WO2018139126A1 - Item supply device and measurement system equipped with same - Google Patents

Item supply device and measurement system equipped with same Download PDF

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Publication number
WO2018139126A1
WO2018139126A1 PCT/JP2017/045927 JP2017045927W WO2018139126A1 WO 2018139126 A1 WO2018139126 A1 WO 2018139126A1 JP 2017045927 W JP2017045927 W JP 2017045927W WO 2018139126 A1 WO2018139126 A1 WO 2018139126A1
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WO
WIPO (PCT)
Prior art keywords
article
discharge
articles
distribution
transport mechanism
Prior art date
Application number
PCT/JP2017/045927
Other languages
French (fr)
Japanese (ja)
Inventor
孝幸 長井
浩次 森本
祥平 佐野
Original Assignee
大和製衡株式会社
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
Application filed by 大和製衡株式会社 filed Critical 大和製衡株式会社
Priority to RU2019126795A priority Critical patent/RU2736517C1/en
Priority to CN201780082088.8A priority patent/CN110191851B/en
Publication of WO2018139126A1 publication Critical patent/WO2018139126A1/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07CPOSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
    • B07C5/00Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
    • B07C5/16Sorting according to weight
    • B07C5/22Sorting according to weight using a plurality of stationary weighing mechanisms
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07CPOSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
    • B07C5/00Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
    • B07C5/36Sorting apparatus characterised by the means used for distribution
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/34Devices for discharging articles or materials from conveyor 
    • B65G47/46Devices for discharging articles or materials from conveyor  and distributing, e.g. automatically, to desired points
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G19/00Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups
    • G01G19/387Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for combinatorial weighing, i.e. selecting a combination of articles whose total weight or number is closest to a desired value

Definitions

  • the present invention relates to an article supply apparatus that supplies various articles to a plurality of locations and a weighing system including the article supply apparatus. More specifically, the present invention relates to an article supply apparatus suitable for supplying articles to a semi-automatic combination weigher in which the articles are supplied manually and a weighing system including the article supply apparatus.
  • the combination weigher has a plurality of weighing units, selects a combination of weighing units in which the combined weight, which is the total weight of various combinations of the weights of articles supplied to each weighing unit, falls within a predetermined weight range, and selects the selected weighing unit. Part of the product is discharged.
  • This combination weigher can be roughly divided into automatic, semi-automatic and manual types depending on the method of supplying and discharging articles to the weighing section.
  • manual combination weigher supply and discharge of articles are performed manually.
  • semi-automatic combination weigher the article is supplied manually and the article is automatically discharged.
  • an automatic combination weigher supply and discharge of articles are automatically performed regardless of human hands.
  • Semi-automatic combination weighers manually supply articles to the combination weigher, so that the unit weight is relatively large and irregular, or difficult to handle by machines, such as sticky chicken pieces or seafood It is suitable for handling.
  • Patent Document 1 discloses a combination provided with a circulation conveyor that circulates articles around the inlets of a plurality of weighing hoppers of the combination weigher. A scale is described. In this combination weigher, an operator grasps an article on a circulation conveyor in the vicinity of the input port of each weighing hopper and inputs it to the input port.
  • Patent Document 2 describes a combination weigher in which articles are manually placed on a plurality of supply conveyors.
  • the placed article is supplied to each of the plurality of weighing conveyors by each supply conveyor and weighed.
  • a combination of weighing conveyors is selected in which the combined weight, which is the total weight of various weights of the weighed articles on each weighing conveyor, falls within a predetermined weight range. Articles on the selected weighing conveyor are ejected through the collecting conveyor.
  • the present invention has been made paying attention to such points, and it is an object of the present invention to provide an article supply apparatus capable of automatically distributing and supplying articles to a plurality of supply destinations and a weighing system including the article supply apparatus. .
  • the present invention is configured as follows.
  • the article supply apparatus is configured to allow passage of an article that has been conveyed at a plurality of locations on a former conveyance mechanism that conveys the article to be supplied and the article conveyance path by the former conveyance mechanism.
  • An article discharge mechanism capable of switching between a state and a discharge state in which the conveyed article is discharged out of the conveyance path, and an article discharged out of the conveyance path by the article discharge mechanism is distributed and conveyed to a plurality of locations.
  • a distribution transport mechanism capable of switching between a state and a discharge state in which the conveyed article is discharged out of the conveyance path, and an article discharged out of the conveyance path by the article discharge mechanism is distributed and conveyed to a plurality of locations.
  • the article supply device of the present invention when an article is supplied on the upper side in the conveyance direction of the preceding conveyance mechanism, the article conveyed by the preceding conveyance mechanism is discharged out of the conveyance path by the article ejection mechanism at a plurality of locations on the conveyance path. Is done.
  • the discharged articles are further distributed and transported to a plurality of locations by the distribution transport mechanism. Therefore, for example, when the article discharge mechanism is arranged at three places on the conveyance path and is further distributed to three places by the distribution conveyance mechanism, the article supplied at one place on the upper side of the front-stage conveyance mechanism is given a predetermined 9 It becomes possible to distribute and supply to locations.
  • a post-stage transport mechanism that transports each article that has been transported to each distribution destination of the distribution transport mechanism is provided.
  • the rear transport mechanism transports the articles at an arbitrary transport speed or stops transport. You can do it. This makes it easy to supply the article at a timing according to the request of the article supply destination.
  • the post-stage transport mechanism is a vibration feeder that vibrates and conveys each article in a certain direction.
  • the articles conveyed in an adjacent state can be separated into individual articles and conveyed by vibration.
  • the article discharge mechanism is in a retracted position in which the article discharge mechanism is retracted from the conveyance path to allow passage of the article in the allowable state, whereas in the discharge state, the article discharge mechanism is A guide member is provided which has a discharge posture to advance on the conveyance path and guide the article to the outside of the conveyance path.
  • the guide member of the article discharge mechanism when the guide member of the article discharge mechanism is in the retracted posture, the article is conveyed as it is and passes through the article discharge mechanism, and when the guide member is in the discharge posture, the article is guided by the guide member, It is discharged to the outside of the transport path. Accordingly, by driving the guide member of the article discharge mechanism at a plurality of locations on the conveyance path to the discharge posture, the article moving on the conveyance path can be accurately discharged at a desired location.
  • the distribution transport mechanism transports an article discharged by the article discharge mechanism, and a swivel conveyor that can be switched to a plurality of positions around the transport start end side.
  • the articles discharged by the article discharge mechanism can be used to convey the articles discharged by the article discharge mechanism regardless of the rotation position of the swivel conveyor. Can be transferred to the side. Therefore, the articles can be transferred from the article discharge mechanism to the orbiting conveyor at an arbitrary timing regardless of the distribution operation state of the orbiting conveyor.
  • the distributed conveyance is performed by the first article detection sensor that detects the article that passes through the detection areas respectively corresponding to the plurality of locations on the conveyance path, and the article discharge mechanism. Based on the detection output of the second article detection sensor for detecting the article discharged to the mechanism, the first article detection sensor and the second article detection sensor, the permissible state and the discharge state of the article discharge mechanism. And a control device for switching control.
  • the first article detection sensor detects articles passing through detection areas respectively corresponding to a plurality of locations on the conveyance path for discharging the articles by the article discharge mechanism. Therefore, the control device can start discharging the articles at the plurality of locations on the transport path by switching the article discharge mechanism to the discharge state based on the detection output of the first article detection sensor.
  • the second article detection sensor detects an article discharged to the distribution transport mechanism by the article discharge mechanism. Therefore, the control device switches the article discharge mechanism to an allowable state that allows passage of articles based on the detection output of the second article detection sensor, thereby controlling the plurality of conveyance paths. The discharge of the article at the location can be terminated.
  • control device controls the duration of the discharge state of the article discharge mechanism based on the duration of the detection output from the second article detection sensor.
  • the duration of this detection output is: This corresponds to the amount of articles discharged to the distribution and transport mechanism by the article discharge mechanism, that is, the amount of articles supplied to the distribution and transport mechanism.
  • the control device can control the duration of the discharge state of the article discharge mechanism based on the detection output duration of the second article detection sensor, that is, the time for discharging the article to the distribution transport mechanism by the article discharge mechanism. . Therefore, for example, when the amount of articles supplied to the distribution transport mechanism becomes substantially constant, the discharge of the articles by the article discharge mechanism is terminated, or the amount of articles supplied to the distribution transport mechanism is distributed and transported. It becomes possible to end the discharge of the article by the article discharge mechanism when the requested amount of the distribution-destination article to which the article is distributed by the mechanism is reached.
  • a weighing system includes the article supply device according to any one of the above (1) to (7), a plurality of weighing units, and the weight of the article supplied to each weighing unit.
  • a combination weigher that performs a combination calculation for selecting a combination of the weighing units in which the combined weight falls within a predetermined weight range, and discharges the article from the selected weighing unit; The articles distributed and conveyed to the plurality of places by the distribution and conveyance mechanism of the apparatus are supplied.
  • the article supply device distributes and conveys articles supplied on the upper side of the conveyance path of the preceding conveyance mechanism, and at a plurality of article supply destinations corresponding to a plurality of weighing units in the combination weigher. It can be supplied to an article input port or the like. This eliminates the need for the operator to grab the articles one by one and put them into the article input port of the semi-automatic combination weigher as in the prior art, thereby greatly reducing the labor of the operator.
  • the article conveyed by the preceding conveyance mechanism is discharged out of the conveyance path by the article discharge mechanism at a plurality of locations on the conveyance path. Since the discharged articles are further distributed and conveyed to a plurality of places by the distribution and conveyance mechanism, the articles supplied at one place on the upper side of the preceding conveyance mechanism can be distributed and supplied to a plurality of supply destinations. .
  • FIG. 1 is an overall perspective view of an embodiment of a weighing system.
  • FIG. 2 is a plan view of the weighing system of FIG.
  • FIG. 3 is a side view of the metering system of FIG.
  • FIG. 4 is a perspective view showing a set of article distribution locations.
  • FIG. 5 is a schematic front view showing a set of article distribution locations.
  • FIG. 6 is a schematic side view of the combination weigher.
  • FIG. 7 is a schematic plan view showing an arrangement state of an article detection sensor for detecting an article.
  • FIG. 8 is a block diagram showing a control configuration of the weighing system of FIG.
  • FIG. 9 is a flowchart illustrating an example of overall control of the article supply apparatus.
  • FIG. 10 is a flowchart showing an example of control of the vibration feeder.
  • FIG. 11 is a flowchart illustrating an example of control of the distribution transport mechanism.
  • FIG. 12 is a flowchart illustrating an example of control of the article discharge mechanism.
  • FIG. 1 is a perspective view showing the overall configuration of a weighing system according to an embodiment of the present invention
  • FIG. 2 is a plan view thereof
  • FIG. 3 is a side view thereof.
  • the weighing system according to this embodiment includes an article supply apparatus 1 that supplies articles and a semi-automatic combination scale 2 that conventionally supplies articles manually.
  • This weighing system automatically supplies articles to the semi-automatic combination balance 2 by the article supply apparatus 1. Therefore, as a whole, it can also be called an automatic combination weigher that automatically supplies and discharges articles.
  • an article having a relatively large unit weight and an indeterminate shape and having an adhesive property that is difficult to handle by a machine for example, a block-shaped piece of meat such as peach meat or fillet that has been disassembled from a broiler (meat chicken) is used. Measured.
  • the measuring system of this embodiment is a system suitable for the measuring process of the broiler dismantling line.
  • the article supply apparatus 1 includes a front-stage transport mechanism 3 that is horizontally arranged, an article discharge mechanism 4 that is provided at a plurality of locations on the transport path, in this example, three locations, and three distributions corresponding to the respective article discharge mechanisms 4.
  • a plurality of transport mechanisms 5 corresponding to each of the distribution transport mechanisms 5, and in this example, three vibration feeders 6 as rear transport mechanisms arranged in parallel in this example are provided.
  • the front-stage transport mechanism 3 is configured by a belt conveyor that is rotated at a constant speed from right to left as indicated by an arrow A in FIG. .
  • the broiler meat pieces disassembled are supplied as articles w.
  • the article discharge mechanism 4 includes a long plate-shaped guide member 8 that is installed on one side across the conveyance path in the front-stage conveyance mechanism 3 and can be driven to swing around the vertical fulcrum a.
  • the guide member 8 is in an allowable state in which the guide member 8 moves away from the one side of the conveying path and assumes a retracted posture along the conveying direction. Passage is allowed.
  • the guide member 8 is driven and swings toward the conveyance path around the longitudinal fulcrum a as shown by the phantom line in FIG. 2, the long plate-shaped guide member 8 is inclined to the conveyance path in plan view. It becomes the discharge state of the discharge posture crossing. In this discharged state, the article w conveyed along the conveyance path gradually moves outward on the other side of the conveyance path along the plate surface of the guide member 8 that intersects the conveyance path diagonally. Guided and discharged from the transport path.
  • a discharge chute 9 having a slanted bottom is fixedly disposed on the discharge side of the front-stage transport mechanism 3.
  • the article w guided and discharged by the guide member 8 is slid down and guided to the lower side of the other side via the discharge chute 9.
  • the article discharge mechanism 4 crosses the long plate-shaped guide member 8 so as to be inclined with respect to the transport path of the front-stage transport mechanism 3, and the article w transported by the front-stage transport mechanism 3 is guided to the guide member. 8 is guided along the plate surface and discharged. Thereby, the article w which is a piece of broiler meat having adhesiveness can be reliably discharged at a predetermined location.
  • the distribution and transport mechanism 5 transports the article funnel-shaped input funnel 10 that receives the articles w discharged by the article discharge mechanism 4 and the articles w that are input into the input funnel 10 and is rotated by a predetermined angle.
  • Possible swivel conveyor 14 includes a conveyor belt 11 for placing and horizontally conveying the articles w guided by the input funnel 10, left and right side plates 12 erected on both sides of the conveyor belt 11, and both side plates 12.
  • a discharge cover 13 having a U-shaped planar shape attached to the end portion is provided.
  • the discharge cover 13 forms a drop opening through which the article w placed and transported by the transport belt 11 is dropped without jumping out in the transport direction.
  • the discharge cover 13 is bolted and connected to the side plates 12 so that the position of the discharge cover 13 can be adjusted along the conveyance direction.
  • the opening length in the transport direction of the drop port is changed in accordance with the size of the article w, and the article w is dropped and released to a predetermined position accurately without clogging. .
  • the swivel conveyor 14 can be rotationally driven by a predetermined angle by a servo motor around a vertical fulcrum b set on the conveyance start end side of the conveyance belt 11 on which articles from the input funnel 10 slide down.
  • the drop end at the conveyance end of the conveyance belt 11 is positioned immediately above each vibration feeder 6 at the three positions of the central position in the rotation range and the rotation end positions on both sides thereof. Yes. That is, the swivel conveyor 14 turns by a predetermined angle around the vertical fulcrum b, and distributes the article w to each of the three vibration feeders 6.
  • the swivel conveyor 14 rotates around the vertical fulcrum b set on the conveyance start end side of the conveyance belt 11 where the articles from the input funnel 10 slide down. For this reason, the article w transported by the preceding transport mechanism 3 is discharged by the guide member 8 of the article discharge mechanism 4 and supplied to the transport start end side of the swirl conveyor 14 regardless of the rotation position of the swirl conveyor 14. can do. Therefore, when it is necessary to supply an article to the conveyance start end side of the swivel conveyor 14, the article of the preceding conveyance mechanism 3 is discharged by the article discharge mechanism 4 regardless of the rotation position of the swivel conveyor 14, and is supplied to the swivel conveyor 14. Articles can be supplied quickly.
  • the vibration feeder 6 as a rear-stage transport mechanism is a linear feeder in which a trough-shaped trough 15 is detachably connected to a vibration exciter 16, and an article placed by driving the trough 15 in vibration. It is comprised so that w may be conveyed to the combination scale 2.
  • FIG. A support frame 17 is connected to the lower surface of the trough 15 to support the trough 15 in a state where the trough 15 is inclined downward toward the transport direction.
  • the support frame 17 is positioned and engaged with a vibration head 16a provided at the upper end portion of the vibration exciter 16, and is fastened and fixed using a buckle type coupling mechanism 18 operated by a lever.
  • a large number of slit-shaped through holes 19 along the longitudinal direction of the trough 15 are formed in alignment on the bottom surface and the left and right side surfaces of the trough 15.
  • the through-hole 19 discharges the fats and oils floating on the surface of the article w, which is a piece of meat disassembled from the broiler, to the outside of the trough 15. This prevents a large amount of these fats and oils from adhering to the inner surface of the trough 15 and making it difficult to convey the article w.
  • the trough 15 of the vibration feeder 6 is inclined downward toward the conveyance direction and has a large number of through holes 19, so that the article w, which is a broiler meat piece that contains oil and has an adhesive property, is smoothly conveyed. be able to.
  • Three vibration feeders 6 are arranged in parallel with respect to the swivel conveyor 14 of one distribution transport mechanism 5.
  • Articles w can be respectively supplied from the respective swivel conveyors 14 to the troughs 15 of the three vibration feeders 6 in accordance with the switching of the swivel conveyor 14 to the center position and the rotation end positions on both sides thereof. Therefore, as a whole, the article w can be vibrated and conveyed to nine places by the nine vibration feeders 6 arranged in parallel in a straight line.
  • Each vibration feeder 6 can convey and stop the article w by driving and stopping. Therefore, the article w is controlled so as to be transported to the end of the trough 15 of the vibration feeder 6 and placed on standby, and the article is sent to the combination weigher 2 at a timing according to the input request to the article insertion port 25 of the combination weigher 2. Can be supplied.
  • the idler roller 20 is located at an intermediate position between the central trough 15 and the troughs 15 on both sides thereof so as to face the end turning locus of the swivel conveyor 14 of the distribution transport mechanism 5. Is supported horizontally in the transport direction via a fixed base (not shown). The idler roller 20 is located at a middle position between the central trough 15 and one side of both sides thereof, that is, the left or right trough 15 while the swivel conveyor 14 of the distribution transport mechanism 5 is rotating. The article w, which has been dropped undesirably, is received and rotated to the central trough 15 or the left or right trough 15 by its own weight.
  • a relatively long article w may stay while riding on the idle roller 20.
  • the swivel conveyor 14 of the distribution transport mechanism 5 is next rotated in the reverse direction (leftward in the case of FIG. 5)
  • the free end of the swivel conveyor 14, that is, the lower end of the discharge cover 13 is idle.
  • the article w on the roller 20 is pushed and moved to rotate the idle roller 20, and the article w can be dropped into the trough 15 on the side where the swivel conveyor 14 moves.
  • a mountain-shaped inclination that inclines toward the inside of the trough 15 at the conveyance start end portion on the lateral outer side of the left and right troughs 15 in the group of troughs 15 in a set of three.
  • the guide plate 21 is installed via a fixed base (not shown).
  • the article w put into the left or right trough 15 is guided into the trough 15 without being caught on the outer side wall of the trough 15.
  • each article insertion opening 25 is provided with a pair of left and right insertion gates 26 that can be opened and closed in the form of an inward opening door. Each input gate 26 is opened during a period when the input of articles is requested.
  • the supply amount of the articles and the combination scale 2 are set so that the weighing processing amount of the articles of the semi-automatic combination weigher 2 exceeds the supply amount of the articles to the upstream conveying mechanism 3 of the article supply apparatus 1.
  • the operation speed is set.
  • the article conveyed by the upstream conveyance mechanism 3 is changed to the article. It can respond by letting it pass without discharging with the guide member 8 of the discharge mechanism 4.
  • FIG. 6 is a schematic side view of the semi-automatic combination weigher 2.
  • This combination weigher 2 is basically the same as a conventional semi-automatic combination weigher.
  • a supply hopper 40 is disposed immediately below the input gate 26 of each article input port 25 of the combination weigher 2.
  • a weighing hopper 41 as a weighing unit having two storage chambers 41-1 and 41-2 is disposed.
  • Each supply hopper 40 includes two discharge gates 40a and 40b that can be opened and closed independently. By opening one discharge gate 40a, the articles are discharged into one storage chamber 41-1 of the weighing hopper 41, and by opening the other discharge gate 40b, the other storage chamber 41-2 of the weighing hopper 41 is discharged. It is possible to discharge the article.
  • Each weighing hopper 41 is provided with a discharge gate 41a in one storage chamber 41-1 and a discharge gate 41b in the other storage chamber 41-2. By opening the discharge gates 41a and 41b, articles can be discharged separately from the storage chambers 41-1 and 41-2.
  • Each weighing hopper 41 is provided with a weight sensor 42 such as a load cell.
  • the weight sensor 42 detects the weight of the article in the weighing hopper 41, and the output is sent to the control unit of the combination weigher 2 described later.
  • the control unit of the combination weigher 2 calculates the weight of the articles in the storage chambers 41-1 and 41-2 of the weighing hopper 41 based on the change in the weight of the articles in the weighing hopper 41. Based on the calculated weights of the articles in the storage chambers 41-1 and 41-2 of each weighing hopper 41, the control unit performs a combination calculation described later.
  • a collective conveyor 43 that receives and conveys articles discharged from the weighing hopper 41 is disposed below the weighing hopper 41.
  • the articles conveyed by the collective conveyor 43 are supplied to a packaging machine (not shown).
  • a packaging machine an article having a predetermined weight range is vacuum packaged.
  • the control unit of the combination weigher 2 has a combination weight that is a total weight obtained by combining various weights of the articles in the storage chambers 41-1 and 41-2 of the weighing hopper 41 holding the articles within a predetermined weight range. A combination calculation for selecting one combination of the storage chambers 41-1 and 41-2 is performed. The articles in the storage chambers 41-1 and 41-2 selected by this combination calculation are discharged to the collective conveyor 43.
  • the article w supplied to the starting end on the upper side in the transport direction of the front transport mechanism 3 is discharged from three places in the transport direction by the article discharge mechanism 4. Then, it is sent to each distribution transport mechanism 5.
  • the articles w sent to each distribution / conveying mechanism 5 are further distributed to three places and sent to the vibration feeder 6, and sent to a total of nine vibration feeders 6.
  • the articles w distributed and conveyed by the nine vibration feeders 6 are supplied to the article input ports 25 of the combination weigher 2.
  • the article w that has passed through the three article discharge mechanisms 4 and has reached the end of the preceding transport mechanism 3 is unloaded, collected in a collection container, and supplied again to the starting end of the preceding transport mechanism 3 by hand at appropriate times. Is done.
  • FIG. 7 is a schematic plan view corresponding to FIG. 2 showing an example of the installation state of the article detection sensor for detecting the article w.
  • Each article detection sensor Sa (1) to Sa (3), Sb (1) to Sb (3), Sc (1) to Sc (3), Sd (1) to Sd (3), Se () of this embodiment 1) to Se (9) and Sf (1) to Sf (9) are, for example, transmission type photoelectric sensors including a projector and a light receiver. These photoelectric sensors detect an article w that passes through a detection region between a projector and a light receiver that are arranged to face each other, and provide a detection output.
  • Pre-stage article detection sensors Sa (1) to Sa (3) as first article detection sensors that respectively detect articles w that pass through a detection area immediately before each article discharge mechanism 4 are provided on the conveyance path of the pre-stage conveyance mechanism 3. Has been placed.
  • discharged article detection sensors Sb (1) to Sb (second article detection sensors for detecting the discharged articles). 3) are arranged respectively. Note that through holes are formed in the base of each discharge chute 9 so as not to block the optical paths of the discharged article detection sensors Sb (1) to Sb (3).
  • a rear-stage start-end article detection sensor that detects an article w at the start-end section and the end-end section at the start-end section on the upper side and the lower-end end section in the transport direction of each trough 15 of each vibration feeder 6 as a rear-stage transport mechanism.
  • Se (1) to Se (9) and rear end article detection sensors Sf (1) to Sf (9) are respectively arranged.
  • the trough 15 of the vibration feeder 6 has a through-hole so as not to block the optical paths of the rear-stage start article detection sensors Se (1) to Se (9) and the rear-stage end article detection sensors Sf (1) to Sf (9). Is formed.
  • FIG. 8 is a block diagram showing the control configuration of the weighing system of this embodiment.
  • the weighing system of this embodiment includes a programmable controller (hereinafter abbreviated as “PLC”) 27 as a control device for controlling the entire system.
  • PLC programmable controller
  • the programmable display 29 which is an operation display terminal is connected to this PLC27.
  • various setting operations such as the transport speed of the upstream transport mechanism 3 and the swivel conveyor 14 and the vibration intensity of the vibration feeder 6 and various displays are performed.
  • the PLC 27 receives input request signals (1) to (9) when the control unit 28 of the semi-automatic combination weigher 2 requests input of articles to the nine article input ports 25, respectively.
  • each of the article detection sensors Sa (1) to Sa (3), Sb (1) to Sb (3), Sc (1) to Sc (3), Sd (1) to Sd (3), Detection outputs of Se (1) to Se (9) and Sf (1) to Sf (9) are input.
  • the PLC 27 controls the front-stage transport mechanism 3 via the front-stage transport mechanism drive control circuit 30 and controls each guide member 8 of the article discharge mechanism 4 via the guide member drive circuit 31.
  • the PLC 27 controls each swivel conveyor 14 of each distribution transport mechanism 5 via a swivel conveyor drive control circuit 32 and a swivel conveyor swivel drive control circuit 33, and each vibration feeder 6 via a vibration feeder drive circuit 34. Control.
  • the PLC 27 basically controls so that when an article is input from the combination weigher 2 to each article insertion port 25, the article can be immediately input into the article insertion port 25 that has been requested.
  • the PLC 27 performs control so that the article can be conveyed to the end of the trough 15 of each vibration feeder 6 and can be on standby.
  • the vibration feeder 6 when there is no article at the end of the trough 15, the article detected at the start of the trough 15 is conveyed to the end of the trough 15.
  • the turning conveyor 14 of the distribution transport mechanism 5 is requested to input the article.
  • the swivel conveyor 14 of the distribution transport mechanism 5 transports the article to the terminal end of the swivel conveyor 14 and controls the rotation position so that the article can be immediately put into the trough 15 of the vibration feeder 6 where the article is requested to be placed. Is done.
  • the article detected at the start end of the swivel conveyor 14 is conveyed to the end.
  • the article discharge mechanism 4 is requested to input the article.
  • the guide member 8 is driven and the discharge posture is advanced to the transport path.
  • the article discharge mechanism 4 supplies the article to be conveyed to the swivel conveyor 14 of the distribution conveyance mechanism 5 outside the conveyance path.
  • FIG. 9 is a schematic flowchart showing an example of overall control of the article supply apparatus 1 of this embodiment.
  • step S1 it is determined whether or not the operation switch of the programmable display 29 is turned on (step S1).
  • the operation switch is turned on, the operation is started, and when input request signals (1) to (9) corresponding to nine article input ports 25 are input from the semi-automatic combination weigher 2 (step S2), The vibration feeder 6 that is the lowest in the conveyance direction of the article in the article supply apparatus 1 is controlled (step S3).
  • the distribution / delivery mechanism 5 that is superior is controlled (step S4), the article discharge mechanism 4 that is superior is further controlled (step S5), and it is determined whether or not the operation switch is turned off. (Step S6).
  • the operation switch is turned off, the process ends.
  • FIG. 10 is a flowchart showing an example of control of the vibration feeder 6 which is a subroutine in the overall control flowchart of FIG.
  • the basic control is that when no article is detected by the rear end article detection sensors Sf (1) to Sf (9), that is, when there is no article at the end of the trough 15 of the vibration feeder 6, the vibration feeder 6 is turned on. Driving for a certain time, the article at the start end of the trough 15 is conveyed to the end of the trough 15. Instead of driving for a fixed time, the rear end article detection sensors Sf (1) to Sf (9) may be driven until the article at the end of the trough 15 is detected.
  • the number k for designating one of the vibration feeders 6 is set to “1” (step S301), and the driving flag indicating that the vibration feeder 6 with the number k is being driven. It is determined whether or not is ON (step S302). When the driving flag is ON, the driving timer for driving time measurement corresponding to the vibration feeder 6 of number k is reduced (step S303), and it is determined whether or not the driving timer has expired (step S304).
  • step S304 When the driving timer corresponding to the vibration feeder 6 with the number k is up in step S304, the driving of the vibration feeder 6 with the number k is stopped assuming that the driving for a predetermined time is finished (step S305).
  • the driving flag of the vibration feeder 6 with the number k that has stopped driving is turned OFF (step S306), the number k is incremented (step S307), and whether or not the number k has become “10”, that is, nine vibrations It is determined whether or not the processing for the feeder 6 has been completed (step S308).
  • the process returns to step S302, and when the number k is “10”, the process returns from the subroutine.
  • step S302 when the driving flag of the vibration feeder 6 of number k is not ON, whether or not an article is detected at the end of the trough 15 of the vibration feeder 6 of number k, that is, the vibration feeder of number k. It is determined whether or not an article is detected by the rear end article detection sensor Sf (k) corresponding to 6 (step S309). When an article is detected, it is determined whether or not an input request signal (k) corresponding to the number k has been input from the semi-automatic combination weigher 2 (step S310).
  • step S311 When the input request signal is input, the driving flag of the vibration feeder 6 with the number k is turned ON (step S311), a driving timer corresponding to the vibration feeder 6 with the number k is set (step S312), and the number k with the vibration feeder 6 is set.
  • the driving of the vibration feeder 6 is started and the process proceeds to step S307 (step S313).
  • step S309 If no article is detected at the end of the trough 15 of the vibration feeder 6 of number k in step S309, whether or not the article is detected at the start of the trough 15 of the vibration feeder 6 of number k, that is, number It is determined whether or not an article is detected by the rear-stage starting-end article detection sensor Se (k) corresponding to the k vibration feeder 6 (step S314).
  • the driving flag of the vibration feeder 6 with the number k is turned ON (step S315), a driving timer corresponding to the vibration feeder 6 with the number k is set (step S316), and the vibration feeder 6 with the number k is set.
  • Driving is started and the process proceeds to step S307 (step S317).
  • step S314 If no article is detected at the start end of the trough 15 of the vibration feeder 6 of number k in step S314, the article is sent to the trough 15 of the vibration feeder 6 of number k with respect to the distribution transport mechanism 5 corresponding to number k.
  • the input instruction flag for instructing the input of is turned ON, and the process proceeds to step S307 (step S318).
  • FIG. 11 is a flowchart showing an example of control of the distribution transport mechanism 5 which is a subroutine in the overall control flowchart of FIG.
  • Basic control is that if there is no article at the start end of the trough 15 of the vibration feeder 6, that is, if no article is detected by the rear-stage start-end article detection sensors Se (1) to Se (9), the trough of the vibration feeder 6
  • the article is transported to the terminal portion of the swivel conveyor 14 of the distribution transport mechanism 5 so that the article can be put into the start end portion 15.
  • the swivel conveyor 14 is driven for a certain time.
  • the article at the start end of the swivel conveyor 14 is conveyed to the terminal end of the swivel conveyor 14. Note that instead of driving for a certain period of time, it is assumed that the articles are conveyed to the terminal end of the swivel conveyor 14 when the articles are detected by the distribution end article detection sensors Sd (1) to Sd (3). The driving may be stopped.
  • the article discharge mechanism 4 is connected to the swivel conveyor 14.
  • the discharge command flag for commanding discharge is turned ON.
  • the turning position of the swivel conveyor 14 is changed to the trough 15 of the vibration feeder 6.
  • the swivel conveyor 14 is rotated to the loading position of the trough 15 of the vibration feeder 6.
  • the swivel conveyor 14 that has been rotated is driven for a certain period of time, and articles are fed from the swivel conveyor 14 to the starting end of the vibration feeder 6.
  • the turning position of the swivel conveyor 14 is changed to the trough 15 of the vibration feeder 6.
  • the swivel conveyor 14 is driven for a predetermined time.
  • articles are fed from the swivel conveyor 14 to the starting end of the vibration feeder 6.
  • the articles are removed from the trough 15 of the vibration feeder 6.
  • the driving of the swivel conveyor 14 may be stopped assuming that it has been put into the starting end.
  • the swivel conveyor 14 of one distribution transport mechanism 5 is rotated to supply articles to the troughs 15 of the three vibratory feeders 6. However, since the swivel conveyor 14 is rotated by a servo motor, the input position control is easy. .
  • the number a that defines the number of feeders 6 is set to “1” (step S401). It is determined whether a driving flag indicating that the swivel conveyor 14 of the distribution transport mechanism 5 of number j is being driven is ON (step S402). When the driving flag is ON, the driving timer for driving time measurement corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j is reduced (step S403), and it is determined whether or not the driving timer has timed up. (Step S404).
  • step S404 When the drive timer corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j expires in step S404, the drive of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is stopped (step S405), and the distribution of number j is performed.
  • the driving flag of the swivel conveyor 14 of the transport mechanism 5 is turned off (step S406).
  • step S407 the number k for designating the vibration feeder 6 and the number a of the vibration feeders 6 are incremented (step S407), and whether or not the number a has become “4”, that is, the distribution processing for the three vibration feeders 6 is performed. It is determined whether or not the processing has been completed (step S408). If the number a is not “4”, the distribution process for the three vibration feeders 6 is not completed, and the process returns to step S402.
  • step S408 it is determined that the distribution process for the three vibration feeders 6 by the distribution transport mechanism 5 with the number j is completed, and the number j is incremented and the number s is set to “1”. Return (step S409).
  • step S410 it is determined whether or not the number j has become “4”, that is, whether or not the processing for the three distribution transport mechanisms 5 has been completed. When it is not “4”, the process returns to step S402, and when it is “4”, the process returns from the subroutine.
  • step S402 when the driving flag of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is not ON, whether or not an article has been detected at the end of the swivel conveyor 14 of the distribution transport mechanism 5 of number j, That is, it is determined whether or not an article is detected by the distribution end article detection sensor Sd (j) corresponding to the distribution transport mechanism 5 of number j (step S411).
  • step S412 When an article is detected, it is determined whether or not an article input command flag to the trough 15 of the vibration feeder 6 of number k is ON, that is, whether or not there is a request to input an article to the trough 15 of the vibration feeder 6. Judgment is made (step S412).
  • the article input command flag is ON, the process proceeds to step S413.
  • the article input command flag is not ON, the process proceeds to step S407.
  • step S413 whether or not the swivel conveyor 14 of the distribution transport mechanism 5 with the number j is in the position where the article is put into the trough 15 of the vibration feeder 6 with the number k, that is, the transport belt of the swivel conveyor 14 is determined. It is determined whether or not the end of 11 is at a position immediately above the trough 15 of the vibration feeder 6 of number k. If it is in the loading position, an article loading command flag to the trough 15 of the vibration feeder 6 of number k is turned OFF (step S414).
  • step S415 the driving flag of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is turned ON (step S415), and a drive timer corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j is set (step S416).
  • the driving of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is started, and the process proceeds to step S407 (step S417).
  • step S413 when the swivel conveyor 14 of the distribution transport mechanism 5 of number j is not in the article loading position with respect to the trough 15 of the vibration feeder 6 of number k, the swivel conveyor 14 of the distribution transport mechanism 5 of number j is moved to the number k. Then, the vibration feeder 6 is turned to the loading position of the article with respect to the trough 15 of the vibration feeder 6, that is, is turned to move to Step S 407 (Step S 418).
  • step S411 if no article is detected at the end of the swivel conveyor 14 of the distribution transport mechanism 5 of number j, whether or not the article is detected at the start of the swivel conveyor 14 of the distribution transport mechanism 5 of number j. That is, it is determined whether or not an article is detected by the distribution start end article detection sensor Sc (j) corresponding to the distribution transport mechanism 5 of number j (step S419).
  • the driving flag of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is turned ON (step S420), and a drive timer corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j is set (step S420).
  • step S421 the driving of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is started, and the process proceeds to step S407 (step S422).
  • step S419 when no article is detected at the starting end of the swivel conveyor 14 of the distribution transport mechanism 5 of number j, the number j is set so as to be discharged to the swivel conveyor 14 of the distribution transport mechanism 5 of number j.
  • the discharge command flag to the corresponding article discharge mechanism 4 is turned on, and the process proceeds to step S407 (step S423).
  • FIG. 12 is a flowchart showing an example of control of the article discharge mechanism 4, which is a subroutine in the overall control flowchart of FIG.
  • the basic control is that when the article discharge command flag to the article discharge mechanism 4 is turned ON in the control of the distribution and transport mechanism 5, the preceding article detection is performed in order to discharge the articles to the swivel conveyor 14 of the distribution and transport mechanism 5.
  • the guide member 8 of the article discharge mechanism 4 is driven to set the discharge posture to advance into the conveyance path.
  • the article is guided by the guide member 8 in the discharge posture and falls from the transport belt 7 of the front-stage transport mechanism 3 to the discharge chute 9 side, and the falling articles are discharged article detection sensors Sb (1) to Sb ( Detected in 3).
  • the article When the article is detected by the preceding article detection sensors Sa (1) to (3) that detect the article passing through the detection area immediately before the article discharge mechanism 4 and the guide member 8 is driven, the article is Guided by the guide member 8 in the discharging posture. Accordingly, the article should be discharged from the transport belt 7 of the upstream transport mechanism 3 to the discharge chute 9 side, and the articles should be detected by the discharged article detection sensors Sb (1) to Sb (3). If the discharged article detection sensors Sb (1) to (3) are not detected, it can be determined that some trouble has occurred. For example, it is possible to detect a problem that an article is sandwiched between the guide member 8 and the transport belt 7.
  • the number k that designates one of the article discharge mechanisms 4 is set to “1” (step S501), and the articles discharged from the article discharge mechanism 4 of the number k are handled. It is determined whether or not a discharging detection flag indicating that the discharged article detection sensor Sb (k) to be detected is being detected (step S502). When the discharging detection flag is ON, it is determined whether the discharged article detection sensor Sb (k) is ON, that is, whether the article is continuously detected (step S503). When the article is continuously detected, the article discharge detection time (k) of the article discharge mechanism 4 of number k is increased (step S504), and whether or not the article discharge detection time k has reached a predetermined time.
  • step S505 Determination is made (step S505), and when a predetermined time is reached, the guide member 8 is turned off, that is, the guide member 8 is retracted from the conveyance path, assuming that an appropriate amount of articles has been discharged (step S506).
  • step S506 the discharge detection flag indicating that the article discharged from the article discharge mechanism 4 of number k is being detected is turned OFF (step S507), and the guide member 8 of the article discharge mechanism 4 of number k is being driven.
  • the driving flag indicating the presence is turned off (step S508).
  • step S509 the number k is incremented (step S509), and it is determined whether or not the number k has become “4”, that is, whether or not the discharge processing of the three article discharge mechanisms 4 has been completed (step S510). When the value is not “4”, the process returns to step S502. When the value is “4”, the process returns from the subroutine.
  • step S502 when the discharge detection flag indicating that the corresponding discharge article detection sensor Sb (k) is detecting the article discharged from the article discharge mechanism 4 of number k is not ON, the article of number k It is determined whether or not a driving flag indicating that the guide member 8 of the discharging mechanism 4 is being driven is ON (step S511).
  • the driving flag is ON, it is determined whether or not the discharged article detection sensor Sb (k) is ON, that is, whether or not an article has been detected (step S512).
  • the discharge detection flag indicating that the article discharged from the article discharge mechanism 4 of number k is being detected is turned on, and the process proceeds to step S509 (step S513).
  • step S512 When the discharged article detection sensor Sb (k) is not turned on in step S512, the discharge defect detection time for detecting the discharge defect of the article discharge mechanism 4 of number k is increased (step S514), and the discharge defect detection time is predetermined. It is determined whether it is time (step S515). When the predetermined time is reached, the discharge failure of the article discharge mechanism 4 of number k is displayed, for example, on the programmable display 29, and the process proceeds to step S509 (step S516).
  • step S511 when the driving flag indicating that the guide member 8 of the article discharge mechanism 4 of number k is being driven is not ON, the article discharge command flag for the article discharge mechanism 4 of number k is turned ON. It is determined whether or not (step S517). When the discharge command flag is ON, whether or not the preceding article detection sensor Sa (k) that detects the article passing through the detection area immediately before the article discharge mechanism 4 of number k is turned on, that is, the article is detected. It is determined whether or not (step S518). When the article is detected, the guide member 8 of the article discharge mechanism 4 with the number k is driven to set the discharge posture to advance into the conveyance path (step S519).
  • step S520 the driving flag indicating that the guide member 8 of the article discharge mechanism 4 of number k is being driven is turned ON (step S520), and the article discharge command flag for the article discharge mechanism 4 of number k is turned OFF (step S520).
  • step S521) the discharge failure detection time of the article discharge mechanism 4 of number k is set to “0”, and the process proceeds to step S509 (step S522).
  • each of the three distribution conveyance mechanisms 5 outside the conveyance path is guided by the guide member 8 of the article discharge mechanism 4 at three positions on the conveyance path. It is discharged to each swivel conveyor 14.
  • the discharged articles are distributed and conveyed to the troughs 15 of the three vibration feeders 6 by the swivel conveyors 14 respectively. That is, the article supplied at one location on the upper side in the conveyance direction of the front-stage conveyance mechanism 3 is distributed and conveyed to the troughs 15 of the nine vibration feeders 6, and the troughs 15 of the vibration feeders 6 use the 9 of the combination weigher 2. It can be supplied to the individual article inlet 25.
  • the article w which is a piece of sticky broiler meat
  • the nine article insertion ports 25 of the combination weigher 2 can be automatically supplied to the nine article insertion ports 25 of the combination weigher 2.
  • the operator grasps a piece of meat and puts it into the article insertion port 25 of the combination scale 2. There is no need, and a great deal of labor can be saved.
  • the pre-stage transport mechanism can be arbitrarily selected according to the size, weight, property, etc. of the article w.
  • an annular belt connecting a large number of lateral slat bars made of a hard resin material or a metal material It is also possible to use a slat type conveyor, a wire mesh belt conveyor, or the like.
  • the article discharge mechanism is provided with a pusher that can be moved in and out in the direction orthogonal to the conveyance direction on the side of the conveyance path, and the pusher is advanced into the conveyance path to push the article outward of the conveyance path. It can also be.
  • the distribution transport mechanism may be configured to vibrate and transport instead of the conveyor.
  • the rear-stage transport mechanism can be a belt conveyor type instead of the vibration feeder.
  • the article detection sensor is not limited to the transmission type photoelectric sensor as described above, and other sensors such as a reflection type photoelectric sensor and an ultrasonic sensor may be used.
  • the place where the article is discharged by the article discharge mechanism and the distribution destination where the article is distributed by the distribution transport mechanism are not limited to three places, but are arbitrary.
  • the article is supplied to the article input port of the combination weigher by the article supply device.
  • the article supply device for example, on the plurality of supply conveyors of the semi-automatic combination weigher of Patent Document 2 described above.
  • the article may be supplied to the apparatus, and the article may be supplied to other devices without being limited to the combination weigher.
  • the articles distributed by the distribution transport mechanism are transported to the article input port of the combination weigher which is each supply destination by the vibration feeder as the rear transport mechanism, but the rear transport mechanism is omitted and distributed. Articles may be directly distributed and supplied to each supply destination by the transport mechanism.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Feeding Of Articles To Conveyors (AREA)
  • Branching, Merging, And Special Transfer Between Conveyors (AREA)
  • Discharge Of Articles From Conveyors (AREA)
  • Sorting Of Articles (AREA)

Abstract

The present invention is equipped with: an upstream transport mechanism for transporting a supplied item along a transport path; an item discharge mechanism which, at a plurality of locations in the transport direction of the upstream transport mechanism, is capable of switching between a permission state for passing therethrough and moving the transported item as is, and a discharge state for discharging the transported item in an outward direction from the transport path; and a distribution transport mechanism for dividing and transporting items discharged by the item discharge mechanism at a plurality of additional different locations.

Description

物品供給装置及びそれを備えた計量システムArticle supply apparatus and weighing system including the same
 本発明は、各種の物品を複数個所に供給する物品供給装置及びそれを備える計量システムに関する。更に詳しくは、本発明は、物品の供給が人手によって行われる半自動式の組合せ秤への物品の供給に好適な物品供給装置及びそれを備えた計量システムに関する。 The present invention relates to an article supply apparatus that supplies various articles to a plurality of locations and a weighing system including the article supply apparatus. More specifically, the present invention relates to an article supply apparatus suitable for supplying articles to a semi-automatic combination weigher in which the articles are supplied manually and a weighing system including the article supply apparatus.
 組合せ秤は、複数の計量部を有し、各計量部に供給された物品の重量を種々組合せた合計重量である組合せ重量が、所定重量範囲となる計量部の組合せを選択し、選択した計量部の物品を排出するものである。 The combination weigher has a plurality of weighing units, selects a combination of weighing units in which the combined weight, which is the total weight of various combinations of the weights of articles supplied to each weighing unit, falls within a predetermined weight range, and selects the selected weighing unit. Part of the product is discharged.
 この組合せ秤は、計量部への物品の供給方法及び排出方法の違いにより、自動式、半自動式、手動式に大別することができる。手動式の組合せ秤では、物品の供給と排出が人手によって行われる。また、半自動式の組合せ秤では、物品の供給は人手によって行われ、物品の排出は自動で行われる。また、自動式の組合せ秤では、人手によらず、物品の供給と排出が自動で行われる。 This combination weigher can be roughly divided into automatic, semi-automatic and manual types depending on the method of supplying and discharging articles to the weighing section. In the manual combination weigher, supply and discharge of articles are performed manually. In the semi-automatic combination weigher, the article is supplied manually and the article is automatically discharged. Further, in an automatic combination weigher, supply and discharge of articles are automatically performed regardless of human hands.
 半自動式の組合せ秤では、人手で物品を組合せ秤に供給するので、単体重量が比較的大きく不定形な物品や機械によるハンドリングが難しい物品、例えば、粘着性のある鶏肉などの肉片や魚介類などを取り扱う上で好適である。 Semi-automatic combination weighers manually supply articles to the combination weigher, so that the unit weight is relatively large and irregular, or difficult to handle by machines, such as sticky chicken pieces or seafood It is suitable for handling.
 このような人手による物品供給を行う半自動式の組合せ秤として、例えば、特許文献1には、組合せ秤の複数の計量ホッパの投入口の周囲を、物品を載せて循環する循環コンベヤを設けた組合せ秤が記載されている。この組合せ秤では、作業者は、各計量ホッパの投入口の近傍位置にある循環コンベヤ上の物品を掴んで前記投入口へ投入する。 As such a semi-automatic combination weigher that manually supplies articles, for example, Patent Document 1 discloses a combination provided with a circulation conveyor that circulates articles around the inlets of a plurality of weighing hoppers of the combination weigher. A scale is described. In this combination weigher, an operator grasps an article on a circulation conveyor in the vicinity of the input port of each weighing hopper and inputs it to the input port.
 また、特許文献2には、人手によって物品を複数の供給コンベヤ上に載置する組合せ秤が記載されている。この組合せ秤では、載置された物品が、各供給コンベヤによって、複数の各計量コンベヤ上へ供給されて計量される。計量された各計量コンベヤ上の物品の重量を種々組合せた合計重量である組合せ重量が、所定重量範囲となる計量コンベヤの組合せが選択される。選択された計量コンベヤ上の物品が、集合コンベヤを介して排出される。 Patent Document 2 describes a combination weigher in which articles are manually placed on a plurality of supply conveyors. In this combination weigher, the placed article is supplied to each of the plurality of weighing conveyors by each supply conveyor and weighed. A combination of weighing conveyors is selected in which the combined weight, which is the total weight of various weights of the weighed articles on each weighing conveyor, falls within a predetermined weight range. Articles on the selected weighing conveyor are ejected through the collecting conveyor.
実開昭60-7033号公報Japanese Utility Model Publication No. 60-7033 特開2012-251990号公報JP 2012-251990 A
 上記特許文献1,2に記載の半自動式の組合せ秤は、いずれも複数の計量ホッパへの投入口や複数の供給コンベヤ上に、作業者が物品を掴んで供給しなければならない。このため、多量の物品の計量処理には、多大な労力を要する。 In the semi-automatic combination weighers described in Patent Documents 1 and 2 above, an operator must grab and supply articles on the input ports to a plurality of weighing hoppers and a plurality of supply conveyors. For this reason, a great deal of labor is required for weighing a large amount of articles.
 本発明は、このような点に着目してなされたものであって、複数の供給先に、物品を自動で分配供給できる物品供給装置及びそれを備えた計量システムを提供することを目的とする。 The present invention has been made paying attention to such points, and it is an object of the present invention to provide an article supply apparatus capable of automatically distributing and supplying articles to a plurality of supply destinations and a weighing system including the article supply apparatus. .
 上記目的を達成するために、本発明では次のように構成している。 In order to achieve the above object, the present invention is configured as follows.
 (1)本発明に係る物品供給装置は、供給される物品を搬送する前段搬送機構と、前記前段搬送機構による前記物品の搬送経路の複数個所において、搬送されてきた物品の通過を許容する許容状態と、搬送されてきた物品を前記搬送径路外に排出する排出状態とに切換え可能な物品排出機構と、前記物品排出機構で前記搬送経路外へ排出された物品を、複数個所に振分け搬送する分配搬送機構とを備える。 (1) The article supply apparatus according to the present invention is configured to allow passage of an article that has been conveyed at a plurality of locations on a former conveyance mechanism that conveys the article to be supplied and the article conveyance path by the former conveyance mechanism. An article discharge mechanism capable of switching between a state and a discharge state in which the conveyed article is discharged out of the conveyance path, and an article discharged out of the conveyance path by the article discharge mechanism is distributed and conveyed to a plurality of locations. A distribution transport mechanism.
 本発明の物品供給装置によると、前段搬送機構の搬送方向の上手側において物品を供給すると、前段搬送機構によって搬送される物品は、その搬送径路の複数個所において物品排出機構によって搬送経路外に排出される。排出された物品は、分配搬送機構によって更に複数個所に振り分け搬送される。したがって、例えば、物品排出機構を搬送径路の3箇所に配備すると共に、分配搬送機構で更に3箇所に分配するようにすると、前段搬送機構の上手側の1箇所で供給した物品を、所定の9箇所に分配供給することが可能となる。 According to the article supply device of the present invention, when an article is supplied on the upper side in the conveyance direction of the preceding conveyance mechanism, the article conveyed by the preceding conveyance mechanism is discharged out of the conveyance path by the article ejection mechanism at a plurality of locations on the conveyance path. Is done. The discharged articles are further distributed and transported to a plurality of locations by the distribution transport mechanism. Therefore, for example, when the article discharge mechanism is arranged at three places on the conveyance path and is further distributed to three places by the distribution conveyance mechanism, the article supplied at one place on the upper side of the front-stage conveyance mechanism is given a predetermined 9 It becomes possible to distribute and supply to locations.
 これによって、前段搬送機構の上手側の1箇所に、従来、半自動式の組合せ秤へ人手によって供給されていた物品を供給することによって、半自動式の組合せ秤の複数の物品投入口等へ物品を分配して供給することができる。これによって、従来のように、作業者が、物品を一々掴んで半自動式の組合せ秤の物品投入口へ投入する必要がなく、作業者の労力が大幅に軽減される。 In this way, by supplying an article that has been manually supplied to a semi-automatic combination weigher in one place on the upper side of the front-side transport mechanism, the article is supplied to a plurality of article input ports of the semi-automatic combination weigher. Can be distributed and supplied. This eliminates the need for the operator to grab the articles one by one and put them into the article input port of the semi-automatic combination weigher as in the prior art, thereby greatly reducing the labor of the operator.
 (2)本発明の好ましい実施態様では、前記分配搬送機構の各振分け先に搬送されてきた各物品を、それぞれ搬送する後段搬送機構を備える。 (2) In a preferred embodiment of the present invention, a post-stage transport mechanism that transports each article that has been transported to each distribution destination of the distribution transport mechanism is provided.
 この実施態様によると、分配搬送機構で振分けられた物品を、後段搬送機構によって物品の供給先へ更に搬送するので、この後段搬送機構において、物品を任意の搬送速度で搬送したり、搬送を停止したりすることができる。これによって、物品の供給先の要求に応じたタイミングで物品を供給するのが容易となる。 According to this embodiment, since the articles distributed by the distribution transport mechanism are further transported to the article supply destination by the rear transport mechanism, the rear transport mechanism transports the articles at an arbitrary transport speed or stops transport. You can do it. This makes it easy to supply the article at a timing according to the request of the article supply destination.
 (3)本発明の他の実施態様では、前記後段搬送機構は、前記各物品を一定方向に振動搬送する振動フィーダである。 (3) In another embodiment of the present invention, the post-stage transport mechanism is a vibration feeder that vibrates and conveys each article in a certain direction.
 この実施態様によると、振動振幅等を変更して搬送力を強めることによって、搬送しにくい物品を搬送することができる。また、隣接した状態で搬送される物品を、振動によって個々の物品に分離させて搬送することができる。 According to this embodiment, it is possible to convey an article that is difficult to convey by changing the vibration amplitude or the like to increase the conveying force. Moreover, the articles conveyed in an adjacent state can be separated into individual articles and conveyed by vibration.
 (4)本発明の更に他の実施態様では、前記物品排出機構は、前記許容状態では、前記搬送径路から退避して物品の通過移動を許容する退避姿勢となる一方、前記排出状態では、前記搬送径路上に進出して物品を前記搬送経路の外側方に案内する排出姿勢となるガイド部材を備える。 (4) In still another embodiment of the present invention, the article discharge mechanism is in a retracted position in which the article discharge mechanism is retracted from the conveyance path to allow passage of the article in the allowable state, whereas in the discharge state, the article discharge mechanism is A guide member is provided which has a discharge posture to advance on the conveyance path and guide the article to the outside of the conveyance path.
 この実施形態によると、物品排出機構のガイド部材が退避姿勢にあるときには、物品はそのまま搬送されて物品排出機構を通過し、ガイド部材が排出姿勢にあるときには、物品はガイド部材に案内されて、搬送経路の外側方に排出されることになる。したがって、搬送径路の複数個所で物品排出機構のガイド部材を駆動して排出姿勢にすることによって、搬送径路上を移動する物品を的確に所望箇所で排出することができる。 According to this embodiment, when the guide member of the article discharge mechanism is in the retracted posture, the article is conveyed as it is and passes through the article discharge mechanism, and when the guide member is in the discharge posture, the article is guided by the guide member, It is discharged to the outside of the transport path. Accordingly, by driving the guide member of the article discharge mechanism at a plurality of locations on the conveyance path to the discharge posture, the article moving on the conveyance path can be accurately discharged at a desired location.
 (5)本発明の他の実施態様では、前記分配搬送機構は、前記物品排出機構によって排出された物品を搬送すると共に、搬送始端側を中心にして複数位置に切換え回動可能な旋回コンベヤを備える。 (5) In another embodiment of the present invention, the distribution transport mechanism transports an article discharged by the article discharge mechanism, and a swivel conveyor that can be switched to a plurality of positions around the transport start end side. Prepare.
 この実施態様によると、旋回コンベヤは、搬送始端側を中心に回動するので、旋回コンベヤがどのような回動位置にあっても、物品排出機構によって排出された物品を、旋回コンベヤの搬送始端側に移載することができる。したがって、旋回コンベヤの振分け作動状態に関係なく、任意のタイミングで物品排出機構から旋回コンベヤへの物品の移載を行うことができる。 According to this embodiment, since the swivel conveyor rotates around the conveyance start end side, the articles discharged by the article discharge mechanism can be used to convey the articles discharged by the article discharge mechanism regardless of the rotation position of the swivel conveyor. Can be transferred to the side. Therefore, the articles can be transferred from the article discharge mechanism to the orbiting conveyor at an arbitrary timing regardless of the distribution operation state of the orbiting conveyor.
 (6)本発明の更に他の実施態様では、前記搬送経路の前記複数個所にそれぞれ対応する検知領域を通過する前記物品を検知する第1物品検知センサと、前記物品排出機構によって、前記分配搬送機構へ排出される物品を検知する第2物品検知センサと、前記第1物品検知センサ及び前記第2物品検知センサの検知出力に基づいて、前記物品排出機構の前記許容状態と前記排出状態とを切換え制御する制御装置とを備える。 (6) In still another embodiment of the present invention, the distributed conveyance is performed by the first article detection sensor that detects the article that passes through the detection areas respectively corresponding to the plurality of locations on the conveyance path, and the article discharge mechanism. Based on the detection output of the second article detection sensor for detecting the article discharged to the mechanism, the first article detection sensor and the second article detection sensor, the permissible state and the discharge state of the article discharge mechanism. And a control device for switching control.
 この実施態様によると、第1物品検知センサは、物品排出機構によって物品を排出する搬送経路の複数個所にそれぞれ対応する検知領域を通過する物品を検知する。したがって、制御装置は、第1物品検知センサの検知出力に基づいて、物品排出機構を排出状態に切換え制御することで、搬送経路の前記複数個所での物品の排出を開始させることができる。また、第2物品検知センサは、物品排出機構によって、分配搬送機構へ排出される物品を検知する。したがって、制御装置は、第2物品検知センサの検知出力に基づいて、物品が排出されたとして、物品排出機構を、物品の通過を許容する許容状態に切換え制御することで、搬送経路の前記複数個所での物品の排出を終了させることができる。 According to this embodiment, the first article detection sensor detects articles passing through detection areas respectively corresponding to a plurality of locations on the conveyance path for discharging the articles by the article discharge mechanism. Therefore, the control device can start discharging the articles at the plurality of locations on the transport path by switching the article discharge mechanism to the discharge state based on the detection output of the first article detection sensor. The second article detection sensor detects an article discharged to the distribution transport mechanism by the article discharge mechanism. Therefore, the control device switches the article discharge mechanism to an allowable state that allows passage of articles based on the detection output of the second article detection sensor, thereby controlling the plurality of conveyance paths. The discharge of the article at the location can be terminated.
 (7)本発明の他の実施態様では、前記制御装置は、前記第2物品検知センサからの前記検知出力の継続時間に基づいて、前記物品排出機構の前記排出状態の継続時間を制御する。 (7) In another embodiment of the present invention, the control device controls the duration of the discharge state of the article discharge mechanism based on the duration of the detection output from the second article detection sensor.
 この実施態様によると、第2物品検知センサは、物品排出機構によって分配搬送機構へ排出される物品を検知している期間は、検知出力を継続して与えるので、この検知出力の継続時間は、物品排出機構によって分配搬送機構へ排出される物品の量、すなわち、分配搬送機構へ供給される物品の量に対応したものとなる。 According to this embodiment, since the second article detection sensor continuously provides the detection output during the period when the article discharged to the distribution transport mechanism is detected by the article discharge mechanism, the duration of this detection output is: This corresponds to the amount of articles discharged to the distribution and transport mechanism by the article discharge mechanism, that is, the amount of articles supplied to the distribution and transport mechanism.
 制御装置は、第2物品検知センサの検知出力の継続時間に基づいて、物品排出機構の排出状態の継続時間、すなわち、物品排出機構によって物品を分配搬送機構へ排出する時間を制御することができる。したがって、例えば、分配搬送機構へ供給される物品の量が略一定になった時点で物品排出機構による物品の排出を終了したり、あるいは、分配搬送機構へ供給される物品の量が、分配搬送機構によって物品が振分けられる振分け先の物品の要求量になった時点で物品排出機構による物品の排出を終了するといったことが可能となる。 The control device can control the duration of the discharge state of the article discharge mechanism based on the detection output duration of the second article detection sensor, that is, the time for discharging the article to the distribution transport mechanism by the article discharge mechanism. . Therefore, for example, when the amount of articles supplied to the distribution transport mechanism becomes substantially constant, the discharge of the articles by the article discharge mechanism is terminated, or the amount of articles supplied to the distribution transport mechanism is distributed and transported. It becomes possible to end the discharge of the article by the article discharge mechanism when the requested amount of the distribution-destination article to which the article is distributed by the mechanism is reached.
 (8)本発明に係る計量システムは、上記(1)ないし(7)のいずれかの物品供給装置と、複数の計量部を有し、かつ、各計量部に供給された前記物品の重量を組合せた組合せ重量が、所定重量範囲となる前記計量部の組合せを選択する組合せ演算を行って、選択した計量部から前記物品を排出する組合せ秤とを備え、前記組合せ秤には、前記物品供給装置の前記分配搬送機構によって前記複数個所に振分け搬送された前記物品が供給される。 (8) A weighing system according to the present invention includes the article supply device according to any one of the above (1) to (7), a plurality of weighing units, and the weight of the article supplied to each weighing unit. A combination weigher that performs a combination calculation for selecting a combination of the weighing units in which the combined weight falls within a predetermined weight range, and discharges the article from the selected weighing unit; The articles distributed and conveyed to the plurality of places by the distribution and conveyance mechanism of the apparatus are supplied.
 本発明の計量システムによると、物品供給装置は、前段搬送機構の搬送経路の上手側において供給した物品を、分配搬送して、組合せ秤における、複数の計量部に対応する複数の物品供給先である物品投入口等に供給することができる。これによって、従来のように、作業者が、物品を一々掴んで半自動式の組合せ秤の物品投入口へ投入する必要がなく、作業者の労力が大幅に軽減される。 According to the weighing system of the present invention, the article supply device distributes and conveys articles supplied on the upper side of the conveyance path of the preceding conveyance mechanism, and at a plurality of article supply destinations corresponding to a plurality of weighing units in the combination weigher. It can be supplied to an article input port or the like. This eliminates the need for the operator to grab the articles one by one and put them into the article input port of the semi-automatic combination weigher as in the prior art, thereby greatly reducing the labor of the operator.
 本発明によれば、前段搬送機構の搬送方向の上手側において物品を供給すると、前段搬送機構によって搬送される物品は、その搬送径路の複数個所において物品排出機構によって搬送経路外に排出される。排出された物品は、分配搬送機構によって更に複数個所に振り分け搬送されるので、前段搬送機構の上手側の1箇所で供給した物品を、複数の供給先に分配して供給することが可能となる。 According to the present invention, when an article is supplied on the upper side in the conveyance direction of the preceding conveyance mechanism, the article conveyed by the preceding conveyance mechanism is discharged out of the conveyance path by the article discharge mechanism at a plurality of locations on the conveyance path. Since the discharged articles are further distributed and conveyed to a plurality of places by the distribution and conveyance mechanism, the articles supplied at one place on the upper side of the preceding conveyance mechanism can be distributed and supplied to a plurality of supply destinations. .
 これによって、前段搬送機構の上手側の1箇所に、従来、半自動式の組合せ秤へ人手によって供給されていた物品を、供給することによって、半自動式の組合せ秤の複数の物品投入口等へ物品を分配して供給することができる。したがって、従来のように、作業者が、物品を一々掴んで半自動式の組合せ秤の物品投入口へ投入する必要がなく、作業者の労力が大幅に軽減される。 As a result, by supplying an article that has been manually supplied to a semi-automatic combination weigher to one place on the upper side of the front-stage transport mechanism, the article is supplied to a plurality of article input ports of the semi-automatic combination scale. Can be distributed and supplied. Therefore, unlike the prior art, it is not necessary for the operator to grasp the articles one by one and put them into the article input port of the semi-automatic combination weigher, and the labor of the operator is greatly reduced.
図1は計量システムの実施形態の全体斜視図である。FIG. 1 is an overall perspective view of an embodiment of a weighing system. 図2は図1の計量システムの平面図である。FIG. 2 is a plan view of the weighing system of FIG. 図3は図1の計量システムの側面図である。FIG. 3 is a side view of the metering system of FIG. 図4は一組の物品分配箇所を示す斜視図である。FIG. 4 is a perspective view showing a set of article distribution locations. 図5は一組の物品分配箇所を示す概略正面図である。FIG. 5 is a schematic front view showing a set of article distribution locations. 図6は組合せ秤の概略側面図である。FIG. 6 is a schematic side view of the combination weigher. 図7は物品を検知する物品検知センサの配置状態を示す概略平面図である。FIG. 7 is a schematic plan view showing an arrangement state of an article detection sensor for detecting an article. 図8は図1の計量システムの制御構成を示すブロック図である。FIG. 8 is a block diagram showing a control configuration of the weighing system of FIG. 図9は物品供給装置の全体制御の一例を示すフローチャートである。FIG. 9 is a flowchart illustrating an example of overall control of the article supply apparatus. 図10は振動フィーダの制御の一例を示すフローチャートである。FIG. 10 is a flowchart showing an example of control of the vibration feeder. 図11は分配搬送機構の制御の一例を示すフローチャートである。FIG. 11 is a flowchart illustrating an example of control of the distribution transport mechanism. 図12は物品排出機構の制御の一例を示すフローチャートである。FIG. 12 is a flowchart illustrating an example of control of the article discharge mechanism.
 以下、本発明の一実施形態に係る物品供給装置及びそれを備えた計量システムを図面に基づいて説明する。 Hereinafter, an article supply apparatus according to an embodiment of the present invention and a weighing system including the same will be described with reference to the drawings.
 図1は、本発明の一実施形態に係る計量システムの全体構成を示す斜視図、図2はその平面図、図3はその側面図である。この実施形態の計量システムは、物品供給を行う物品供給装置1と、従来では、物品の供給が人手によって行われていた半自動式の組合せ秤2とを備えている。 FIG. 1 is a perspective view showing the overall configuration of a weighing system according to an embodiment of the present invention, FIG. 2 is a plan view thereof, and FIG. 3 is a side view thereof. The weighing system according to this embodiment includes an article supply apparatus 1 that supplies articles and a semi-automatic combination scale 2 that conventionally supplies articles manually.
 この計量システムは、半自動式の組合せ秤2に対して、物品供給装置1によって物品を、自動で供給するものである。したがって、全体として、物品の供給及び排出を自動で行う、自動式の組合せ秤と称することもできる。 This weighing system automatically supplies articles to the semi-automatic combination balance 2 by the article supply apparatus 1. Therefore, as a whole, it can also be called an automatic combination weigher that automatically supplies and discharges articles.
 この実施形態では、単体重量が比較的大きく不定形で、機械によるハンドリングが難しい粘着性を有するような物品、例えば、ブロイラー(肉用鶏)を解体したモモ肉あるいはムネ肉といったブロック状の肉片を計量対象としている。 In this embodiment, an article having a relatively large unit weight and an indeterminate shape and having an adhesive property that is difficult to handle by a machine, for example, a block-shaped piece of meat such as peach meat or fillet that has been disassembled from a broiler (meat chicken) is used. Measured.
 すなわち、この実施形態の計量システムは、ブロイラーの解体ラインの計量工程に好適なシステムである。 That is, the measuring system of this embodiment is a system suitable for the measuring process of the broiler dismantling line.
 物品供給装置1は、水平に配備した前段搬送機構3と、その搬送径路の複数箇所、この例では3箇所に配備した物品排出機構4と、各物品排出機構4にそれぞれ対応する3台の分配搬送機構5と、各分配搬送機構5に対応して複数台ずつ、この例では3台ずつ並列配備した後段搬送機構としての振動フィーダ6とを備えている。 The article supply apparatus 1 includes a front-stage transport mechanism 3 that is horizontally arranged, an article discharge mechanism 4 that is provided at a plurality of locations on the transport path, in this example, three locations, and three distributions corresponding to the respective article discharge mechanisms 4. A plurality of transport mechanisms 5 corresponding to each of the distribution transport mechanisms 5, and in this example, three vibration feeders 6 as rear transport mechanisms arranged in parallel in this example are provided.
 前段搬送機構3は、水平に巻回した搬送ベルト7を、図2において、矢符Aで示されるように、右方から左方に一定の速度で回転駆動されるベルトコンベヤで構成されている。前段搬送機構3の搬送ベルト7の右方の始端側において、解体されたブロイラーの肉片が、物品wとして供給される。 As shown by an arrow A in FIG. 2, the front-stage transport mechanism 3 is configured by a belt conveyor that is rotated at a constant speed from right to left as indicated by an arrow A in FIG. . On the right-side start end side of the transport belt 7 of the front-stage transport mechanism 3, the broiler meat pieces disassembled are supplied as articles w.
 物品排出機構4は、前段搬送機構3における搬送径路を挟む一方側に設置されて縦支点aを中心にして、揺動駆動可能な長板状のガイド部材8を備えている。このガイド部材8は、図2中の実線で示すように、搬送径路の前記一方側に外れて搬送方向に沿った退避姿勢となる許容状態では、前段搬送機構3による搬送径路上の物品wの通過が許容される。ガイド部材8が駆動されて、図2中の仮想線で示すように、前記縦支点aを中心に搬送経路側へ揺動すると、長板状のガイド部材8が、平面視で搬送径路に斜めに交差した排出姿勢の排出状態となる。この排出状態では、搬送径路に沿って搬送される物品wは、搬送経路を斜めに横切るように交差しているガイド部材8の板面に沿って、徐々に搬送径路の他方側の外方へ案内されて、搬送経路から排出される。 The article discharge mechanism 4 includes a long plate-shaped guide member 8 that is installed on one side across the conveyance path in the front-stage conveyance mechanism 3 and can be driven to swing around the vertical fulcrum a. As shown by a solid line in FIG. 2, the guide member 8 is in an allowable state in which the guide member 8 moves away from the one side of the conveying path and assumes a retracted posture along the conveying direction. Passage is allowed. When the guide member 8 is driven and swings toward the conveyance path around the longitudinal fulcrum a as shown by the phantom line in FIG. 2, the long plate-shaped guide member 8 is inclined to the conveyance path in plan view. It becomes the discharge state of the discharge posture crossing. In this discharged state, the article w conveyed along the conveyance path gradually moves outward on the other side of the conveyance path along the plate surface of the guide member 8 that intersects the conveyance path diagonally. Guided and discharged from the transport path.
 前段搬送機構3の排出側には、下窄まりの傾斜した排出シュート9が固定配備されている。ガイド部材8によって案内排出された物品wは、この排出シュート9を介して前記他方側の下方に滑落案内される。 A discharge chute 9 having a slanted bottom is fixedly disposed on the discharge side of the front-stage transport mechanism 3. The article w guided and discharged by the guide member 8 is slid down and guided to the lower side of the other side via the discharge chute 9.
 このように物品排出機構4は、長板状のガイド部材8を、前段搬送機構3の搬送経路に対して傾斜するように交差させて、前段搬送機構3によって搬送される物品wを、ガイド部材8の板面に沿って案内して排出する。これによって、粘着性を有するブロイラーの肉片である物品wを確実に所定の箇所で排出することができる。 As described above, the article discharge mechanism 4 crosses the long plate-shaped guide member 8 so as to be inclined with respect to the transport path of the front-stage transport mechanism 3, and the article w transported by the front-stage transport mechanism 3 is guided to the guide member. 8 is guided along the plate surface and discharged. Thereby, the article w which is a piece of broiler meat having adhesiveness can be reliably discharged at a predetermined location.
 前記分配搬送機構5は、物品排出機構4によって排出されてきた物品wを受け取る上拡がり漏斗状の投入ファネル10と、投入ファネル10に投入された物品wを搬送すると共に、所定角度だけ回動駆動可能な旋回コンベヤ14とを備えている。旋回コンベヤ14は、投入ファネル10で滑落案内された物品wを載置して水平に搬送する搬送ベルト11と、搬送ベルト11の両脇に起立配備された左右の側板12と、両側板12の終端部に取付けられた平面形状がU形の排出カバー13とを備えている。 The distribution and transport mechanism 5 transports the article funnel-shaped input funnel 10 that receives the articles w discharged by the article discharge mechanism 4 and the articles w that are input into the input funnel 10 and is rotated by a predetermined angle. Possible swivel conveyor 14. The swivel conveyor 14 includes a conveyor belt 11 for placing and horizontally conveying the articles w guided by the input funnel 10, left and right side plates 12 erected on both sides of the conveyor belt 11, and both side plates 12. A discharge cover 13 having a U-shaped planar shape attached to the end portion is provided.
 排出カバー13は、搬送ベルト11で載置搬送されてきた物品wを、搬送方向へ飛び出させることなく落下させる落下口を形成するものである。排出カバー13は、図4に示されるように、両側板12に対して搬送方向に沿って位置調節可能にボルト締め連結されている。この排出カバー13の位置調節によって物品wの大きさに対応して落下口の搬送方向の開口長さを変更し、物品wが詰まることなく的確に所定位置に落下放出されるようになっている。 The discharge cover 13 forms a drop opening through which the article w placed and transported by the transport belt 11 is dropped without jumping out in the transport direction. As shown in FIG. 4, the discharge cover 13 is bolted and connected to the side plates 12 so that the position of the discharge cover 13 can be adjusted along the conveyance direction. By adjusting the position of the discharge cover 13, the opening length in the transport direction of the drop port is changed in accordance with the size of the article w, and the article w is dropped and released to a predetermined position accurately without clogging. .
 旋回コンベヤ14は、投入ファネル10からの物品が滑落する搬送ベルト11の搬送始端側に設定された縦支点bを中心として、サーボモータによって所定角度だけ回動駆動可能である。この旋回コンベヤ14は、回動範囲における中央位置とその両側の回動端位置の3位置において、搬送ベルト11の搬送終端の落下口が、各振動フィーダ6の直上方に位置するようになっている。すなわち、旋回コンベヤ14は、縦支点bを中心として、所定角度だけ旋回して、物品wを、3台の各振動フィーダ6に振分ける。 The swivel conveyor 14 can be rotationally driven by a predetermined angle by a servo motor around a vertical fulcrum b set on the conveyance start end side of the conveyance belt 11 on which articles from the input funnel 10 slide down. In the swivel conveyor 14, the drop end at the conveyance end of the conveyance belt 11 is positioned immediately above each vibration feeder 6 at the three positions of the central position in the rotation range and the rotation end positions on both sides thereof. Yes. That is, the swivel conveyor 14 turns by a predetermined angle around the vertical fulcrum b, and distributes the article w to each of the three vibration feeders 6.
 上記のように旋回コンベヤ14は、投入ファネル10からの物品が滑落する搬送ベルト11の搬送始端側に設定された縦支点bを中心として回動する。このため、旋回コンベヤ14がどの回動位置にあっても、前段搬送機構3によって搬送される物品wを、物品排出機構4のガイド部材8によって排出して、旋回コンベヤ14の搬送始端側に供給することができる。したがって、旋回コンベヤ14の搬送始端側へ物品を供給する必要があるときには、旋回コンベヤ14の回動位置に拘わらず、前段搬送機構3の物品を物品排出機構4によって排出して、旋回コンベヤ14へ迅速に物品を供給することができる。 As described above, the swivel conveyor 14 rotates around the vertical fulcrum b set on the conveyance start end side of the conveyance belt 11 where the articles from the input funnel 10 slide down. For this reason, the article w transported by the preceding transport mechanism 3 is discharged by the guide member 8 of the article discharge mechanism 4 and supplied to the transport start end side of the swirl conveyor 14 regardless of the rotation position of the swirl conveyor 14. can do. Therefore, when it is necessary to supply an article to the conveyance start end side of the swivel conveyor 14, the article of the preceding conveyance mechanism 3 is discharged by the article discharge mechanism 4 regardless of the rotation position of the swivel conveyor 14, and is supplied to the swivel conveyor 14. Articles can be supplied quickly.
 後段搬送機構としての振動フィーダ6は、図3に示すように、樋状のトラフ15を加振機16に脱着可能に連結した直進フィーダであり、トラフ15を振動駆動することで載置した物品wを、組合せ秤2に搬送するように構成されている。トラフ15の下面には、該トラフ15を、搬送方向に向かって先下がり傾斜した状態に支持する支持フレーム17が連結されている。この支持フレーム17を加振機16の上端部に備えられた振動ヘッド16aに位置決め係合し、レバー操作されるバックル式の連結機構18を用いて締結固定するようになっている。 As shown in FIG. 3, the vibration feeder 6 as a rear-stage transport mechanism is a linear feeder in which a trough-shaped trough 15 is detachably connected to a vibration exciter 16, and an article placed by driving the trough 15 in vibration. It is comprised so that w may be conveyed to the combination scale 2. FIG. A support frame 17 is connected to the lower surface of the trough 15 to support the trough 15 in a state where the trough 15 is inclined downward toward the transport direction. The support frame 17 is positioned and engaged with a vibration head 16a provided at the upper end portion of the vibration exciter 16, and is fastened and fixed using a buckle type coupling mechanism 18 operated by a lever.
 また、トラフ15の底面及び左右の側面には、トラフ15の長手方向に沿ったスリット状の透孔19が多数整列形成されている。この透孔19は、ブロイラーを解体した肉片である物品wの表面に浮き出た油脂や油液をトラフ15外に排出する。これによって、トラフ15内面にこれら油脂や油液が多量に付着固化して物品wの搬送が困難となるのを防止している。 Further, a large number of slit-shaped through holes 19 along the longitudinal direction of the trough 15 are formed in alignment on the bottom surface and the left and right side surfaces of the trough 15. The through-hole 19 discharges the fats and oils floating on the surface of the article w, which is a piece of meat disassembled from the broiler, to the outside of the trough 15. This prevents a large amount of these fats and oils from adhering to the inner surface of the trough 15 and making it difficult to convey the article w.
 このように振動フィーダ6のトラフ15は、搬送方向に向かって先下がり傾斜し、多数の透孔19を有するので、油分を含み粘着性を有するブロイラーの肉片である物品wを、円滑に搬送することができる。 In this way, the trough 15 of the vibration feeder 6 is inclined downward toward the conveyance direction and has a large number of through holes 19, so that the article w, which is a broiler meat piece that contains oil and has an adhesive property, is smoothly conveyed. be able to.
 1台の分配搬送機構5の旋回コンベヤ14に対して、振動フィーダ6が3台ずつ並列配備されている。旋回コンベヤ14の中央位置及びその両側の回動端位置への切換え回動に応じて、各旋回コンベヤ14から3台の各振動フィーダ6のトラフ15に物品wをそれぞれ供給することができる。したがって、全体として、直線状に並列配備された9台の振動フィーダ6によって、9箇所へ物品wを振動搬送することができる。 Three vibration feeders 6 are arranged in parallel with respect to the swivel conveyor 14 of one distribution transport mechanism 5. Articles w can be respectively supplied from the respective swivel conveyors 14 to the troughs 15 of the three vibration feeders 6 in accordance with the switching of the swivel conveyor 14 to the center position and the rotation end positions on both sides thereof. Therefore, as a whole, the article w can be vibrated and conveyed to nine places by the nine vibration feeders 6 arranged in parallel in a straight line.
 各振動フィーダ6では、その駆動及び停止によって、物品wを搬送及び停止させることができる。したがって、物品wを、振動フィーダ6のトラフ15の終端部まで搬送して待機させるように制御し、組合せ秤2の物品投入口25への投入要求に応じたタイミングで物品を、組合せ秤2へ供給することができる。 Each vibration feeder 6 can convey and stop the article w by driving and stopping. Therefore, the article w is controlled so as to be transported to the end of the trough 15 of the vibration feeder 6 and placed on standby, and the article is sent to the combination weigher 2 at a timing according to the input request to the article insertion port 25 of the combination weigher 2. Can be supplied.
 3台一組の振動フィーダ6群のうち、中央のトラフ15とその両側のトラフ15との中間箇所には、分配搬送機構5の旋回コンベヤ14の終端回動軌跡に臨むように遊転ローラ20が、図示されていない固定台を介して搬送方向に水平に支承されている。この遊転ローラ20は、分配搬送機構5の旋回コンベヤ14が回動作動している途中で、中央のトラフ15と、その両側の一方側、すなわち、左または右のトラフ15との中間箇所に、不所望に落下した物品wを受け止めて、その自重によって中央のトラフ15または左右いずれかのトラフ15に回転落下させるものである。 Of the group of three vibratory feeders 6, the idler roller 20 is located at an intermediate position between the central trough 15 and the troughs 15 on both sides thereof so as to face the end turning locus of the swivel conveyor 14 of the distribution transport mechanism 5. Is supported horizontally in the transport direction via a fixed base (not shown). The idler roller 20 is located at a middle position between the central trough 15 and one side of both sides thereof, that is, the left or right trough 15 while the swivel conveyor 14 of the distribution transport mechanism 5 is rotating. The article w, which has been dropped undesirably, is received and rotated to the central trough 15 or the left or right trough 15 by its own weight.
 また、図5の概略正面図に示すように、比較的長い物品wが遊転ローラ20に跨るように乗り掛かったまま滞留してしまうこともある。この場合、次に分配搬送機構5の旋回コンベヤ14が逆向き(図5の場合は左方)に回動作動する際に、旋回コンベヤ14の終端、つまり、排出カバー13の下端部で、遊転ローラ20に乗り掛かっている物品wが押し動かされて遊転ローラ20が回転し、旋回コンベヤ14が移動する側のトラフ15に物品wを落とし込むことができる。 In addition, as shown in the schematic front view of FIG. 5, a relatively long article w may stay while riding on the idle roller 20. In this case, when the swivel conveyor 14 of the distribution transport mechanism 5 is next rotated in the reverse direction (leftward in the case of FIG. 5), the free end of the swivel conveyor 14, that is, the lower end of the discharge cover 13 is idle. The article w on the roller 20 is pushed and moved to rotate the idle roller 20, and the article w can be dropped into the trough 15 on the side where the swivel conveyor 14 moves.
 また、図4などに示すように、3台一組のトラフ15群の内、両側の左右のトラフ15の横外側における搬送始端部には、トラフ15の内方に向けて傾斜する山形の傾斜案内板21が、図示されていない固定台を介して設置されている。これによって、左または右のトラフ15に投入される物品wが、トラフ15の外方の側壁に引っ掛かることなくトラフ15内に落とし込み案内されるようになっている。 Also, as shown in FIG. 4 and the like, a mountain-shaped inclination that inclines toward the inside of the trough 15 at the conveyance start end portion on the lateral outer side of the left and right troughs 15 in the group of troughs 15 in a set of three. The guide plate 21 is installed via a fixed base (not shown). Thus, the article w put into the left or right trough 15 is guided into the trough 15 without being caught on the outer side wall of the trough 15.
 図1,図2に示すように、半自動式の組合せ秤2の上面には、多数個、この例では9個の物品投入口25が左右に直線状に列設されている。これら物品投入口25が物品供給装置1の分配排出部、すなわち、振動フィーダ6群の終端に臨むよう組合せ秤2が設置される。また、各物品投入口25には、内開き観音扉状に開閉される左右一対の投入ゲート26が駆動開閉可能に備えられている。各投入ゲート26は、物品の投入を要求している期間は開放される。 As shown in FIGS. 1 and 2, on the upper surface of the semi-automatic combination weigher 2, a large number, in this example, nine article insertion ports 25 are arranged in a straight line from side to side. The combination weigher 2 is installed so that these article insertion ports 25 face the distribution / discharge section of the article supply apparatus 1, that is, the end of the vibration feeder 6 group. In addition, each article insertion opening 25 is provided with a pair of left and right insertion gates 26 that can be opened and closed in the form of an inward opening door. Each input gate 26 is opened during a period when the input of articles is requested.
 この実施形態の計量システムでは、半自動式の組合せ秤2の物品の計量処理量が、物品供給装置1の前段搬送機構3への物品の供給量を上回るように、物品の供給量や組合せ秤2の運転速度等が設定される。 In the weighing system of this embodiment, the supply amount of the articles and the combination scale 2 are set so that the weighing processing amount of the articles of the semi-automatic combination weigher 2 exceeds the supply amount of the articles to the upstream conveying mechanism 3 of the article supply apparatus 1. The operation speed is set.
 なお、物品供給装置1の前段搬送機構3への物品の供給量が、一時的に、組合せ秤2の計量処理量を超えるような場合には、前段搬送機構3によって搬送される物品を、物品排出機構4のガイド部材8で排出させることなく、通過させることで対応することができる。 In addition, when the supply amount of the article to the upstream conveyance mechanism 3 of the article supply apparatus 1 temporarily exceeds the weighing processing amount of the combination weigher 2, the article conveyed by the upstream conveyance mechanism 3 is changed to the article. It can respond by letting it pass without discharging with the guide member 8 of the discharge mechanism 4.
 図6は、半自動式の組合せ秤2の概略側面図である。 FIG. 6 is a schematic side view of the semi-automatic combination weigher 2.
 この組合せ秤2は、基本的に従来の半自動式の組合せ秤と同様である。組合せ秤2の各物品投入口25の投入ゲート26の直下には、供給ホッパ40が配設されている。各々の供給ホッパ40の下方には、2つの収納室41-1、41-2を有する計量部としての計量ホッパ41が配設されている。 This combination weigher 2 is basically the same as a conventional semi-automatic combination weigher. A supply hopper 40 is disposed immediately below the input gate 26 of each article input port 25 of the combination weigher 2. Below each of the supply hoppers 40, a weighing hopper 41 as a weighing unit having two storage chambers 41-1 and 41-2 is disposed.
 各供給ホッパ40は、独立して開閉可能な2つの排出ゲート40a、40bを備えている。一方の排出ゲート40aを開放することによって、計量ホッパ41の一方の収納室41-1に物品を排出し、他方の排出ゲート40bを開放することによって、計量ホッパ41の他方の収納室41-2に物品を排出することが可能である。 Each supply hopper 40 includes two discharge gates 40a and 40b that can be opened and closed independently. By opening one discharge gate 40a, the articles are discharged into one storage chamber 41-1 of the weighing hopper 41, and by opening the other discharge gate 40b, the other storage chamber 41-2 of the weighing hopper 41 is discharged. It is possible to discharge the article.
 各計量ホッパ41は、その一方の収納室41-1に排出ゲート41aが設けられると共に、他方の収納室41-2に排出ゲート41bが設けられる。各排出ゲート41a、41bを開放することにより、各収納室41-1,41-2から別々に物品を排出することが可能である。 Each weighing hopper 41 is provided with a discharge gate 41a in one storage chamber 41-1 and a discharge gate 41b in the other storage chamber 41-2. By opening the discharge gates 41a and 41b, articles can be discharged separately from the storage chambers 41-1 and 41-2.
 各計量ホッパ41には、ロードセル等の重量センサ42が取り付けられている。この重量センサ42によって計量ホッパ41内の物品の重量が検出され、その出力が、後述の組合せ秤2の制御部に送られる。これにより組合せ秤2の制御部は、計量ホッパ41内の物品の重量の変化に基づいて、計量ホッパ41の各々の収納室41-1,41-2内の物品の重量を算出する。制御部は、算出した各計量ホッパ41の各々の収納室41-1,41-2内の物品の重量に基づいて、後述の組合せ演算を行う。 Each weighing hopper 41 is provided with a weight sensor 42 such as a load cell. The weight sensor 42 detects the weight of the article in the weighing hopper 41, and the output is sent to the control unit of the combination weigher 2 described later. Thus, the control unit of the combination weigher 2 calculates the weight of the articles in the storage chambers 41-1 and 41-2 of the weighing hopper 41 based on the change in the weight of the articles in the weighing hopper 41. Based on the calculated weights of the articles in the storage chambers 41-1 and 41-2 of each weighing hopper 41, the control unit performs a combination calculation described later.
 計量ホッパ41の下方には、計量ホッパ41から排出された物品を受けて搬送する集合コンベヤ43が配設されている。この集合コンベヤ43によって搬送された物品は、図示しない包装機へ供給される。包装機では、所定重量範囲となる物品を真空包装する。 Below the weighing hopper 41, a collective conveyor 43 that receives and conveys articles discharged from the weighing hopper 41 is disposed. The articles conveyed by the collective conveyor 43 are supplied to a packaging machine (not shown). In the packaging machine, an article having a predetermined weight range is vacuum packaged.
 組合せ秤2の制御部は、物品を保持している計量ホッパ41の各収納室41-1、41-2内の物品の重量を種々組合せた合計重量である組合せ重量が、所定重量範囲内となる収納室41-1、41-2の組合せを1つ選択する組合せ演算を行う。この組合せ演算で選択された収納室41-1、41-2の物品を、集合コンベヤ43へ排出する。 The control unit of the combination weigher 2 has a combination weight that is a total weight obtained by combining various weights of the articles in the storage chambers 41-1 and 41-2 of the weighing hopper 41 holding the articles within a predetermined weight range. A combination calculation for selecting one combination of the storage chambers 41-1 and 41-2 is performed. The articles in the storage chambers 41-1 and 41-2 selected by this combination calculation are discharged to the collective conveyor 43.
 上記のような構成を有する本実施形態の計量システムでは、前段搬送機構3の搬送方向の上手側である始端部に供給された物品wは、物品排出機構4によって搬送方向の3箇所から排出されて夫々の分配搬送機構5に送り込まれる。各分配搬送機構5に送り込まれた物品wは、更に3箇所に分配されて振動フィーダ6に送り込まれ、合計9台の振動フィーダ6に送り込まれる。9台の振動フィーダ6によって分配搬送された物品wが、組合せ秤2の各物品投入口25に供給される。なお、3台の物品排出機構4を通過して前段搬送機構3の終端に至った物品wは、搬出されて回収容器などに回収され、適時、人手によって再び前段搬送機構3の始端部に供給される。 In the weighing system of the present embodiment having the above-described configuration, the article w supplied to the starting end on the upper side in the transport direction of the front transport mechanism 3 is discharged from three places in the transport direction by the article discharge mechanism 4. Then, it is sent to each distribution transport mechanism 5. The articles w sent to each distribution / conveying mechanism 5 are further distributed to three places and sent to the vibration feeder 6, and sent to a total of nine vibration feeders 6. The articles w distributed and conveyed by the nine vibration feeders 6 are supplied to the article input ports 25 of the combination weigher 2. The article w that has passed through the three article discharge mechanisms 4 and has reached the end of the preceding transport mechanism 3 is unloaded, collected in a collection container, and supplied again to the starting end of the preceding transport mechanism 3 by hand at appropriate times. Is done.
 上記のような物品の供給においては、各箇所における物品wの有無、及び、組合せ秤2の各物品投入口25、各振動フィーダ6、各分配搬送機構5、物品排出機構4での物品の要求状況に応じて、各物品排出機構4、各分配搬送機構5、及び、各振動フィーダ6が制御されることになる。 In the supply of the articles as described above, the presence / absence of the articles w at each location, and the requirements of the articles at the article input ports 25 of the combination weigher 2, the vibratory feeders 6, the distribution transport mechanisms 5, and the article discharge mechanism 4. Each article discharge mechanism 4, each distribution transport mechanism 5, and each vibration feeder 6 are controlled according to the situation.
 図7は、物品wを検知する物品検知センサの設置状態の一例を示す図2に対応する概略平面図である。 FIG. 7 is a schematic plan view corresponding to FIG. 2 showing an example of the installation state of the article detection sensor for detecting the article w.
 この実施形態の各物品検知センサSa(1)~Sa(3),Sb(1)~Sb(3),Sc(1)~Sc(3),Sd(1)~Sd(3),Se(1)~Se(9),Sf(1)~Sf(9)は、例えば、投光器と受光器を備える透過形の光電センサである。これら光電センサは、対向配置された投光器と受光器の間の検知領域を通過する物品wを検知して検知出力を与える。 Each article detection sensor Sa (1) to Sa (3), Sb (1) to Sb (3), Sc (1) to Sc (3), Sd (1) to Sd (3), Se () of this embodiment 1) to Se (9) and Sf (1) to Sf (9) are, for example, transmission type photoelectric sensors including a projector and a light receiver. These photoelectric sensors detect an article w that passes through a detection region between a projector and a light receiver that are arranged to face each other, and provide a detection output.
 前段搬送機構3の搬送経路には、各物品排出機構4の直前における検知領域を通過する物品wをそれぞれ検知する第1物品検知センサとしての前段物品検知センサSa(1)~Sa(3)が配置されている。 Pre-stage article detection sensors Sa (1) to Sa (3) as first article detection sensors that respectively detect articles w that pass through a detection area immediately before each article discharge mechanism 4 are provided on the conveyance path of the pre-stage conveyance mechanism 3. Has been placed.
 また、各物品排出機構4によって排出された物品wが通過する各排出シュート9の基部には、排出された物品を検知する第2物品検知センサとしての排出物品検知センサSb(1)~Sb(3)がそれぞれ配置されている。なお、各排出シュート9の基部には、各排出物品検知センサSb(1)~Sb(3)の光路を遮らないように透孔が形成されている。 In addition, at the base of each discharge chute 9 through which the article w discharged by each article discharge mechanism 4 passes, discharged article detection sensors Sb (1) to Sb (second article detection sensors for detecting the discharged articles). 3) are arranged respectively. Note that through holes are formed in the base of each discharge chute 9 so as not to block the optical paths of the discharged article detection sensors Sb (1) to Sb (3).
 各分配搬送機構5の旋回コンベヤ14の、搬送方向の上手側である始端部及び下手側である終端部には、始端部及び終端部における物品wをそれぞれ検知する分配始端物品検知センサSc(1)~Sc(3)及び分配終端物品検知センサSd(1)~Sd(3)がそれぞれ配置されている。なお、旋回コンベヤ14の側板12及び排出カバー13には、分配始端物品検知センサSc(1)~Sc(3)及び分配終端物品検知センサSd(1)~Sd(3)の光路を遮らないように透孔が形成されている。 Distributing start end article detection sensors Sc (1 for detecting the articles w at the start end and the end of the swivel conveyor 14 of each distribution transport mechanism 5 at the start end and the end at the lower end in the transport direction, respectively. ) To Sc (3) and distribution end article detection sensors Sd (1) to Sd (3) are arranged, respectively. The side plate 12 and the discharge cover 13 of the swivel conveyor 14 do not block the optical paths of the distribution start end product detection sensors Sc (1) to Sc (3) and the distribution end end product detection sensors Sd (1) to Sd (3). A through hole is formed in the.
 後段搬送機構としての各振動フィーダ6の各トラフ15の搬送方向の上手側である始端部及び下手側である終端部には、始端部及び終端部における物品wをそれぞれ検知する後段始端物品検知センサSe(1)~Se(9)及び後段終端物品検知センサSf(1)~Sf(9)が、それぞれ配置されている。なお、振動フィーダ6のトラフ15には、後段始端物品検知センサSe(1)~Se(9)及び後段終端物品検知センサSf(1)~Sf(9)の光路を遮らないように、透孔が形成されている。 A rear-stage start-end article detection sensor that detects an article w at the start-end section and the end-end section at the start-end section on the upper side and the lower-end end section in the transport direction of each trough 15 of each vibration feeder 6 as a rear-stage transport mechanism. Se (1) to Se (9) and rear end article detection sensors Sf (1) to Sf (9) are respectively arranged. The trough 15 of the vibration feeder 6 has a through-hole so as not to block the optical paths of the rear-stage start article detection sensors Se (1) to Se (9) and the rear-stage end article detection sensors Sf (1) to Sf (9). Is formed.
 図8は、この実施形態の計量システムの制御構成を示すブロック図である。 FIG. 8 is a block diagram showing the control configuration of the weighing system of this embodiment.
 この実施形態の計量システムは、全体を制御する制御装置として、プログラマブルコントローラ(以下、「PLC」と略記する)27を備えている。 The weighing system of this embodiment includes a programmable controller (hereinafter abbreviated as “PLC”) 27 as a control device for controlling the entire system.
 このPLC27には、操作表示端末であるプログラマブル表示器29が接続されている。このプログラマブル表示器29では、前段搬送機構3や旋回コンベヤ14の搬送速度及び振動フィーダ6の振動強度等の各種の設定操作及び各種の表示が行われる。 The programmable display 29 which is an operation display terminal is connected to this PLC27. In the programmable display 29, various setting operations such as the transport speed of the upstream transport mechanism 3 and the swivel conveyor 14 and the vibration intensity of the vibration feeder 6 and various displays are performed.
 また、PLC27には、半自動式の組合せ秤2の制御部28から9個の各物品投入口25への物品の投入をそれぞれ要求するときに、投入要求信号(1)~(9)がそれぞれ入力されると共に、上記の各物品検知センサSa(1)~Sa(3),Sb(1)~Sb(3),Sc(1)~Sc(3),Sd(1)~Sd(3),Se(1)~Se(9),Sf(1)~Sf(9)の検知出力が入力される。 The PLC 27 receives input request signals (1) to (9) when the control unit 28 of the semi-automatic combination weigher 2 requests input of articles to the nine article input ports 25, respectively. In addition, each of the article detection sensors Sa (1) to Sa (3), Sb (1) to Sb (3), Sc (1) to Sc (3), Sd (1) to Sd (3), Detection outputs of Se (1) to Se (9) and Sf (1) to Sf (9) are input.
 PLC27は、前段搬送機構3を、前段搬送機構駆動制御回路30を介して制御し、物品排出機構4の各ガイド部材8を、ガイド部材駆動回路31を介して制御する。また、PLC27は、各分配搬送機構5の各旋回コンベヤ14を、旋回コンベヤ駆動制御回路32及び旋回コンベヤ旋回駆動制御回路33を介して制御し、各振動フィーダ6を、振動フィーダ駆動回路34を介して制御する。 The PLC 27 controls the front-stage transport mechanism 3 via the front-stage transport mechanism drive control circuit 30 and controls each guide member 8 of the article discharge mechanism 4 via the guide member drive circuit 31. The PLC 27 controls each swivel conveyor 14 of each distribution transport mechanism 5 via a swivel conveyor drive control circuit 32 and a swivel conveyor swivel drive control circuit 33, and each vibration feeder 6 via a vibration feeder drive circuit 34. Control.
 PLC27は、基本的に、組合せ秤2から各物品投入口25への物品の投入要求があると、投入要求のあった物品投入口25に直ちに物品を投入できるように制御する。PLC27は、各振動フィーダ6のトラフ15の終端部へ物品を搬送して待機できるように制御する。 The PLC 27 basically controls so that when an article is input from the combination weigher 2 to each article insertion port 25, the article can be immediately input into the article insertion port 25 that has been requested. The PLC 27 performs control so that the article can be conveyed to the end of the trough 15 of each vibration feeder 6 and can be on standby.
 すなわち、振動フィーダ6では、トラフ15の終端部に物品がないときには、トラフ15の始端部で検知された物品を、トラフ15の終端部まで搬送する。トラフ15の始端部で検知された物品がないときには、分配搬送機構5の旋回コンベヤ14に対して物品の投入を要求する。 That is, in the vibration feeder 6, when there is no article at the end of the trough 15, the article detected at the start of the trough 15 is conveyed to the end of the trough 15. When there is no article detected at the starting end of the trough 15, the turning conveyor 14 of the distribution transport mechanism 5 is requested to input the article.
 分配搬送機構5の旋回コンベヤ14では、物品の投入要求のあった振動フィーダ6のトラフ15へ物品を直ちに投入できるように、旋回コンベヤ14の終端部に物品を搬送すると共に、回動位置が制御される。旋回コンベヤ14の終端部に物品がないときには、旋回コンベヤ14の始端部で検知された物品を終端部へ搬送する。旋回コンベヤ14の始端部で検知された物品がないときには、物品排出機構4に対して物品の投入を要求する。 The swivel conveyor 14 of the distribution transport mechanism 5 transports the article to the terminal end of the swivel conveyor 14 and controls the rotation position so that the article can be immediately put into the trough 15 of the vibration feeder 6 where the article is requested to be placed. Is done. When there is no article at the end of the swivel conveyor 14, the article detected at the start end of the swivel conveyor 14 is conveyed to the end. When there is no article detected at the starting end of the swivel conveyor 14, the article discharge mechanism 4 is requested to input the article.
 物品の投入要求があった物品排出機構4では、物品排出機構4の直前の検知領域を通過する物品が検知されると、ガイド部材8を駆動して搬送経路に進出する排出姿勢とする。これによって、物品排出機構4は、搬送される物品を、搬送経路外の分配搬送機構5の旋回コンベヤ14へ供給する。 In the article discharge mechanism 4 in which the article input request has been made, when the article passing through the detection area immediately before the article discharge mechanism 4 is detected, the guide member 8 is driven and the discharge posture is advanced to the transport path. Thereby, the article discharge mechanism 4 supplies the article to be conveyed to the swivel conveyor 14 of the distribution conveyance mechanism 5 outside the conveyance path.
 次に、PLC27による制御の一例について更に詳細に説明する。 Next, an example of control by the PLC 27 will be described in more detail.
 図9は、この実施形態の物品供給装置1の全体制御の一例を示す概略フローチャートである。 FIG. 9 is a schematic flowchart showing an example of overall control of the article supply apparatus 1 of this embodiment.
 先ず、プログラマブル表示器29の運転スイッチがONされたか否か判断する(ステップS1)。運転スイッチがONされたときには、運転が開始され、半自動式の組合せ秤2から9個の物品投入口25に対応する投入要求信号(1)~(9)の入力があると(ステップS2)、物品供給装置1における物品の搬送方向の最も下手となる振動フィーダ6の制御を行う(ステップS3)。次に、その上手となる分配搬送機構5の制御を行い(ステップS4)、更に、その上手となる物品排出機構4の制御を行い(ステップS5)、運転スイッチがOFFされたか否かを判断する(ステップS6)。運転スイッチがOFFされたときには、終了する。 First, it is determined whether or not the operation switch of the programmable display 29 is turned on (step S1). When the operation switch is turned on, the operation is started, and when input request signals (1) to (9) corresponding to nine article input ports 25 are input from the semi-automatic combination weigher 2 (step S2), The vibration feeder 6 that is the lowest in the conveyance direction of the article in the article supply apparatus 1 is controlled (step S3). Next, the distribution / delivery mechanism 5 that is superior is controlled (step S4), the article discharge mechanism 4 that is superior is further controlled (step S5), and it is determined whether or not the operation switch is turned off. (Step S6). When the operation switch is turned off, the process ends.
 図10は、図9の全体制御フローチャートにおけるサブルーチンである振動フィーダ6の制御の一例を示すフローチャートである。 FIG. 10 is a flowchart showing an example of control of the vibration feeder 6 which is a subroutine in the overall control flowchart of FIG.
 基本的な制御は、後段終端物品検知センサSf(1)~Sf(9)で物品が検知されていない、すなわち、振動フィーダ6のトラフ15の終端部に、物品がないときには、振動フィーダ6を一定時間駆動して、トラフ15の始端部にある物品をトラフ15の終端部へ搬送する。なお、一定時間の駆動に代えて、後段終端物品検知センサSf(1)~Sf(9)によってトラフ15の終端部の物品が検知されるまで駆動するようにしてもよい。 The basic control is that when no article is detected by the rear end article detection sensors Sf (1) to Sf (9), that is, when there is no article at the end of the trough 15 of the vibration feeder 6, the vibration feeder 6 is turned on. Driving for a certain time, the article at the start end of the trough 15 is conveyed to the end of the trough 15. Instead of driving for a fixed time, the rear end article detection sensors Sf (1) to Sf (9) may be driven until the article at the end of the trough 15 is detected.
 後段始端物品検知センサSe(1)~Se(9)で物品が検知されていないとき、すなわち、振動フィーダ6のトラフ15の始端部に物品がないときには、振動フィーダ6のトラフ15へ物品を投入することを命令する物品投入命令フラグをONにして、分配搬送機構5から物品を振動フィーダ6へ投入させる。 When an article is not detected by the subsequent-stage start-end article detection sensors Se (1) to Se (9), that is, when there is no article at the start end of the trough 15 of the vibration feeder 6, the article is put into the trough 15 of the vibration feeder 6. The article input command flag for instructing to be turned on is turned ON, and the article is input from the distribution transport mechanism 5 to the vibration feeder 6.
 後段終端物品検知センサSf(1)~Sf(9)で物品が検知され、振動フィーダ6のトラフ15の終端部に物品があるときに、半自動式の組合せ秤2から物品の投入要求信号の入力があると、振動フィーダ6を一定時間駆動する。これによって、振動フィーダ6のトラフ15の終端部にある物品を半自動式の組合せ秤2の物品投入口25へ供給する。なお、一定時間の駆動に代えて、後段終端物品検知センサSf(1)~Sf(9)でトラフ15の終端部の物品が検知されなくなった時点で、物品が組合せ秤2の物品投入口25へ供給されたとして、振動フィーダ6の駆動を停止するようにしてもよい。 When an article is detected by the rear end article detection sensors Sf (1) to Sf (9) and there is an article at the end of the trough 15 of the vibration feeder 6, an input signal for an article input is input from the semi-automatic combination weigher 2 If there is, the vibration feeder 6 is driven for a certain time. As a result, the article at the end of the trough 15 of the vibration feeder 6 is supplied to the article insertion port 25 of the semi-automatic combination weigher 2. It should be noted that instead of driving for a certain period of time, when the articles at the end portion of the trough 15 are no longer detected by the rear end article detection sensors Sf (1) to Sf (9), the article becomes the article input port 25 of the combination weigher 2. As a result, the drive of the vibration feeder 6 may be stopped.
 この例では、図10に示すように、先ず振動フィーダ6の1台を指定する番号kを「1」とし(ステップS301)、番号kの振動フィーダ6が駆動中であることを示す駆動中フラグがONしているか否かを判断する(ステップS302)。駆動中フラグがONしているときには、番号kの振動フィーダ6に対応する駆動時間計測用の駆動タイマーを減じ(ステップS303)、駆動タイマーがタイムアップしたか否かを判断する(ステップS304)。 In this example, as shown in FIG. 10, first, the number k for designating one of the vibration feeders 6 is set to “1” (step S301), and the driving flag indicating that the vibration feeder 6 with the number k is being driven. It is determined whether or not is ON (step S302). When the driving flag is ON, the driving timer for driving time measurement corresponding to the vibration feeder 6 of number k is reduced (step S303), and it is determined whether or not the driving timer has expired (step S304).
 ステップS304で番号kの振動フィーダ6に対応する駆動タイマーがタイムアップしたときには、一定時間の駆動が終了したとして、番号kの振動フィーダ6の駆動を停止する(ステップS305)。駆動を停止した番号kの振動フィーダ6の駆動中フラグをOFFし(ステップS306)、番号kをインクリメントし(ステップS307)、番号kが「10」になったか否か、すなわち、9台の振動フィーダ6についての処理が終了したか否かを判断する(ステップS308)。番号kが「10」になっていないときには、ステップS302に戻り、番号kが「10」になったときには、サブルーチンから復帰する。 When the driving timer corresponding to the vibration feeder 6 with the number k is up in step S304, the driving of the vibration feeder 6 with the number k is stopped assuming that the driving for a predetermined time is finished (step S305). The driving flag of the vibration feeder 6 with the number k that has stopped driving is turned OFF (step S306), the number k is incremented (step S307), and whether or not the number k has become “10”, that is, nine vibrations It is determined whether or not the processing for the feeder 6 has been completed (step S308). When the number k is not “10”, the process returns to step S302, and when the number k is “10”, the process returns from the subroutine.
 上記ステップS302において、番号kの振動フィーダ6の駆動中フラグがONしていないときには、番号kの振動フィーダ6のトラフ15の終端部で物品を検知したか否か、すなわち、番号kの振動フィーダ6に対応する後段終端物品検知センサSf(k)によって物品を検知したか否かを判断する(ステップS309)。物品を検知したときには、半自動式の組合せ秤2から番号kに対応する投入要求信号(k)の入力があったか否かを判断する(ステップS310)。投入要求信号の入力があったときには、番号kの振動フィーダ6の駆動中フラグをONし(ステップS311)、番号kの振動フィーダ6に対応する駆動タイマーをセットし(ステップS312)、番号kの振動フィーダ6の駆動を開始してステップS307に移る(ステップS313)。 In step S302, when the driving flag of the vibration feeder 6 of number k is not ON, whether or not an article is detected at the end of the trough 15 of the vibration feeder 6 of number k, that is, the vibration feeder of number k. It is determined whether or not an article is detected by the rear end article detection sensor Sf (k) corresponding to 6 (step S309). When an article is detected, it is determined whether or not an input request signal (k) corresponding to the number k has been input from the semi-automatic combination weigher 2 (step S310). When the input request signal is input, the driving flag of the vibration feeder 6 with the number k is turned ON (step S311), a driving timer corresponding to the vibration feeder 6 with the number k is set (step S312), and the number k with the vibration feeder 6 is set. The driving of the vibration feeder 6 is started and the process proceeds to step S307 (step S313).
 上記ステップS309において、番号kの振動フィーダ6のトラフ15の終端部で物品を検知しなかったときには、番号kの振動フィーダ6のトラフ15の始端部で物品を検知したか否か、すなわち、番号kの振動フィーダ6に対応する後段始端物品検知センサSe(k)によって物品を検知したか否かを判断する(ステップS314)。物品を検知したときには、番号kの振動フィーダ6の駆動中フラグをONし(ステップS315)、番号kの振動フィーダ6に対応する駆動タイマーをセットし(ステップS316)、番号kの振動フィーダ6の駆動を開始してステップS307に移る(ステップS317)。 If no article is detected at the end of the trough 15 of the vibration feeder 6 of number k in step S309, whether or not the article is detected at the start of the trough 15 of the vibration feeder 6 of number k, that is, number It is determined whether or not an article is detected by the rear-stage starting-end article detection sensor Se (k) corresponding to the k vibration feeder 6 (step S314). When the article is detected, the driving flag of the vibration feeder 6 with the number k is turned ON (step S315), a driving timer corresponding to the vibration feeder 6 with the number k is set (step S316), and the vibration feeder 6 with the number k is set. Driving is started and the process proceeds to step S307 (step S317).
 上記ステップS314において、番号kの振動フィーダ6のトラフ15の始端部で物品を検知しなかったときには、番号kに対応する分配搬送機構5に対して、番号kの振動フィーダ6のトラフ15へ物品の投入を命令する投入命令フラグをONしてステップS307に移る(ステップS318)。 If no article is detected at the start end of the trough 15 of the vibration feeder 6 of number k in step S314, the article is sent to the trough 15 of the vibration feeder 6 of number k with respect to the distribution transport mechanism 5 corresponding to number k. The input instruction flag for instructing the input of is turned ON, and the process proceeds to step S307 (step S318).
 図11は、図9の全体制御フローチャートにおけるサブルーチンである分配搬送機構5の制御の一例を示すフローチャートである。 FIG. 11 is a flowchart showing an example of control of the distribution transport mechanism 5 which is a subroutine in the overall control flowchart of FIG.
 基本的な制御は、振動フィーダ6のトラフ15の始端部に物品がなくなれば、すなわち、後段始端物品検知センサSe(1)~Se(9)で物品が検知されなくなると、振動フィーダ6のトラフ15の始端部に物品を投入できるように、分配搬送機構5の旋回コンベヤ14の終端部に物品を搬送しておくものである。 Basic control is that if there is no article at the start end of the trough 15 of the vibration feeder 6, that is, if no article is detected by the rear-stage start-end article detection sensors Se (1) to Se (9), the trough of the vibration feeder 6 The article is transported to the terminal portion of the swivel conveyor 14 of the distribution transport mechanism 5 so that the article can be put into the start end portion 15.
 分配終端物品検知センサSd(1)~Sd(3)で物品が検知されていない、すなわち、物品が分配搬送機構5の旋回コンベヤ14の終端部になければ、旋回コンベヤ14を一定時間駆動して、旋回コンベヤ14の始端部の物品を、旋回コンベヤ14の終端部に搬送する。なお、一定時間の駆動に代えて、分配終端物品検知センサSd(1)~Sd(3)で物品が検知された時点で、物品が旋回コンベヤ14の終端部に搬送されたとして、旋回コンベヤ14の駆動を停止するようにしてもよい。 If the article is not detected by the distribution end article detection sensors Sd (1) to Sd (3), that is, if the article is not at the end of the swivel conveyor 14 of the distribution transport mechanism 5, the swivel conveyor 14 is driven for a certain time. The article at the start end of the swivel conveyor 14 is conveyed to the terminal end of the swivel conveyor 14. Note that instead of driving for a certain period of time, it is assumed that the articles are conveyed to the terminal end of the swivel conveyor 14 when the articles are detected by the distribution end article detection sensors Sd (1) to Sd (3). The driving may be stopped.
 分配始端物品検知センサSc(1)~Sc(3)で物品が検知されていない、すなわち、旋回コンベヤ14の始端部に物品がなければ、物品排出機構4に対して旋回コンベヤ14への物品の排出を命令する排出命令フラグをONにする。 If no articles are detected by the distribution start end article detection sensors Sc (1) to Sc (3), that is, if there is no article at the start end of the swivel conveyor 14, the article discharge mechanism 4 is connected to the swivel conveyor 14. The discharge command flag for commanding discharge is turned ON.
 また、振動フィーダ6のトラフ15の始端部に物品がなく、分配搬送機構5の旋回コンベヤ14の終端部に物品がある場合に、旋回コンベヤ14の回動位置が、前記振動フィーダ6のトラフ15への物品の投入位置ないときには、旋回コンベヤ14を、前記振動フィーダ6のトラフ15の投入位置に回動する。回動した旋回コンベヤ14を一定時間駆動し、旋回コンベヤ14から前記振動フィーダ6の始端部へ物品を投入する。振動フィーダ6のトラフ15の始端部に物品がなく、分配搬送機構5の旋回コンベヤ14の終端部に物品がある場合に、旋回コンベヤ14の回動位置が、前記振動フィーダ6のトラフ15への物品の投入位置にあるときには、旋回コンベヤ14を一定時間駆動する。これによって、旋回コンベヤ14から前記振動フィーダ6の始端部へ物品を投入する。なお、一定時間の駆動に代えて、分配終端物品検知センサSd(1)~Sd(3)で旋回コンベヤ14の終端部の物品が検知されなくなった時点で、物品が振動フィーダ6のトラフ15の始端部に投入されたとして、旋回コンベヤ14の駆動を停止するようにしてもよい。 Further, when there is no article at the start end of the trough 15 of the vibration feeder 6 and there is an article at the end of the swivel conveyor 14 of the distribution transport mechanism 5, the turning position of the swivel conveyor 14 is changed to the trough 15 of the vibration feeder 6. When the article loading position is not present, the swivel conveyor 14 is rotated to the loading position of the trough 15 of the vibration feeder 6. The swivel conveyor 14 that has been rotated is driven for a certain period of time, and articles are fed from the swivel conveyor 14 to the starting end of the vibration feeder 6. When there is no article at the beginning of the trough 15 of the vibration feeder 6 and there is an article at the end of the swivel conveyor 14 of the distribution transport mechanism 5, the turning position of the swivel conveyor 14 is changed to the trough 15 of the vibration feeder 6. When the article is in the loading position, the swivel conveyor 14 is driven for a predetermined time. As a result, articles are fed from the swivel conveyor 14 to the starting end of the vibration feeder 6. Instead of driving for a certain period of time, when the articles at the end of the swivel conveyor 14 are no longer detected by the distribution end article detection sensors Sd (1) to Sd (3), the articles are removed from the trough 15 of the vibration feeder 6. The driving of the swivel conveyor 14 may be stopped assuming that it has been put into the starting end.
 1つの分配搬送機構5の旋回コンベヤ14を回動して3台の振動フィーダ6のトラフ15に物品を供給するが、サーボモータで旋回コンベヤ14を回動するので、投入位置制御は容易である。 The swivel conveyor 14 of one distribution transport mechanism 5 is rotated to supply articles to the troughs 15 of the three vibratory feeders 6. However, since the swivel conveyor 14 is rotated by a servo motor, the input position control is easy. .
 この例では、図11に示すように、先ず分配搬送機構5の1台を指定する番号j、振動フィーダ6の1台を指定する番号k、及び、1台の分配搬送機構5が分配する振動フィーダ6の台数を規定する台数aを、それぞれ「1」とする(ステップS401)。番号jの分配搬送機構5の旋回コンベヤ14が駆動中であることを示す駆動中フラグがONしているか否かを判断する(ステップS402)。駆動中フラグがONしているときには、番号jの分配搬送機構5の旋回コンベヤ14に対応する駆動時間計測用の駆動タイマーを減じ(ステップS403)、駆動タイマーがタイムアップしたか否かを判断する(ステップS404)。 In this example, as shown in FIG. 11, first, a number j that designates one of the distribution transport mechanisms 5, a number k that designates one of the vibration feeders 6, and vibrations distributed by one distribution transport mechanism 5. The number a that defines the number of feeders 6 is set to “1” (step S401). It is determined whether a driving flag indicating that the swivel conveyor 14 of the distribution transport mechanism 5 of number j is being driven is ON (step S402). When the driving flag is ON, the driving timer for driving time measurement corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j is reduced (step S403), and it is determined whether or not the driving timer has timed up. (Step S404).
 ステップS404で番号jの分配搬送機構5の旋回コンベヤ14に対応する駆動タイマーがタイムアップしたときには、番号jの分配搬送機構5の旋回コンベヤ14の駆動を停止し(ステップS405)、番号jの分配搬送機構5の旋回コンベヤ14の駆動中フラグをOFFする(ステップS406)。次に、振動フィーダ6を指定する番号k及び振動フィーダ6の台数aをインクリメントし(ステップS407)、台数aが「4」になったか否か、すなわち、3台の振動フィーダ6に対する分配処理を終了したか否かを判断する(ステップS408)。台数aが「4」になっていないときには、3台の振動フィーダ6に対する分配処理が終了していないとしてステップS402に戻る。 When the drive timer corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j expires in step S404, the drive of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is stopped (step S405), and the distribution of number j is performed. The driving flag of the swivel conveyor 14 of the transport mechanism 5 is turned off (step S406). Next, the number k for designating the vibration feeder 6 and the number a of the vibration feeders 6 are incremented (step S407), and whether or not the number a has become “4”, that is, the distribution processing for the three vibration feeders 6 is performed. It is determined whether or not the processing has been completed (step S408). If the number a is not “4”, the distribution process for the three vibration feeders 6 is not completed, and the process returns to step S402.
 ステップS408で台数aが「4」になったときには、番号jの分配搬送機構5による3台の振動フィーダ6に対する分配処理が終了したとして、番号jをインクリメントすると共に、台数sを「1」に戻す(ステップS409)。次に、番号jが「4」になったか否か、すなわち、3台の分配搬送機構5に対する処理が終了したか否かを判断する(ステップS410)。「4」になっていないときには、ステップS402に戻り、「4」になったときには、サブルーチンから復帰する。 When the number a becomes “4” in step S408, it is determined that the distribution process for the three vibration feeders 6 by the distribution transport mechanism 5 with the number j is completed, and the number j is incremented and the number s is set to “1”. Return (step S409). Next, it is determined whether or not the number j has become “4”, that is, whether or not the processing for the three distribution transport mechanisms 5 has been completed (step S410). When it is not “4”, the process returns to step S402, and when it is “4”, the process returns from the subroutine.
 上記ステップS402において、番号jの分配搬送機構5の旋回コンベヤ14の駆動中フラグがONしていないときには、番号jの分配搬送機構5の旋回コンベヤ14の終端部で物品を検知したか否か、すなわち、番号jの分配搬送機構5に対応する分配終端物品検知センサSd(j)によって物品を検知したか否かを判断する(ステップS411)。物品を検知したときには、番号kの振動フィーダ6のトラフ15への物品の投入命令フラグがONしているか否か、すなわち、振動フィーダ6のトラフ15への物品の投入要求があるか否かを判断する(ステップS412)。物品投入命令フラグがONしているときには、ステップS413に移り、物品投入命令フラグがONしていないときには、ステップS407に移る。 In step S402, when the driving flag of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is not ON, whether or not an article has been detected at the end of the swivel conveyor 14 of the distribution transport mechanism 5 of number j, That is, it is determined whether or not an article is detected by the distribution end article detection sensor Sd (j) corresponding to the distribution transport mechanism 5 of number j (step S411). When an article is detected, it is determined whether or not an article input command flag to the trough 15 of the vibration feeder 6 of number k is ON, that is, whether or not there is a request to input an article to the trough 15 of the vibration feeder 6. Judgment is made (step S412). When the article input command flag is ON, the process proceeds to step S413. When the article input command flag is not ON, the process proceeds to step S407.
 ステップS413では、番号jの分配搬送機構5の旋回コンベヤ14は、その回動位置が番号kの振動フィーダ6のトラフ15に対する物品の投入位置にあるか否か、すなわち、旋回コンベヤ14の搬送ベルト11の終端が、番号kの振動フィーダ6のトラフ15の直上位置にあるか否かを判断する。投入位置にあるときには、番号kの振動フィーダ6のトラフ15への物品の投入命令フラグをOFFする(ステップS414)。次に、番号jの分配搬送機構5の旋回コンベヤ14の駆動中フラグをONし(ステップS415)、番号jの分配搬送機構5の旋回コンベヤ14に対応する駆動タイマーをセットし(ステップS416)、番号jの分配搬送機構5の旋回コンベヤ14の駆動を開始してステップS407に移る(ステップS417)。ステップS413で、番号jの分配搬送機構5の旋回コンベヤ14が、番号kの振動フィーダ6のトラフ15に対する物品の投入位置にないときには、番号jの分配搬送機構5の旋回コンベヤ14を、番号kの振動フィーダ6のトラフ15に対する物品の投入位置へ回動、すなわち、旋回させてステップS407に移る(ステップS418)。 In step S413, whether or not the swivel conveyor 14 of the distribution transport mechanism 5 with the number j is in the position where the article is put into the trough 15 of the vibration feeder 6 with the number k, that is, the transport belt of the swivel conveyor 14 is determined. It is determined whether or not the end of 11 is at a position immediately above the trough 15 of the vibration feeder 6 of number k. If it is in the loading position, an article loading command flag to the trough 15 of the vibration feeder 6 of number k is turned OFF (step S414). Next, the driving flag of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is turned ON (step S415), and a drive timer corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j is set (step S416). The driving of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is started, and the process proceeds to step S407 (step S417). In step S413, when the swivel conveyor 14 of the distribution transport mechanism 5 of number j is not in the article loading position with respect to the trough 15 of the vibration feeder 6 of number k, the swivel conveyor 14 of the distribution transport mechanism 5 of number j is moved to the number k. Then, the vibration feeder 6 is turned to the loading position of the article with respect to the trough 15 of the vibration feeder 6, that is, is turned to move to Step S 407 (Step S 418).
 上記ステップS411において、番号jの分配搬送機構5の旋回コンベヤ14の終端部で物品を検知しなかったときには、番号jの分配搬送機構5の旋回コンベヤ14の始端部で物品を検知したか否か、すなわち、番号jの分配搬送機構5に対応する分配始端物品検知センサSc(j)によって物品を検知したか否かを判断する(ステップS419)。物品を検知したときには、番号jの分配搬送機構5の旋回コンベヤ14の駆動中フラグをONし(ステップS420)、番号jの分配搬送機構5の旋回コンベヤ14に対応する駆動タイマーをセットし(ステップS421)、番号jの分配搬送機構5の旋回コンベヤ14の駆動を開始してステップS407に移る(ステップS422)。 In step S411, if no article is detected at the end of the swivel conveyor 14 of the distribution transport mechanism 5 of number j, whether or not the article is detected at the start of the swivel conveyor 14 of the distribution transport mechanism 5 of number j. That is, it is determined whether or not an article is detected by the distribution start end article detection sensor Sc (j) corresponding to the distribution transport mechanism 5 of number j (step S419). When an article is detected, the driving flag of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is turned ON (step S420), and a drive timer corresponding to the swivel conveyor 14 of the distribution transport mechanism 5 of number j is set (step S420). S421), the driving of the swivel conveyor 14 of the distribution transport mechanism 5 of number j is started, and the process proceeds to step S407 (step S422).
 上記ステップS419において、番号jの分配搬送機構5の旋回コンベヤ14の始端部で物品を検知しなかったときには、番号jの分配搬送機構5の旋回コンベヤ14へ物品を排出するように、番号jに対応する物品排出機構4への排出命令フラグをONしてステップS407に移る(ステップS423)。 In step S419, when no article is detected at the starting end of the swivel conveyor 14 of the distribution transport mechanism 5 of number j, the number j is set so as to be discharged to the swivel conveyor 14 of the distribution transport mechanism 5 of number j. The discharge command flag to the corresponding article discharge mechanism 4 is turned on, and the process proceeds to step S407 (step S423).
 図12は、図9の全体制御フローチャートにおけるサブルーチンである物品排出機構4の制御の一例を示すフローチャートである。 FIG. 12 is a flowchart showing an example of control of the article discharge mechanism 4, which is a subroutine in the overall control flowchart of FIG.
 基本的な制御は、上記分配搬送機構5の制御において、物品排出機構4への物品の排出命令フラグがONになると、分配搬送機構5の旋回コンベヤ14へ物品を排出するために、前段物品検知センサSa(1)~Sa(3)で物品を検知すると、物品排出機構4のガイド部材8を駆動して搬送経路に進出する排出姿勢とする。これによって、物品は、排出姿勢のガイド部材8に案内されて前段搬送機構3の搬送ベルト7から排出シュート9側へ落下し、この落下する物品が、排出物品検知センサSb(1)~Sb(3)で検知される。 The basic control is that when the article discharge command flag to the article discharge mechanism 4 is turned ON in the control of the distribution and transport mechanism 5, the preceding article detection is performed in order to discharge the articles to the swivel conveyor 14 of the distribution and transport mechanism 5. When the articles are detected by the sensors Sa (1) to Sa (3), the guide member 8 of the article discharge mechanism 4 is driven to set the discharge posture to advance into the conveyance path. As a result, the article is guided by the guide member 8 in the discharge posture and falls from the transport belt 7 of the front-stage transport mechanism 3 to the discharge chute 9 side, and the falling articles are discharged article detection sensors Sb (1) to Sb ( Detected in 3).
 物品排出機構4の制御プログラムは、一定時間毎にONされるので、例えば、10ms毎にONされるとすると、排出物品検知センサSb(1)~Sb(3)の検知出力が10回継続すれば、排出物品検知センサSb(1)~Sb(3)の光路を、10ms×10=100msの期間に亘って物品が遮ったことになり、物品の大体の排出量を把握できる。したがって、排出物品検知センサSb(1)~Sb(3)によって排出される物品が検知されている物品検知時間が、所定時間継続すると、物品排出機構4のガイド部材8を搬送経路から退避する退避姿勢に復帰させることで、適量の物品を、分配搬送機構5へ排出することができる。 Since the control program of the article discharge mechanism 4 is turned on at regular intervals, for example, if it is turned on every 10 ms, the detection outputs of the discharged article detection sensors Sb (1) to Sb (3) are continued 10 times. In this case, the article blocks the optical path of the discharged article detection sensors Sb (1) to Sb (3) over a period of 10 ms × 10 = 100 ms, and the amount of articles discharged can be grasped. Therefore, when the article detection time during which articles discharged by the discharged article detection sensors Sb (1) to Sb (3) are detected continues for a predetermined time, the guide member 8 of the article discharge mechanism 4 is retracted from the conveyance path. By returning to the posture, an appropriate amount of articles can be discharged to the distribution transport mechanism 5.
 また、物品排出機構4の直前の検知領域を通過する物品を検知する前段物品検知センサSa(1)~(3)で物品を検知してガイド部材8を駆動すると、上記のように物品は、排出姿勢のガイド部材8に案内される。したがって、物品は、前段搬送機構3の搬送ベルト7から排出シュート9側に排出され、排出物品検知センサSb(1)~Sb(3)で物品を検知するはずであるが、所定時間内に物品を排出物品検知センサSb(1)~(3)が検知できなければ、何らかの不具合が生じていると判断できる。例えば、物品がガイド部材8と搬送ベルト7との間に挟まっているといった不具合を検出することができる。 When the article is detected by the preceding article detection sensors Sa (1) to (3) that detect the article passing through the detection area immediately before the article discharge mechanism 4 and the guide member 8 is driven, the article is Guided by the guide member 8 in the discharging posture. Accordingly, the article should be discharged from the transport belt 7 of the upstream transport mechanism 3 to the discharge chute 9 side, and the articles should be detected by the discharged article detection sensors Sb (1) to Sb (3). If the discharged article detection sensors Sb (1) to (3) are not detected, it can be determined that some trouble has occurred. For example, it is possible to detect a problem that an article is sandwiched between the guide member 8 and the transport belt 7.
 この例では、図12に示されるように、先ず物品排出機構4の1台を指定する番号kを「1」とし(ステップS501)、番号kの物品排出機構4から排出される物品を、対応する排出物品検知センサSb(k)が検知中であることを示す排出検知中フラグがONしているか否かを判断する(ステップS502)。排出検知中フラグがONであるときには、排出物品検知センサSb(k)がONしているか、すなわち、物品を継続して検知しているか否かを判断する(ステップS503)。物品を継続して検知しているときには、番号kの物品排出機構4の物品排出の検知時間(k)を増やし(ステップS504)、物品排出の検知時間kが、所定時間になったか否かを判断し(ステップS505)、所定時間になったときには、適量の物品が排出されたとして、ガイド部材8をOFFする、すなわち、ガイド部材8を搬送経路から退避させる退避姿勢とする(ステップS506)。次に、番号kの物品排出機構4から排出される物品を検知中であることを示す排出検知中フラグをOFFし(ステップS507)、番号kの物品排出機構4のガイド部材8が駆動中であることを示す駆動中フラグをOFFする(ステップS508)。次に、番号kをインクリメントし(ステップS509)、番号kが「4」になったか否か、すなわち、3台の物品排出機構4の排出処理が終了したか否かを判断し(ステップS510)、「4」になっていないときには、ステップS502に戻り、「4」になったときには、サブルーチンから復帰する。 In this example, as shown in FIG. 12, first, the number k that designates one of the article discharge mechanisms 4 is set to “1” (step S501), and the articles discharged from the article discharge mechanism 4 of the number k are handled. It is determined whether or not a discharging detection flag indicating that the discharged article detection sensor Sb (k) to be detected is being detected (step S502). When the discharging detection flag is ON, it is determined whether the discharged article detection sensor Sb (k) is ON, that is, whether the article is continuously detected (step S503). When the article is continuously detected, the article discharge detection time (k) of the article discharge mechanism 4 of number k is increased (step S504), and whether or not the article discharge detection time k has reached a predetermined time. Determination is made (step S505), and when a predetermined time is reached, the guide member 8 is turned off, that is, the guide member 8 is retracted from the conveyance path, assuming that an appropriate amount of articles has been discharged (step S506). Next, the discharge detection flag indicating that the article discharged from the article discharge mechanism 4 of number k is being detected is turned OFF (step S507), and the guide member 8 of the article discharge mechanism 4 of number k is being driven. The driving flag indicating the presence is turned off (step S508). Next, the number k is incremented (step S509), and it is determined whether or not the number k has become “4”, that is, whether or not the discharge processing of the three article discharge mechanisms 4 has been completed (step S510). When the value is not “4”, the process returns to step S502. When the value is “4”, the process returns from the subroutine.
 上記ステップS502において、番号kの物品排出機構4から排出される物品を、対応する排出物品検知センサSb(k)が検知中であることを示す排出検知中フラグがONでないときには、番号kの物品排出機構4のガイド部材8が駆動中であることを示す駆動中フラグがONしているか否かを判断する(ステップS511)。駆動中フラグがONしているときには、排出物品検知センサSb(k)がONしたか否か、すなわち、物品を検知したか否かを判断する(ステップS512)。排出物品検知センサSb(k)がONしたときには、番号kの物品排出機構4から排出される物品を検知中であることを示す排出検知中フラグをONしてステップS509に移る(ステップS513)。 In the above step S502, when the discharge detection flag indicating that the corresponding discharge article detection sensor Sb (k) is detecting the article discharged from the article discharge mechanism 4 of number k is not ON, the article of number k It is determined whether or not a driving flag indicating that the guide member 8 of the discharging mechanism 4 is being driven is ON (step S511). When the driving flag is ON, it is determined whether or not the discharged article detection sensor Sb (k) is ON, that is, whether or not an article has been detected (step S512). When the discharged article detection sensor Sb (k) is turned on, the discharge detection flag indicating that the article discharged from the article discharge mechanism 4 of number k is being detected is turned on, and the process proceeds to step S509 (step S513).
 上記ステップS512で、排出物品検知センサSb(k)がONしないときには、番号kの物品排出機構4の排出不良を検知するための排出不良検知時間を増やし(ステップS514)、排出不良検知時間が所定時間になったか否かを判断する(ステップS515)。所定時間になったときには、番号kの物品排出機構4の排出不良を、例えば、プログラマブル表示器29に表示して報知し、ステップS509に移る(ステップS516)。 When the discharged article detection sensor Sb (k) is not turned on in step S512, the discharge defect detection time for detecting the discharge defect of the article discharge mechanism 4 of number k is increased (step S514), and the discharge defect detection time is predetermined. It is determined whether it is time (step S515). When the predetermined time is reached, the discharge failure of the article discharge mechanism 4 of number k is displayed, for example, on the programmable display 29, and the process proceeds to step S509 (step S516).
 上記ステップS511において、番号kの物品排出機構4のガイド部材8が駆動中であることを示す駆動中フラグがONしていないときには、番号kの物品排出機構4に対する物品の排出命令フラグがONしているか否かを判断する(ステップS517)。排出命令フラグがONしているときには、番号kの物品排出機構4の直前の検知領域を通過する物品を検知する前段物品検知センサSa(k)がONしたか否か、すなわち、物品を検知したか否かを判断する(ステップS518)。物品を検知したときには、番号kの物品排出機構4のガイド部材8を駆動して搬送経路に進出する排出姿勢とする(ステップS519)。次に、番号kの物品排出機構4のガイド部材8が駆動中であることを示す駆動中フラグをONし(ステップS520)、番号kの物品排出機構4に対する物品の排出命令フラグをOFFし(ステップS521)、番号kの物品排出機構4の排出不良検知時間を「0」にセットしてステップS509に移る(ステップS522)。 In step S511, when the driving flag indicating that the guide member 8 of the article discharge mechanism 4 of number k is being driven is not ON, the article discharge command flag for the article discharge mechanism 4 of number k is turned ON. It is determined whether or not (step S517). When the discharge command flag is ON, whether or not the preceding article detection sensor Sa (k) that detects the article passing through the detection area immediately before the article discharge mechanism 4 of number k is turned on, that is, the article is detected. It is determined whether or not (step S518). When the article is detected, the guide member 8 of the article discharge mechanism 4 with the number k is driven to set the discharge posture to advance into the conveyance path (step S519). Next, the driving flag indicating that the guide member 8 of the article discharge mechanism 4 of number k is being driven is turned ON (step S520), and the article discharge command flag for the article discharge mechanism 4 of number k is turned OFF (step S520). In step S521), the discharge failure detection time of the article discharge mechanism 4 of number k is set to “0”, and the process proceeds to step S509 (step S522).
 上記のように、前段搬送機構3の搬送方向の上手側において物品を供給すると、その搬送径路の3箇所において、物品排出機構4のガイド部材8によって搬送経路外の3台の各分配搬送機構5の各旋回コンベヤ14へ排出される。排出された物品は、各旋回コンベヤ14によって、3台の振動フィーダ6の各トラフ15にそれぞれ振分け搬送される。すなわち、前段搬送機構3の搬送方向の上手側1箇所で供給した物品を、9台の振動フィーダ6の各トラフ15に振分け搬送し、各振動フィーダ6の各トラフ15によって、組合せ秤2の9個の物品投入口25へ供給することができる。 As described above, when an article is supplied on the upper side in the conveyance direction of the preceding conveyance mechanism 3, each of the three distribution conveyance mechanisms 5 outside the conveyance path is guided by the guide member 8 of the article discharge mechanism 4 at three positions on the conveyance path. It is discharged to each swivel conveyor 14. The discharged articles are distributed and conveyed to the troughs 15 of the three vibration feeders 6 by the swivel conveyors 14 respectively. That is, the article supplied at one location on the upper side in the conveyance direction of the front-stage conveyance mechanism 3 is distributed and conveyed to the troughs 15 of the nine vibration feeders 6, and the troughs 15 of the vibration feeders 6 use the 9 of the combination weigher 2. It can be supplied to the individual article inlet 25.
 したがって、粘着性を有するブロイラーの肉片である物品wを、組合せ秤2の9個の物品投入口25へ自動で供給することができる。これによって、従来のように、作業者が、物品を一々掴んで半自動式の組合せ秤の物品投入口へ投入する作業を行う必要がなく、大幅に作業者の労力を軽減することができる。 Therefore, the article w, which is a piece of sticky broiler meat, can be automatically supplied to the nine article insertion ports 25 of the combination weigher 2. As a result, it is not necessary for the operator to grab the articles one by one and put them into the article insertion port of the semi-automatic combination weigher as in the prior art, and the labor of the operator can be greatly reduced.
 因みに、半自動式の組合せ秤の後段の包装機で、例えば、ブロイラーの肉片の2kgの真空パックを製造する場合に、組合せ秤の計量能力を、例えば20回/分と想定すると、作業者は1時間に、2kg×20×60=2.4tに相当する量の肉片を掴んで半自動式の組合せ秤の物品投入口に投入することになる。しかも、作業者は立ったままで作業を行うので、長時間の作業を行えば、
体力を過大に消耗することになる。
For example, when a 2 kg vacuum pack of broiler meat pieces is manufactured in a subsequent packaging machine of a semi-automatic combination weigher, assuming that the weighing capacity of the combination weigher is, for example, 20 times / minute, the operator is 1 In time, a piece of meat corresponding to 2 kg × 20 × 60 = 2.4 t is grasped and put into the article insertion port of the semi-automatic combination weigher. Moreover, since the worker works while standing, if you work for a long time,
It will consume too much physical strength.
 本実施形態よれば、物品供給装置1によって、組合せ秤2の物品投入口25へ物品wを自動で分配供給するので、作業者が、肉片を掴んで組合せ秤2の物品投入口25へ投入する必要はなく、多大な労力を削減することができる。 According to the present embodiment, since the article w is automatically distributed and supplied to the article insertion port 25 of the combination weigher 2 by the article supply device 1, the operator grasps a piece of meat and puts it into the article insertion port 25 of the combination scale 2. There is no need, and a great deal of labor can be saved.
 [その他の実施形態]
 本発明は、以下のような形態で実施することもできる。
[Other Embodiments]
The present invention can also be implemented in the following forms.
 (1)前段搬送機構は、物品wの大きさ、重量、性状、等に応じて任意に選択することができ、例えば、硬質樹脂材あるいは金属材からなる多数の横向きスラットバーを繋いで環状ベルトにしたスラット型コンベヤ、金網ベルトコンベヤ、等を利用することもできる。 (1) The pre-stage transport mechanism can be arbitrarily selected according to the size, weight, property, etc. of the article w. For example, an annular belt connecting a large number of lateral slat bars made of a hard resin material or a metal material. It is also possible to use a slat type conveyor, a wire mesh belt conveyor, or the like.
 (2)物品排出機構を、搬送径路脇に、搬送方向と直交する方向に出退可能なプッシャーを配設し、プッシャーを搬送経路内へ進出させて物品を搬送経路の外側方に押出す形態とすることもできる。 (2) The article discharge mechanism is provided with a pusher that can be moved in and out in the direction orthogonal to the conveyance direction on the side of the conveyance path, and the pusher is advanced into the conveyance path to push the article outward of the conveyance path. It can also be.
 (3)分配搬送機構を、コンベヤに代えて振動搬送する形態とすることもできる。 (3) The distribution transport mechanism may be configured to vibrate and transport instead of the conveyor.
 (4)後段搬送機構を、振動フィーダに代えて、ベルトコンベヤ式にすることもできる。 (4) The rear-stage transport mechanism can be a belt conveyor type instead of the vibration feeder.
 (5)物品検知センサとしては、上記のような透過形の光電センサに限らず、反射形の光電センサ、超音波センサ、等の他のセンサを利用することもできる。 (5) The article detection sensor is not limited to the transmission type photoelectric sensor as described above, and other sensors such as a reflection type photoelectric sensor and an ultrasonic sensor may be used.
 (6)物品排出機構によって物品を排出する箇所、及び、分配搬送機構によって物品を振分ける振分け先は、3箇所に限らず、任意である。 (6) The place where the article is discharged by the article discharge mechanism and the distribution destination where the article is distributed by the distribution transport mechanism are not limited to three places, but are arbitrary.
 (7)上記実施形態では、物品供給装置によって、物品を、組合せ秤の物品投入口へ供給したが、物品供給装置によって、例えば、上記特許文献2の半自動式の組合せ秤の複数の供給コンベヤ上へ物品を供給してもよく、また、組合せ秤に限らず、他の装置へ物品を供給してもよい。 (7) In the above embodiment, the article is supplied to the article input port of the combination weigher by the article supply device. However, for example, on the plurality of supply conveyors of the semi-automatic combination weigher of Patent Document 2 described above. The article may be supplied to the apparatus, and the article may be supplied to other devices without being limited to the combination weigher.
 (8)上記実施形態では、分配搬送機構によって振分けられた物品を、後段搬送機構としての振動フィーダによって各供給先である組合せ秤の物品投入口へ搬送したが、後段搬送機構を省略し、分配搬送機構によって、物品を各供給先に直接振分けて供給するようにしてもよい。 (8) In the above embodiment, the articles distributed by the distribution transport mechanism are transported to the article input port of the combination weigher which is each supply destination by the vibration feeder as the rear transport mechanism, but the rear transport mechanism is omitted and distributed. Articles may be directly distributed and supplied to each supply destination by the transport mechanism.
 (9)上記実施形態では、物品として、解体されたブロイラーの肉片に適用して説明したが、かかる肉片に限らず、例えば、芋や玉ねぎなどの根菜類やその他の物品に適用してもよい。 (9) In the above embodiment, the article has been described as being applied to a broiler meat piece that has been dismantled. .
 1        物品供給装置
 2        組合せ秤
 3        前段搬送機構
 4        物品排出機構
 5        分配搬送機構
 6        振動フィーダ(後段搬送機構)
 8        ガイド部材
 14       旋回コンベヤ
 15       トラフ
 27       PLC(制御装置)
 w        物品
 Sa       前段物品検知センサ(第1物品検知センサ)
 Sb       排出物品検知センサ(第2物品検知センサ)
DESCRIPTION OF SYMBOLS 1 Article supply apparatus 2 Combination weigher 3 Previous stage conveyance mechanism 4 Article discharge mechanism 5 Distribution conveyance mechanism 6 Vibrating feeder (second stage conveyance mechanism)
8 Guide member 14 Swivel conveyor 15 Trough 27 PLC (control device)
w Article Sa Previous article detection sensor (first article detection sensor)
Sb discharged article detection sensor (second article detection sensor)

Claims (8)

  1.  供給される物品を搬送する前段搬送機構と、
     前記前段搬送機構による前記物品の搬送経路の複数個所において、搬送されてきた物品の通過を許容する許容状態と、搬送されてきた物品を前記搬送径路外に排出する排出状態とに切換え可能な物品排出機構と、
     前記物品排出機構で前記搬送経路外へ排出された物品を、複数個所に振分け搬送する分配搬送機構と、
     を備える物品供給装置。
    A pre-stage transport mechanism for transporting articles to be supplied;
    An article that can be switched between a permissible state in which the conveyed article is allowed to pass and a discharge state in which the conveyed article is discharged out of the conveyance path at a plurality of locations on the article conveyance path by the preceding conveyance mechanism. A discharge mechanism;
    A distribution transport mechanism for distributing and transporting the articles discharged out of the transport path by the article discharge mechanism to a plurality of locations;
    An article supply apparatus comprising:
  2.  前記分配搬送機構の各振分け先に搬送されてきた各物品を、それぞれ搬送する後段搬送機構を備える、
     請求項1に記載の物品供給装置。
    Each article transported to each distribution destination of the distribution transport mechanism is provided with a subsequent transport mechanism for transporting each article.
    The article supply apparatus according to claim 1.
  3.  前記後段搬送機構は、前記各物品を一定方向に振動搬送する振動フィーダである、
     請求項2に記載の物品供給装置。
    The latter-stage transport mechanism is a vibration feeder that vibrates and transports each article in a certain direction.
    The article supply apparatus according to claim 2.
  4.  前記物品排出機構は、前記許容状態では、前記搬送径路から退避して物品の通過移動を許容する退避姿勢となる一方、前記排出状態では、前記搬送径路上に進出して物品を前記搬送経路の外側方に案内する排出姿勢となるガイド部材を備える、
     請求項1ないし3のいずれかに記載の物品供給装置。
    In the permissible state, the article discharge mechanism is retracted from the conveyance path to allow the article to move therethrough. In the discharge state, the article discharge mechanism advances onto the conveyance path and removes the article from the conveyance path. Provided with a guide member that is in a discharge posture to guide outward,
    The article supply apparatus according to any one of claims 1 to 3.
  5.  前記分配搬送機構は、前記物品排出機構によって排出された物品を搬送すると共に、搬送始端側を中心にして複数位置に切換え回動可能な旋回コンベヤを備える、
     請求項4に記載の物品供給装置。
    The distribution transport mechanism transports the articles discharged by the article discharge mechanism, and includes a swivel conveyor that can be switched to a plurality of positions around the transport start end side.
    The article supply apparatus according to claim 4.
  6.  前記搬送経路の前記複数個所にそれぞれ対応する検知領域を通過する前記物品を検知する第1物品検知センサと、
     前記物品排出機構によって、前記分配搬送機構へ排出される物品を検知する第2物品検知センサと、
     前記第1物品検知センサ及び前記第2物品検知センサの検知出力に基づいて、前記物品排出機構の前記許容状態と前記排出状態とを切換え制御する制御装置とを備える、
     請求項4に記載の物品供給装置。
    A first article detection sensor that detects the article passing through detection areas respectively corresponding to the plurality of locations of the transport path;
    A second article detection sensor for detecting an article discharged to the distribution transport mechanism by the article discharge mechanism;
    A control device that switches and controls the permissible state and the discharge state of the article discharge mechanism based on detection outputs of the first article detection sensor and the second article detection sensor;
    The article supply apparatus according to claim 4.
  7.  前記制御装置は、前記第2物品検知センサからの前記検知出力の継続時間に基づいて、前記物品排出機構の前記排出状態の継続時間を制御する、
     請求項6に記載の物品供給装置。
    The control device controls the duration of the discharge state of the article discharge mechanism based on the duration of the detection output from the second article detection sensor.
    The article supply apparatus according to claim 6.
  8.  前記請求項1ないし7のいずれかに記載の物品供給装置と、複数の計量部を有し、かつ、各計量部に供給された前記物品の重量を組合せた組合せ重量が、所定重量範囲となる前記計量部の組合せを選択する組合せ演算を行って、選択した計量部から前記物品を排出する組合せ秤とを備え、
     前記組合せ秤には、前記物品供給装置の前記分配搬送機構によって前記複数個所に振分け搬送された前記物品が供給される、
     ことを特徴とする計量システム。
    The combined weight of the article supply device according to any one of claims 1 to 7 and a plurality of weighing units and combining the weights of the articles supplied to each weighing unit is within a predetermined weight range. A combination operation for performing a combination operation for selecting a combination of the weighing units and discharging the article from the selected weighing unit;
    The combination balance is supplied with the articles distributed and conveyed to the plurality of locations by the distribution and conveyance mechanism of the article supply device.
    A weighing system characterized by that.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112997052A (en) * 2018-12-14 2021-06-18 大和制衡株式会社 Combined metering device

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP7220949B2 (en) * 2018-09-07 2023-02-13 大和製衡株式会社 Article supply device
JP7366498B2 (en) 2019-11-18 2023-10-23 大和製衡株式会社 Goods supply device and weighing system equipped with it
JP7421805B2 (en) * 2020-03-19 2024-01-25 株式会社イシダ Weighing device
CN116692386A (en) * 2023-08-08 2023-09-05 河南钱潮智造有限公司 Casting return furnace material conveying system

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5936031A (en) * 1982-08-20 1984-02-28 Yamato Scale Co Ltd Dispersive feed conveyor
JPH0536324U (en) * 1990-09-10 1993-05-18 大和製衡株式会社 Commodity weighing equipment
WO2004042335A1 (en) * 2002-11-05 2004-05-21 Cetech V/Claus Engelbrecht Automatic combination weighing apparatus
JP2014089146A (en) * 2012-10-31 2014-05-15 Yamato Scale Co Ltd Weighing system

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5117668Y1 (en) * 1970-07-10 1976-05-12
JPS60118530A (en) * 1983-11-28 1985-06-26 Mitsubishi Heavy Ind Ltd Pneumatic unloader for unloading granular powder
JP2860624B2 (en) * 1993-04-30 1999-02-24 ハウス食品株式会社 Flexible solid matter measuring device
JP4611568B2 (en) * 2000-07-24 2011-01-12 株式会社イシダ Combination weighing device and system
JP2003214936A (en) * 2002-01-21 2003-07-30 Ishida Co Ltd Combination weighing apparatus
CN202346316U (en) * 2011-10-13 2012-07-25 廊坊燕北畜牧机械集团有限公司 Height-adjustable belt conveyor for chicken
CN204380961U (en) * 2014-11-19 2015-06-10 浙江申振机械科技有限公司 A kind of express delivery automatic sorting line control system of knit
KR101686618B1 (en) * 2015-08-17 2016-12-14 주식회사 한성엔지니어링 System and method for sorting fruits

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5936031A (en) * 1982-08-20 1984-02-28 Yamato Scale Co Ltd Dispersive feed conveyor
JPH0536324U (en) * 1990-09-10 1993-05-18 大和製衡株式会社 Commodity weighing equipment
WO2004042335A1 (en) * 2002-11-05 2004-05-21 Cetech V/Claus Engelbrecht Automatic combination weighing apparatus
JP2014089146A (en) * 2012-10-31 2014-05-15 Yamato Scale Co Ltd Weighing system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112997052A (en) * 2018-12-14 2021-06-18 大和制衡株式会社 Combined metering device

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