending rigidity of the elastic deformation portion in the running direction of the belt.
 また、前記弾性変形部位が、前記ベルトの走行方向に沿って分割されているよう構成されてもよい。 Further, the elastic deformation portion may be divided along the running direction of the belt.
 また、前記弾性変形部位が、前記ベルトの走行方向に沿って離間して配置された複数の棒状部位を有して構成されてもよい。 Further, the elastic deformation portion may be configured to have a plurality of rod-like portions that are spaced apart along the running direction of the belt.
は、硬貨入出金機の内部構成の概略を示す側面図である。These are side views which show the outline of the internal structure of a coin depositing and dispensing machine. は、硬貨入出金機の内部構成の概略を示す正面図である。These are front views which show the outline of the internal structure of a coin depositing and dispensing machine. は、硬貨繰出装置および入金搬送部の概略を示す構成図である。These are the block diagrams which show the outline of a coin feeding apparatus and a money_receiving | payment conveyance part. は、ベルト(弾性部材)の構造を示す斜視図である。These are perspective views which show the structure of a belt (elastic member). は、ベルトによる硬貨の押圧および搬送の状態を示す説明図である。These are explanatory drawings which show the state of pressing and conveying coins by a belt. は、押圧部材および付勢機構の構造を示す図3におけるVI-VI断面図である。FIG. 6 is a sectional view taken along the line VI-VI in FIG. 3 showing the structure of the pressing member and the urging mechanism. は、カバー部材および開閉部位の構造を示す図3におけるVII-VII断面図である。FIG. 4 is a cross-sectional view taken along the line VII-VII in FIG. は、開閉部位が開いた状態を示す断面図である。These are sectional drawings which show the state which the opening-and-closing part opened. は、硬貨繰出装置による硬貨の繰り出しの動作を示す説明図である。These are explanatory drawings which show the operation | movement of coin feeding by a coin feeding apparatus. は、ベルトによる重送硬貨の捌きの動作を示す図9におけるX-X断面図である。FIG. 10 is a cross-sectional view taken along the line XX in FIG. は、硬貨入出金機の機能ブロック図である。These are functional block diagrams of a coin depositing and dispensing machine. は、ベルトによる硬貨の押圧および搬送の状態を示す説明図である。These are explanatory drawings which show the state of pressing and conveying coins by a belt. は、ベルトの構造を示す斜視図である。FIG. 3 is a perspective view showing a structure of a belt. は、ベルトによる硬貨の押圧および搬送の状態を示す説明図である。These are explanatory drawings which show the state of pressing and conveying coins by a belt. は、硬貨繰出装置の構造を示す斜視図である。These are perspective views which show the structure of a coin feeding apparatus.
(第1実施形態)
 以下、図面を参照して本実施形態に係る硬貨入出金機について説明する。図1および図2に示すように、硬貨入出金機10は、筐体12、硬貨受入口14、入金搬送部20、硬貨繰出装置30、一時保留部40、収納繰出装置50、搬送部60、回収ボックス70、制御部80および不良検出部90を有して構成される。
(First embodiment)
Hereinafter, a coin depositing and dispensing machine according to the present embodiment will be described with reference to the drawings. As shown in FIGS. 1 and 2, the coin depositing and dispensing machine 10 includes a housing 12, a coin receiving port 14, a depositing and conveying unit 20, a coin feeding device 30, a temporary holding unit 40, a storage and feeding device 50, a conveying unit 60, A collection box 70, a control unit 80, and a defect detection unit 90 are included.
 筐体12は、略直方体形状の筐体であり、硬貨入出金機10を構成する各装置が収容される。硬貨受入口14は、筐体12外から硬貨を受入れる。硬貨繰出装置30は、硬貨受入口14で受入れられた硬貨が送られて貯留され、貯留した硬貨を1枚ずつ繰り出す。入金搬送部20は、硬貨繰出装置30から繰り出された硬貨を1枚ずつ搬送する。入金搬送部20は、識別部22および選別部24を有して構成される。識別部22は、入金搬送部20により搬送される硬貨の識別を行う。選別部24は、識別部22による硬貨の識別結果に基づいて硬貨の選別を行う。 The housing 12 is a substantially rectangular parallelepiped housing, and accommodates each device constituting the coin depositing and dispensing machine 10. The coin receiving port 14 receives coins from outside the housing 12. The coin feeding device 30 sends and stores coins received at the coin receiving port 14 and feeds the stored coins one by one. The deposit conveyance unit 20 conveys coins fed from the coin feeding device 30 one by one. The deposit conveyance unit 20 includes an identification unit 22 and a selection unit 24. The identification unit 22 identifies the coins conveyed by the deposit conveyance unit 20. The sorting unit 24 sorts coins based on the coin identification result by the identifying unit 22.
 一時保留部40は、選別部24により選別された硬貨を金種毎に区分けされた状態で一時的に保留する。一時保留部40は、筐体12内において入金搬送部20の下方に設けられている。一時保留部40に一時的に保留された硬貨は、当該一時保留部40から収納繰出装置50に送られる。収納繰出装置50は、収納された硬貨を1枚ずつ繰り出す。本実施形態では、複数の収納繰出装置50が、一時保留部40の下方に、水平面に沿って複数列となるよう配置されている。 The temporary holding unit 40 temporarily holds the coins sorted by the sorting unit 24 in a state of being classified for each denomination. The temporary holding unit 40 is provided in the housing 12 below the deposit conveyance unit 20. Coins temporarily held in the temporary holding unit 40 are sent from the temporary holding unit 40 to the storage and feeding device 50. The storage and feeding device 50 feeds out the stored coins one by one. In the present embodiment, the plurality of storage and feeding devices 50 are arranged below the temporary storage unit 40 so as to form a plurality of rows along the horizontal plane.
 回収ボックス70は、複数の収納繰出装置50の下方に配置されている。この回収ボックス70には精算所等で使用されるドロア72が着脱自在に設けられており、各収納繰出装置50から繰り出された硬貨は、回収ボックス70に装着されたドロア72に、金種毎に区分けされた状態で収納されるようになっている。 The collection box 70 is disposed below the plurality of storage and feeding devices 50. The collection box 70 is detachably provided with a drawer 72 used in a checkout office or the like, and coins fed out from each storage and feeding device 50 are transferred to the drawer 72 attached to the collection box 70 for each denomination. It is designed to be stored in a state of being divided into two.
 制御部80は、硬貨入出金機10の各構成要素の制御を行う制御部であり、筐体12の内部に配置されている。 The control unit 80 is a control unit that controls each component of the coin depositing and dispensing machine 10, and is disposed inside the housing 12.
 以下、硬貨入出金機10の各構成要素の詳細について説明する。 Hereinafter, details of each component of the coin depositing and dispensing machine 10 will be described.
 図1および図2に示すように、筐体12外から内部に投入された硬貨を受け入れる硬貨受入口14が筐体12の上部に設けられており、硬貨受入口14に受け入れられた硬貨は自重により硬貨繰出装置30に送られるようになっている。硬貨受入口14から硬貨繰出装置30に送られた硬貨は、当該硬貨繰出装置30に一時的に貯留されるようになっている。 As shown in FIG. 1 and FIG. 2, a coin receiving port 14 that receives a coin inserted from the outside of the housing 12 is provided in the upper portion of the housing 12, and the coin received in the coin receiving port 14 is self-weight. Is sent to the coin feeding device 30. Coins sent from the coin receiving port 14 to the coin feeding device 30 are temporarily stored in the coin feeding device 30.
(硬貨繰出装置)
 硬貨繰出装置30は、図3に示すように、ベース部材31、硬貨搬送円盤32、ベルト33(弾性部材の一例)、ベルト駆動機構34(移動機構の一例)、カバー部材35、硬貨貯留空間36、外周ベルト37、案内部材38およびレバー部材39を有して構成される。
(Coin feeding device)
As shown in FIG. 3, the coin feeding device 30 includes a base member 31, a coin transport disk 32, a belt 33 (an example of an elastic member), a belt drive mechanism 34 (an example of a moving mechanism), a cover member 35, and a coin storage space 36. The outer peripheral belt 37, the guide member 38, and the lever member 39 are included.
 ベース部材31は、概略板状の部材であって、硬貨繰出装置30の各構成要素が取り付けられる部材である。硬貨搬送円盤32は、鉛直方向に対して傾斜した姿勢で回転する円盤であって、硬貨貯留空間36に貯留された硬貨を硬貨搬送円盤32の下部領域から上部領域へ搬送する。すなわち、硬貨搬送円盤32は、接触した硬貨をベルト33へ向けて搬送する。 The base member 31 is a substantially plate-like member, and is a member to which each component of the coin feeding device 30 is attached. The coin transport disc 32 is a disc that rotates in a posture inclined with respect to the vertical direction, and transports the coins stored in the coin storage space 36 from the lower region to the upper region of the coin transport disc 32. That is, the coin transport disk 32 transports the coins that are in contact toward the belt 33.
 ベルト33は、弾性部材の一例であって、硬貨搬送円盤32の上の硬貨に接触して移動させ、重送硬貨の捌きを行う。ベルト駆動機構34は、移動機構の一例であって、ベルト33を硬貨搬送円盤32の内側に向けて移動させる。 The belt 33 is an example of an elastic member, and moves in contact with the coins on the coin transport disk 32, so that the multi-feed coins are spread. The belt driving mechanism 34 is an example of a moving mechanism, and moves the belt 33 toward the inside of the coin transport disk 32.
 カバー部材35は、硬貨搬送円盤32の下部領域を覆う樹脂製の部材であって、硬貨搬送円盤32との間に硬貨貯留空間36を形成する。硬貨貯留空間36は、硬貨受入口14から送られた硬貨を貯留する空間であって、硬貨搬送円盤32とカバー部材35との間に形成される空間である。 The cover member 35 is a resin member that covers the lower region of the coin transport disk 32, and forms a coin storage space 36 with the coin transport disk 32. The coin storage space 36 is a space for storing coins sent from the coin receiving port 14, and is a space formed between the coin transport disk 32 and the cover member 35.
 外周ベルト37は、硬貨搬送円盤32の下部領域の硬貨と接触して、硬貨搬送円盤32による硬貨の搬送を補助する。案内部材38は、硬貨搬送円盤32の上の硬貨と接触して、ベルト33によって搬送される硬貨を入金搬送部20へと案内する。レバー部材39は、ベルト33に対して、硬貨搬送円盤32による硬貨の搬送方向の上流側に配置され、摩擦搬送部位32cの上の硬貨と接触して、硬貨を段差部位32d(段差部材の一例)に向けて移動させる。 The outer peripheral belt 37 contacts the coins in the lower region of the coin transport disk 32 and assists the transport of coins by the coin transport disk 32. The guide member 38 contacts the coins on the coin transport disk 32 and guides the coins transported by the belt 33 to the deposit transport unit 20. The lever member 39 is disposed upstream of the belt 33 in the direction in which coins are conveyed by the coin conveyance disk 32, contacts the coins on the friction conveyance portion 32c, and moves the coins to the step portion 32d (an example of a step member). ).
 このような硬貨繰出装置30の構成の詳細について図3~図8を用いて説明する。 Details of the configuration of the coin feeding device 30 will be described with reference to FIGS.
 硬貨搬送円盤32は上述の通り、鉛直方向に対して傾斜した姿勢にて、回転軸32aを回転軸として回転する円盤であって、硬貨貯留空間36に貯留された硬貨を硬貨搬送円盤32の下部領域から上部領域へ、すなわちベルト33へ向けて搬送する。硬貨搬送円盤32は、図3、図5等に示すように、摩擦搬送部位32cおよび段差部位32dを有して構成される。硬貨搬送円盤32は、摩擦搬送部位32cの上側の面がベース部材31の上側の面と同一平面上に位置し、かつ平行となるように、すなわち面一の関係となるように、配置される。このとき回転軸32aは、ベース部材31と垂直である。 As described above, the coin transport disk 32 is a disk that rotates with the rotation shaft 32 a as a rotation shaft in a posture inclined with respect to the vertical direction, and stores the coins stored in the coin storage space 36 below the coin transport disk 32. It is conveyed from the region to the upper region, that is, toward the belt 33. As shown in FIG. 3, FIG. 5, etc., the coin conveyance disk 32 is configured to have a friction conveyance portion 32c and a step portion 32d. The coin transport disc 32 is disposed so that the upper surface of the friction transport portion 32c is located on the same plane as the upper surface of the base member 31 and is in parallel, that is, in a flush relationship. . At this time, the rotation shaft 32 a is perpendicular to the base member 31.
 硬貨搬送円盤32の傾斜角度(水平面に対する角度)に関し、傾斜角度が大きいほど、異物が硬貨搬送円盤32の上部領域に到達し難くなり異物の排除能力が向上するが、硬貨の搬送も困難になる。硬貨搬送円盤32の傾斜角度は35°以上が好ましく、35°以上40°以下が好適である。 Regarding the tilt angle of the coin transport disk 32 (angle with respect to the horizontal plane), the larger the tilt angle, the more difficult it is for foreign objects to reach the upper region of the coin transport disk 32 and the foreign matter removal capability is improved, but it is difficult to transport coins. . The inclination angle of the coin transport disk 32 is preferably 35 ° or more, and more preferably 35 ° or more and 40 ° or less.
 摩擦搬送部位32cは、硬貨搬送円盤32の上側の面において、硬貨搬送円盤32の外周32bに沿って形成された環状の部位である。摩擦搬送部位32cの幅は、硬貨入出金機10の処理対象硬貨の最大直径よりも大きい。摩擦搬送部位32cは、硬貨との摩擦が大きくなるよう形成された部位であって、具体的には、硬貨搬送円盤32の表面にゴムや樹脂等が貼り付けられて形成されている。摩擦搬送部位32cは、当該摩擦搬送部位32cに接触した硬貨を、当該硬貨との摩擦力により硬貨搬送円盤32の上部領域に搬送する。 The friction transfer part 32 c is an annular part formed along the outer periphery 32 b of the coin transfer disk 32 on the upper surface of the coin transfer disk 32. The width of the friction conveyance part 32c is larger than the maximum diameter of the coins to be processed by the coin depositing and dispensing machine 10. The friction conveyance part 32c is a part formed so as to increase the friction with the coin, and specifically, is formed by attaching rubber, resin or the like to the surface of the coin conveyance disk 32. The friction conveyance part 32c conveys the coin contacted with the friction conveyance part 32c to the upper region of the coin conveyance disk 32 by the frictional force with the coin.
 段差部位32dは、硬貨搬送円盤32の上側の面において、摩擦搬送部位32cの内側に形成された、摩擦搬送部位32cに対して突出した部位である。本実施形態では段差部位32dは、円盤状の薄板の部材を、その中心軸を硬貨搬送円盤32の回転軸32aと一致させた状態で硬貨搬送円盤32の上側の面に取り付けて形成されている。段差部位32dは、摩擦搬送部位32cの内側に形成されている。つまり、段差部位32dの硬貨搬送円盤32の外周に面する部位である外周部位32eと、摩擦搬送部位32cの内周側の端部および外周側の端部と、硬貨搬送円盤32の外周32bとは、いずれも硬貨搬送円盤32の回転軸32aを中心とする円形状である。 The step part 32d is a part protruding from the friction transfer part 32c formed on the inner side of the friction transfer part 32c on the upper surface of the coin transfer disk 32. In the present embodiment, the stepped portion 32d is formed by attaching a disk-shaped thin plate member to the upper surface of the coin transport disk 32 in a state where the central axis thereof coincides with the rotation shaft 32a of the coin transport disk 32. . The step portion 32d is formed inside the friction conveyance portion 32c. That is, the outer peripheral part 32e which is a part facing the outer periphery of the coin transport disc 32 of the step part 32d, the inner peripheral side end and the outer peripheral end of the friction transport part 32c, and the outer peripheral part 32b of the coin transport disc 32 These are all circular with the rotation axis 32 a of the coin transport disk 32 as the center.
 段差部位32dの上側の面は、摩擦搬送部位32cの上側の面よりも上側に位置している。本実施形態では、段差部位32dの外周近傍に傾斜部位32fが形成されており(図6参照)、段差部位32dの周囲はいわゆるテーパ状となっている。段差部位32dの外周部位32eの上端と、摩擦搬送部位32cの上側の面との距離は、硬貨繰出装置30が処理の対象とする処理対象硬貨の最小の厚さより小さい。そうすると、処理対象硬貨のうち厚さが最小の硬貨が2枚、硬貨搬送円盤32の上で重なって搬送され、段差部位32dに接触した場合には、下側の硬貨すなわち硬貨搬送円盤32(摩擦搬送部位32c)に接触している硬貨のみが段差部位32dに当接し、他方の硬貨(硬貨の上に重なっている硬貨)は、段差部位32dに接触し得ない。これにより、重送硬貨の捌きを適切に行うことが可能となる。 The upper surface of the step portion 32d is located above the upper surface of the friction conveyance portion 32c. In the present embodiment, an inclined portion 32f is formed in the vicinity of the outer periphery of the step portion 32d (see FIG. 6), and the periphery of the step portion 32d is a so-called tapered shape. The distance between the upper end of the outer peripheral part 32e of the step part 32d and the upper surface of the friction transfer part 32c is smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device 30. If it does so, two coins with the minimum thickness among the coins to be processed are transported in an overlapping manner on the coin transport disk 32, and when contacting the stepped portion 32d, the lower coin, that is, the coin transport disk 32 (friction Only the coin that is in contact with the transport part 32c) abuts on the step part 32d, and the other coin (the coin that is superimposed on the coin) cannot contact the step part 32d. Thereby, it becomes possible to carry out the multi-feed coin appropriately.
 ベルト33は上述の通り、弾性部材の一例であって、硬貨搬送円盤32の上の硬貨に接触して移動させ、重送硬貨の捌きを行う。具体的にはベルト33は、摩擦搬送部位32cの上の硬貨に接触して弾性変形し、硬貨を段差部位32dに向けて移動させる。本実施形態ではベルト33は、図3に示すように、第1プーリー34aと第2プーリー34eとの間に掛け回されて、第1プーリー34aによって駆動され、移動する。ベルト33は、図4、図5等に示すように、本体部位33aおよび弾性変形部位33bを有して構成される。 As described above, the belt 33 is an example of an elastic member, and moves in contact with the coins on the coin transport disk 32 so as to spread double-feed coins. Specifically, the belt 33 is elastically deformed by contacting the coin on the friction conveyance portion 32c, and moves the coin toward the step portion 32d. In the present embodiment, as shown in FIG. 3, the belt 33 is wound around the first pulley 34a and the second pulley 34e, and is driven and moved by the first pulley 34a. As shown in FIG. 4, FIG. 5, etc., the belt 33 has a main body portion 33a and an elastic deformation portion 33b.
 本体部位33aは、環状のベルトであって、第1プーリー34aの外周と噛み合うための凸状部位が形成されている。本実施形態では本体部位33aは、断面が長方形である幅広のベルトとして形成され、断面の長辺に対応する面が第1プーリー34aに接する状態で配置される。 The main body portion 33a is an annular belt, and has a convex portion for meshing with the outer periphery of the first pulley 34a. In the present embodiment, the main body portion 33a is formed as a wide belt having a rectangular cross section, and the surface corresponding to the long side of the cross section is disposed in contact with the first pulley 34a.
 弾性変形部位33bは、ベルト33において弾性変形が可能なように構成された部位である。本実施形態では弾性変形部位33bは、本体部位33aから幅方向に突出した部位であって、互いに離間した棒状の部位として形成されている。つまり本実施形態では、弾性変形部位33bが、ベルト33の長手方向(すなわちベルト33の走行方向)に沿って離間して配置された複数の棒状部位を有して構成されている。弾性変形部位33bの離間の間隔は、弾性変形部位33bの幅(ベルト33の長手方向に沿った寸法)と同程度である。弾性変形部位33bの長さ、すなわち弾性変形部位33bが本体部位33aから突出している長さは、硬貨繰出装置30が処理の対象とする処理対象硬貨の最大の厚さよりも大きい。 The elastic deformation portion 33 b is a portion configured to be elastically deformable in the belt 33. In the present embodiment, the elastically deformable portion 33b is a portion protruding in the width direction from the main body portion 33a, and is formed as a bar-like portion separated from each other. That is, in the present embodiment, the elastic deformation portion 33b is configured to have a plurality of rod-like portions that are spaced apart along the longitudinal direction of the belt 33 (that is, the running direction of the belt 33). The spacing between the elastic deformation portions 33b is approximately the same as the width of the elastic deformation portion 33b (the dimension along the longitudinal direction of the belt 33). The length of the elastic deformation portion 33b, that is, the length by which the elastic deformation portion 33b protrudes from the main body portion 33a is larger than the maximum thickness of the coins to be processed that are processed by the coin feeding device 30.
 本実施形態では、弾性変形部位33bの断面は長方形であり、断面の長方形の短辺がベルト33の厚み方向と一致し、断面の長方形の長辺がベルト33の長手方向と一致している。これによって、ベルト33の厚さ方向についての弾性変形部位33bの曲げ剛性が、ベルト33の長手方向(すなわちベルト33の走行方向)についての弾性変形部位33bの曲げ剛性よりも低くなっている。 In the present embodiment, the cross section of the elastic deformation portion 33b is rectangular, the short side of the rectangular cross section coincides with the thickness direction of the belt 33, and the long side of the rectangular cross section coincides with the longitudinal direction of the belt 33. Thus, the bending rigidity of the elastic deformation portion 33b in the thickness direction of the belt 33 is lower than the bending rigidity of the elastic deformation portion 33b in the longitudinal direction of the belt 33 (that is, the running direction of the belt 33).
 ベルト駆動機構34は上述の通り、移動機構の一例であって、ベルト33を硬貨搬送円盤32の内側に向けて移動させる。
本実施形態ではベルト駆動機構34は、図3に示すように、第1プーリー34a、上面押圧プーリー34c、側面押圧プーリー34dおよび第2プーリー34eを有して構成される。
As described above, the belt driving mechanism 34 is an example of a moving mechanism, and moves the belt 33 toward the inside of the coin transport disk 32.
In the present embodiment, as shown in FIG. 3, the belt drive mechanism 34 includes a first pulley 34a, an upper surface pressing pulley 34c, a side surface pressing pulley 34d, and a second pulley 34e.
 第1プーリー34aは、その回転軸34bがベース部材31および硬貨搬送円盤32と垂直になる姿勢にて、ベース部材31の上に配置される。第2プーリー34eは、その回転軸が硬貨搬送円盤32と垂直になる姿勢にて、入金搬送部20に配置される。ここで硬貨搬送円盤32の回転軸32aも同様にベース部材31と垂直であるから、第1プーリー34aの回転軸34bは硬貨搬送円盤32の回転軸32aと平行である。第1プーリー34aはモータ(図示なし)により、回転軸34bの回りに回転駆動される。 The first pulley 34a is disposed on the base member 31 in a posture in which the rotation shaft 34b is perpendicular to the base member 31 and the coin transport disk 32. The second pulley 34 e is disposed in the deposit conveyance unit 20 in a posture in which the rotation axis is perpendicular to the coin conveyance disk 32. Here, since the rotating shaft 32 a of the coin transport disk 32 is also perpendicular to the base member 31, the rotating shaft 34 b of the first pulley 34 a is parallel to the rotating shaft 32 a of the coin transport disk 32. The first pulley 34a is rotationally driven around the rotation shaft 34b by a motor (not shown).
 上面押圧プーリー34cは、その回転軸がベース部材31と平行になる姿勢にて、ベルト33の上面に接する状態で配置される。上面押圧プーリー34cは、ベルト33が硬貨と接触して弾性変形することによる上方向への移動を抑制する。 The upper surface pressing pulley 34c is arranged in a state in which the rotating shaft is in contact with the upper surface of the belt 33 in a posture in which the rotating shaft is parallel to the base member 31. The upper surface pressing pulley 34c suppresses upward movement due to elastic deformation of the belt 33 in contact with coins.
 側面押圧プーリー34dは、その回転軸がベース部材31と垂直になる姿勢にて、ベルト33の側面に接する状態で配置される。側面押圧プーリー34dは、ベルト33が硬貨と接触して弾性変形することによる横方向(図3での上下方向)への移動を抑制する。 The side pressing pulley 34d is disposed in contact with the side surface of the belt 33 in a posture in which the rotation shaft is perpendicular to the base member 31. The side surface pressing pulley 34d suppresses movement in the lateral direction (vertical direction in FIG. 3) due to the belt 33 coming into contact with coins and elastically deforming.
 ここで図3および図5を参照して、ベルト33およびベルト駆動機構34による硬貨の搬送について説明する。図5はベルト33による硬貨の押圧および搬送の状態を示す説明図であるが、硬貨と接触するベルト33の変形状態を説明するため、複数の方向からの断面図を組み合わせて示している。 Here, with reference to FIG. 3 and FIG. 5, the conveyance of coins by the belt 33 and the belt drive mechanism 34 will be described. FIG. 5 is an explanatory view showing the state of pressing and transporting coins by the belt 33, but in order to explain the deformation state of the belt 33 in contact with the coins, sectional views from a plurality of directions are shown in combination.
 ベルト駆動機構34の第1プーリー34aが回転駆動されると、ベルト33は、第1プーリー34aと第2プーリー34eの周りを図3に示される矢印の方向、すなわち図3で反時計回りに走行(移動)する。詳しくは、ベルト33は、ベルト駆動機構34により次のように移動(走行)する。 When the first pulley 34a of the belt drive mechanism 34 is driven to rotate, the belt 33 runs around the first pulley 34a and the second pulley 34e in the direction of the arrow shown in FIG. 3, that is, counterclockwise in FIG. (Moving. Specifically, the belt 33 moves (runs) by the belt drive mechanism 34 as follows.
 まずベルト33は第1プーリー34aの外周に沿って移動して、硬貨搬送円盤32の上へ、硬貨搬送円盤32の上側から回転軸32aに向けて、すなわち直径方向に向けて進入する。そしてベルト33は、第1プーリー34aの外周に沿って移動方向を徐々に変化させる。換言すれば、ベルト33は第1プーリー34aの回転軸34bを中心とする円軌道に沿って移動する。このときベルト33は、硬貨搬送円盤32の段差部位32dの近傍を走行する。続いてベルト33は、第1プーリー34aから離れて第2プーリー34eに向けて図3の右方向に移動し、硬貨搬送円盤32の上から退出する。換言すれば、ベルト33は硬貨搬送円盤32の上から硬貨搬送円盤32の外へ移動(走行)する。次いでベルト33は、入金搬送部20に進入し、識別部22を通り、搬送路21aを走行する。そしてベルト33は、第2プーリー34eの外周に沿って移動して、第1プーリー34aへと循環する。 First, the belt 33 moves along the outer periphery of the first pulley 34a, and enters the coin transport disk 32 from the upper side of the coin transport disk 32 toward the rotary shaft 32a, that is, in the diameter direction. The belt 33 gradually changes the moving direction along the outer periphery of the first pulley 34a. In other words, the belt 33 moves along a circular path centering on the rotation shaft 34b of the first pulley 34a. At this time, the belt 33 travels in the vicinity of the step portion 32d of the coin transport disk 32. Subsequently, the belt 33 moves away from the first pulley 34 a toward the second pulley 34 e in the right direction in FIG. 3, and then retreats from the coin transport disk 32. In other words, the belt 33 moves (runs) from the top of the coin transport disk 32 to the outside of the coin transport disk 32. Next, the belt 33 enters the deposit conveyance unit 20, passes through the identification unit 22, and travels on the conveyance path 21 a. The belt 33 moves along the outer periphery of the second pulley 34e and circulates to the first pulley 34a.
 硬貨搬送円盤32によってベルト33に向けて搬送されてきた硬貨C32は、ベルト33と接触して、ベルト33によって段差部位32dへ向けて押し付けられ、段差部位32dと接触し、ベルト33の下側(すなわちベルト33と硬貨搬送円盤32との間)に潜り込む(図5の硬貨C50の状態)。 The coin C32 conveyed toward the belt 33 by the coin conveying disk 32 comes into contact with the belt 33, is pressed toward the stepped portion 32d by the belt 33, contacts the stepped portion 32d, and is below the belt 33 ( That is, it sneaks into (between the belt 33 and the coin transport disc 32) (state of the coin C50 in FIG. 5).
 換言すれば、ベルト33が、第1プーリー34aの外周に沿って段差部位32dに向けて移動してきた際、硬貨C32が硬貨搬送円盤32によってベルト33に向けて移動し、硬貨C32がベルト33に接触する。硬貨C32は、段差部位32dに当接した状態で、硬貨搬送円盤32とともに回転して右方向へ移動するから、硬貨C32がベルト33を第1プーリー34aの回転軸34bに向かって、すなわち第1プーリー34aの内側に向かって押すことになる。そうするとベルト33は、第1プーリー34aの回転軸34bに向かって、すなわち第1プーリー34aの内側に向かって弾性変形する。そしてベルト33は、第1プーリー34aの外周に沿って移動し、硬貨C32の上側へと移動する(図5の硬貨C50の状態)。 In other words, when the belt 33 moves toward the step portion 32d along the outer periphery of the first pulley 34a, the coin C32 moves toward the belt 33 by the coin transport disk 32, and the coin C32 moves to the belt 33. Contact. Since the coin C32 rotates with the coin transport disk 32 and moves to the right while in contact with the stepped portion 32d, the coin C32 moves the belt 33 toward the rotating shaft 34b of the first pulley 34a, that is, the first. It will push toward the inside of the pulley 34a. Then, the belt 33 is elastically deformed toward the rotation shaft 34b of the first pulley 34a, that is, toward the inside of the first pulley 34a. And the belt 33 moves along the outer periphery of the 1st pulley 34a, and moves to the upper side of the coin C32 (state of the coin C50 of FIG. 5).
 図5の硬貨C50の状態は、硬貨C50がベルト33、詳しくはベルト33の弾性変形部位33bを弾性変形させて、ベルト33と硬貨搬送円盤32との間に潜り込んだ状態を示している。このときベルト33の複数の弾性変形部位33bが、硬貨C50により、弾性変形部位33bの長手方向の中程で折れ曲がり、第1プーリー34aの内側に向かって弾性変形した状態となっている。 The state of the coin C50 in FIG. 5 shows a state in which the coin C50 has elastically deformed the belt 33, specifically, the elastic deformation portion 33b of the belt 33, and has entered between the belt 33 and the coin transport disk 32. At this time, the plurality of elastic deformation portions 33b of the belt 33 are bent by the coin C50 in the middle in the longitudinal direction of the elastic deformation portion 33b, and are elastically deformed toward the inside of the first pulley 34a.
 図5の硬貨C51の状態は、硬貨C50よりも薄く小さい硬貨がベルト33と硬貨搬送円盤32との間に潜り込んだ状態を示している。このとき、3つの弾性変形部位33bが、硬貨C51により弾性変形している。そして硬貨C51は、弾性変形した弾性変形部位33bによって、硬貨搬送円盤32(摩擦搬送部位32c)に向けて押圧されている。 The state of the coin C51 in FIG. 5 shows a state where a coin smaller and thinner than the coin C50 has entered between the belt 33 and the coin transport disk 32. At this time, the three elastic deformation portions 33b are elastically deformed by the coin C51. And the coin C51 is pressed toward the coin conveyance disk 32 (friction conveyance part 32c) by the elastically deformed elastic part 33b.
 図5の硬貨C52の状態は、硬貨C51よりも厚く大きい硬貨がベルト33と硬貨搬送円盤32との間に潜り込んだ状態を示している。このとき、5つの弾性変形部位33bが、硬貨C52により弾性変形している。そして硬貨C52は、弾性変形した弾性変形部位33bによって、ベース部材31に向けて押圧されている。 The state of the coin C52 in FIG. 5 shows a state in which a thicker and larger coin than the coin C51 has entered between the belt 33 and the coin transport disk 32. At this time, the five elastic deformation portions 33b are elastically deformed by the coin C52. The coin C52 is pressed toward the base member 31 by the elastically deformed elastic portion 33b.
 ベルト33の弾性変形部位33bが硬貨C52によって変形している領域の長さ(ベルト33の走行方向に沿った長さ)は、硬貨C51によって変形している領域の長さよりも大きい。弾性変形部位33bの硬貨C52による変形量(例えば、折れ曲がった部分の長さ、第1プーリー34aの内側への変位量など)は、硬貨C51による変形量よりも大きい。このように、ベルト33(および弾性変形部位33b)は、接触する硬貨の大きさおよび厚さに応じて弾性変形する。 The length of the region where the elastic deformation portion 33b of the belt 33 is deformed by the coin C52 (the length along the traveling direction of the belt 33) is larger than the length of the region where the belt 33 is deformed. The amount of deformation of the elastic deformation portion 33b by the coin C52 (for example, the length of the bent portion, the amount of displacement to the inside of the first pulley 34a, etc.) is larger than the amount of deformation by the coin C51. In this way, the belt 33 (and the elastic deformation portion 33b) is elastically deformed according to the size and thickness of the coins to be contacted.
 硬貨搬送円盤32と、弾性変形部位33bの先端との間の距離D1は、硬貨繰出装置30の処理対象硬貨の最小の厚さより小さい。すなわち、硬貨搬送円盤32と、ベルト33(弾性部材)の硬貨搬送円盤32の側の端部との間の距離は、硬貨繰出装置30が処理の対象とする処理対象硬貨の最小の厚さより小さい。また、硬貨搬送円盤32と、弾性変形部位33bの根元との間の距離D2は、硬貨繰出装置30の処理対象硬貨の最大の厚さより大きい。これにより、処理対象硬貨のうち最も厚さが小さい硬貨であっても、弾性変形部位33bの先端が接触して、当該硬貨を段差部位32dに向けて移動させることができる。また、処理対象硬貨のうち最も厚さが大きい硬貨であっても、当該硬貨が本体部位33aに接触せず、当該硬貨によって弾性変形部位33bが弾性変形することができる。 The distance D1 between the coin transport disc 32 and the tip of the elastic deformation portion 33b is smaller than the minimum thickness of the coins to be processed by the coin feeding device 30. That is, the distance between the coin transport disc 32 and the end of the belt 33 (elastic member) on the coin transport disc 32 side is smaller than the minimum thickness of the processing target coin that is processed by the coin feeding device 30. . Further, the distance D2 between the coin transport disk 32 and the base of the elastically deformable portion 33b is larger than the maximum thickness of the coins to be processed by the coin feeding device 30. Thereby, even if it is a coin with the smallest thickness among processing object coins, the tip of elastic deformation part 33b can contact and can move the coin toward level difference part 32d. Moreover, even if it is a coin with the largest thickness among process target coins, the said coin does not contact the main body part 33a, but the elastic deformation part 33b can be elastically deformed by the said coin.
 そして図5に示すように、弾性変形部位33bによって押圧された硬貨C50、C51、C52は、ベルト駆動機構34によるベルト33の移動に伴い、摩擦搬送部位32cの上からベース部材31の上、すなわち硬貨搬送円盤32の外へ移動し、入金搬送部20へと移動する。 As shown in FIG. 5, the coins C50, C51, and C52 pressed by the elastically deforming portion 33b are moved from the top of the friction conveying portion 32c to the top of the base member 31, as the belt 33 is moved by the belt driving mechanism 34. It moves out of the coin transport disc 32 and moves to the deposit transport unit 20.
 カバー部材35は上述の通り、硬貨搬送円盤32の下部領域を覆う樹脂製の部材であって、硬貨搬送円盤32との間に硬貨貯留空間36を形成する。カバー部材35は、開閉部位35a、軸部材35bおよび押圧部材35cを有して構成され、付勢機構35dを介してベース部材31に取り付けられている。付勢機構35dは、支柱、バネおよび板状部材を有して構成され、支柱はベース部材31に設けられ、バネを介して支柱に取り付けられた板状部材が、カバー部材35を硬貨搬送円盤32に向けて付勢している。 As described above, the cover member 35 is a resin member that covers the lower region of the coin transport disk 32, and forms a coin storage space 36 with the coin transport disk 32. The cover member 35 includes an opening / closing part 35a, a shaft member 35b, and a pressing member 35c, and is attached to the base member 31 via an urging mechanism 35d. The urging mechanism 35d is configured to include a column, a spring, and a plate-like member. The column is provided on the base member 31, and the plate-like member attached to the column via the spring transfers the cover member 35 to the coin transport disk. It is energizing towards 32.
 押圧部材35cは金属製の板状の部材であって、硬貨搬送円盤32およびカバー部材35の外周の円弧に沿う形状に形成されている。押圧部材35cは、その外周の円弧がカバー部材35の外周に沿う姿勢で、かつ、硬貨搬送円盤32の摩擦搬送部位32cに面する位置にて、カバー部材35の硬貨搬送円盤32側の面に取り付けられる。 The pressing member 35 c is a metal plate-like member, and is formed in a shape along the outer peripheral arc of the coin transport disk 32 and the cover member 35. The pressing member 35c has a posture in which the outer arc is along the outer periphery of the cover member 35 and the surface of the cover member 35 on the coin transport disc 32 side at a position facing the friction transport portion 32c. It is attached.
 ここでカバー部材35は付勢機構35dにより硬貨搬送円盤32に向けて付勢されている。すると、図6に示すように押圧部材35cと硬貨搬送円盤32の摩擦搬送部位32cとの間に硬貨が入り込むと、押圧部材35cが硬貨を硬貨搬送円盤32に押し付けることになる。 Here, the cover member 35 is urged toward the coin transport disk 32 by the urging mechanism 35d. Then, as shown in FIG. 6, when a coin enters between the pressing member 35 c and the friction conveying portion 32 c of the coin conveying disk 32, the pressing member 35 c presses the coin against the coin conveying disk 32.
 すなわち硬貨繰出装置30は、押圧部材35cと、付勢機構35dとを有し、押圧部材35cは、硬貨搬送円盤32の摩擦搬送部位32cに面する姿勢にて、硬貨搬送円盤32の下部領域において硬貨搬送円盤32の上側に配置され、付勢機構35dは、押圧部材35cを硬貨搬送円盤32に向けて付勢して、押圧部材35cが硬貨を硬貨搬送円盤32に押し付ける。そうすると、硬貨と摩擦搬送部位32cとの間の摩擦力が増加して、硬貨搬送円盤32による硬貨の搬送が確実に行われることになる。これにより、硬貨貯留空間36に少数の硬貨が存在する場合であっても、硬貨の繰り出しが確実に行われて、硬貨繰出装置30に繰り出されない硬貨が残留する事態を抑制することができる。また、硬貨と摩擦搬送部位32cとの間の摩擦力が増加するから、硬貨搬送円盤32の回転速度を増加させることが可能となる。 That is, the coin feeding device 30 includes a pressing member 35 c and an urging mechanism 35 d, and the pressing member 35 c is positioned in a lower region of the coin transport disc 32 in a posture facing the friction transport portion 32 c of the coin transport disc 32. Arranged on the upper side of the coin transport disk 32, the urging mechanism 35d biases the pressing member 35c toward the coin transport disk 32, and the pressing member 35c presses the coin against the coin transport disk 32. If it does so, the frictional force between a coin and the friction conveyance site | part 32c will increase, and the coin conveyance by the coin conveyance disk 32 will be performed reliably. Thereby, even if it is a case where a small number of coins exist in the coin storage space 36, the situation where the coins are reliably fed out and the coins not fed out to the coin feeding device 30 remain can be suppressed. In addition, since the frictional force between the coin and the friction conveyance portion 32c increases, the rotational speed of the coin conveyance disk 32 can be increased.
 開閉部位35aは、カバー部材35に形成された部位であって、開閉することにより、硬貨貯留空間36の内部の異物E(例えば、クリップやカギなど)を硬貨貯留空間36の外部に排出する(図7、図8参照)。本実施形態では開閉部位35aは、軸部材35bを介してカバー部材35に取り付けられており、ソレノイド等により駆動されて軸部材35bの回りに回動し、開閉の動作を行う。開閉部位35aの開閉による硬貨貯留空間36からの異物Eの排出は、硬貨貯留空間36の内部に硬貨が貯留されていない際に行われる。
例えば、硬貨貯留空間36の内部の硬貨の有無を検知するセンサを硬貨繰出装置30に設け、制御部80が当該センサの出力に基づいて開閉部位35aの開閉を制御する。例えば制御部80は、センサが硬貨を検知していない際に、開閉部位35aを開閉する。これにより硬貨貯留空間36の内部に異物があった場合には、当該異物は排出される。例えば、硬貨搬送円盤32を駆動させても硬貨が入金搬送部20に繰出されない状態で、当該センサが検出信号を出力している場合には、制御部80は、硬貨貯留空間36の内部に異物が残留していると判断して、開閉部位35aを開閉する。これにより硬貨貯留空間36の内部の異物が排出される。
The opening / closing part 35a is a part formed in the cover member 35. By opening and closing, the foreign matter E (for example, a clip or a key) inside the coin storage space 36 is discharged to the outside of the coin storage space 36 ( (See FIGS. 7 and 8). In this embodiment, the opening / closing part 35a is attached to the cover member 35 via a shaft member 35b, and is driven by a solenoid or the like to rotate around the shaft member 35b to perform an opening / closing operation. The foreign substance E is discharged from the coin storage space 36 by opening and closing the opening / closing part 35a when no coins are stored in the coin storage space 36.
For example, a sensor that detects the presence or absence of coins inside the coin storage space 36 is provided in the coin feeding device 30, and the control unit 80 controls the opening / closing of the opening / closing part 35 a based on the output of the sensor. For example, the control unit 80 opens and closes the opening / closing part 35a when the sensor does not detect a coin. Thereby, when there is a foreign substance inside the coin storage space 36, the foreign substance is discharged. For example, if the sensor outputs a detection signal in a state where coins are not fed out to the deposit transport unit 20 even when the coin transport disc 32 is driven, the control unit 80 may have a foreign object inside the coin storage space 36. Open / close part 35a is opened and closed. Thereby, the foreign material inside the coin storage space 36 is discharged.
 すなわち硬貨繰出装置30はカバー部材35を有し、カバー部材35は硬貨搬送円盤32との間に硬貨を収容する硬貨貯留空間36を形成し、カバー部材35は硬貨貯留空間36の異物を排出する開閉部位35aを有する。これにより、硬貨貯留空間36からの異物の排除を可能として、硬貨繰出装置30の異物の排除能力を更に高めることができ好適である。 That is, the coin feeding device 30 has a cover member 35, the cover member 35 forms a coin storage space 36 for storing coins between the coin transport disk 32, and the cover member 35 discharges foreign matter in the coin storage space 36. It has an opening / closing part 35a. As a result, it is possible to eliminate foreign matters from the coin storage space 36, and the foreign matter removal capability of the coin feeding device 30 can be further enhanced, which is preferable.
 外周ベルト37は上述の通り、硬貨搬送円盤32の下部領域の硬貨と接触して、硬貨搬送円盤32による硬貨の搬送を補助する。外周ベルト37は、図3および図6示すように、その搬送面が硬貨搬送円盤32の外周に面する姿勢にて、硬貨搬送円盤32の下部領域において硬貨搬送円盤32に隣接して配置されている。 As described above, the outer peripheral belt 37 contacts the coins in the lower region of the coin transport disk 32 and assists the transport of coins by the coin transport disk 32. As shown in FIGS. 3 and 6, the outer peripheral belt 37 is disposed adjacent to the coin transport disk 32 in the lower region of the coin transport disk 32 with the transport surface facing the outer periphery of the coin transport disk 32. Yes.
 本実施形態では外周ベルト37は平ベルトであって、3つの外周プーリー37aの周囲に巻き回されている。3つの外周プーリー37aは自由に回転可能である。外周ベルト37は、硬貨搬送円盤32の近傍では、ベース部材31の周壁31aと硬貨搬送円盤32との間に、硬貨搬送円盤32の外周32bに接触する状態で配置されている。硬貨搬送円盤32が回転すると、外周ベルト37は、硬貨搬送円盤32と接触した状態のまま、硬貨搬送円盤32と共に移動する。 In this embodiment, the outer peripheral belt 37 is a flat belt and is wound around three outer peripheral pulleys 37a. The three outer peripheral pulleys 37a are freely rotatable. In the vicinity of the coin transport disk 32, the outer peripheral belt 37 is disposed between the peripheral wall 31 a of the base member 31 and the coin transport disk 32 in contact with the outer periphery 32 b of the coin transport disk 32. When the coin transport disk 32 rotates, the outer peripheral belt 37 moves together with the coin transport disk 32 while being in contact with the coin transport disk 32.
 そうすると図6に示すように、摩擦搬送部位32cの上の硬貨C60は、その外周が外周ベルト37と接触した状態で、硬貨搬送円盤32によって搬送される。このとき外周ベルト37は硬貨搬送円盤32と同期して走行し、硬貨C60と共に硬貨搬送円盤32の上部領域へと移動する。よって硬貨C60の搬送に際して硬貨C60と壁面等との摺動が生じず、硬貨C60の搬送がスムースに行われることになる。また別の言い方をすれば、硬貨C60は硬貨搬送円盤32の摩擦搬送部位32cと外周ベルト37との両方から力を受けて、硬貨搬送円盤32の上部領域へ搬送される。 Then, as shown in FIG. 6, the coin C <b> 60 on the friction conveyance portion 32 c is conveyed by the coin conveyance disk 32 in a state where the outer periphery thereof is in contact with the outer peripheral belt 37. At this time, the outer peripheral belt 37 runs in synchronization with the coin transport disk 32 and moves to the upper region of the coin transport disk 32 together with the coin C60. Therefore, when the coin C60 is transported, sliding between the coin C60 and the wall surface does not occur, and the transport of the coin C60 is performed smoothly. In other words, the coin C60 receives a force from both the friction transfer portion 32c of the coin transfer disk 32 and the outer peripheral belt 37 and is transferred to the upper region of the coin transfer disk 32.
 すなわち硬貨繰出装置30は、外周ベルト37を有し、外周ベルト37は、その搬送面が硬貨搬送円盤32の外周32bに面する姿勢にて、硬貨搬送円盤32の下部領域において硬貨搬送円盤32に隣接して配置され、硬貨搬送円盤32の回転方向と同じ方向に移動し、摩擦搬送部位32cの上の硬貨と接触して硬貨搬送円盤32による硬貨の搬送を補助する。 That is, the coin feeding device 30 has an outer peripheral belt 37, and the outer peripheral belt 37 is placed on the coin transport disk 32 in the lower region of the coin transport disk 32 with the transport surface facing the outer periphery 32 b of the coin transport disk 32. It arrange | positions adjacently, moves to the same direction as the rotation direction of the coin conveyance disk 32, contacts the coin on the friction conveyance site | part 32c, and assists the conveyance of the coin by the coin conveyance disk 32.
 レバー部材39は上述の通り、ベルト33に対して、硬貨搬送円盤32による硬貨の搬送方向の上流側に配置され、摩擦搬送部位32cの上の硬貨と接触して、硬貨を段差部位32dに向けて移動させる。
本実施形態ではレバー部材39は、図3に示すように弧状に湾曲した部材であって、軸39aの回りに回転可能な状態で、一方の端部がベース部材31に取り付けられている。そしてレバー部材39の他方の端部が、硬貨搬送円盤32の摩擦搬送部位32cの上に位置する状態で配置されている。レバー部材39にはバネ39bが接続されており、レバー部材39が硬貨搬送円盤32の上の硬貨により硬貨搬送円盤32の外側へ向けて変位すると、バネ39bがレバー部材39を硬貨搬送円盤32の内側へ向けて付勢する。
As described above, the lever member 39 is disposed upstream of the belt 33 in the direction in which coins are transported by the coin transport disk 32, contacts the coins on the friction transport part 32c, and directs the coins toward the step part 32d. To move.
In the present embodiment, the lever member 39 is a member that is curved in an arc as shown in FIG. 3, and has one end attached to the base member 31 in a state of being rotatable around the shaft 39 a. The other end of the lever member 39 is disposed on the friction transfer portion 32c of the coin transfer disc 32. A spring 39 b is connected to the lever member 39, and when the lever member 39 is displaced toward the outside of the coin transport disk 32 by the coin on the coin transport disk 32, the spring 39 b causes the lever member 39 to move to the coin transport disk 32. Energize inward.
 硬貨搬送円盤32により搬送される硬貨は、遠心力によって、例えば図3の硬貨C31のように硬貨搬送円盤32の外周寄りに位置して搬送される。そのような硬貨がレバー部材39に接触すると、レバー部材39によって硬貨搬送円盤32の内側へ向けて移動され、硬貨搬送円盤32の段差部位32dに接触する。 The coins transported by the coin transport disk 32 are transported by centrifugal force, for example, positioned near the outer periphery of the coin transport disk 32 like a coin C31 in FIG. When such a coin comes into contact with the lever member 39, the coin is moved toward the inside of the coin transport disk 32 by the lever member 39 and contacts the stepped portion 32 d of the coin transport disk 32.
 次に、硬貨繰出装置30で行われる重送硬貨の捌きについて、図9および図10を用いて説明する。 Next, the handling of double-fed coins performed by the coin feeding device 30 will be described with reference to FIGS. 9 and 10.
 硬貨が硬貨搬送円盤32によって下部領域から搬送される際、図3の硬貨C30~C32のように1枚ずつ搬送される場合と、図9の硬貨C91~C97のように、複数枚の硬貨が固まったり重なったりして搬送される場合がある。これは硬貨搬送円盤32の回転が高速で、遠心力が大きくなる場合に顕著である。 When the coins are transported from the lower region by the coin transport disc 32, a plurality of coins may be transported one by one as in the case of coins C30 to C32 in FIG. 3 or as in the case of coins C91 to C97 in FIG. In some cases, it may be hardened or overlapped. This is remarkable when the coin transport disk 32 rotates at high speed and the centrifugal force increases.
 図9の硬貨C92は硬貨C91に引っ掛かって搬送されているが、この位置を越えると重力の作用で下方に落下する可能性が高い。硬貨C94はレバー部材39と接触し、レバー部材39によって段差部位32dに向けて移動されている。このときレバー部材39は、硬貨C94に押されて上方に変位している。硬貨C95は、レバー部材39と接触して段差部位32dに向けて移動されるが、硬貨C94と重なっていることから段差部位32dに引っ掛からず、重力の作用により下方に落下している。 The coin C92 in FIG. 9 is caught by the coin C91 and conveyed, but if it exceeds this position, there is a high possibility of falling downward due to the action of gravity. The coin C94 is in contact with the lever member 39 and is moved toward the stepped portion 32d by the lever member 39. At this time, the lever member 39 is pushed upward by the coin C94 and displaced upward. The coin C95 contacts the lever member 39 and is moved toward the stepped portion 32d. However, since the coin C95 overlaps the coin C94, the coin C95 does not get caught by the stepped portion 32d and falls downward due to the action of gravity.
 硬貨C96は、段差部位32dに接触した状態でベルト33に接触し、ベルト33の下に潜り込んだ状態となっている。一方、硬貨C97は硬貨C96と重なっていることから、段差部位32dの外周部位32eと接触しない状態でベルト33と接触している。そうすると硬貨C97は、ベルト33の弾性変形部位33bを変形させることができず、ベルト33の下に潜り込むことができず、ベルト33に押されて下方に落下する。このようにして硬貨繰出装置30のベルト33(弾性部材)にて重送硬貨の捌きが行われると共に、硬貨搬送円盤32の径方向(繰出し方向に直角な方向)に並んだ硬貨も一列状態にすることができ、入金搬送部20への一層一列状態での繰り出し(硬貨C98、C99)が実現される。 The coin C96 is in a state where it contacts the belt 33 in contact with the stepped portion 32d and sneaks under the belt 33. On the other hand, since the coin C97 overlaps with the coin C96, it is in contact with the belt 33 without being in contact with the outer peripheral portion 32e of the stepped portion 32d. Then, the coin C97 cannot deform the elastic deformation portion 33b of the belt 33, cannot enter the belt 33, and is pushed down by the belt 33 and falls downward. In this way, the double feed coins are whisked by the belt 33 (elastic member) of the coin feeding device 30 and the coins arranged in the radial direction (direction perpendicular to the feeding direction) of the coin transport disk 32 are also in a line. Thus, the payout (coins C98, C99) in the one-line state to the deposit conveyance unit 20 is realized.
(入金搬送部)
 上述の通り、硬貨繰出装置30から繰り出された硬貨は、入金搬送部20により1枚ずつ搬送される。このような入金搬送部20の構成の詳細について図3を用いて説明する。
(Deposit Transfer Department)
As described above, the coins fed from the coin feeding device 30 are transported one by one by the deposit transport unit 20. Details of the configuration of the deposit conveyance unit 20 will be described with reference to FIG.
 入金搬送部20は、略水平方向に沿って延びる上部搬送部分20aと、上部搬送部分20aから送られた硬貨を搬送し、この際に硬貨の搬送方向を逆方向に変える折り返し搬送部分20bと、上部搬送部分20aの下方に設けられ、略水平方向に沿って延び、折り返し搬送部分20bから送られた硬貨を搬送する下部搬送部分20cとを有している。そして、硬貨繰出装置30から繰り出された硬貨は上部搬送部分20a、折り返し搬送部分20b、下部搬送部分20cの順に搬送されるようになっている。また、図1および図3に示すように、上部搬送部分20aおよび下部搬送部分20cには、識別部22による硬貨の識別結果に基づいて硬貨の選別を行う選別部24(24a~24h)がそれぞれ複数設けられている。 The deposit conveyance part 20 conveys the coins sent from the upper conveyance part 20a extending along the substantially horizontal direction, the upper conveyance part 20a, and the folding conveyance part 20b for changing the conveyance direction of the coins in this case, The lower conveyance part 20c is provided below the upper conveyance part 20a, extends substantially in the horizontal direction, and conveys coins sent from the folded conveyance part 20b. Then, the coins fed out from the coin feeding device 30 are transported in the order of the upper transport portion 20a, the folded transport portion 20b, and the lower transport portion 20c. Further, as shown in FIGS. 1 and 3, the upper transport portion 20a and the lower transport portion 20c have sorting sections 24 (24a to 24h) for sorting coins based on the coin identification result by the identification section 22, respectively. A plurality are provided.
 上部搬送部分20aは、略水平方向に沿って延びる搬送路21aと、この搬送路21aに沿って設けられたベルト33とから構成されており、搬送路21aに沿ってベルト33により硬貨が1枚ずつ搬送されるようになっている。より詳細には、搬送路21aは搬送路側面21cおよび搬送路底面21dから構成されており、搬送路側面21cは鉛直方向に対して所定の角度で傾斜した傾斜面となっている。そして、図3に示すように、搬送路21aにおいて、硬貨は自重により搬送路底面21dに接触するよう、ベルト33により搬送路側面21cに沿って図3における右方向に搬送されるようになっている。 The upper transport portion 20a includes a transport path 21a extending along a substantially horizontal direction, and a belt 33 provided along the transport path 21a. One coin is formed by the belt 33 along the transport path 21a. They are transported one by one. More specifically, the transport path 21a includes a transport path side surface 21c and a transport path bottom surface 21d, and the transport path side surface 21c is an inclined surface that is inclined at a predetermined angle with respect to the vertical direction. As shown in FIG. 3, in the conveyance path 21a, coins are conveyed to the right in FIG. 3 along the conveyance path side surface 21c by the belt 33 so as to come into contact with the conveyance path bottom surface 21d by their own weight. Yes.
 ベルト33は、搬送路側面21cと当該ベルト33との間で硬貨を保持しながら当該硬貨を搬送するようになっている。また、上部搬送部分20aには複数(具体的には5つ)の選別部24(24a~24e)が設けられている。また、図3に示すように、上部搬送部分20aにおける各選別部24の上流側には識別部22が設けられており、この識別部22は、硬貨繰出装置30から繰り出された硬貨の金種や真偽等の識別を行うようになっている。 The belt 33 conveys the coin while holding the coin between the conveyance path side surface 21 c and the belt 33. Further, a plurality (specifically, five) sorting sections 24 (24a to 24e) are provided in the upper transport portion 20a. As shown in FIG. 3, an identification unit 22 is provided on the upstream side of each sorting unit 24 in the upper transport portion 20 a, and the identification unit 22 is a denomination of coins fed out from the coin feeding device 30. And authenticity are identified.
 上部搬送部分20aに設けられた各選別部24は、識別部22による硬貨の識別結果に基づいて、この上部搬送部分20aにより搬送される硬貨を選別して後述するリジェクト部47やオーバーフローボックス49、または一時保留部40に送るようになっている。
具体的には、上部搬送部分20aに設けられた合計5つの選別部24のうち、硬貨の搬送方向における最も上流側にある選別部24aは、リジェクト硬貨の選別を行うリジェクト選別部として機能するようになっており、この選別部24aによりリジェクト硬貨が選別されてリジェクト部47(図1参照)に送られるようになっている。また、上部搬送部分20aに設けられた合計5つの選別部24のうち、硬貨の搬送方向において上流側から3番目に配置された選別部24cは、その金種に対応する収納繰出装置50が既に満杯であるようなオーバーフロー硬貨の選別を行うオーバーフロー選別部として機能するようになっており、この選別部24cによりオーバーフロー硬貨が選別されてオーバーフローボックス49(図2参照)に送られるようになっている。
Each sorting unit 24 provided in the upper transport portion 20a sorts the coins transported by the upper transport portion 20a based on the coin identification result by the identification unit 22, and will be described later with a reject unit 47 and an overflow box 49, Alternatively, it is sent to the temporary holding unit 40.
Specifically, out of a total of five sorting sections 24 provided in the upper transport portion 20a, the sorting section 24a located on the most upstream side in the coin transport direction functions as a reject sorting section for sorting reject coins. The reject coins are sorted by the sorting unit 24a and sent to the reject unit 47 (see FIG. 1). Of the total five sorting sections 24 provided in the upper transport portion 20a, the sorting section 24c arranged third from the upstream side in the coin transport direction has already been provided with the storage and feeding device 50 corresponding to the denomination. It functions as an overflow sorting unit that sorts overflow coins that are full, and the sorting unit 24c sorts the overflow coins and sends them to the overflow box 49 (see FIG. 2). .
 また、上部搬送部分20aに設けられた合計5つの選別部24のうち、上述した選別部24a、24c以外の選別部24b、24d、24eは、金種別に硬貨を選別する金種別選別部として機能するようになっている。より具体的には、例えば本実施形態の硬貨入出金機10においてユーロ(EURO)硬貨の処理が行われるときに、硬貨の搬送方向において上流側から2番目に配置された選別部24bは、識別部22により1セント硬貨であると識別された硬貨を選別し、硬貨の搬送方向において上流側から4番目に配置された選別部24dは、識別部22により5セント硬貨であると識別された硬貨を選別し、硬貨の搬送方向において上流側から5番目に配置された選別部24eは、識別部22により10セント硬貨であると識別された硬貨を選別するようになっている。 Of the five sorting units 24 provided in the upper transport portion 20a, the sorting units 24b, 24d, and 24e other than the sorting units 24a and 24c described above function as denomination sorting units that sort coins by denomination. It is supposed to be. More specifically, for example, when processing of euro (EURO) coins is performed in the coin depositing and dispensing machine 10 of the present embodiment, the sorting unit 24b disposed second from the upstream side in the coin transport direction is identified. A coin that has been identified as a 1-cent coin by the unit 22 is selected, and a sorting unit 24d that is arranged fourth from the upstream side in the coin transport direction is a coin that has been identified as a 5-cent coin by the identifying unit 22 The sorting unit 24e arranged fifth from the upstream side in the coin transport direction sorts the coins identified by the identifying unit 22 as being 10-cent coins.
 各選別部24の構成の詳細について図3を用いて説明する。図3に示すように、上部搬送部分20aにおける搬送路21aの搬送路側面21cには、各選別部24にそれぞれ対応して開口25が設けられている。各開口25にはシュート26(図1および図2参照)が接続されており、ベルト33により搬送路21aに沿って搬送される硬貨が開口25に入ったときに、この硬貨は対応するシュート26に送られて、最終的にはシュート26を介して自重によりリジェクト部47やオーバーフローボックス49、または一時保留部40に硬貨が送られるようになる。 Details of the configuration of each sorting unit 24 will be described with reference to FIG. As shown in FIG. 3, openings 25 are provided on the conveyance path side surface 21 c of the conveyance path 21 a in the upper conveyance portion 20 a so as to correspond to the respective sorting sections 24. A chute 26 (see FIGS. 1 and 2) is connected to each opening 25. When coins conveyed along the conveyance path 21a by the belt 33 enter the opening 25, the coins correspond to the corresponding chute 26. Finally, coins are sent to the reject unit 47, the overflow box 49, or the temporary storage unit 40 by its own weight via the chute 26.
 また、各開口25の下方には分岐部材27がそれぞれ設けられている。各分岐部材27は、通常時には搬送路21aにおける搬送路底面21dの下方に位置しており、硬貨の選別を行う際には搬送路底面21dの上方に進出するようになっている。より詳細には、分岐部材27が搬送路21aの搬送路底面21dの下方に位置しており、この搬送路底面21dから上方に進出していないときには、搬送路21aで搬送される硬貨は分岐部材27により搬送路底面21dから上方に押し上げられることはない。このため、搬送路21aで搬送される硬貨は開口25に入ることはない。一方、分岐部材27が搬送路21aの搬送路底面21dから上方に進出したときは、搬送路21aで搬送される硬貨は分岐部材27により搬送路底面21dから図3における上方に持ち上げられ、この硬貨は開口25に入ることとなる。 Further, a branch member 27 is provided below each opening 25. Each branch member 27 is normally positioned below the conveyance path bottom surface 21d in the conveyance path 21a, and is advanced above the conveyance path bottom surface 21d when coins are selected. More specifically, when the branch member 27 is located below the transport path bottom surface 21d of the transport path 21a, and the coins transported in the transport path 21a are not advanced upward from the transport path bottom surface 21d, the coins are branched. 27 is not pushed upward from the bottom 21d of the conveyance path. For this reason, the coin conveyed by the conveyance path 21 a does not enter the opening 25. On the other hand, when the branch member 27 advances upward from the transport path bottom surface 21d of the transport path 21a, the coins conveyed on the transport path 21a are lifted upward from the transport path bottom surface 21d by the branch member 27 in FIG. Will enter the opening 25.
 このように、各選別部24は開口25、分岐部材27等から構成されており、分岐部材27が搬送路底面21dから上方に進出するか否かを後述する制御部80により制御することにより、各選別部24は硬貨の選別を行うようになっている。 As described above, each sorting unit 24 includes the opening 25, the branching member 27, and the like. By controlling whether the branching member 27 advances upward from the conveyance path bottom surface 21d by the control unit 80 described later, Each sorting unit 24 sorts coins.
 上部搬送部分20aにおいて各選別部24により選別されなかった硬貨は折り返し搬送部分20bに送られるようになる。ここで、折り返し搬送部分20bは、図1および図3に示すように、硬貨入出金機10を側方から見て円弧形状、より詳細には半円形状となっている。そして、折り返し搬送部分20bにおいて、硬貨は自重による落下によって上部搬送部分20aから下部搬送部分20cに搬送されるようになっている。 Coins that have not been sorted by the sorting sections 24 in the upper transport portion 20a are sent to the return transport portion 20b. Here, as shown in FIG. 1 and FIG. 3, the folded conveyance portion 20 b has an arc shape, more specifically a semicircular shape, when the coin depositing and dispensing machine 10 is viewed from the side. And in the return conveyance part 20b, a coin is conveyed from the upper conveyance part 20a to the lower conveyance part 20c by the fall by dead weight.
 下部搬送部分20cは、折り返し搬送部分20bから硬貨が送られる第1搬送部分20dと、硬貨の搬送方向における第1搬送部分20dの下流側に設けられた第2搬送部分20eとから構成されている。より詳細には、第1搬送部分20dには搬送ベルト21eが設けられており、第2搬送部分20eにも搬送ベルト21fが設けられている。第1搬送部分20dに設けられた搬送ベルト21eは、折り返し搬送部分20bにおいて自重による落下によって上部搬送部分20aから送られた硬貨を図3における左方向に搬送するようになっている。また、第2搬送部分20eに設けられた搬送ベルト21fは、搬送ベルト21eにより搬送される硬貨が受け渡されるようになっており、この搬送ベルト21fは、搬送ベルト21eから受け渡された硬貨を図3における左方向に搬送するようになっている。本実施形態では、搬送ベルト21eおよび搬送ベルト21fは、上述したベルト33と同様の構造のものを用いることができる。 The lower conveyance portion 20c is configured by a first conveyance portion 20d where coins are sent from the folded conveyance portion 20b, and a second conveyance portion 20e provided on the downstream side of the first conveyance portion 20d in the coin conveyance direction. . More specifically, the first conveyor portion 20d is provided with a conveyor belt 21e, and the second conveyor portion 20e is also provided with a conveyor belt 21f. A transport belt 21e provided in the first transport portion 20d is configured to transport the coins sent from the upper transport portion 20a due to falling by its own weight in the folded transport portion 20b to the left in FIG. In addition, the transport belt 21f provided in the second transport portion 20e is configured to receive coins transported by the transport belt 21e, and the transport belt 21f receives the coins transferred from the transport belt 21e. The sheet is conveyed leftward in FIG. In the present embodiment, the conveyor belt 21e and the conveyor belt 21f can have the same structure as the belt 33 described above.
 なお、第2搬送部分20eに設けられた搬送ベルト21fによる硬貨の搬送速度は、第1搬送部分20dに設けられた搬送ベルト21eによる硬貨の搬送速度よりも大きくなっている。このため、第1搬送部分20dに設けられた搬送ベルト21eから第2搬送部分20eに設けられた搬送ベルト21fに硬貨が受け渡される際に硬貨間隔が広くなり、確実に硬貨を選別できるとともに、ジャム等のトラブルが発生することなくスムーズに硬貨の受け渡しを行うことができるようになる。 In addition, the conveyance speed of the coin by the conveyance belt 21f provided in the 2nd conveyance part 20e is larger than the conveyance speed of the coin by the conveyance belt 21e provided in the 1st conveyance part 20d. For this reason, the coin interval is widened when coins are transferred from the conveyor belt 21e provided in the first conveyor part 20d to the conveyor belt 21f provided in the second conveyor part 20e, and the coins can be reliably selected, Coins can be delivered smoothly without troubles such as jams.
 下部搬送部分20cには、上部搬送部分20aの搬送路21aと同様の構成の搬送路が設けられている。また、下部搬送部分20cにおける第2搬送部分20eには3つの選別部24(選別部24f~24h)が設けられている。下部搬送部分20cの第2搬送部分20eに設けられた各選別部24は、識別部22による硬貨の識別結果に基づいて、この第2搬送部分20eにより搬送される硬貨を選別して一時保留部40に送るようになっている。具体的には、各選別部24f~24hは、金種別に硬貨を選別する金種別選別部として機能するようになっている。より詳細には、例えば本実施形態の硬貨入出金機10においてユーロ(EURO)硬貨の処理が行われるときに、硬貨の搬送方向において最も上流側に配置された選別部24fは、識別部22により2ユーロ硬貨であると識別された硬貨を選別し、硬貨の搬送方向において上流側から2番目に配置された選別部24gは、識別部22により1ユーロ硬貨であると識別された硬貨を選別し、硬貨の搬送方向において上流側から3番目に配置された選別部24hは、識別部22により2セント硬貨であると識別された硬貨を選別するようになっている。また、下部搬送部分20cの第2搬送部分20eにおいて、硬貨の搬送方向におけるこれらの3つの選別部24f~24hの下流側には開口24iが設けられており、この開口24iには、各選別部24f~24hにより選別されなかった硬貨、具体的には例えば20セント硬貨が入るようになっている。なお、この開口24iにもシュート26が接続されており、開口24iに入った20セント硬貨はシュート26を介して一時保留部40に送られるようになっている。 The lower conveyance part 20c is provided with a conveyance path having the same configuration as the conveyance path 21a of the upper conveyance part 20a. Further, three sorting sections 24 (sorting sections 24f to 24h) are provided in the second transport section 20e in the lower transport section 20c. Each sorting unit 24 provided in the second transport portion 20e of the lower transport portion 20c sorts the coins transported by the second transport portion 20e based on the coin identification result by the identification unit 22, and temporarily holds the coins. 40 to send. Specifically, each of the sorting units 24f to 24h functions as a denomination sorting unit that sorts coins by denomination. More specifically, for example, when processing of Euro (EURO) coins is performed in the coin depositing and dispensing machine 10 of the present embodiment, the sorting unit 24f arranged on the most upstream side in the coin transport direction is The sorting unit 24g arranged second from the upstream side in the coin conveyance direction sorts out the coins identified as 1 euro coins by sorting the coins identified as 2 euro coins. The sorting unit 24h arranged third from the upstream side in the coin transport direction sorts the coins identified by the identifying unit 22 as being 2 cent coins. Further, in the second transport portion 20e of the lower transport portion 20c, an opening 24i is provided on the downstream side of these three sorting portions 24f to 24h in the coin transport direction, and each sorting portion is provided in the opening 24i. Coins that have not been sorted by 24f to 24h, specifically, for example, 20 cent coins are inserted. The chute 26 is also connected to the opening 24 i, and the 20 cent coin that has entered the opening 24 i is sent to the temporary storage unit 40 via the chute 26.
 本実施形態の硬貨入出金機10では、上部搬送部分20aに設けられた選別部24(選別部24b、24d、24e)により選別される硬貨の直径の大きさ(具体的には、1セント硬貨、5セント硬貨、10セント硬貨の直径の大きさ)は、下部搬送部分20cに設けられた選別部24(選別部24f~24h)により選別されたり開口24iに入ったりする硬貨の直径の大きさ(具体的には、2ユーロ硬貨、1ユーロ硬貨、2セント硬貨、50セント硬貨、20セント硬貨の直径の大きさ)よりも小さくなっている。このため、直径が比較的小さな硬貨が折り返し搬送部分20bを経て下部搬送部分20cに送られることが抑制され、このことにより、このような直径が比較的小さな硬貨により折り返し搬送部分20bや下部搬送部分20cでジャム等のトラブルが発生してしまうことを防止することができるようになる。 In the coin depositing and dispensing machine 10 of the present embodiment, the diameter of the coins to be sorted by the sorting unit 24 (sorting units 24b, 24d, 24e) provided in the upper transport portion 20a (specifically, one cent coin) The diameter of the 5-cent coin and the 10-cent coin) is the size of the diameter of the coin that is sorted by the sorting unit 24 (sorting unit 24f to 24h) provided in the lower transport portion 20c or enters the opening 24i. (Specifically, it is smaller than the diameter of 2 euro coin, 1 euro coin, 2 cent coin, 50 cent coin, 20 cent coin). For this reason, it is suppressed that the coin with a comparatively small diameter is sent to the lower conveyance part 20c via the folding | returning conveyance part 20b, and, thereby, the folding conveyance part 20b and the lower conveyance part by such a comparatively small diameter coin. It becomes possible to prevent troubles such as jams from occurring at 20c.
 また、下部搬送部分20cの第2搬送部分20eに設けられた搬送ベルト21fによる硬貨の搬送速度は、上部搬送部分20aに設けられたベルト33による硬貨の搬送速度と同一となっている。なお、前述したように、第2搬送部分20eに設けられた搬送ベルト21fによる硬貨の搬送速度は、第1搬送部分20dに設けられた搬送ベルト21eによる硬貨の搬送速度よりも大きくなっている。 Further, the coin conveyance speed by the conveyance belt 21f provided in the second conveyance part 20e of the lower conveyance part 20c is the same as the coin conveyance speed by the belt 33 provided in the upper conveyance part 20a. As described above, the coin conveyance speed by the conveyance belt 21f provided in the second conveyance portion 20e is higher than the coin conveyance speed by the conveyance belt 21e provided in the first conveyance portion 20d.
 また、本実施形態の硬貨入出金機10では、上部搬送部分20aおよび下部搬送部分20cにそれぞれ設けられた選別部24により選別される硬貨の金種は、選別部24毎に自在に設定可能となっている。すなわち、図3に示される各選別部24a~24hについて、例えば処理されるべき硬貨のうち特定の金種の硬貨の枚数が多いことが予めわかっている場合には、複数の選別部24にこの特定の金種を割り当てるようにしてもよい。 Moreover, in the coin depositing and dispensing machine 10 of the present embodiment, the denomination of the coins sorted by the sorting unit 24 provided in each of the upper transport part 20a and the lower transport part 20c can be freely set for each sorting part 24. It has become. That is, for each of the sorting units 24a to 24h shown in FIG. 3, for example, when it is known in advance that the number of coins of a specific denomination among the coins to be processed is large, You may make it allocate a specific denomination.
(一時保留部)
 前述のように、入金搬送部20の上部搬送部分20aや下部搬送部分20cに設けられた各選別部24により選別された硬貨は、各選別部24に対応して設けられたシュート26を介して、リジェクト部47やオーバーフローボックス49、または一時保留部40に送られる。ここで、一時保留部40の構成の詳細について説明する。
(Temporary holding part)
As described above, the coins sorted by the sorting sections 24 provided in the upper transport portion 20a and the lower transport portion 20c of the deposit transport section 20 are passed through the chute 26 provided corresponding to each sorting section 24. , Sent to the reject unit 47, overflow box 49, or temporary storage unit 40. Here, the detail of the structure of the temporary storage part 40 is demonstrated.
 図2に示すように、本実施形態の硬貨入出金機10においては、左右一対の一時保留部40が設けられている。また各一時保留部40は複数の保留部分に区切られている。そして、各一時保留部40における複数の保留部分に、各選別部24により選別された硬貨が金種別に一時的に保留されるようになっている。また、各一時保留部40における複数の保留部分に一時的に保留された硬貨は、返却箱48または各収納繰出装置50に選択的に送られるようになっている。また、各一時保留部40には、当該一時保留部40における複数の保留部分のうちいずれか一つの保留部分が硬貨フル状態となったときにこのことを検出する硬貨フル検出部40bが設けられている(図11参照)。具体的には、各保留部分には硬貨フルセンサが設けられており、少なくともいずれか一つの保留部分において硬貨フルセンサにより硬貨フル状態が検出されたときに、硬貨フル検出部40bは後述する制御部80に硬貨フル情報に係る信号を送るようになっている。 As shown in FIG. 2, in the coin depositing and dispensing machine 10 of the present embodiment, a pair of left and right temporary storage units 40 are provided. Each temporary holding unit 40 is divided into a plurality of holding parts. The coins sorted by the sorting units 24 are temporarily held in the denominations in the plurality of holding portions in each temporary holding unit 40. The coins temporarily held in the plurality of holding portions in each temporary holding unit 40 are selectively sent to the return box 48 or each storage and feeding device 50. Moreover, each temporary storage part 40 is provided with the coin full detection part 40b which detects this when any one of the several storage parts in the said temporary storage part 40 becomes a coin full state. (See FIG. 11). Specifically, a coin full sensor is provided in each holding portion, and when a coin full state is detected by the coin full sensor in at least one of the holding portions, the coin full detection unit 40b is a control unit 80 described later. A signal related to the coin full information is sent to.
 返却箱48は筐体12の内部から外部に引き出し可能となるよう構成されており、返却箱48を筐体12の外部に引き出すことによって操作者は返却箱48内の硬貨を取り出すことができるようになっている。このように、返却箱48は、一時保留部40に一時的に保留された硬貨を筐体12の外部に返却するためのものとして使用されるようになっている。返却箱48は、複数の金種の硬貨を混合状態で収容するよう構成されている。なお、返却箱48は、このような構成に限定されるものではなく、例えば、返却箱48は各一時保留部40と同様に複数の返却部分に区切られるようになっていてもよい。この場合、返却箱48における互いに区切られた複数の返却部分は、各一時保留部40における複数の保留部分に対応するようになり、これらの返却部分には硬貨が金種別に収納されるようになる。 The return box 48 is configured to be able to be pulled out from the inside of the housing 12, and the operator can take out the coins in the return box 48 by pulling the return box 48 out of the housing 12. It has become. As described above, the return box 48 is used to return the coin temporarily held in the temporary holding unit 40 to the outside of the housing 12. The return box 48 is configured to accommodate a plurality of denomination coins in a mixed state. The return box 48 is not limited to such a configuration. For example, the return box 48 may be divided into a plurality of return parts in the same manner as the temporary holding units 40. In this case, the plurality of return parts separated from each other in the return box 48 correspond to the plurality of holding parts in each temporary holding part 40 so that coins are stored in these return parts in denominations. Become.
 各一時保留部40は、図2における実線で示すような第1の位置と図2における二点鎖線で示すような第2の位置との間でそれぞれ移動自在となっている。そして、各一時保留部40が第1の位置にあるときには当該一時保留部40は各選別部24により選別された硬貨を受けるようになっている。また各一時保留部40が第1の位置から第2の位置に移動すると、当該一時保留部40に一時的に保留された硬貨が各収納繰出装置50に送られるようになっている。 Each temporary storage unit 40 is movable between a first position as shown by a solid line in FIG. 2 and a second position as shown by a two-dot chain line in FIG. And when each temporary storage part 40 exists in a 1st position, the said temporary storage part 40 receives the coin sorted by each sorting part 24. When each temporary storage unit 40 moves from the first position to the second position, coins temporarily stored in the temporary storage unit 40 are sent to each storage and feeding device 50.
 より詳細には、図2に示すように、各一時保留部40は、頂部および底部がそれぞれ開口した枠体42およびこの枠体42の底部の開口を選択的に塞ぐ底板43を有している。
そして、これらの枠体42および底板43は、それぞれ図2における実線で示すような第1の位置と、図2における二点鎖線で示すような第2の位置との間で互いに独立して移動自在となっている。図2に示すように、第1の位置にある枠体42の真下の位置には返却箱48が設けられている。一方、第2の位置にある枠体42の真下の位置には複数のシュート46が各保留部分に対応して設けられており、これらのシュート46はそれぞれ対応する金種の各収納繰出装置50に連通している。
More specifically, as shown in FIG. 2, each temporary storage portion 40 has a frame body 42 whose top portion and bottom portion are opened, and a bottom plate 43 that selectively closes the opening of the bottom portion of the frame body 42. .
The frame body 42 and the bottom plate 43 move independently from each other between a first position as shown by a solid line in FIG. 2 and a second position as shown by a two-dot chain line in FIG. It is free. As shown in FIG. 2, a return box 48 is provided at a position directly below the frame body 42 at the first position. On the other hand, a plurality of chutes 46 are provided corresponding to each holding portion at a position directly below the frame body 42 in the second position, and these chutes 46 are respectively stored and feeding devices 50 of the corresponding denominations. Communicating with
 そして、枠体42および底板43がそれぞれ第1の位置にあるときには、一時保留部40は、入金搬送部20の各選別部24により選別されシュート26を介して送られた硬貨を枠体42の頂部の開口を介して受けるようになっている。この際に、枠体42の底部の開口は底板43により塞がれているため、一時保留部40に送られた硬貨は当該一時保留部40において一時的に保留されるようになる。そして、底板43が第1の位置に維持されたまま枠体42が第1の位置から第2の位置に移動すると、一時保留部40の各保留部分に一時的に保留された硬貨は、一時保留部40に設けられた開口を通過して自重により落下し、当該保留部分に対応して設けられた各シュート46を介して各収納繰出装置50に金種別に送られる。一方、枠体42が第1の位置に維持されたまま底板43が第1の位置から第2の位置に移動すると、一時保留部40の各保留部分に一時的に保留された硬貨は返却箱48に送られる。 When the frame body 42 and the bottom plate 43 are respectively in the first position, the temporary storage unit 40 receives the coins sorted by the respective sorting units 24 of the deposit conveyance unit 20 and sent via the chute 26 on the frame body 42. It is received through the opening at the top. At this time, since the opening at the bottom of the frame body 42 is closed by the bottom plate 43, the coins sent to the temporary storage unit 40 are temporarily stored in the temporary storage unit 40. When the frame body 42 moves from the first position to the second position while the bottom plate 43 is maintained at the first position, the coins temporarily held in the respective holding portions of the temporary holding unit 40 are temporarily stored. It passes through the opening provided in the holding part 40 and falls by its own weight, and is sent to each storing and feeding device 50 through each chute 46 provided corresponding to the holding part. On the other hand, when the bottom plate 43 is moved from the first position to the second position while the frame body 42 is maintained at the first position, the coins temporarily held in the respective holding portions of the temporary holding unit 40 are returned to the return box. 48.
 上述のような各一時保留部40における枠体42や底板43の駆動は、一時保留部駆動部40p(図11参照)によりそれぞれ行われるようになっている。 The driving of the frame body 42 and the bottom plate 43 in each temporary storage unit 40 as described above is performed by a temporary storage unit drive unit 40p (see FIG. 11).
 このようにして、各一時保留部40における複数の保留部分に一時的に保留された硬貨は、各収納繰出装置50または返却箱48に一括して送られるようになる。なお、本実施形態の硬貨入出金機10では、一時保留部40の構成はこのようなものに限定されることはない。例えば、一時保留部40における各保留部分に一時的に保留された硬貨が、他の保留部分から独立して各収納繰出装置50または返却箱48に個別に送られるようになっていてもよい。 In this way, the coins temporarily held in the plurality of holding portions in each temporary holding unit 40 are collectively sent to each storing and feeding device 50 or the return box 48. In addition, in the coin depositing and dispensing machine 10 of this embodiment, the structure of the temporary storage part 40 is not limited to such a thing. For example, coins temporarily held in each holding part in the temporary holding unit 40 may be individually sent to each storage and feeding device 50 or the return box 48 independently of other holding parts.
(収納繰出装置)
 次に、収納繰出装置50の構成の詳細について説明する。各収納繰出装置50は水平面に沿って複数列、具体的には2列となるよう配置されている。そして、各列には4つの収納繰出装置50が設けられている。
(Storing and feeding device)
Next, details of the configuration of the storage and feeding device 50 will be described. Each storage and feeding device 50 is arranged in a plurality of rows, specifically two rows along the horizontal plane. In each row, four storage and feeding devices 50 are provided.
 また、各収納繰出装置50には、当該収納繰出装置50から繰り出された硬貨を案内するためのシュート68が設けられている。これらの複数のシュート68は各収納繰出装置50にそれぞれ対応して設けられている。そして、各シュート68は、一方の列の収納繰出装置50と他方の列の収納繰出装置50との間において各収納繰出装置50の側方に設置されている。 Further, each storage and feeding device 50 is provided with a chute 68 for guiding the coins fed from the storage and feeding device 50. The plurality of chutes 68 are provided corresponding to the storage and feeding devices 50, respectively. Each chute 68 is disposed on the side of each storage and feeding device 50 between the storage and feeding device 50 in one row and the storage and feeding device 50 in the other row.
 各収納繰出装置50は、硬貨の繰り出しを行う繰出部51と、各一時保留部40から送られた硬貨を収納するとともに収納された硬貨を繰出部51に搬送する搬送部60とを有している。各収納繰出装置50の繰出部51は、鉛直方向に対して所定角度で傾斜しており傾斜姿勢で回転させられる回転円盤52と、この回転円盤52の表面との間に硬貨を収納する硬貨収納空間53を形成するカバー部材54と、を有している。回転円盤52の表面には、当該表面から突出する複数の搬送突起部材が設けられている。これらの搬送突起部材は、内周側の円周方向と外周側の円周方向との2列の円周方向に沿って所定ピッチで配置されている。外周側の各搬送突起部材は、内周側の各搬送突起部材より回転円盤52の回転方向の上流側に配置されている。そして、回転円盤52の回転時において、内周側の搬送突起部材がカバー部材54との間で硬貨を1枚ずつ保持して回転円盤52の下部領域から上部領域に拾い上げ、内周側の搬送突起部材で回転円盤52の上部領域に拾い上げた硬貨を、外周側の搬送突起部材により収納繰出装置50の投出口へ向けて押し出すようになっている。 Each storage and feeding device 50 includes a feeding unit 51 that feeds out coins, and a transport unit 60 that stores the coins sent from each temporary storage unit 40 and transports the stored coins to the feeding unit 51. Yes. The feeding unit 51 of each storage and feeding device 50 is a coin storage that stores coins between a rotating disk 52 that is inclined at a predetermined angle with respect to the vertical direction and is rotated in an inclined posture, and the surface of the rotating disk 52. And a cover member 54 that forms a space 53. On the surface of the rotating disk 52, a plurality of conveying projection members protruding from the surface are provided. These conveying projection members are arranged at a predetermined pitch along two rows of circumferential directions, ie, an inner circumferential direction and an outer circumferential direction. Each conveying projection member on the outer peripheral side is arranged upstream of each conveying projection member on the inner circumferential side in the rotation direction of the rotary disk 52. When the rotary disk 52 is rotated, the inner circumferential side protruding projection member holds the coins one by one with the cover member 54 and picks up coins from the lower area of the rotary disk 52 to the upper area, thereby conveying the inner circumferential side. Coins picked up in the upper region of the rotary disk 52 by the protruding member are pushed out toward the outlet of the storage and feeding device 50 by the conveying protruding member on the outer peripheral side.
 繰出部51における回転円盤52の上部領域には案内部材が位置固定で設けられており、この案内部材は回転円盤52の上部領域を覆うよう配置されている。より具体的には、案内部材は、回転円盤52における硬貨収納空間53側の表面とわずかな間隔を隔てて配置されている。案内部材は、回転円盤52の回転によって当該回転円盤52の下部領域から上部領域に搬送された硬貨を投出口に案内するよう構成されている。そして、案内部材により投出口に案内された硬貨は、当該収納繰出装置50に対応するシュート68に送られ、シュート68内で自重により落下するようになる。また、収納繰出装置50において回転円盤52の表面に排除突起部材が設けられている。排除突起部材は、一つの搬送突起部材に2枚以上の硬貨が引っ掛けられたときに、回転円盤52の上部領域において案内部材により硬貨が案内される際にこの搬送突起部材に引っ掛けられた硬貨のうち1枚の硬貨のみを回転円盤52の表面から浮かせずそれ以外の硬貨を回転円盤52の表面から浮かせるようになっている。そして、回転円盤52の表面から浮いた2枚目以降の硬貨は、ガイド部材の先端部分によりすくい上げられることによって回転円盤52の下部領域に落下するようになっている。 A guide member is provided at a fixed position in the upper region of the rotating disk 52 in the feeding portion 51, and this guide member is disposed so as to cover the upper region of the rotating disk 52. More specifically, the guide member is disposed at a slight distance from the surface of the rotary disk 52 on the coin storage space 53 side. The guide member is configured to guide the coins transported from the lower region to the upper region of the rotary disk 52 by the rotation of the rotary disk 52 to the outlet. Then, the coin guided to the outlet by the guide member is sent to the chute 68 corresponding to the storage and feeding device 50 and falls within the chute 68 by its own weight. Further, in the storage and feeding device 50, an exclusion protrusion member is provided on the surface of the rotating disk 52. When two or more coins are hooked on one transporting projection member, the exclusion projecting member is a part of the coin hooked on the transporting projection member when the coin is guided by the guide member in the upper region of the rotating disk 52. Of these, only one coin is not floated from the surface of the rotating disk 52, and the other coins are floated from the surface of the rotating disk 52. Then, the second and subsequent coins floating from the surface of the rotating disk 52 are scooped up by the tip portion of the guide member, and fall into the lower area of the rotating disk 52.
 各収納繰出装置50における搬送部60は、略水平方向に延びる無端状の搬送ベルト62を有している。そして、各一時保留部40から送られた硬貨は搬送ベルト62上に集積されるようになっている。そして、搬送ベルト62が循環移動することにより、搬送ベルト62上に集積された硬貨の山が崩されて、硬貨は繰出部51における回転円盤52とカバー部材54との間に形成された硬貨収納空間53に送られるようになっている。ここで、搬送部60における搬送ベルト62と繰出部51における回転円盤52は同期して動作されるようになっている。 The conveyance unit 60 in each storage and feeding device 50 has an endless conveyance belt 62 extending in a substantially horizontal direction. The coins sent from each temporary storage unit 40 are accumulated on the transport belt 62. Then, as the conveyor belt 62 circulates, the piles of coins accumulated on the conveyor belt 62 are destroyed, and the coins are stored in the coins formed between the rotating disk 52 and the cover member 54 in the feeding portion 51. It is sent to the space 53. Here, the conveyance belt 62 in the conveyance unit 60 and the rotating disk 52 in the feeding unit 51 are operated in synchronization.
(回収ボックス、ドロア)
 各収納繰出装置50から繰り出された硬貨は、当該収納繰出装置50に対応するシュート68を介して、回収ボックス70に装着されたドロア72に収納されるようになっている。次に、回収ボックス70およびドロア72の構成について説明する。
(Collection box, drawer)
The coins fed out from each storage and feeding device 50 are stored in a drawer 72 attached to the collection box 70 via a chute 68 corresponding to the storage and feeding device 50. Next, the configuration of the collection box 70 and the drawer 72 will be described.
 硬貨入出金機10の筐体12の下部には回収ボックス70(回収箱)が着脱自在に設けられている。この回収ボックス70は筐体12の前面から手前側に引き出し可能となっている。この回収ボックス70にはキャスター(図示せず)が設けられており、筐体12から台車代わりに引き出すことができるようになっている。このような回収ボックス70には、ドロア乗せ台を着脱自在に装着することができるようになっている。そして、ドロア乗せ台には様々な種類のドロア72を乗せることができるようになっている。ドロア72がドロア乗せ台に乗せられた状態でこのドロア乗せ台が回収ボックス70に装着され、この回収ボックス70が筐体12内に収容されると、各収納繰出装置50から繰り出された硬貨は、当該収納繰出装置50に対応するシュート68を介して、回収ボックス70に装着されたドロア72に収納されるようになる。 A collection box 70 (collection box) is detachably provided at the bottom of the housing 12 of the coin depositing and dispensing machine 10. The collection box 70 can be pulled out from the front surface of the housing 12 to the front side. The collection box 70 is provided with a caster (not shown) so that it can be pulled out from the housing 12 instead of a cart. In such a collection box 70, a drawer mount can be detachably mounted. Various types of drawers 72 can be placed on the drawer platform. When the drawer 72 is mounted on the collection box 70 in a state where the drawer 72 is placed on the drawer platform, and the collection box 70 is accommodated in the housing 12, the coins fed out from the respective storage and feeding devices 50 are Then, it is stored in the drawer 72 attached to the collection box 70 via the chute 68 corresponding to the storage and feeding device 50.
 また、本実施形態の硬貨入出金機10では、ドロア72およびドロア乗せ台が回収ボックス70から取り外された状態で回収ボックス70が筐体12の下部に装着されたときに、各収納繰出装置50から繰り出され、各シュート68を介して自重により落下した硬貨は、回収ボックス70に金種混合状態で収納されるようになっている。この場合には、回収ボックス70を筐体12から引き出すと、回収ボックス70ごと硬貨を回収することができるようになる。 Further, in the coin depositing and dispensing machine 10 of the present embodiment, when the collection box 70 is attached to the lower part of the housing 12 with the drawer 72 and the drawer platform removed from the collection box 70, each storage and feeding device 50 is provided. The coins that are fed out and fallen by their own weight through the respective shoots 68 are stored in the collection box 70 in a denomination mixed state. In this case, when the collection box 70 is pulled out from the housing 12, the coins can be collected together with the collection box 70.
 このようにして、操作者が硬貨入出金機10から硬貨の出金処理を行いたい場合には、回収ボックス70にドロア72を取り付けた状態で回収ボックス70を筐体12に装着することにより、各収納繰出装置50から繰り出された硬貨はドロア72内に収納されるようになり、操作者は回収ボックス70を筐体12から引き出すことによりドロア72内に収納された硬貨を出金硬貨として使用することができるようになる。一方、操作者が硬貨入出金機10から硬貨の回収処理を行いたい場合には、回収ボックス70からドロア72を取り外した状態で回収ボックス70を筐体12に装着することにより、各収納繰出装置50から繰り出された硬貨は回収ボックス70内に収納されるようになり、操作者は回収ボックス70ごと硬貨を回収することができるようになる。 In this way, when the operator wants to perform the coin withdrawal process from the coin depositing and dispensing machine 10, by attaching the collection box 70 to the housing 12 with the drawer 72 attached to the collection box 70, The coins fed out from each storage and feeding device 50 are stored in the drawer 72, and the operator pulls out the collection box 70 from the housing 12 to use the coins stored in the drawer 72 as the withdrawal coins. Will be able to. On the other hand, when the operator wishes to collect coins from the coin depositing / dispensing machine 10, each storage and feeding device is mounted by attaching the collection box 70 to the housing 12 with the drawer 72 removed from the collection box 70. The coins fed out from 50 are stored in the collection box 70, and the operator can collect the coins together with the collection box 70.
 本実施形態の硬貨入出金機10においては、筐体12の下部への回収ボックス70の装着状態を検出する装着状態検出部78が設けられている(図11参照)。この装着状態検出部78は、筐体12の下部へ回収ボックス70が装着されているか否か、また、筐体12の下部へ回収ボックス70が装着されている場合には、この回収ボックス70にドロア72が取り付けられているか否かを検出するようになっている。 In the coin depositing and dispensing machine 10 of the present embodiment, a mounting state detection unit 78 that detects the mounting state of the collection box 70 in the lower part of the housing 12 is provided (see FIG. 11). The mounting state detection unit 78 determines whether or not the collection box 70 is mounted on the lower portion of the housing 12, and if the collection box 70 is mounted on the lower portion of the housing 12, Whether or not the drawer 72 is attached is detected.
(制御部)
 また、本実施形態の硬貨入出金機10においては、当該硬貨入出金機10の各構成要素の制御を行う制御部80が設けられている。図11を参照して、制御部80の構成について説明する。
(Control part)
Moreover, in the coin depositing / withdrawing machine 10 of this embodiment, the control part 80 which controls each component of the said coin depositing / withdrawing machine 10 is provided. The configuration of the control unit 80 will be described with reference to FIG.
 図11に示すように、制御部80は、入金搬送部20における各搬送ベルト21e、21fの駆動を行う駆動部(図示せず)や識別部22、硬貨繰出装置30における硬貨搬送円盤32の駆動を行う回転円盤駆動部32pや第1プーリー34aの駆動を行うベルト駆動部34p、各一時保留部40における枠体42や底板43の駆動を行う一時保留部駆動部40pや硬貨フル検出部40b、収納繰出装置50における繰出部51や搬送部60等に接続されており、これらの構成要素に対して信号の送受信を行うようになっている。より詳細には、入金搬送部20の識別部22による硬貨の識別結果に係る信号が制御部80に送られるようになっている。また、制御部80は、入金搬送部20における各搬送ベルト、21e、21fの駆動を行う駆動部、硬貨繰出装置30における回転円盤駆動部32pとベルト駆動部34p、一時保留部40における一時保留部駆動部40p、収納繰出装置50における繰出部51や搬送部60等に制御信号を送り、これらの各構成要素の制御を行うようになっている。 As shown in FIG. 11, the control unit 80 drives a drive unit (not shown) that drives each of the conveyor belts 21 e and 21 f in the deposit conveyance unit 20, and drives the coin conveyance disk 32 in the identification unit 22 and the coin feeding device 30. A rotary disk drive unit 32p for performing the above operation, a belt drive unit 34p for driving the first pulley 34a, a temporary storage unit drive unit 40p for driving the frame body 42 and the bottom plate 43 in each temporary storage unit 40, and a coin full detection unit 40b, It is connected to the feeding unit 51, the transport unit 60, and the like in the storage and feeding device 50, and transmits and receives signals to and from these components. More specifically, a signal related to the coin identification result by the identification unit 22 of the deposit conveyance unit 20 is sent to the control unit 80. In addition, the control unit 80 includes a driving unit that drives the transport belts 21e and 21f in the deposit transport unit 20, a rotary disk drive unit 32p and a belt drive unit 34p in the coin feeding device 30, and a temporary storage unit in the temporary storage unit 40. Control signals are sent to the drive unit 40p, the feeding unit 51, the transport unit 60, and the like in the storage and feeding device 50 to control these components.
 また、制御部80には装着状態検出部78が接続されており、この装着状態検出部78により検出された、筐体12への回収ボックス70の装着状態の検出情報に係る信号が制御部80に送られるようになっている。 Further, a mounting state detection unit 78 is connected to the control unit 80, and a signal related to detection information of the mounting state of the collection box 70 to the housing 12 detected by the mounting state detection unit 78 is transmitted to the control unit 80. To be sent to.
 また、制御部80には報知部82が接続されており、この報知部82により操作者に対して表示や音声等により様々な報知を行うことができるようになっている。また、制御部80には、当該制御部80に対して操作者が様々な指令を行うための操作部84が設けられている。これらの報知部82や操作部84の一例として、例えば筐体12の前面や上面に設けられた、報知部82および操作部84が一体化されたタッチパネルからなるものが知られている。 In addition, a notification unit 82 is connected to the control unit 80, and the notification unit 82 can perform various notifications to the operator by display, voice, or the like. The control unit 80 is provided with an operation unit 84 for an operator to give various commands to the control unit 80. As an example of the notification unit 82 and the operation unit 84, for example, a display unit that is provided on the front surface or the upper surface of the housing 12 and includes a touch panel integrated with the notification unit 82 and the operation unit 84 is known.
 また、制御部80には記憶部86が接続されており、硬貨入出金機10の様々な設定や当該硬貨入出金機10による硬貨の処理結果等の情報が記憶部86に記憶されるようになっている。具体的には、入金搬送部20に設けられた各選別部24により選別される硬貨の金種の設定に係る情報や、各収納繰出装置50に収納されている硬貨の金種毎の枚数や金額等の情報が記憶部86に記憶されるようになっている。 In addition, a storage unit 86 is connected to the control unit 80 so that information such as various settings of the coin depositing / dispensing machine 10 and processing results of coins by the coin depositing / dispensing machine 10 is stored in the storage unit 86. It has become. Specifically, information related to the setting of the denomination of coins selected by each sorting unit 24 provided in the deposit transport unit 20, the number of coins stored in each storage and feeding device 50 for each denomination, Information such as the amount of money is stored in the storage unit 86.
 また、制御部80にはインターフェース88が接続されており、このインターフェース88を介して制御部80は硬貨入出金機10の外部の装置(例えば上位装置)に対して信号の送受信を行うことができるようになっている。 Further, an interface 88 is connected to the control unit 80, and the control unit 80 can send and receive signals to and from an external device (for example, a host device) of the coin depositing and dispensing machine 10 via the interface 88. It is like that.
 また、硬貨入出金機10には不良検出部90が設けられており、この不良検出部90により、硬貨入出金機10に異常が発生したときにこのことが検出されるようになっている。不良検出部90による異常検出情報は制御部80に送られるようになっている。 Further, the coin depositing / dispensing machine 10 is provided with a defect detecting unit 90, and this defect detecting unit 90 detects this when an abnormality occurs in the coin depositing / dispensing machine 10. The abnormality detection information by the defect detection unit 90 is sent to the control unit 80.
 以上のように本実施形態の硬貨繰出装置30は、硬貨搬送円盤32と、弾性部材(ベルト33)と、移動機構(ベルト駆動機構34)とを有し、硬貨搬送円盤32は、摩擦搬送部位32cと、段差部位32dとを有し、鉛直方向に対して傾斜した姿勢で回転し、摩擦搬送部位32cは、硬貨搬送円盤32の上側の面において、硬貨搬送円盤32の外周32bに沿って形成され、当該摩擦搬送部位32cに接触した硬貨を、当該硬貨との摩擦力により硬貨搬送円盤32の上部領域に搬送し、段差部位32dは、硬貨搬送円盤32の上側の面において摩擦搬送部位32cの内側に形成された、摩擦搬送部位32cに対して突出した部位であり、硬貨搬送円盤32の外周に面する部位である外周部位32eを有し、外周部位32eの上端と、摩擦搬送部位32cの上側の面との距離は、硬貨繰出装置30が処理の対象とする処理対象硬貨の最小の厚さより小さく、移動機構(ベルト駆動機構34)は、弾性部材(ベルト33)を、硬貨搬送円盤32の上部領域において硬貨搬送円盤の上側の面に沿って硬貨搬送円盤32の内側に向けて移動させ、弾性部材(ベルト33)は、摩擦搬送部位32cの上の硬貨に接触して弾性変形し、硬貨を段差部位32dに向けて移動させる。 As described above, the coin feeding device 30 of the present embodiment includes the coin transport disk 32, the elastic member (belt 33), and the moving mechanism (belt drive mechanism 34). The coin transport disk 32 is a friction transport part. 32c and a step portion 32d, which rotates in a posture inclined with respect to the vertical direction, and the friction transfer portion 32c is formed on the upper surface of the coin transfer disc 32 along the outer periphery 32b of the coin transfer disc 32. Then, the coin that has come into contact with the friction transfer part 32c is transferred to the upper region of the coin transfer disk 32 by the frictional force with the coin, and the step part 32d is formed on the upper surface of the coin transfer disk 32 by the friction transfer part 32c. A portion formed on the inner side and protruding from the friction transfer portion 32c, and has an outer peripheral portion 32e that is a portion facing the outer periphery of the coin transfer disc 32, and the upper end of the outer peripheral portion 32e and the friction The distance from the upper surface of the feeding portion 32c is smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device 30, and the moving mechanism (belt drive mechanism 34) In the upper region of the coin transport disk 32, it is moved toward the inside of the coin transport disk 32 along the upper surface of the coin transport disk, and the elastic member (belt 33) contacts the coin on the friction transport part 32c. It is elastically deformed and the coin is moved toward the stepped portion 32d.
 このような硬貨繰出装置30によれば、硬貨搬送円盤32の摩擦搬送部位32cが硬貨を上部領域に搬送するので、硬貨搬送円盤32上の硬貨の間隔は任意なものとなり、硬貨の間隔を狭くして繰り出すことが可能となる。すなわち、繰出効率を向上して処理を高速化することが可能となる。加えて、硬貨搬送円盤32による上部領域への異物の搬送が抑制されるので、異物の排除能力を高めることが可能となる。 According to the coin feeding device 30 as described above, since the friction transfer portion 32c of the coin transfer disk 32 transfers the coin to the upper region, the interval of the coins on the coin transfer disk 32 becomes arbitrary, and the interval of the coins is narrowed. It becomes possible to pay out. That is, it is possible to improve the feeding efficiency and speed up the processing. In addition, since the conveyance of foreign matter to the upper region by the coin conveyance disk 32 is suppressed, the foreign matter removal capability can be enhanced.
 また、弾性部材(ベルト33)が摩擦搬送部位32cの上の硬貨を段差部位32dに向けて移動させるので、重送硬貨を確実に捌くことができると共に、硬貨を一列状態にして繰出すことができる。説明すると、複数の硬貨が重なった状態で上部領域に搬送された場合には、弾性部材(ベルト33)がこれらの硬貨を段差部位32dに向けて移動させる。
すると、摩擦搬送部位32cに接触している最下層の硬貨は段差部位32dに接触した状態となるが、他の硬貨は段差部位32dに接触し得ず、段差部位32dを越えて下方に落下する。このようにして硬貨搬送円盤32の上には1層の硬貨が整列することとなる。また、小径硬貨が硬貨搬送円盤32の径方向に並んでいる場合でも、弾性部材(ベルト33)の押圧作用により繰出し方向に一列に整列することとなる。そして弾性部材(ベルト33)は、摩擦搬送部位32cの上の硬貨に接触して弾性変形し、上述の重送硬貨の捌きを行うので、硬貨繰出装置30は様々な厚さの硬貨に対応することができる。すなわち、硬貨繰出装置30の処理対象硬貨を多様化することが可能となる。
In addition, since the elastic member (belt 33) moves the coins on the friction conveyance portion 32c toward the stepped portion 32d, it is possible to reliably throw the double feed coins and to feed the coins in a line. it can. To explain, when a plurality of coins are overlapped and conveyed to the upper region, the elastic member (belt 33) moves these coins toward the stepped portion 32d.
Then, the lowermost coin in contact with the friction conveyance portion 32c comes into contact with the stepped portion 32d, but other coins cannot contact the stepped portion 32d and fall below the stepped portion 32d. . In this way, one layer of coins is aligned on the coin transport disk 32. Even when the small diameter coins are arranged in the radial direction of the coin transport disk 32, they are aligned in a line in the feeding direction by the pressing action of the elastic member (belt 33). And since an elastic member (belt 33) contacts and elastically deforms the coin on the friction conveyance site | part 32c and performs the above-mentioned double feeding coin, the coin feeding apparatus 30 respond | corresponds to the coin of various thickness. be able to. That is, it is possible to diversify the processing target coins of the coin feeding device 30.
 また本実施形態の硬貨繰出装置30では、弾性部材(ベルト33)は、弾性変形した状態で摩擦搬送部位32cの上の硬貨を硬貨搬送円盤32に向けて押圧し、移動機構(ベルト駆動機構34)は、弾性部材(ベルト33)を摩擦搬送部位32cの上から硬貨搬送円盤32の外へ移動させて、硬貨を硬貨搬送円盤32の外へ移動させる。このため、弾性変形した弾性部材(ベルト33)が硬貨を押圧して姿勢を安定させ、その状態で硬貨繰出装置30から硬貨を繰り出すことができ、処理の高速化の点で有利である。 Further, in the coin feeding device 30 of the present embodiment, the elastic member (belt 33) presses the coin on the friction conveyance portion 32c toward the coin conveyance disk 32 in a state of being elastically deformed, and moves the movement mechanism (belt drive mechanism 34). ) Moves the elastic member (belt 33) from the top of the friction transfer portion 32c to the outside of the coin transfer disc 32, and moves the coin to the outside of the coin transfer disc 32. For this reason, the elastically deformed elastic member (belt 33) presses the coin to stabilize the posture, and the coin can be fed out from the coin feeding device 30 in this state, which is advantageous in terms of speeding up the processing.
 また本実施形態の硬貨繰出装置30は、硬貨搬送円盤32と、弾性部材(ベルト33)の硬貨搬送円盤32の側の端部との間の距離は、硬貨繰出装置30が処理の対象とする処理対象硬貨の最小の厚さより小さくなるよう構成される。 In the coin feeding device 30 of the present embodiment, the distance between the coin transport disk 32 and the end of the elastic member (belt 33) on the coin transport disk 32 side is the object of processing by the coin feeding device 30. It is configured to be smaller than the minimum thickness of the coin to be processed.
 また本実施形態の硬貨繰出装置30は、移動機構(ベルト駆動機構34)は、第1プーリー34aを有して構成され、弾性部材(ベルト33)は、第1プーリー34aに掛け回されたベルトであり、第1プーリー34aの回転軸は、硬貨搬送円盤32の回転軸と略平行であり、ベルト33の幅方向の端部が摩擦搬送部位32cの上の硬貨と接触するよう構成される。 Further, in the coin feeding device 30 of the present embodiment, the moving mechanism (belt drive mechanism 34) is configured to include a first pulley 34a, and the elastic member (belt 33) is a belt wound around the first pulley 34a. The rotational axis of the first pulley 34a is substantially parallel to the rotational axis of the coin transport disk 32, and the end portion in the width direction of the belt 33 is configured to come into contact with the coin on the friction transport site 32c.
 また本実施形態の硬貨繰出装置30は、レバー部材39を有し、レバー部材39は、弾性部材(ベルト33)に対して、硬貨搬送円盤32による硬貨の搬送方向の上流側に配置され、摩擦搬送部位32cの上の硬貨と接触して、硬貨を段差部位32dに向けて移動させるよう構成される。 In addition, the coin feeding device 30 of the present embodiment has a lever member 39, and the lever member 39 is disposed upstream of the elastic member (belt 33) in the coin conveying direction by the coin conveying disk 32, and is frictionally disposed. It is configured to move the coin toward the stepped portion 32d in contact with the coin on the transporting portion 32c.
 このため、レバー部材39が弾性部材(ベルト33)の上流側において硬貨を段差部位32dに向けて移動させるので、硬貨搬送円盤32の上の硬貨が整列され、弾性部材(ベルト33)での重送硬貨の捌きが安定的に行われるようになるから、硬貨繰出装置30の処理を更に高速化することができ好適である。 For this reason, since the lever member 39 moves the coin toward the stepped portion 32d on the upstream side of the elastic member (belt 33), the coins on the coin transport disk 32 are aligned, and the weight on the elastic member (belt 33) is increased. Since the coin feeding is performed stably, the processing of the coin feeding device 30 can be further speeded up, which is preferable.
 また本実施形態の硬貨繰出装置30は、外周ベルト37を有し、外周ベルト37は、その搬送面が硬貨搬送円盤32の外周32bに面する姿勢にて、硬貨搬送円盤32の下部領域において硬貨搬送円盤32に隣接して配置され、硬貨搬送円盤32の回転方向と同じ方向に移動し、摩擦搬送部位32cの上の硬貨と接触して硬貨搬送円盤32による硬貨の搬送を補助するよう構成される。 In addition, the coin feeding device 30 of the present embodiment has an outer peripheral belt 37, and the outer peripheral belt 37 has a coin in a lower region of the coin transport disk 32 in a posture in which the transport surface faces the outer periphery 32 b of the coin transport disk 32. It arrange | positions adjacent to the conveyance disk 32, moves to the same direction as the rotation direction of the coin conveyance disk 32, contacts the coin on the friction conveyance part 32c, and is comprised so that conveyance of the coin by the coin conveyance disk 32 may be assisted. The
 このため、外周ベルト37が硬貨搬送円盤32による硬貨の搬送を補助するので、硬貨繰出装置30の処理を更に高速化することができ好適である。 For this reason, since the outer peripheral belt 37 assists the conveyance of coins by the coin conveyance disk 32, it is preferable that the processing of the coin feeding device 30 can be further speeded up.
 また本実施形態の硬貨繰出装置30は、押圧部材35cと、付勢機構35dとを有し、押圧部材35cは、硬貨搬送円盤32の摩擦搬送部位32cに面する姿勢にて、硬貨搬送円盤32の下部領域において硬貨搬送円盤32の上側に配置され、付勢機構35dは、押圧部材35cを硬貨搬送円盤32に向けて付勢して、押圧部材35cが硬貨を硬貨搬送円盤32に押し付けるよう構成される。 In addition, the coin feeding device 30 of the present embodiment includes a pressing member 35c and an urging mechanism 35d, and the pressing member 35c faces the friction transfer part 32c of the coin transfer disk 32, and the coin transfer disk 32. The biasing mechanism 35d is configured to urge the pressing member 35c toward the coin transporting disc 32 so that the pressing member 35c presses the coin against the coin transporting disc 32. Is done.
 そうすると、押圧部材35cが硬貨を硬貨搬送円盤32に押し付けるので、硬貨搬送円盤32による硬貨の搬送力が増加するから、硬貨繰出装置30の処理を更に高速化することができる上に、硬貨残留の発生を抑制することができ好適である。 Then, since the pressing member 35c presses the coin against the coin transport disc 32, the transport force of the coin by the coin transport disc 32 increases, so that the processing of the coin feeding device 30 can be further speeded up, and the coin remaining The generation can be suppressed, which is preferable.
 また本実施形態の硬貨繰出装置30は、カバー部材35を有し、カバー部材35は硬貨搬送円盤32との間に硬貨を収容する硬貨貯留空間36を形成し、カバー部材35は硬貨貯留空間36の異物を排出する開閉部位35aを有するよう構成される。 Further, the coin feeding device 30 of the present embodiment has a cover member 35, and the cover member 35 forms a coin storage space 36 for storing coins between the coin transport disk 32 and the cover member 35 is a coin storage space 36. It is comprised so that it may have the opening-and-closing part 35a which discharges the foreign material.
 このため、開閉部位35aから異物を排出することができるから、異物の排除能力を更に高めることができ好適である。 For this reason, foreign matter can be discharged from the opening / closing part 35a, which is preferable because the foreign matter removal capability can be further enhanced.
 また本実施形態の硬貨繰出装置30は、硬貨搬送円盤32と、外周ベルト37とを有し、硬貨搬送円盤32は、摩擦搬送部位32cと、段差部位32dとを有し、鉛直方向に対して傾斜した姿勢で回転し、摩擦搬送部位32cは、硬貨搬送円盤32の上側の面の外周32bに沿って形成され、当該摩擦搬送部位32cに接触した硬貨を、当該硬貨との摩擦力により硬貨搬送円盤32の上部領域に搬送し、外周ベルト37は、その搬送面が硬貨搬送円盤32の外周32bに面する姿勢にて、硬貨搬送円盤32の下部領域において硬貨搬送円盤32に隣接して配置され、硬貨搬送円盤32の回転方向と同じ方向に移動し、摩擦搬送部位32cの上の硬貨と接触して硬貨搬送円盤32による硬貨の搬送を補助することを特徴とする。 In addition, the coin feeding device 30 of the present embodiment includes a coin transport disk 32 and an outer peripheral belt 37. The coin transport disk 32 includes a friction transport part 32c and a step part 32d, and is perpendicular to the vertical direction. The friction conveying part 32c is rotated along an inclined posture, and is formed along the outer periphery 32b of the upper surface of the coin conveying disk 32. The coin contacting the friction conveying part 32c is conveyed by a frictional force with the coin. The outer peripheral belt 37 is transported to the upper region of the disk 32, and the outer peripheral belt 37 is disposed adjacent to the coin transport disk 32 in the lower region of the coin transport disk 32 with the transport surface facing the outer periphery 32 b of the coin transport disk 32. The coin conveyance disk 32 moves in the same direction as the rotation direction, and contacts the coins on the friction conveyance part 32c to assist the coin conveyance by the coin conveyance disk 32.
 そうすると、硬貨搬送円盤32の摩擦搬送部位32cが硬貨を上部領域に搬送するので、硬貨搬送円盤32上の硬貨の間隔は任意なものとなり、硬貨の間隔を狭くして繰り出すことが可能となる。また、段差部位32d、ベルト33、移動機構の協働作用により直径差が大きな硬貨であっても1枚ずつ確実に繰出すことが可能となる。すなわち、繰出効率を向上して処理を高速化することが可能となる。加えて、硬貨搬送円盤32による上部領域への異物の搬送が抑制されるので、異物の排除能力を高めることが可能となる。加えて、外周ベルト37が硬貨搬送円盤32による硬貨の搬送を補助するので、硬貨繰出装置30の処理を更に高速化することができ好適である。 Then, since the friction transfer part 32c of the coin transfer disk 32 transfers the coins to the upper region, the interval of the coins on the coin transfer disk 32 becomes arbitrary, and the coins can be fed out with a reduced interval. Further, even coins having a large diameter difference can be reliably fed out one by one by the cooperative action of the step portion 32d, the belt 33, and the moving mechanism. That is, it is possible to improve the feeding efficiency and speed up the processing. In addition, since the conveyance of foreign matter to the upper region by the coin conveyance disk 32 is suppressed, the foreign matter removal capability can be enhanced. In addition, since the outer peripheral belt 37 assists the transport of coins by the coin transport disk 32, the processing of the coin feeding device 30 can be further speeded up, which is preferable.
 また、本実施形態の硬貨繰出装置30は、回転する硬貨搬送円盤32と、段差部位32d(段差部材)と、ベルト33と、ベルト駆動機構34とを有し、硬貨搬送円盤32は、接触した硬貨をベルトへ向けて搬送し、段差部位32dは、硬貨搬送円盤32の上側に配置されており、硬貨搬送円盤32の外周32bに面する部位である外周部位32eを有し、外周部位32eの上端と、硬貨搬送円盤32の上側の面との距離は、硬貨繰出装置30が処理の対象とする処理対象硬貨の最小の厚さより小さく、ベルト駆動機構34は、ベルト33を、硬貨搬送円盤32の上側の面に沿って硬貨搬送円盤32の内側に向けて走行させ、ベルト33は、硬貨搬送円盤32の上の硬貨に接触して弾性変形し、当該硬貨を段差部位32dに向けて移動させる。 In addition, the coin feeding device 30 of the present embodiment includes a rotating coin transport disk 32, a step portion 32d (step member), a belt 33, and a belt drive mechanism 34, and the coin transport disk 32 is in contact with the coin transport disk 32. The coin is transported toward the belt, and the step portion 32d is disposed on the upper side of the coin transport disc 32 and has an outer peripheral portion 32e that is a portion facing the outer periphery 32b of the coin transport disc 32. The distance between the upper end and the upper surface of the coin transport disk 32 is smaller than the minimum thickness of the coins to be processed that are to be processed by the coin feeding device 30, and the belt drive mechanism 34 moves the belt 33 to the coin transport disk 32. The belt 33 is made to travel toward the inside of the coin transport disk 32 along the upper surface of the belt, and the belt 33 comes into contact with the coin on the coin transport disk 32 and elastically deforms to move the coin toward the step portion 32d. .
 このような硬貨繰出装置30によれば、ベルト33が硬貨を段差部位32dに向けて移動させるので、重送硬貨を確実に捌くことができる。説明すると、複数の硬貨が重なった状態でベルト33に向けて搬送された場合、ベルト33が重なった硬貨を段差部位32dに向けて移動させる。すると、硬貨搬送円盤32に接触している最下層の硬貨は段差部位32dに接触した状態となるが、他の硬貨は段差部位32dに接触し得ず、段差部位32dを越えて押し出されることになる。このようにして硬貨搬送円盤32の上には1層の硬貨が整列することとなる。また、小径硬貨が硬貨搬送円盤32の径方向に並んでいる場合でも、ベルト33の押圧作用により繰出し方向に一列に整列することとなる。そしてベルト33は、硬貨搬送円盤32の上の硬貨に接触して弾性変形し、上述の重送硬貨の捌きを行うので、硬貨繰出装置30は様々な厚さの硬貨に対応することができる。また、ベルト33が硬貨を段差部位32dに向けて移動させることにより、硬貨を確実に一列状態にして繰出すことができる。すなわち上記の構成によれば、処理を高速化した場合でも重送硬貨や小径硬貨の捌きを確実に行うことができ、硬貨を1枚ずつ繰出すことができる硬貨繰出装置30を提供することが可能となる。 According to the coin feeding device 30 as described above, the belt 33 moves the coin toward the stepped portion 32d, so that it is possible to reliably throw the double feed coin. If it demonstrates, when it conveys toward the belt 33 in the state in which the some coin overlapped, the coin with which the belt 33 overlapped will be moved toward the level | step difference site | part 32d. Then, the lowest layer coin in contact with the coin transport disk 32 is in contact with the stepped portion 32d, but other coins cannot contact the stepped portion 32d and are pushed over the stepped portion 32d. Become. In this way, one layer of coins is aligned on the coin transport disk 32. Even when the small-diameter coins are arranged in the radial direction of the coin transport disk 32, the coins are aligned in a line in the feeding direction by the pressing action of the belt 33. And since the belt 33 contacts the coin on the coin conveyance disk 32, and elastically deforms and performs the above-mentioned double feeding coin, the coin feeding apparatus 30 can respond to coins of various thicknesses. Further, the belt 33 moves the coins toward the stepped portion 32d, so that the coins can be reliably fed out in a line. That is, according to the above configuration, it is possible to provide a coin feeding device 30 that can reliably carry out multi-feed coins and small-diameter coins even when processing is speeded up, and can feed coins one by one. It becomes possible.
 また本実施形態の硬貨繰出装置30では、ベルト33は、弾性変形した状態で硬貨搬送円盤32の上の硬貨を硬貨搬送円盤32に向けて押圧し、ベルト駆動機構34は、ベルト33を硬貨搬送円盤32の上から硬貨搬送円盤32の外へ走行させて、硬貨を硬貨搬送円盤32の外へ移動させるよう構成される。このため、弾性変形したベルト33が硬貨を押圧して姿勢を安定させ、その状態で硬貨繰出装置30から硬貨を繰り出すことができ、処理の高速化の点で有利である。 Further, in the coin feeding device 30 of the present embodiment, the belt 33 presses the coin on the coin transport disk 32 toward the coin transport disk 32 in an elastically deformed state, and the belt drive mechanism 34 transports the belt 33 to the coin. It is comprised so that it may run out of the coin conveyance disk 32 from the top of the disk 32, and a coin may be moved out of the coin conveyance disk 32. For this reason, the elastically deformed belt 33 presses the coin to stabilize the posture, and the coin can be fed from the coin feeding device 30 in this state, which is advantageous in terms of speeding up the processing.
 また本実施形態の硬貨繰出装置30は、硬貨搬送円盤32と、ベルト33の硬貨搬送円盤32の側の端部との間の距離は、硬貨繰出装置30が処理の対象とする処理対象硬貨の最小の厚さより小さくなるよう構成される。 Further, in the coin feeding device 30 of the present embodiment, the distance between the coin transport disk 32 and the end of the belt 33 on the coin transport disk 32 side is the processing target coin that the coin feeding device 30 is to process. It is configured to be smaller than the minimum thickness.
 また本実施形態の硬貨繰出装置30は、ベルト駆動機構34は、第1プーリー34aを有して構成され、ベルト33は第1プーリー34aに掛け回されており、第1プーリー34aの回転軸34bは、硬貨搬送円盤32の回転軸32aと略平行であり、ベルト33の幅方向の端部が硬貨搬送円盤32の上の硬貨と接触するよう構成される。 In the coin feeding device 30 of the present embodiment, the belt drive mechanism 34 includes a first pulley 34a, the belt 33 is wound around the first pulley 34a, and the rotation shaft 34b of the first pulley 34a. Is substantially parallel to the rotation shaft 32 a of the coin transport disk 32, and is configured such that the end of the belt 33 in the width direction comes into contact with coins on the coin transport disk 32.
 また本実施形態の硬貨繰出装置30は、ベルト33は、硬貨搬送円盤32の上の硬貨に接触した際、ベルト33の幅方向の端部が第1プーリー34aの内側に向かって弾性変形するよう構成される。 Further, in the coin feeding device 30 of the present embodiment, when the belt 33 contacts the coins on the coin transport disk 32, the end portion in the width direction of the belt 33 is elastically deformed toward the inside of the first pulley 34a. Composed.
 また本実施形態の硬貨繰出装置30は、ベルト33の厚さ方向についての弾性変形部位33bの曲げ剛性が、ベルト33の走行方向についての弾性変形部位33bの曲げ剛性よりも低いよう構成される。 Further, the coin feeding device 30 of the present embodiment is configured such that the bending rigidity of the elastic deformation portion 33b in the thickness direction of the belt 33 is lower than the bending rigidity of the elastic deformation portion 33b in the running direction of the belt 33.
 また本実施形態の硬貨繰出装置30は、弾性変形部位33bが、ベルト33の走行方向に沿って分割されているよう構成される。 Further, the coin feeding device 30 of the present embodiment is configured such that the elastic deformation portion 33b is divided along the running direction of the belt 33.
 また本実施形態の硬貨繰出装置30は、弾性変形部位33bが、ベルト33の走行方向に沿って離間して配置された複数の棒状部位を有して構成されているよう構成される。 Further, the coin feeding device 30 of the present embodiment is configured such that the elastically deformable portion 33b has a plurality of rod-like portions that are spaced apart along the running direction of the belt 33.
(第2実施形態)
 上述の実施形態では、カバー部材35が付勢機構35dを有して構成された。本実施形態に係る硬貨繰出装置30は、硬貨検出部を有し、カバー部材35が付勢機構35dに替えて押圧機構を有して構成される。詳しくは、カバー部材35は、押圧機構を介してベース部材31に取り付けられる。以下の第2実施形態の説明では、第1実施形態と同様の構成については同じ符号を付し、説明を省略する。
(Second Embodiment)
In the above-described embodiment, the cover member 35 has the urging mechanism 35d. The coin feeding device 30 according to the present embodiment includes a coin detection unit, and the cover member 35 is configured to include a pressing mechanism instead of the urging mechanism 35d. Specifically, the cover member 35 is attached to the base member 31 via a pressing mechanism. In the following description of the second embodiment, components similar to those in the first embodiment are denoted by the same reference numerals, and description thereof is omitted.
 硬貨検出部は、硬貨搬送円盤32の上の硬貨の量を検出するセンサであって、例えば投光器と光センサとにより構成され、硬貨搬送円盤32の上の硬貨の量に応じた出力を制御部80へ送信する。 The coin detection unit is a sensor that detects the amount of coins on the coin transport disk 32, and includes, for example, a projector and an optical sensor, and outputs a control corresponding to the amount of coins on the coin transport disk 32 to the control unit. To 80.
 押圧機構は、硬貨検出部が検出した硬貨搬送円盤32の上の硬貨の量に基づいて、押圧部材35cを移動させて押圧部材35cと硬貨搬送円盤32との距離を変化させる。具体的には、押圧機構は、例えばモータ等のアクチュエータを有して構成され、制御部80からの信号に応じてカバー部材35を硬貨搬送円盤32に対して移動させて、押圧部材35cと硬貨搬送円盤32との距離を変化させる。 The pressing mechanism moves the pressing member 35c and changes the distance between the pressing member 35c and the coin transport disk 32 based on the amount of coins on the coin transport disk 32 detected by the coin detection unit. Specifically, the pressing mechanism includes an actuator such as a motor, for example, and moves the cover member 35 with respect to the coin transport disk 32 in accordance with a signal from the control unit 80, so that the pressing member 35c and the coin are moved. The distance from the transport disk 32 is changed.
 制御部80は、硬貨検出部が検出した硬貨搬送円盤32の上の硬貨の量に基づいて、押圧機構に対してカバー部材35を移動させる指示を行う。例えば、硬貨の量が多いほど、カバー部材35と押圧部材35cとの距離を大きくし、硬貨の量が少ないほど、カバー部材35と押圧部材35cとの距離を小さくする。例えば、硬貨の量が所定の閾値よりも少ない場合に、カバー部材35と押圧部材35cとの距離を、硬貨繰出装置30の処理対象硬貨の最小の厚さよりも小さくなるよう制御する。 The control unit 80 instructs the pressing mechanism to move the cover member 35 based on the amount of coins on the coin transport disk 32 detected by the coin detection unit. For example, the distance between the cover member 35 and the pressing member 35c is increased as the amount of coins is increased, and the distance between the cover member 35 and the pressing member 35c is decreased as the amount of coins is decreased. For example, when the amount of coins is smaller than a predetermined threshold, the distance between the cover member 35 and the pressing member 35c is controlled to be smaller than the minimum thickness of the coins to be processed by the coin feeding device 30.
 すなわち本実施形態の硬貨繰出装置30は、押圧部材35cと、硬貨検出部と、押圧機構とを有し、押圧部材35cは、硬貨搬送円盤32の摩擦搬送部位32cに面する姿勢にて、硬貨搬送円盤32の下部領域において硬貨搬送円盤32の上側に配置され、硬貨検出部は、硬貨搬送円盤32の上の硬貨の量を検出し、押圧機構は、硬貨検出部が検出した硬貨の量に基づいて、押圧部材35cを移動させて押圧部材35cと硬貨搬送円盤32との距離を変化させ、押圧部材35cが硬貨を硬貨搬送円盤32に押し付けるよう構成される。 That is, the coin feeding device 30 of the present embodiment includes a pressing member 35c, a coin detecting unit, and a pressing mechanism, and the pressing member 35c is a coin facing in a posture facing the friction transfer portion 32c of the coin transfer disk 32. In the lower region of the transport disk 32, the coin detection unit detects the amount of coins on the coin transport disk 32, and the pressing mechanism determines the amount of coins detected by the coin detection unit. Based on this, the pressing member 35c is moved to change the distance between the pressing member 35c and the coin transport disk 32, and the pressing member 35c is configured to press the coin against the coin transport disk 32.
 そうすると、押圧機構は、硬貨検出部が検出した硬貨の量に基づいて、押圧部材35cを移動させて押圧部材35cと硬貨搬送円盤32との距離を変化させ、押圧部材35cが硬貨を硬貨搬送円盤32に押し付けるので、硬貨搬送円盤32による硬貨の搬送力が増加するから、硬貨繰出装置30の処理を更に高速化することができる上に、硬貨残留の発生を抑制することができる。 Then, the pressing mechanism moves the pressing member 35c based on the amount of coins detected by the coin detection unit to change the distance between the pressing member 35c and the coin transport disk 32, and the pressing member 35c transfers the coins to the coin transport disk. Since the coin conveying force by the coin conveying disk 32 is increased, the processing of the coin feeding device 30 can be further speeded up, and the occurrence of remaining coins can be suppressed.
(第3実施形態)
 上述の実施形態では、ベルト33の弾性変形部位33bは、互いに離間した棒状の部位として形成された。ベルト33の形態としては、以下示すような異なる形態も可能である。なお以下の説明では、第1実施形態と同様の構成については同じ符号を付し、説明を省略する。
(Third embodiment)
In the above-described embodiment, the elastic deformation portion 33b of the belt 33 is formed as a bar-like portion that is separated from each other. As the form of the belt 33, the following different forms are possible. In the following description, the same components as those in the first embodiment are denoted by the same reference numerals, and description thereof is omitted.
 本実施形態に係るベルト201は、図12に示すように、本体部位201aおよび弾性変形部位201bを有して構成される。弾性変形部位201bは、幅広部位201cおよび幅狭部位201dを有して構成される。幅広部位201cの幅(ベルト33の長手方向に沿った幅)は、幅狭部位201dの幅よりも大きい。本実施形態では、幅広部位201cと幅狭部位201dとが隣接した形態で、交互に配置される。幅広部位201cの長さと幅狭部位201dの長さは、同程度である。幅広部位201c(および幅狭部位201d)の長さ、すなわち弾性変形部位33bが本体部位33aから突出している長さは、硬貨繰出装置30が処理の対象とする処理対象硬貨の最大の厚さよりも大きい。 As shown in FIG. 12, the belt 201 according to the present embodiment includes a main body part 201a and an elastic deformation part 201b. The elastic deformation part 201b is configured to have a wide part 201c and a narrow part 201d. The width of the wide portion 201c (the width along the longitudinal direction of the belt 33) is larger than the width of the narrow portion 201d. In this embodiment, the wide site | part 201c and the narrow site | part 201d are arrange | positioned alternately with the form which adjoined. The length of the wide portion 201c and the length of the narrow portion 201d are approximately the same. The length of the wide part 201c (and the narrow part 201d), that is, the length by which the elastically deforming part 33b protrudes from the main body part 33a is larger than the maximum thickness of the coins to be processed that are processed by the coin feeding device 30. large.
 本実施形態では、幅広部位201cおよび幅狭部位201dの断面はいずれも長方形であり、断面の長方形の短辺がベルト33の厚み方向と一致し、断面の長方形の長辺がベルト33の長手方向と一致している。これによって、ベルト33の厚さ方向についての弾性変形部位33b(幅広部位201cおよび幅狭部位201d)の曲げ剛性が、ベルト33の長手方向(すなわちベルト33の走行方向)についての弾性変形部位33b(幅広部位201cおよび幅狭部位201d)の曲げ剛性よりも低くなっている。 In this embodiment, the cross sections of the wide portion 201 c and the narrow portion 201 d are both rectangular, the short sides of the cross section rectangle coincide with the thickness direction of the belt 33, and the long sides of the cross section rectangle are the longitudinal direction of the belt 33. Is consistent with As a result, the bending rigidity of the elastic deformation portion 33b (the wide portion 201c and the narrow portion 201d) in the thickness direction of the belt 33 is such that the elastic deformation portion 33b (in the longitudinal direction of the belt 33 (that is, the running direction of the belt 33)). The bending rigidity of the wide part 201c and the narrow part 201d) is lower.
 図12の硬貨C120の状態は、硬貨C120がベルト201、詳しくはベルト201の弾性変形部位201bを弾性変形させて、ベルト201と硬貨搬送円盤32との間に潜り込んだ状態を示している。このときベルト201の複数の弾性変形部位201bが、硬貨C120により、弾性変形部位201bの長手方向の中程で折れ曲がり、第1プーリー34aの内側に向かって弾性変形した状態となっている。 The state of the coin C120 in FIG. 12 shows a state where the coin C120 is elastically deformed by the belt 201, specifically, the elastic deformation portion 201b of the belt 201, and has entered between the belt 201 and the coin transport disk 32. At this time, the plurality of elastic deformation portions 201b of the belt 201 are bent in the middle in the longitudinal direction of the elastic deformation portion 201b by the coin C120, and are elastically deformed toward the inside of the first pulley 34a.
 図12の硬貨C121の状態は、硬貨C120よりも薄く小さい硬貨がベルト201と硬貨搬送円盤32との間に潜り込んだ状態を示している。このとき、6個の弾性変形部位201bが、硬貨C121により弾性変形している。そして硬貨C121は、弾性変形した弾性変形部位201bによって、硬貨搬送円盤32(摩擦搬送部位32c)に向けて押圧されている。 The state of the coin C121 in FIG. 12 shows a state in which a coin smaller and thinner than the coin C120 has entered between the belt 201 and the coin transport disk 32. At this time, the six elastic deformation parts 201b are elastically deformed by the coin C121. And the coin C121 is pressed toward the coin conveyance disk 32 (friction conveyance part 32c) by the elastically deformed elastic part 201b.
 図12の硬貨C122の状態は、硬貨C121よりも厚く大きい硬貨がベルト201と硬貨搬送円盤32との間に潜り込んだ状態を示している。このとき、11個の弾性変形部位201bが、硬貨C122により弾性変形している。そして硬貨C122は、弾性変形した弾性変形部位201bによって、ベース部材31に向けて押圧されている。 The state of the coin C122 in FIG. 12 shows a state in which a thicker and larger coin than the coin C121 has entered between the belt 201 and the coin transport disk 32. At this time, the eleven elastic deformation portions 201b are elastically deformed by the coin C122. The coin C122 is pressed toward the base member 31 by the elastically deformed elastic part 201b.
 ベルト201の弾性変形部位201bが硬貨C122によって変形している領域の長さ(ベルト201の走行方向に沿った長さ)は、硬貨C121によって変形している領域の長さよりも大きい。弾性変形部位201bの硬貨C122による変形量(例えば、折れ曲がった部分の長さ、第1プーリー34aの内側への変位量など)は、硬貨C121による変形量よりも大きい。このように、ベルト201(および弾性変形部位201b)は、接触する硬貨の大きさおよび厚さに応じて弾性変形する。 The length of the region where the elastic deformation portion 201b of the belt 201 is deformed by the coin C122 (the length along the traveling direction of the belt 201) is larger than the length of the region where the belt 201 is deformed. The amount of deformation of the elastic deformation portion 201b by the coin C122 (for example, the length of the bent portion, the amount of displacement to the inside of the first pulley 34a) is larger than the amount of deformation by the coin C121. As described above, the belt 201 (and the elastic deformation portion 201b) is elastically deformed according to the size and thickness of the coins to be contacted.
(第4実施形態)
 本実施形態に係るベルト301は、図13および図14に示すように、本体部位301aおよび弾性変形部位301bを有して構成される。弾性変形部位301bは、厚肉部位301cおよび薄肉部位301dを有して構成される。本実施形態に係る弾性変形部位301bは、第1実施形態および第2実施形態と異なり、ベルト301の長手方向に沿って離間・分離せず連続した部材として形成されている。
(Fourth embodiment)
As shown in FIGS. 13 and 14, the belt 301 according to the present embodiment includes a main body part 301 a and an elastic deformation part 301 b. The elastic deformation part 301b is configured to have a thick part 301c and a thin part 301d. Unlike the first and second embodiments, the elastically deformable portion 301b according to the present embodiment is formed as a continuous member that is not separated or separated along the longitudinal direction of the belt 301.
 厚肉部位301cの幅(ベルト33の長手方向に沿った幅)は、薄肉部位301dの幅よりも大きい。本実施形態では、厚肉部位301cと薄肉部位301dとが隣接した形態で、交互に配置される。厚肉部位301cの長さと薄肉部位301dの長さは、同程度である。厚肉部位301c(および薄肉部位301d)の長さ、すなわち弾性変形部位33bが本体部位33aから突出している長さは、硬貨繰出装置30が処理の対象とする処理対象硬貨の最大の厚さよりも大きい。 The width of the thick portion 301c (the width along the longitudinal direction of the belt 33) is larger than the width of the thin portion 301d. In this embodiment, the thick part 301c and the thin part 301d are alternately arranged in a form adjacent to each other. The length of the thick part 301c and the length of the thin part 301d are approximately the same. The length of the thick portion 301c (and the thin portion 301d), that is, the length by which the elastic deformation portion 33b protrudes from the main body portion 33a is larger than the maximum thickness of the processing target coin that is processed by the coin feeding device 30. large.
 本実施形態では、厚肉部位301cの厚さは、薄肉部位301dの厚さよりも大きい。
ベルト33の厚さ方向についての弾性変形部位33b(厚肉部位301cおよび薄肉部位301d)の曲げ剛性は、ベルト33の長手方向(すなわちベルト33の走行方向)についての弾性変形部位33b(厚肉部位301cおよび薄肉部位301d)の曲げ剛性よりも低くなっている。
In this embodiment, the thickness of the thick part 301c is larger than the thickness of the thin part 301d.
The bending rigidity of the elastic deformation portion 33b (thick portion 301c and thin portion 301d) in the thickness direction of the belt 33 is the elastic deformation portion 33b (thick portion) in the longitudinal direction of the belt 33 (that is, the running direction of the belt 33). It is lower than the bending rigidity of 301c and thin part 301d).
 図14の硬貨C140の状態は、硬貨C140がベルト301、詳しくはベルト301の弾性変形部位301bを弾性変形させて、ベルト301と硬貨搬送円盤32との間に潜り込んだ状態を示している。このときベルト301の弾性変形部位301bが、硬貨C140により、弾性変形部位301bの長手方向の中程で折れ曲がり、第1プーリー34aの内側に向かって弾性変形した状態となっている。 The state of the coin C140 in FIG. 14 shows a state in which the coin C140 has elastically deformed the belt 301, specifically, the elastic deformation portion 301b of the belt 301, and has entered between the belt 301 and the coin transport disk 32. At this time, the elastic deformation portion 301b of the belt 301 is bent in the middle in the longitudinal direction of the elastic deformation portion 301b by the coin C140, and is elastically deformed toward the inside of the first pulley 34a.
 図14の硬貨C141の状態は、硬貨C140よりも薄く小さい硬貨がベルト301と硬貨搬送円盤32との間に潜り込んだ状態を示している。このとき、硬貨C141は、弾性変形した弾性変形部位301bによって、硬貨搬送円盤32(摩擦搬送部位32c)に向けて押圧されている。 14 shows a state in which a coin smaller and thinner than the coin C140 has entered between the belt 301 and the coin transport disk 32. The state of the coin C141 in FIG. At this time, the coin C141 is pressed toward the coin transport disc 32 (friction transport part 32c) by the elastically deformed elastic part 301b.
 図14の硬貨C142の状態は、硬貨C141よりも厚く大きい硬貨がベルト301と硬貨搬送円盤32との間に潜り込んだ状態を示している。このとき、硬貨C142は、弾性変形した弾性変形部位301bによって、ベース部材31に向けて押圧されている。 The state of the coin C142 in FIG. 14 shows a state in which a thicker and larger coin than the coin C141 has entered between the belt 301 and the coin transport disk 32. At this time, the coin C142 is pressed toward the base member 31 by the elastically deformed elastic portion 301b.
 ベルト301の弾性変形部位301bが硬貨C142によって変形している領域の長さ(ベルト301の走行方向に沿った長さ)は、硬貨C141によって変形している領域の長さよりも大きい。弾性変形部位301bの硬貨C142による変形量(例えば、折れ曲がった部分の長さ、第1プーリー34aの内側への変位量など)は、硬貨C141による変形量よりも大きい。このように、ベルト301(および弾性変形部位301b)は、接触する硬貨の大きさおよび厚さに応じて弾性変形する。 The length of the region where the elastic deformation portion 301b of the belt 301 is deformed by the coin C142 (the length along the traveling direction of the belt 301) is larger than the length of the region deformed by the coin C141. The amount of deformation of the elastic deformation portion 301b by the coin C142 (for example, the length of the bent portion, the amount of displacement to the inside of the first pulley 34a, etc.) is larger than the amount of deformation by the coin C141. As described above, the belt 301 (and the elastic deformation portion 301b) is elastically deformed according to the size and thickness of the coins to be contacted.
(第5実施形態)
 上述の実施形態では、硬貨搬送円盤32に固定された段差部位32dが段差部材に相当した。段差部材は、硬貨繰出装置30に対して固定された部材であってもいい。すなわち段差部材は、上述の実施形態のように硬貨搬送円盤32と共に回転する形態ではなく、硬貨繰出装置30に対して停止した部材であってもよい。
(Fifth embodiment)
In the above-described embodiment, the step portion 32d fixed to the coin transport disk 32 corresponds to the step member. The step member may be a member fixed to the coin feeding device 30. That is, the step member is not a form that rotates together with the coin transport disk 32 as in the above-described embodiment, but may be a member that is stopped with respect to the coin feeding device 30.
 また上述の実施形態では、摩擦搬送部位32cが、硬貨搬送円盤32の上側の面において、硬貨搬送円盤32の外周32bに沿って形成され、当該摩擦搬送部位32cに接触した硬貨を、当該硬貨との摩擦力により硬貨搬送円盤32の上部領域に搬送するよう構成された。すなわち上述の実施形態では、硬貨搬送円盤32はいわゆる摩擦方式で硬貨を搬送した。硬貨搬送円盤32に突起部位を設け、この突起部位に硬貨を引っ掛けて搬送する、いわゆる突起方式を用いることも可能である。 Moreover, in the above-mentioned embodiment, the friction conveyance site | part 32c is formed in the upper surface of the coin conveyance disk 32 along the outer periphery 32b of the coin conveyance disk 32, and the coin which contacted the said friction conveyance site | part 32c is made into the said coin. It was comprised so that it might convey to the upper area | region of the coin conveyance disk 32 with the frictional force of. That is, in the above-described embodiment, the coin transport disk 32 transports coins by a so-called friction method. It is also possible to use a so-called projection system in which a projection part is provided on the coin transport disc 32 and a coin is hooked and conveyed on this projection part.
 本実施形態の硬貨繰出装置30は、図15に示すように、硬貨搬送円盤401および段差部材402を有して構成される。 The coin feeding device 30 of this embodiment is configured to include a coin transport disc 401 and a step member 402 as shown in FIG.
 硬貨搬送円盤401は、鉛直方向に対して傾斜した姿勢にて、回転軸401aの回りに回転する円盤であって、硬貨貯留空間36に貯留された硬貨を硬貨搬送円盤401の下部領域から上部領域へ、すなわちベルト33へ向けて搬送する。硬貨搬送円盤401の上側の面には、図15に示すように、複数の突起部位401cが形成されている。これらの突起部位401cは、硬貨搬送円盤401の外周に沿って等間隔で設けられている。そして、各突起部位401cが硬貨搬送円盤401の表面上で硬貨を引っ掛けることにより、硬貨搬送円盤401の下部領域にある硬貨を当該硬貨搬送円盤401の回転によって上部領域に搬送するようになっている。 The coin transport disc 401 is a disc that rotates around the rotation shaft 401 a in a posture inclined with respect to the vertical direction, and the coins stored in the coin storage space 36 are transferred from the lower region to the upper region of the coin transport disc 401. In other words, it is conveyed toward the belt 33. As shown in FIG. 15, a plurality of protruding portions 401 c are formed on the upper surface of the coin transport disc 401. These protruding portions 401 c are provided at equal intervals along the outer periphery of the coin transport disc 401. And each protrusion part 401c catches a coin on the surface of the coin conveyance disk 401, The coin in the lower area | region of the coin conveyance disk 401 is conveyed to an upper area | region by the rotation of the said coin conveyance disk 401. FIG. .
 段差部材402は、硬貨繰出装置30に対して位置固定で設けられた部材であって、硬貨搬送円盤401の上側の面とわずかな間隔を隔てて、硬貨搬送円盤401の突起部位401cよりも内側に配置されている。段差部材402と硬貨搬送円盤401との間隔は、硬貨繰出装置30の処理対象硬貨の最小の厚さよりも小さい。 The step member 402 is a member provided at a fixed position with respect to the coin feeding device 30 and is located on the inner side of the protruding portion 401c of the coin transport disc 401 with a slight gap from the upper surface of the coin transport disc 401. Is arranged. The distance between the step member 402 and the coin transport disc 401 is smaller than the minimum thickness of the coins to be processed by the coin feeding device 30.
 段差部材402は、外周部位402a、傾斜部位402bおよびガイド部位402cを有して構成される。外周部位402aは、硬貨搬送円盤401の外周に面する部位である。本実施形態では、段差部材402の外周近傍に傾斜部位402bが形成されており(図15参照)、段差部材402の周囲はいわゆるテーパ状となっている。段差部材402の外周部位402aの上端と、硬貨搬送円盤401の上側の面との距離は、硬貨繰出装置30が処理の対象とする処理対象硬貨の最小の厚さより小さい。そうすると、処理対象硬貨のうち厚さが最小の硬貨が2枚、硬貨搬送円盤401の上で重なって搬送され、段差部材402に接触した場合には、下側の硬貨すなわち硬貨搬送円盤401に接触している硬貨のみが段差部材402に当接し、他方の硬貨(硬貨の上に重なっている硬貨)は、段差部材402に接触し得ない。これにより、重送硬貨の捌きを適切に行うことが可能となる。 The step member 402 includes an outer peripheral part 402a, an inclined part 402b, and a guide part 402c. The outer peripheral part 402 a is a part facing the outer periphery of the coin transport disc 401. In the present embodiment, an inclined portion 402b is formed near the outer periphery of the step member 402 (see FIG. 15), and the periphery of the step member 402 has a so-called taper shape. The distance between the upper end of the outer peripheral portion 402a of the step member 402 and the upper surface of the coin transport disc 401 is smaller than the minimum thickness of the processing target coin that is processed by the coin feeding device 30. If it does so, two coins with the smallest thickness among the coins to be processed are transported on the coin transport disc 401 and overlapped with each other, and when contacting the step member 402, the lower coin, that is, the coin transport disc 401 is contacted. Only the coins that are in contact with the step member 402, and the other coins (coins that overlap the coins) cannot contact the step member 402. Thereby, it becomes possible to carry out the multi-feed coin appropriately.
 図15を参照して、本実施形態の硬貨繰出装置30での硬貨の搬送および重送硬貨の捌きについて説明する。本実施形態の硬貨繰出装置30では上述の通り、硬貨は、硬貨搬送円盤401の突起部位401cに引っ掛けられて搬送される。硬貨搬送円盤401に接触している硬貨は、硬貨C150のように、段差部材402の外周部位402aと、硬貨搬送円盤401の突起部位401cとに接触した状態で搬送され、ベルト33に接近する。 With reference to FIG. 15, the conveyance of coins and the handling of double-fed coins in the coin feeding device 30 of the present embodiment will be described. As described above, in the coin feeding device 30 of the present embodiment, the coin is hooked on the protruding portion 401c of the coin transport disc 401 and transported. Coins that are in contact with the coin transport disc 401 are transported in contact with the outer peripheral portion 402 a of the step member 402 and the protruding portion 401 c of the coin transport disc 401, as in the case of the coin C 150, and approach the belt 33.
 ベルト33に接触した硬貨(硬貨C151)は、外周部位402aと突起部位401cとに押されて、ベルト33の弾性変形部位33bに接触する。すると硬貨C151に接触して押されたベルト33の幅方向の端部(弾性変形部位33b)は、第1プーリー34aの内側へ向かって弾性変形する。そして硬貨C151は、ベルト33と硬貨搬送円盤401との間に潜り込む。 The coin (coin C151) that has contacted the belt 33 is pushed by the outer peripheral portion 402a and the protruding portion 401c and contacts the elastically deformable portion 33b of the belt 33. Then, the end portion (elastic deformation portion 33b) in the width direction of the belt 33 pressed in contact with the coin C151 is elastically deformed toward the inside of the first pulley 34a. Then, the coin C151 enters between the belt 33 and the coin transport disc 401.
 一方、硬貨C152は硬貨C151と重なっていることから、段差部材402の外周部位402aと接触しない状態でベルト33と接触する。そうすると硬貨C152は、ベルト33の弾性変形部位33bを変形させることができず、ベルト33の下に潜り込むことができず、ベルト33に押されて下方に落下する。ベルト33の下に潜り込んだ硬貨C151、C153は、段差部材402のガイド部位402cおよびベルト33に導かれて、入金搬送部20へと搬送される。このようにして硬貨繰出装置30のベルト33にて重送硬貨の捌きが行われ、入金搬送部20への一層一列状態での繰り出しが実現される。 On the other hand, since the coin C152 overlaps with the coin C151, the coin C152 contacts the belt 33 without contacting the outer peripheral portion 402a of the step member 402. Then, the coin C152 cannot deform the elastic deformation portion 33b of the belt 33, cannot enter under the belt 33, is pushed by the belt 33, and falls downward. The coins C151 and C153 that have entered under the belt 33 are guided to the guide portion 402c of the step member 402 and the belt 33, and are conveyed to the deposit conveyance unit 20. In this way, the multi-feed coins are rolled up by the belt 33 of the coin feeding device 30, and the feeding in the one-line state to the deposit conveyance unit 20 is realized.
 なお、硬貨搬送円盤401の突起部位401cの高さは、硬貨繰出装置30の処理対象硬貨の最小の厚さより小さくすると好ましい。硬貨搬送円盤401と、ベルト33の硬貨搬送円盤401側の端部(弾性変形部位33bの先端)との距離は、硬貨繰出装置30の処理対象硬貨の最小の厚さより小さくすると好ましい。そして硬貨搬送円盤401の突起部位401cと、ベルト33の弾性変形部位33bとが接触しないように硬貨繰出装置30を構成すると好ましい。 In addition, it is preferable that the height of the protruding portion 401c of the coin transport disc 401 is smaller than the minimum thickness of the coin to be processed by the coin feeding device 30. The distance between the coin transport disc 401 and the end of the belt 33 on the coin transport disc 401 side (the tip of the elastic deformation portion 33b) is preferably smaller than the minimum thickness of the coins to be processed by the coin feeding device 30. The coin feeding device 30 is preferably configured such that the protruding portion 401c of the coin transport disc 401 and the elastically deforming portion 33b of the belt 33 are not in contact with each other.
(他の実施形態)
(1)ベルト33(弾性部材)は、上述の実施形態のように、本体部位33aと弾性変形部位33bとを一体に形成してもよいし、両者を別の部材として形成し、弾性変形部位33bを本体部位33aに取り付けてもよい。ベルト33は、ゴムや樹脂等の弾性を有する材料で形成してもよいし、弾性を有さない(あるいは弾性の小さい)部品をヒンジや弾性部材等で互いに接続して構成してもよい。
(Other embodiments)
(1) The belt 33 (elastic member) may be formed integrally with the main body portion 33a and the elastic deformation portion 33b as in the above-described embodiment, or may be formed as separate members, and the elastic deformation portion. You may attach 33b to the main-body site | part 33a. The belt 33 may be formed of an elastic material such as rubber or resin, or may be configured by connecting non-elastic parts (or low elasticity) to each other by a hinge or an elastic member.
(2)上述の実施形態では、弾性変形部位33bは互いに離間した棒状の部位として形成された。弾性変形部位33bの断面は、円形や楕円形とすることも可能である。弾性変形部位33bの間隔は任意に変更可能であり、複数の弾性変形部位33bが隣接した形態も可能である。また、弾性変形部位33bを、ベルト33の長手方向に連続した形態とすることも可能である。例えば弾性変形部位33bを、本体部位33aよりも薄いフィン状としたり、厚さが大きい部位と小さい部位とが交互に配置された形態することも可能である。 (2) In the above-described embodiment, the elastic deformation portion 33b is formed as a bar-like portion that is separated from each other. The cross section of the elastic deformation portion 33b can be circular or elliptical. The interval between the elastic deformation portions 33b can be arbitrarily changed, and a configuration in which a plurality of elastic deformation portions 33b are adjacent to each other is also possible. In addition, the elastic deformation portion 33 b can be configured to be continuous in the longitudinal direction of the belt 33. For example, the elastically deformable portion 33b can be formed in a fin shape thinner than the main body portion 33a, or a portion in which a portion having a large thickness and a portion having a small thickness are alternately arranged.
(3)上述の実施形態では、第1プーリー34aと第2プーリー34eとの間に掛け回されたベルト33が弾性部材に相当した。弾性部材としてはベルト状のものに限られず、摩擦搬送部位32cの上の硬貨に接触して弾性変形し、硬貨を段差部位32dに向けて移動させることが可能なものであればよい。例えば、ヘラ状の弾性部材が移動機構により移動して、摩擦搬送部位32cの上の硬貨に接触して弾性変形し、硬貨を段差部位32dに向けて移動させるよう構成してもよい。 (3) In the above-described embodiment, the belt 33 wound between the first pulley 34a and the second pulley 34e corresponds to the elastic member. The elastic member is not limited to a belt-like member, and any elastic member may be used as long as it can be elastically deformed by contact with the coin on the friction conveyance portion 32c and move the coin toward the step portion 32d. For example, a spatula-like elastic member may be moved by a moving mechanism, contacted with a coin on the friction conveyance portion 32c and elastically deformed, and the coin may be moved toward the step portion 32d.
(4)上述の実施形態では、押圧部材35cがカバー部材35に取り付けられた。これを改変し、カバー部材35が押圧部材35cを兼ねてもよい。すなわち、カバー部材35における摩擦搬送部位32cに面する部位が、付勢機構35dまたは押圧機構によって、硬貨を硬貨搬送円盤32に押し付けるよう構成してもよい。 (4) In the above-described embodiment, the pressing member 35 c is attached to the cover member 35. By modifying this, the cover member 35 may also serve as the pressing member 35c. In other words, the portion of the cover member 35 facing the friction conveyance portion 32c may be configured to press the coin against the coin conveyance disk 32 by the urging mechanism 35d or the pressing mechanism.
(5)上述の実施形態では、カバー部材35に開閉部位35aが設けられ、硬貨貯留空間36からの異物の排出が行われた。開閉部位35aの大きさは任意に変更可能である。また、カバー部材35全体が開閉部位35aを兼ねてもよい。すなわち、カバー部材35が硬貨貯留空間36に対して移動して(開閉して)、硬貨貯留空間36の異物を排出するよう構成してもよい。 (5) In the above-described embodiment, the cover member 35 is provided with the opening / closing part 35 a, and the foreign matter is discharged from the coin storage space 36. The size of the opening / closing part 35a can be arbitrarily changed. The entire cover member 35 may also serve as the opening / closing part 35a. That is, the cover member 35 may be configured to move (open and close) with respect to the coin storage space 36 and discharge foreign matter in the coin storage space 36.
(6)上述の実施形態では段差部位32d(段差部材)は、その外周(外周部位32e)が円弧形状に形成された。段差部位32dの外周に凹凸を形成してもよい。例えば段差部位32dの外周に、頂角が鈍角の山型の凸部を形成してもよい。これにより、硬貨を硬貨搬送円盤32の回転方向に移動させる搬送力が増加する。 (6) In the above-described embodiment, the stepped portion 32d (stepped member) has an outer periphery (outer peripheral portion 32e) formed in an arc shape. Concavities and convexities may be formed on the outer periphery of the stepped portion 32d. For example, a mountain-shaped convex portion having an obtuse apex angle may be formed on the outer periphery of the stepped portion 32d. Thereby, the conveyance force which moves a coin to the rotation direction of the coin conveyance disk 32 increases.
(7)上述の実施形態では、硬貨搬送円盤32(硬貨搬送円盤401)は、鉛直方向に対して傾斜した姿勢にて配置された。硬貨搬送円盤を水平に配置することも可能である。 (7) In the above-described embodiment, the coin transport disk 32 (coin transport disk 401) is arranged in a posture inclined with respect to the vertical direction. It is also possible to arrange the coin transport disk horizontally.
(8)硬貨繰出装置30は、上述した硬貨入出金機10の他、様々な装置に適用可能である。例えば、ATM、通貨処理装置、つり銭機などの硬貨を処理する装置や、遊技機等に用いられるメダルを処理する装置(メダル計数機等)に適用可能である。 (8) The coin feeding device 30 can be applied to various devices in addition to the coin depositing and dispensing machine 10 described above. For example, the present invention can be applied to a device for processing coins such as an ATM, a currency processing device, a change machine, or a device for processing medals used in a gaming machine (medal counting machine or the like).
 また、上述の実施形態で図示した各構成は機能概略的なものであり、必ずしも物理的に図示の構成をされていることを要しない。すなわち、各装置の分散・統合の形態は図示のものに限られず、その全部又は一部を各種の負荷や使用状況などに応じて、任意の単位で機能的又は物理的に分散・統合して構成することができる。 Further, each configuration illustrated in the above-described embodiment is functionally schematic and does not necessarily need to be physically configured as illustrated. That is, the form of distribution / integration of each device is not limited to that shown in the figure, and all or a part thereof may be functionally or physically distributed / integrated in an arbitrary unit according to various loads or usage conditions. Can be configured.
 以上のように、本発明に係る硬貨繰出装置は、硬貨の繰出効率を高めて処理を高速化し、異物の排除能力を高め、処理対象硬貨を多様化することができる。 As described above, the coin feeding device according to the present invention can increase the feeding efficiency of coins, speed up the processing, increase the foreign matter removal capability, and diversify the coins to be processed.
10   :硬貨入出金機
12   :筐体
14   :硬貨受入口
20   :入金搬送部
20a  :上部搬送部分
20b  :折り返し搬送部分
20c  :下部搬送部分
20d  :第1搬送部分
20e  :第2搬送部分
21a  :搬送路
21c  :搬送路側面
21d  :搬送路底面
21e  :搬送ベルト
21f  :搬送ベルト
22   :識別部
24、24a~h:選別部
24i  :開口
25   :開口
26   :シュート
27   :分岐部材
30   :硬貨繰出装置
31   :ベース部材
31a  :周壁
32   :硬貨搬送円盤
32a  :回転軸
32b  :外周
32c  :摩擦搬送部位
32d  :段差部位(段差部材)
32e  :外周部位
32f  :傾斜部位
32p  :回転円盤駆動部
33   :ベルト(弾性部材)
33a  :本体部位
33b  :弾性変形部位
34   :ベルト駆動機構(移動機構)
34a  :第1プーリー
34b  :回転軸
34c  :上面押圧プーリー
34d  :側面押圧プーリー
34e  :第2プーリー
34p  :ベルト駆動部
35   :カバー部材
35a  :開閉部位
35b  :軸部材
35c  :押圧部材
35d  :付勢機構
36   :硬貨貯留空間
37   :外周ベルト
37a  :外周プーリー
38   :案内部材
39   :レバー部材
39a  :軸
39b  :バネ
40   :一時保留部
40b  :硬貨フル検出部
40p  :一時保留部駆動部
42   :枠体
43   :底板
46   :シュート
47   :リジェクト部
48   :返却箱
49   :オーバーフローボックス
50   :収納繰出装置
51   :繰出部
52   :回転円盤
53   :硬貨収納空間
54   :カバー部材
60   :搬送部
62   :搬送ベルト
68   :シュート
70   :回収ボックス
72   :ドロア
78   :装着状態検出部
80   :制御部
82   :報知部
84   :操作部
86   :記憶部
88   :インターフェース
90   :不良検出部
201  :ベルト
201a :本体部位
201b :弾性変形部位
201c :幅広部位
201d :幅狭部位
301  :ベルト
301a :本体部位
301b :弾性変形部位
301c :厚肉部位
301d :薄肉部位 
401  :硬貨搬送円盤
401a :回転軸
401c :突起部位
402  :段差部材
402a :外周部位
402b :傾斜部位
402c :ガイド部位
C30等 :硬貨
D1   :距離
D2   :距離
E    :異物
DESCRIPTION OF SYMBOLS 10: Coin depositing / withdrawing machine 12: Case 14: Coin receiving port 20: Deposit conveyance part 20a: Upper conveyance part 20b: Folding conveyance part 20c: Lower conveyance part 20d: First conveyance part 20e: Second conveyance part 21a: Conveyance Path 21c: transport path side surface 21d: transport path bottom surface 21e: transport belt 21f: transport belt 22: identification section 24, 24a to h: sorting section 24i: opening 25: opening 26: chute 27: branching member 30: coin feeding device 31 : Base member 31a: peripheral wall 32: coin transfer disk 32a: rotating shaft 32b: outer periphery 32c: friction transfer part 32d: step part (step member)
32e: outer peripheral part 32f: inclined part 32p: rotating disk drive unit 33: belt (elastic member)
33a: body part 33b: elastic deformation part 34: belt drive mechanism (moving mechanism)
34a: first pulley 34b: rotating shaft 34c: upper surface pressing pulley 34d: side surface pressing pulley 34e: second pulley 34p: belt driving unit 35: cover member 35a: opening / closing part 35b: shaft member 35c: pressing member 35d: urging mechanism 36: Coin storage space 37: Outer belt 37a: Outer pulley 38: Guide member 39: Lever member 39a: Shaft 39b: Spring 40: Temporary holding unit 40b: Coin full detecting unit 40p: Temporary holding unit driving unit 42: Frame 43 : Bottom plate 46: Chute 47: Reject part 48: Return box 49: Overflow box 50: Storage and feeding device 51: Feeding part 52: Rotary disk 53: Coin storage space 54: Cover member 60: Conveying part 62: Conveying belt 68: Chute 70: Collection box 72 Drawer 78: Wearing state detection unit 80: Control unit 82: Notification unit 84: Operation unit 86: Storage unit 88: Interface 90: Defect detection unit 201: Belt 201a: Body part 201b: Elastic deformation part 201c: Wide part 201d: Width Narrow part 301: Belt 301a: Body part 301b: Elastic deformation part 301c: Thick part 301d: Thin part
401: Coin transport disk 401a: Rotating shaft 401c: Projection part 402: Step member 402a: Outer peripheral part 402b: Inclined part 402c: Guide part C30 etc .: Coin D1: Distance D2: Distance E: Foreign matter

Claims (19)

  1.  硬貨搬送円盤と、弾性部材と、移動機構とを有する硬貨繰出装置であって、
     前記硬貨搬送円盤は、摩擦搬送部位と、段差部位とを有し、鉛直方向に対して傾斜した姿勢で回転し、
     前記摩擦搬送部位は、前記硬貨搬送円盤の上側の面において、前記硬貨搬送円盤の外周に沿って形成され、当該摩擦搬送部位に接触した硬貨を、当該硬貨との摩擦力により前記硬貨搬送円盤の上部領域に搬送し、
     前記段差部位は、前記硬貨搬送円盤の上側の面において前記摩擦搬送部位の内側に形成された、前記摩擦搬送部位に対して突出した部位であり、前記硬貨搬送円盤の外周に面する部位である外周部位を有し、
     前記外周部位の上端と、前記摩擦搬送部位の上側の面との距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さく、
     前記移動機構は、前記弾性部材を、前記硬貨搬送円盤の上部領域において前記硬貨搬送円盤の上側の面に沿って前記硬貨搬送円盤の内側に向けて移動させ、
     前記弾性部材は、前記摩擦搬送部位の上の硬貨に接触して弾性変形し、硬貨を前記段差部位に向けて移動させる、硬貨繰出装置。
    A coin feeding device having a coin transport disk, an elastic member, and a moving mechanism,
    The coin transport disk has a friction transport part and a step part, and rotates in a posture inclined with respect to the vertical direction,
    The friction conveyance part is formed along the outer periphery of the coin conveyance disk on the upper surface of the coin conveyance disk, and the coin that has contacted the friction conveyance part is caused to be absorbed by the friction force of the coin with the coin conveyance disk. Transport to the upper area,
    The step portion is a portion that is formed on the inner surface of the friction conveyance portion on the upper surface of the coin conveyance disk and protrudes with respect to the friction conveyance portion, and is a portion that faces the outer periphery of the coin conveyance disk. Has an outer peripheral part,
    The distance between the upper end of the outer peripheral part and the upper surface of the friction conveyance part is smaller than the minimum thickness of the processing target coins to be processed by the coin feeding device,
    The moving mechanism moves the elastic member toward the inside of the coin transport disk along the upper surface of the coin transport disk in the upper region of the coin transport disk,
    The said elastic member contacts the coin on the said friction conveyance site | part, and elastically deforms, The coin feeding apparatus which moves a coin toward the said level | step difference site | part.
  2.  前記弾性部材は、弾性変形した状態で前記摩擦搬送部位の上の硬貨を前記硬貨搬送円盤に向けて押圧し、
     前記移動機構は、前記弾性部材を前記摩擦搬送部位の上から前記硬貨搬送円盤の外へ移動させて、硬貨を前記硬貨搬送円盤の外へ移動させる請求項1に記載の硬貨繰出装置。
    The elastic member presses the coin on the friction conveyance part toward the coin conveyance disk in an elastically deformed state,
    2. The coin feeding device according to claim 1, wherein the moving mechanism moves the elastic member from the top of the friction transfer part to the outside of the coin transfer disk and moves the coin to the outside of the coin transfer disk.
  3.  前記硬貨搬送円盤と、前記弾性部材の前記硬貨搬送円盤の側の端部との間の距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さい請求項1または2に記載の硬貨繰出装置。 The distance between the said coin conveyance disk and the edge part by the side of the said coin conveyance disk of the said elastic member is smaller than the minimum thickness of the process target coin which the said coin feeding apparatus is a process object. The coin feeding device described in 1.
  4.  前記移動機構は、プーリーを有して構成され、前記弾性部材は、前記プーリーに掛け回されたベルトであり、前記プーリーの回転軸は、前記硬貨搬送円盤の回転軸と略平行であり、前記ベルトの幅方向の端部が前記摩擦搬送部位の上の硬貨と接触する請求項1から3のいずれか1項に記載の硬貨繰出装置。 The moving mechanism includes a pulley, the elastic member is a belt wound around the pulley, and the rotation axis of the pulley is substantially parallel to the rotation axis of the coin transport disk, The coin feeding device according to any one of claims 1 to 3, wherein an end portion in a width direction of the belt is in contact with a coin on the friction conveyance portion.
  5.  レバー部材を有し、前記レバー部材は、前記弾性部材に対して、前記硬貨搬送円盤による硬貨の搬送方向の上流側に配置され、前記摩擦搬送部位の上の硬貨と接触して、硬貨を前記段差部位に向けて移動させる請求項1から4のいずれか1項に記載の硬貨繰出装置。 A lever member, and the lever member is disposed upstream of the elastic member in the coin transport direction by the coin transport disk, contacts the coin on the friction transport portion, The coin feeding device according to any one of claims 1 to 4, wherein the coin feeding device is moved toward a stepped portion.
  6.  外周ベルトを有し、前記外周ベルトは、その搬送面が前記硬貨搬送円盤の外周に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤に隣接して配置され、前記硬貨搬送円盤の回転方向と同じ方向に移動し、前記摩擦搬送部位の上の硬貨と接触して前記硬貨搬送円盤による硬貨の搬送を補助する請求項1から5のいずれか1項に記載の硬貨繰出装置。 An outer peripheral belt, and the outer peripheral belt is disposed adjacent to the coin transport disc in a lower region of the coin transport disc in a posture in which the transport surface faces the outer periphery of the coin transport disc, and the coin transport The coin feeding device according to any one of claims 1 to 5, wherein the coin feeding device moves in the same direction as a rotation direction of the disk, and contacts a coin on the friction transfer portion to assist the coin transfer by the coin transfer disk. .
  7.  押圧部材と、付勢機構とを有し、前記押圧部材は、前記硬貨搬送円盤の前記摩擦搬送部位に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤の上側に配置され、前記付勢機構は、前記押圧部材を前記硬貨搬送円盤に向けて付勢して、前記押圧部材が硬貨を前記硬貨搬送円盤に押し付ける請求項1から6のいずれか1項に記載の硬貨繰出装置。 A pressing member; and an urging mechanism, wherein the pressing member is disposed on an upper side of the coin transport disk in a lower region of the coin transport disk in a posture facing the friction transport part of the coin transport disk. The coin urging mechanism according to any one of claims 1 to 6, wherein the urging mechanism urges the pressing member toward the coin conveyance disk, and the pressing member presses the coin against the coin conveyance disk. apparatus.
  8.  押圧部材と、硬貨検出部と、押圧機構とを有し、前記押圧部材は、前記硬貨搬送円盤の前記摩擦搬送部位に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤の上側に配置され、前記硬貨検出部は、前記硬貨搬送円盤の上の硬貨の量を検出し、前記押圧機構は、前記硬貨検出部が検出した硬貨の量に基づいて、前記押圧部材を移動させて前記押圧部材と前記硬貨搬送円盤との距離を変化させ、前記押圧部材が硬貨を前記硬貨搬送円盤に押し付ける請求項1から6のいずれか1項に記載の硬貨繰出装置。 A pressing member, a coin detector, and a pressing mechanism, wherein the pressing member faces the friction transfer portion of the coin transfer disk, and is arranged in a lower region of the coin transfer disk. It is arranged on the upper side, the coin detection unit detects the amount of coins on the coin transport disk, and the pressing mechanism moves the pressing member based on the amount of coins detected by the coin detection unit. The coin feeding device according to any one of claims 1 to 6, wherein a distance between the pressing member and the coin transport disk is changed, and the pressing member presses the coin against the coin transport disk.
  9.  カバー部材を有し、前記カバー部材は前記硬貨搬送円盤との間に硬貨を収容する硬貨貯留空間を形成し、前記カバー部材は前記硬貨貯留空間の異物を排出する開閉部位を有する請求項1から8のいずれか1項に記載の硬貨繰出装置。 A cover member is provided, the cover member forms a coin storage space for storing coins with the coin transport disk, and the cover member has an opening / closing part for discharging foreign matter in the coin storage space. 9. The coin feeding device according to any one of items 8.
  10.  硬貨搬送円盤と、外周ベルトとを有する硬貨繰出装置であって、
     前記硬貨搬送円盤は、摩擦搬送部位と、段差部位とを有し、鉛直方向に対して傾斜した姿勢で回転し、
     前記摩擦搬送部位は、前記硬貨搬送円盤の上側の面の外周に沿って形成され、当該摩擦搬送部位に接触した硬貨を、当該硬貨との摩擦力により前記硬貨搬送円盤の上部領域に搬送し、
     前記外周ベルトは、その搬送面が前記硬貨搬送円盤の外周に面する姿勢にて、前記硬貨搬送円盤の下部領域において前記硬貨搬送円盤に隣接して配置され、前記硬貨搬送円盤の回転方向と同じ方向に移動し、前記摩擦搬送部位の上の硬貨と接触して前記硬貨搬送円盤による硬貨の搬送を補助する、硬貨繰出装置。
    A coin feeding device having a coin transport disk and an outer peripheral belt,
    The coin transport disk has a friction transport part and a step part, and rotates in a posture inclined with respect to the vertical direction,
    The friction conveyance part is formed along the outer periphery of the upper surface of the coin conveyance disk, and conveys the coin that has contacted the friction conveyance part to the upper region of the coin conveyance disk by the frictional force with the coin,
    The outer peripheral belt is disposed adjacent to the coin transport disk in a lower region of the coin transport disk in a posture in which the transport surface faces the outer periphery of the coin transport disk, and is the same as the rotation direction of the coin transport disk. A coin feeding device that moves in the direction and contacts the coins on the friction conveyance part to assist the coin conveyance by the coin conveyance disk.
  11.  回転する硬貨搬送円盤と、段差部材と、ベルトと、ベルト駆動機構とを有する硬貨繰出装置であって、
     前記硬貨搬送円盤は、接触した硬貨を前記ベルトへ向けて搬送し、
     前記段差部材は、前記硬貨搬送円盤の上側に配置されており、前記硬貨搬送円盤の外周に面する部位である外周部位を有し、
     前記外周部位の上端と、前記硬貨搬送円盤の上側の面との距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さく、
     前記ベルト駆動機構は、前記ベルトを、前記硬貨搬送円盤の上側の面に沿って前記硬貨搬送円盤の内側に向けて走行させ、
     前記ベルトは、前記硬貨搬送円盤の上の硬貨に接触して弾性変形し、当該硬貨を前記段差部材に向けて移動させる、硬貨繰出装置。
    A coin feeding device having a rotating coin transport disk, a step member, a belt, and a belt drive mechanism,
    The coin transport disk transports the coins in contact toward the belt,
    The step member is arranged on the upper side of the coin transport disk, and has an outer peripheral part that is a part facing the outer periphery of the coin transport disk,
    The distance between the upper end of the outer peripheral portion and the upper surface of the coin transport disk is smaller than the minimum thickness of the coins to be processed that are processed by the coin feeding device,
    The belt drive mechanism causes the belt to travel along the upper surface of the coin transport disk toward the inside of the coin transport disk,
    The belt is a coin feeding device in which the belt is elastically deformed by contacting a coin on the coin transport disk and moves the coin toward the step member.
  12.  前記ベルトは、弾性変形した状態で前記硬貨搬送円盤の上の硬貨を前記硬貨搬送円盤に向けて押圧し、
     前記ベルト駆動機構は、前記ベルトを前記硬貨搬送円盤の上から前記硬貨搬送円盤の外へ走行させて、硬貨を前記硬貨搬送円盤の外へ移動させる請求項11に記載の硬貨繰出装置。
    The belt presses the coin on the coin transport disk in an elastically deformed state toward the coin transport disk,
    The coin feeding device according to claim 11, wherein the belt drive mechanism causes the belt to travel from the top of the coin transport disk to the outside of the coin transport disk to move the coin to the outside of the coin transport disk.
  13.  前記硬貨搬送円盤と、前記ベルトの前記硬貨搬送円盤の側の端部との間の距離は、前記硬貨繰出装置が処理の対象とする処理対象硬貨の最小の厚さより小さい請求項11または12に記載の硬貨繰出装置。 The distance between the said coin conveyance disc and the edge part by the side of the said coin conveyance disc of the said belt is smaller than the minimum thickness of the processing object coin which the said coin feeding apparatus makes the object of processing to Claim 11 or 12 The coin feeding device described.
  14.  前記ベルト駆動機構は、プーリーを有して構成され、前記ベルトは前記プーリーに掛け回されており、前記プーリーの回転軸は、前記硬貨搬送円盤の回転軸と略平行であり、前記ベルトの幅方向の端部が前記硬貨搬送円盤の上の硬貨と接触する請求項11から13のいずれか1項に記載の硬貨繰出装置。 The belt drive mechanism is configured to include a pulley, the belt is wound around the pulley, the rotation axis of the pulley is substantially parallel to the rotation axis of the coin transport disk, and the width of the belt The coin feeding device according to any one of claims 11 to 13, wherein an end portion in a direction comes into contact with a coin on the coin transport disk.
  15.  前記ベルトは、前記硬貨搬送円盤の上の硬貨に接触した際、前記ベルトの幅方向の端部が前記プーリーの内側に向かって弾性変形する請求項14に記載の硬貨繰出装置。 15. The coin feeding device according to claim 14, wherein the belt is elastically deformed toward an inner side of the pulley when an end portion in a width direction of the belt comes into contact with a coin on the coin transport disk.
  16.  前記ベルトは、弾性変形部位を有しており、前記弾性変形部位は、前記ベルトの幅方向において前記プーリーよりも前記硬貨搬送円盤の側に突出した部位であり、
     前記ベルトが前記硬貨搬送円盤の上の硬貨に接触する際に、前記弾性変形部位が硬貨に接触して弾性変形する請求項14または15に記載の硬貨繰出装置。
    The belt has an elastic deformation portion, and the elastic deformation portion is a portion protruding to the coin transport disk side from the pulley in the width direction of the belt,
    The coin feeding device according to claim 14 or 15, wherein when the belt contacts a coin on the coin transport disk, the elastic deformation portion contacts the coin and elastically deforms.
  17.  前記ベルトの厚さ方向についての前記弾性変形部位の曲げ剛性が、前記ベルトの走行方向についての前記弾性変形部位の曲げ剛性よりも低い請求項16に記載の硬貨繰出装置。 The coin feeding device according to claim 16, wherein a bending rigidity of the elastic deformation portion in the thickness direction of the belt is lower than a bending rigidity of the elastic deformation portion in the running direction of the belt.
  18.  前記弾性変形部位が、前記ベルトの走行方向に沿って分割されている請求項16または17に記載の硬貨繰出装置。 The coin feeding device according to claim 16 or 17, wherein the elastically deforming portion is divided along a running direction of the belt.
  19.  前記弾性変形部位が、前記ベルトの走行方向に沿って離間して配置された複数の棒状部位を有して構成されている請求項16から18のいずれか1項に記載の硬貨繰出装置。 The coin feeding device according to any one of claims 16 to 18, wherein the elastically deforming portion includes a plurality of rod-like portions that are spaced apart from each other along the running direction of the belt.
PCT/JP2017/042269 2016-11-30 2017-11-24 Coin delivery device WO2018101173A1 (en)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
JP2016-233168 2016-11-30
JP2016-233169 2016-11-30
JP2016233168A JP2018092257A (en) 2016-11-30 2016-11-30 Coin delivery device
JP2016233169A JP2018092258A (en) 2016-11-30 2016-11-30 Coin delivery device

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Cited By (1)

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Publication number Priority date Publication date Assignee Title
EP3926592A1 (en) * 2020-06-19 2021-12-22 Glory Ltd. Coin feeding device

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Publication number Priority date Publication date Assignee Title
JPS57137066U (en) * 1981-12-07 1982-08-26
JPS5814292A (en) * 1981-07-16 1983-01-27 グローリー工業株式会社 Coin feeder for coin processor
JPS5937661U (en) * 1982-08-31 1984-03-09 フジ技研株式会社 Device to prevent duplicate coins from being sent out in coin sorting and counting machines
JPH02139692A (en) * 1988-11-21 1990-05-29 Santetsukusu:Kk Coin sorting device
JP2001060277A (en) * 1999-08-20 2001-03-06 Sugai Sogyo:Kk Counting and sorting device for coin or the like
JP2003187288A (en) * 2001-12-14 2003-07-04 Glory Ltd Coin delivery device
US20140295744A1 (en) * 2013-03-28 2014-10-02 Scan Coin Ab Rim geometry of a coin sorting device

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Publication number Priority date Publication date Assignee Title
JPS5814292A (en) * 1981-07-16 1983-01-27 グローリー工業株式会社 Coin feeder for coin processor
JPS57137066U (en) * 1981-12-07 1982-08-26
JPS5937661U (en) * 1982-08-31 1984-03-09 フジ技研株式会社 Device to prevent duplicate coins from being sent out in coin sorting and counting machines
JPH02139692A (en) * 1988-11-21 1990-05-29 Santetsukusu:Kk Coin sorting device
JP2001060277A (en) * 1999-08-20 2001-03-06 Sugai Sogyo:Kk Counting and sorting device for coin or the like
JP2003187288A (en) * 2001-12-14 2003-07-04 Glory Ltd Coin delivery device
US20140295744A1 (en) * 2013-03-28 2014-10-02 Scan Coin Ab Rim geometry of a coin sorting device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3926592A1 (en) * 2020-06-19 2021-12-22 Glory Ltd. Coin feeding device

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