WO2024027806A1 - 麻将机吸牌送牌结构及麻将机 - Google Patents

麻将机吸牌送牌结构及麻将机 Download PDF

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Publication number
WO2024027806A1
WO2024027806A1 PCT/CN2023/111094 CN2023111094W WO2024027806A1 WO 2024027806 A1 WO2024027806 A1 WO 2024027806A1 CN 2023111094 W CN2023111094 W CN 2023111094W WO 2024027806 A1 WO2024027806 A1 WO 2024027806A1
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WO
WIPO (PCT)
Prior art keywords
card
mahjong
positioning
suction
sucking
Prior art date
Application number
PCT/CN2023/111094
Other languages
English (en)
French (fr)
Inventor
杨翠容
Original Assignee
宜宾初蓝商贸有限公司
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 宜宾初蓝商贸有限公司 filed Critical 宜宾初蓝商贸有限公司
Publication of WO2024027806A1 publication Critical patent/WO2024027806A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F9/00Games not otherwise provided for
    • A63F9/20Dominoes or like games; Mah-Jongg games
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F9/00Games not otherwise provided for
    • A63F9/20Dominoes or like games; Mah-Jongg games
    • A63F2009/205Mah-jongg games

Definitions

  • the present application relates to the field of leisure game equipment, specifically, to a mahjong machine card sucking and card sending structure and a mahjong machine.
  • the mahjong machine in the prior art uses a suction wheel to take out the mahjong tiles from the shuffling bucket and arrange them in the length direction.
  • the suction wheel is provided with magnets, and the mahjong tiles are also provided with magnets, so that the mahjong tiles can be shuffled.
  • Take it out from the shuffling tray then put the mahjong tiles on a conveyor belt through an upward turning action, and transport the mahjong tiles to the numbering position.
  • this placement method will cause the mahjong tiles to move in the same direction as their length after being placed on the conveyor belt.
  • the mahjong machine sends tiles, resulting in the overall structure of the mahjong machine being too complex.
  • Multiple embodiments of the present application provide a mahjong machine with a tile sucking and tile delivery structure and a mahjong machine to solve the problem in the prior art that the mahjong tile conveying device of the mahjong machine is not conducive to the mahjong machine's tile delivery.
  • a mahjong machine card sucking and delivering structure which includes: a card sucking disk and a positioning track.
  • the card sucking disk has at least one positioning card sucking structure for absorbing mahjong tiles.
  • the mahjong tiles are There is a positioning card suction device inside that cooperates with the positioning card suction structure.
  • the positioning card suction structure has a positioning direction line. There is an included angle a between the length direction of the mahjong tiles adsorbed by the positioning card sucking structure and the positioning direction line.
  • the included angle a is -15° to 15°, so that when the mahjong tiles enter the positioning track, the inner side of the width direction of the mahjong tiles collides with the inner wall of the positioning track; the end of the positioning track close to the card suction plate is in contact with the The movement trajectories of the mahjong tiles intersect and have a card inlet.
  • the inner wall of the side of the positioning track close to the rotation center of the card suction plate has a baffle surface for contact with the mahjong tiles for collision with the edge of the width direction of the mahjong tiles. .
  • the inner side of the width direction of the mahjong tiles adsorbed on the card suction tray collides with the inner side wall of the positioning rail
  • the inner side of the mahjong tiles that collides with the positioning rail collides with the inner side wall of the positioning rail.
  • the angle of the cut plane at is 0 to 60 degrees.
  • the positioning track includes a card entry section and a card delivery section that are connected in sequence.
  • One end of the card entry section away from the card delivery section has a card entry opening, and the opening width of the card entry opening is greater than the length of the mahjong tiles.
  • connection between the card entry section and the card delivery section has a bending angle, and the end of the card entry section away from the card delivery section is deflected along the side close to the card suction plate.
  • the card entry section includes a first stop plate, a bottom plate and a second stop plate connected in sequence, and the first stop plate and the second stop plate are respectively perpendicular to the bottom plate.
  • the angle between the first stop plate and the extension direction of the card entry section is greater than the angle between the second stop plate and the extension direction of the card entry section.
  • the first stop plate is an arc-shaped plate; the second stop plate is an arc-shaped plate.
  • the side of the first stop plate opposite to the second stop plate has a card blocking surface at an end away from the card feeding section.
  • the width of the end of the card entering section away from the card feeding section gradually decreases in the direction approaching the card feeding section.
  • the movement trajectory of the side of the mahjong tiles close to the rotation center is the first arc-shaped trajectory
  • the movement trajectory of the side of the mahjong tiles away from the rotation center is In the second arc-shaped trajectory
  • the first stop plate of the card feeding section of the positioning track is far away from the card feeding section of the positioning rail.
  • One end of the card feeding section is located on the side of the second arc-shaped trajectory away from the center of rotation.
  • one end of the first stop plate close to the card feeding section is located on the side of the first arcuate trajectory away from the center of rotation.
  • the angle between the line connecting the two ends of the first stop plate and the tangent line of the first arc-shaped trajectory at the sign entrance is greater than or equal to 0 degrees and less than or equal to 10 degrees.
  • This application also provides a mahjong machine, which includes the above-mentioned mahjong machine sucking and sending card structure.
  • the mahjong machine also includes: a shuffling tray.
  • the sucking tray of the mahjong machine sucking and sending card structure sucks mahjong tiles from the shuffling tray.
  • the card suction tray is located above the card suction tray, and the positioning track of the mahjong machine's card sucking and sending structure is located below the card suction tray.
  • the distance from the bottom surface of the positioning track to the plane where the edge of the shuffling tray is located is less than or equal to 5 mm.
  • the distance from the card feeding section of the positioning track to the card shuffling tray is smaller than the distance from the card feeding section of the positioning track to the shuffling tray.
  • the mahjong machine card sucking and delivering structure in the present application includes: a card sucking tray and a positioning track.
  • the card sucking tray has at least one positioning card sucking structure for absorbing mahjong tiles.
  • the interior of the mahjong tiles has A positioning card suction device that cooperates with the positioning card suction structure.
  • the positioning card suction structure has a positioning direction line.
  • the length direction of the mahjong tiles adsorbed by the positioning card suction structure has an included angle a with the positioning direction line.
  • the included angle a is -15 ° to 15°, so that when the mahjong tiles enter the positioning track, the inner side of the width direction of the mahjong tiles collides with the inner wall of the positioning track; the end of the positioning track close to the suction tray is in contact with the mahjong tiles adsorbed on the suction tray
  • the motion trajectories intersect and have a card inlet.
  • the inner wall of the side of the positioning track close to the rotation center of the card suction plate has a baffle surface for contact with the mahjong tiles for collision with the edge of the width direction of the mahjong tiles.
  • the card sucking plate and positioning track of the mahjong machine's card sucking and card feeding structure are both arranged inside the mahjong machine, and the mahjong machine is drivingly connected to the card sucking plate, and is mounted on the mahjong machine.
  • the mahjong machine can drive the card suction plate to rotate relative to the shuffling plate of the mahjong machine, and the card suction plate can absorb the mahjong tiles on the shuffling plate through the positioning card suction structure, and the mahjong tiles on the shuffling plate can pass through Under the interaction between the positioning card suction structure and the positioning card suction device, it is adsorbed to the card suction tray and moves together with the card suction tray. Moreover, after the mahjong tiles are adsorbed to the suction disk, as the suction disk continues to rotate, when the mahjong tiles rotate with the suction disk to the position corresponding to the positioning rail, the mahjong tiles will collide with the positioning rail.
  • the suction plate is separated.
  • the inner side of the width direction of the mahjong tiles collides with the inner wall of the positioning track, so the movement direction of the mahjong tiles in the positioning track is the same as the width direction of the mahjong tiles. Therefore, the mahjong machine tile sucking and sending structure in this application uses the interaction of the positioning tile sucking structure on the suction tray and the mahjong tile positioning suction device to limit the mahjong tiles when they are adsorbed to the suction tray.
  • the mahjong tiles can pass the edge in the width direction and collide with the blocking surface when the mahjong tiles rotate with the suction tray to the position corresponding to the positioning track. To ensure that the mahjong tiles can enter the positioning track in their width direction.
  • the mahjong machine tile sucking and sending tile structure in the present application when the mahjong machine tile sucking and sending tile structure in the present application is applied to the mahjong machine, the mahjong machine will no longer need to set up an additional device to divert the mahjong tiles on the conveyor belt, thereby effectively facilitating the mahjong machine feeding. tiles to simplify the internal structure of the mahjong machine. Therefore, the mahjong machine's tile sucking and tile delivery structure in the present application effectively solves the problem in the prior art that the mahjong tile conveying device of the mahjong machine is not conducive to the mahjong machine's tile delivery.
  • Figure 1 shows a schematic structural diagram of a mahjong machine sucking and delivering cards according to a specific embodiment of the present application
  • Figure 2 shows a schematic diagram of the positional relationship between the mahjong tiles and the blocking surface when the card-blocking surface of the mahjong machine suction and delivery structure of the present application collides with the mahjong tiles;
  • Figure 3 shows another schematic diagram of the positional relationship between the mahjong tiles and the blocking surface when the blocking surface of the mahjong machine's card sucking and delivering structure collides with the mahjong tiles in this application.
  • the present application provides a mahjong machine tile sucking and feeding structure and a mahjong machine.
  • the mahjong machine in this application includes the following mahjong machine sucking and sending card structure.
  • the mahjong machine also includes a shuffling tray 40.
  • the sucking tray 30 of the mahjong machine sucking and sending card structure sucks mahjong tiles from the shuffling tray 40. 50.
  • the card suction tray 30 is located above the card suction tray 30, and the positioning track 1 of the mahjong machine's card suction and card delivery structure is located below the card suction tray 30.
  • the mahjong machine tile sucking and delivering structure in this application includes: a tile sucking tray 30 and a positioning track 1.
  • the tile sucking tray 30 has at least one positioning tile sucking structure 31 for sucking the mahjong tiles 50.
  • the inside of the card 50 has a positioning card suction device that cooperates with the positioning card suction structure 31.
  • the positioning card suction structure 31 has a positioning direction line. The length direction of the mahjong tile 50 adsorbed by the positioning card suction structure 31 and the positioning direction line have a clip.
  • the angle a is between -15° and 15°, so that when the mahjong tile 50 enters the positioning track 1, the inner side of the width direction of the mahjong tile 50 collides with the inner side wall of the positioning track 1; the positioning track 1 is close to the suction
  • One end of the card tray 30 intersects with the motion trajectory of the mahjong tiles 50 adsorbed on the card suction tray 30 and has a card inlet 11.
  • the baffle surface 121 in contact with the mahjong tiles 50 is used to collide with the edge of the mahjong tiles 50 in the width direction.
  • the card suction tray 30 and the positioning track 1 of the mahjong machine's tile suction and delivery structure are both arranged inside the mahjong machine, and the mahjong machine is drivingly connected to the card suction tray 30, and During the shuffling process of the mahjong machine, the mahjong machine can drive the card suction tray 30 to rotate relative to the shuffle tray 40 of the mahjong machine, and the suction tray 30 can suck the mahjong tiles 50 on the shuffle tray 40 by positioning the card suction structure 31, The mahjong tiles 50 on the card shuffling tray 40 can be adsorbed to the card suction tray 30 through the interaction between the positioning card suction structure 31 and the positioning card suction device and move together with the card suction tray 30 .
  • the mahjong tiles 50 after the mahjong tiles 50 are adsorbed to the card suction disc 30, as the card suction disc 30 continues to rotate, when the mahjong tiles 50 rotate with the card suction disc 30 to the position corresponding to the positioning track 1, the mahjong tiles 50 will be in the position corresponding to the positioning track 1.
  • the positioning rail 1 is separated from the card suction tray 30 due to the impact.
  • the widthwise inner side of the mahjong tiles 50 collides with the inner side wall of the positioning rail 1, so the movement direction of the mahjong tiles 50 in the positioning rail 1 is the same as the width direction of the mahjong tiles 50.
  • the mahjong machine tile sucking and sending structure in this application uses the interaction between the positioning tile sucking structure 31 on the tile suction tray 30 and the positioning tile suction device of the mahjong tile 50 to limit the time when the mahjong tiles 50 are adsorbed to the tile suction tray.
  • the blocking surface 121 is provided on the positioning rail 1 to ensure that the mahjong tiles 50 rotate with the suction disk 30 to the position corresponding to the positioning rail 1. 50 can ensure that the mahjong tiles 50 can enter the positioning track 1 in the width direction through the collision between the edge in the width direction and the blocking surface 121 .
  • the mahjong machine tile sucking and delivering tile structure in the present application when the mahjong machine tile sucking and delivering tile structure in the present application is applied to the mahjong machine, the mahjong machine will no longer need to set up an additional device for turning the mahjong tiles 50 on the conveyor belt, thereby effectively facilitating the mahjong machine.
  • the mahjong machine can also drive the card shuffling disk to rotate, and then drive the card suction disk to rotate through the shuffling disk.
  • the length direction of the mahjong tiles and the positioning direction line are parallel, and the positioning direction line can be A line passing through the center of the structure that locates the suction card.
  • the length direction of the mahjong tiles and the positioning direction line are parallel.
  • mahjong tile quilt The positioning card suction structure adsorbs and stabilizes the mahjong tiles at a specific position after being stabilized on the positioning card suction structure.
  • the mahjong machines in the prior art do not have such a function.
  • the friction between the mahjong tiles and the positioning tile suction structure has a negative impact on the mahjong tiles.
  • the position on the positioning suction structure has the greatest impact. Every time the positioning suction structure adsorbs the mahjong tiles, the length direction of the mahjong tiles and the positioning direction line, but between the length direction and the positioning direction line of the mahjong tiles are measured multiple times. and taking the average value, the average value r can be obtained. As the number of measurements increases, the value of r will gradually converge to a constant p.
  • the value of the constant p is very close. 0. This shows that the angle between the length direction of the main mahjong tiles and the positioning direction line is within a range. This range increases with the friction between the mahjong tiles and the positioning and suction structure, which hinders the rotation of the mahjong. The friction force between the mahjong tiles and the positioning tile suction structure decreases as the torque that hinders the mahjong rotation decreases. Those skilled in the art can control the friction between the mahjong tiles and the positioning tile suction structure.
  • Mahjong tiles are cuboids with a pair of long sides, a pair of short sides, a front and a back.
  • the positioning and sucking structure is a pair of cylindrical magnets, with the N pole facing downwards, a rectangular parallelepiped magnet installed inside the mahjong tile, and the S pole facing the back of the mahjong tile.
  • the mahjong tile is surrounded by two cylinders. After magnet adsorption, the length direction of the mahjong tiles can be parallel to the plane where the axes of the two cylindrical magnets are located, and the line connecting the centers of the lower surfaces of the two cylindrical magnets can be used as the positioning direction line.
  • the positioning card suction structure is a cuboid magnet with the N pole facing downward.
  • the center line in the length direction of the cuboid passes through the axis of the card suction disk and is perpendicular to the axis of the card suction disk.
  • the mahjong tiles are set inside There is a cuboid magnet with the S pole facing the back of the mahjong tile. After the mahjong tile is adsorbed by the cuboid magnet, the length direction of the mahjong tile can be parallel to the center line in the length direction of the cuboid magnet, and the center line in the length direction can be used as the positioning direction line.
  • the distance from the bottom surface of the positioning track 1 to the plane where the edge of the shuffling tray 40 is located is less than or equal to 5 mm. Since the mahjong tiles 50 on the shuffling tray 40 will rotate relative to the positioning rail 1 during the shuffling process of the mahjong machine, the purpose of this arrangement is to ensure that there is space between the edge of the shuffling tray 40 and the positioning rail 1 Avoid the avoidance gap of 50 mahjong tiles to ensure the normal operation of the mahjong machine shuffling program. Moreover, this can also reduce the noise generated when the mahjong tiles 50 fall on the positioning track 1 .
  • the inner side of the mahjong tile 50 adsorbed on the card suction tray 30 in the width direction collides with the inner side wall of the positioning rail 1
  • the inner side of the mahjong tile 50 colliding with the positioning rail 1 collides with the inner side wall of the positioning rail 1.
  • the angle of the cut plane is 0 to 60 degrees. This arrangement can not only ensure that the mahjong tiles 50 can be separated from the card suction tray 30, but also ensure that the mahjong tiles 50 will not flip over under the action of inertial force after the mahjong tiles 50 collide with the card blocking surface 121, thus ensuring that The mahjong tiles 50 can move in the positioning track 1 in the width direction.
  • the positioning track 1 includes a card entry section 10 and a card delivery section 20 that are connected in sequence.
  • One end of the card entry section 10 away from the card delivery section 20 has a card entry port 11.
  • the opening width of the card entry port 11 is larger than that of the mahjong tiles 50. length, there is an included angle between the opening direction of the card inlet 11 and the extension direction of the card feeding section 20, so that the mahjong tiles 50 move along the width direction of the mahjong tiles 50 when entering the positioning track 1. Because when the mahjong tiles 50 enter the positioning rail 1 and collide with the positioning rail 1, the mahjong tiles 50 are on the positioning rail 1.
  • the length direction of the track 1 enters the positioning rail 1 at a certain angle. Therefore, making the opening width of the card inlet 11 larger than the length of the mahjong tiles 50 can ensure that the mahjong tiles 50 can more easily enter the inside of the positioning rail 1 and connect with the positioning rail. 1 produces an impact.
  • connection between the card feeding section 10 and the card feeding section 20 has a bending angle, and the end of the card feeding section 10 away from the card feeding section 20 is deflected along the side close to the card suction tray 30 . Since the mahjong tiles 50 will be transported to the numbering position of the mahjong machine through the positioning rail 1, the transportation of the mahjong tiles 50 can be more facilitated by providing a bending angle at the connection between the tile entry section 10 and the tile delivery section 20.
  • the card suction tray 30 carries the mahjong tiles 50 in a circular motion, in order to ensure that the mahjong tiles 50 on the card suction tray 30 can be installed with the card blocking surface 121 of the inner wall of the card entry section 10, a card entry section needs to be provided
  • the end of 10 away from the card feeding section 20 is inclined along the side close to the card suction tray 30.
  • the longitudinal section of the positioning rail 1 is U-shaped.
  • the entry section 10 includes a first stop plate 12, a bottom plate 13 and a second stop plate 14 connected in sequence.
  • the first stop plate 12 and the second stop plate 14 respectively perpendicular to the bottom plate 13.
  • the angle between the first stop plate 12 and the extension direction of the card entry section 10 is greater than the angle between the second stop plate 14 and the extension direction of the card entry section 10 .
  • the first stop plate 12 is an arc plate.
  • the side of the first stop plate 12 opposite to the second stop plate 14 has a card blocking surface 121 at an end away from the card feeding section 20 .
  • the second stop plate 14 is an arc plate.
  • the circular shape of the first stopper plate 12 and the center of the circle of the second stopper plate 14 are located on the same side of the entry section 10 .
  • the width of the end of the card feeding section 10 away from the card feeding section 20 gradually decreases in the direction approaching the card feeding section 20 .
  • the mahjong tiles 50 can be limited when they enter the positioning rail 1 and move along the positioning rail 1, thereby ensuring that the mahjong tiles 50 will not deflect during the movement, thereby ensuring that the mahjong machine can be washed normal operation of the card program.
  • the side of the positioning rail 1 close to the card suction tray 30 is relative to the card shuffling tray 40, or in the height direction of the mahjong machine. Since the mahjong tiles 50 are adsorbed onto the suction tray 30 , the mahjong tiles 50 are located on the side of the suction tray 30 close to the positioning rail 1 , that is, the bottom surface of the suction tray 30 is close to the positioning rail 1 in the thickness direction. .
  • the positioning rail 1 and the card suction tray 30 have a space in the height direction that allows the mahjong tiles 50 to move a certain distance. That is to say, such an arrangement can ensure that the mahjong tiles 50 can move a certain distance under the action of gravity when they fall off the card suction tray 30 and enter the positioning track 1, thereby ensuring that the mahjong tiles 50 and the card suction tray 30 are completely connected. separation.
  • the distance between the side wall of the positioning rail 1 near the card inlet 11 and the card suction position of the card suction tray 30 is less than the thickness of the mahjong tiles 50 .
  • the purpose of this arrangement is to ensure that when the mahjong tiles 50 rotate to the position corresponding to the positioning rail 1 with the suction plate 30, the side surface of the mahjong tiles 50 in the width direction can collide with the blocking surface 121, thereby ensuring that the mahjong tiles 50 Can be detached from the card suction tray 30 .
  • the movement trajectory of the side of the mahjong tiles 50 close to the rotation center is the first arc-shaped trajectory
  • the movement trajectory of the side of the mahjong tiles 50 away from the rotation center is the second arc-shaped trajectory
  • the first arc-shaped trajectory of the tile entry section 10 of the positioning track 1 The end of the stop plate 12 away from the card feeding section 20 of the positioning track 1 is located on the side of the first arc-shaped trajectory close to the rotation center
  • the end of the second stop plate 14 of the card entering section 10 away from the card feeding section 20 is located on the second arc.
  • one end of the first stop plate 12 close to the card feeding section 20 is located on the side of the first
  • the angle between the line connecting the two ends of the first stop plate 12 and the tangent line of the first arc-shaped trajectory at the card inlet 11 is greater than or equal to 0 degrees and less than or equal to 10 degrees.
  • the distance from the card feeding section 10 of the positioning track 1 to the card shuffling tray 40 is smaller than the distance from the card feeding section 20 of the positioning track 1 to the card shuffling tray 40 .
  • the card suction tray 30 is provided with a main card suction device, that is, a positioning card suction structure, and the mahjong tiles 50 are provided with an auxiliary card suction device, that is, a positioning card suction device.
  • the main card suction device and the auxiliary card suction device attract each other, and the main card suction device
  • the card suction device is a homopolar strip suction body or a homopolar strip suction body array
  • the auxiliary card suction device is a homopolar strip suction body or a homopolar strip suction body array.
  • the mahjong tiles 50 are adsorbed, the mahjong tiles 50
  • the length direction turns to the setting direction of the card suction tray 30.
  • the main card suction device includes two circular magnets, and the line connecting the centers of the two circular magnets is the set direction. This way you can suck 50 mahjong tiles in the desired direction.
  • the above embodiment uses two magnets to suck cards.
  • it can also be a long strip magnet, or two centrally symmetrical magnets.
  • Two magnets are provided on the card sucking tray 30, and the mahjong tiles are It is a long bar magnet, so the two magnets on the card suction plate 30 will respectively absorb the two ends of the long bar magnet of the mahjong tiles, thus achieving a positioning effect.
  • the length direction of the magnet is vertical, theoretically the mahjong tiles will be in a balanced position and will not rotate. However, in fact, vibrations will continue to occur during the operation of the mahjong machine, and the card suction plate 30 is in motion. , the equilibrium state of the mahjong tiles will be destroyed, so the two magnets on the card suction tray 30 will still respectively absorb the two ends of the long magnets of the mahjong tiles to achieve the positioning effect.
  • the main card suction device can be embedded inside the card suction part. Or a part of the main card suction device is located inside the card suction part, while the other part is exposed on the outer surface of the card suction part. At the same time, the card suction part has an installation slot for placing the main card suction device.
  • the mahjong tiles 50 when the mahjong tiles 50 enter the positioning track 1 , there may be at least two collision situations between the mahjong tiles 50 and the blocking surface 121 .
  • One is that the surface on the mahjong tile 50 collides with the point on the blocking surface 121 near the edge of the card inlet 11, that is, the collision part of the mahjong tile is the surface, and the collision part of the blocking surface is the point.
  • the other is that the points on the mahjong tiles 50 collide with the blocking surface 121, that is, the collision parts of the mahjong tiles are points, and the collision parts of the blocking surfaces are faces.
  • the surface of the mahjong tile may also collide with the surface of the blocking tile.

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Abstract

一种麻将机吸牌送牌结构及麻将机。麻将机吸牌送牌结构包括:吸牌盘(30)和定位轨道(1),吸牌盘(30)具有至少一个用于吸附麻将牌(50)的定位吸牌结构(31),麻将牌(50)的内部具有与定位吸牌结构(31)配合的定位吸牌器,定位吸牌结构(31)具有定位方向线,被定位吸牌结构(31)吸附的麻将牌(50)的长度方向与定位方向线之间具有夹角a,夹角a在-15°到15°之间,以使麻将牌进入定位轨道(1)时,麻将牌(50)的宽度方向的里侧面与定位轨道(1)的内侧壁撞击;定位轨道(1)靠近吸牌盘(30)的一端与吸附在吸牌盘(30)上的麻将牌(50)的运动轨迹相交并具有进牌口(11),定位轨道(1)靠近吸牌盘(30)旋转中心的一侧的内侧壁具有用于与麻将牌(50)接触的挡牌面(121)。上述技术方案解决了现有技术中麻将机的麻将牌输送装置不利于麻将机送牌的问题。

Description

麻将机吸牌送牌结构及麻将机 技术领域
本申请涉及休闲游戏设备领域,具体而言,涉及一种麻将机吸牌送牌结构及麻将机。
背景技术
现有技术中的麻将机是利用吸牌轮将麻将牌从洗牌桶中取出,并按照长度方向排列,吸牌轮上面设置有磁铁,麻将牌中也设置有磁铁,这样就可以将麻将牌从洗牌盘中取出,然后经过一个上翻动作,将麻将牌放入一个输送带上,将麻将牌输送到码牌位置。但这样的放置方式会导致麻将牌在被放入输送带上后,其运动的方向与其长度方向相同,这样就需要在麻将机上额外设置将输送带上的麻将牌进行转向的装置,以方便麻将机送牌,从而导致麻将机的整体结构过于复杂。
因此,现有技术中存在麻将机的麻将牌输送装置不利于麻将机送牌的问题。
发明内容
本申请的多个实施例提供了一种麻将机吸牌送牌结构及麻将机,以解决现有技术中麻将机的麻将牌输送装置不利于麻将机送牌的问题。
在本申请的一个实施例中,提供了一种麻将机吸牌送牌结构,包括:吸牌盘和定位轨道,吸牌盘具有至少一个用于吸附麻将牌的定位吸牌结构,麻将牌的内部具有与定位吸牌结构配合的定位吸牌器,定位吸牌结构具有定位方向线,被定位吸牌结构吸附的麻将牌的长度方向与定位方向线之间具有夹角a,夹角a在-15°到15°之间,以使麻将牌进入定位轨道时,麻将牌的宽度方向的里侧面与定位轨道的内侧壁撞击;定位轨道靠近吸牌盘的一端与吸附在吸牌盘上的麻将牌的运动轨迹相交并具有进牌口,定位轨道靠近吸牌盘旋转中心的一侧的内侧壁具有用于与麻将牌接触的挡牌面,以用于与麻将牌的宽度方向的边缘撞击。
在本申请的一个优选实施例中,吸附在吸牌盘上的麻将牌的宽度方向的里侧面与定位轨道的内侧壁碰撞时,麻将牌与定位轨道撞击的里侧面与定位轨道的内侧壁碰撞处的切面的夹角为0到60度。
在本申请的一个优选实施例中,定位轨道包括顺次连接的进牌段和送牌段,进牌段远离送牌段的一端具有进牌口,进牌口的开口宽度大于麻将牌的长度,进牌口的开口方向与送牌段的延伸方向之间具有夹角,以使麻将牌进入定位轨道时沿麻将牌的宽度方向运动。
在本申请的一个优选实施例中,进牌段和送牌段的连接处具有弯折角,且进牌段远离送牌段的一端沿靠近吸牌盘的一侧偏斜。
在本申请的一个优选实施例中,进牌段包括顺次连接的第一止挡板、底板以及第二止挡板,第一止挡板和第二止挡板分别与底板垂直。
在本申请的一个优选实施例中,第一止挡板与进牌段的延伸方向的夹角大于第二止挡板与进牌段的延伸方向的夹角。
在本申请的一个优选实施例中,第一止挡板为弧形板;第二止挡板为弧形板。
在本申请的一个优选实施例中,第一止挡板与第二止挡板相对的一侧在远离送牌段的一端具有挡牌面。
在本申请的一个优选实施例中,进牌段远离送牌段的一端的宽度沿靠近送牌段的方向逐渐减小。
在本申请的一个优选实施例中,定位轨道靠近吸牌盘的一侧与吸牌盘之间具有避让间隙;定位轨道靠近进牌口一端的侧壁与吸牌盘的吸牌位之间的距离小于麻将牌的厚度。
在本申请的一个优选实施例中,当吸牌盘带动麻将牌转动时,麻将牌靠近转动中心的一侧的运动轨迹为第一弧形轨迹,麻将牌远离转动中心的一侧的运动轨迹为第二弧形轨迹,定位轨道的进牌段的第一止挡板远离定位轨道的送牌段的一端位于第一弧形轨迹靠近转动中心的一侧,进牌段的第二止挡板远离送牌段的一端位于第二弧形轨迹远离转动中心的一侧。
在本申请的一个优选实施例中,第一止挡板靠近送牌段的一端位于第一弧形轨迹远离转动中心的一侧。
在本申请的一个优选实施例中,第一止挡板的两端的连线与第一弧形轨迹在进牌口处的切线的夹角大于等于0度且小于等于10度。
本申请还提供了一种麻将机,包括上述的麻将机吸牌送牌结构,麻将机还包括:洗牌盘,麻将机吸牌送牌结构的吸牌盘从洗牌盘上吸取麻将牌,吸牌盘位于吸牌盘的上方,麻将机吸牌送牌结构的定位轨道位于吸牌盘的下方。
在本申请的一个优选实施例中,定位轨道的底面到洗牌盘的边缘所在平面的距离小于等于5mm。
在本申请的一个优选实施例中,定位轨道的进牌段到洗牌盘的距离小于定位轨道的送牌段到洗牌盘的距离。
应用本申请的技术方案,本申请中的麻将机吸牌送牌结构,包括:吸牌盘和定位轨道,吸牌盘具有至少一个用于吸附麻将牌的定位吸牌结构,麻将牌的内部具有与定位吸牌结构配合的定位吸牌器,定位吸牌结构具有定位方向线,被定位吸牌结构吸附的麻将牌的长度方向与定位方向线之间具有夹角a,夹角a在-15°到15°之间,以使麻将牌进入定位轨道时,麻将牌的宽度方向的里侧面与定位轨道的内侧壁撞击;定位轨道靠近吸牌盘的一端与吸附在吸牌盘上的麻将牌的运动轨迹相交并具有进牌口,定位轨道靠近吸牌盘旋转中心的一侧的内侧壁具有用于与麻将牌接触的挡牌面,以用于与麻将牌的宽度方向的边缘撞击。
使用本申请中的麻将机吸牌送牌结构时,麻将机吸牌送牌结构的吸牌盘和定位轨道均设置在麻将机的内部,且麻将机与吸牌盘驱动连接,并在麻将机洗牌的过程中,麻将机能够驱动吸牌盘相对麻将机的洗牌盘转动,并且吸牌盘能够通过定位吸牌结构吸取洗牌盘上的麻将牌,洗牌盘上的麻将牌能够通过定位吸牌结构和定位吸牌器的相互作用下吸附到吸牌盘上并随吸牌盘一同运动。并且,在麻将牌吸附到吸牌盘上后,随着吸牌盘的继续转动,当麻将牌随吸牌盘转动至定位轨道对应的位置时,麻将牌会在与定位轨道的撞击作用下与吸牌盘分离。同时由于麻将牌进入定位轨道时,麻将牌的宽度方向的里侧面与定位轨道的内侧壁撞击,所以麻将牌在定位轨道内的运动方向与麻将牌的宽度方向相同。所以,本申请中的麻将机吸牌送牌结构通过使用吸牌盘上的定位吸牌结构与麻将牌的定位吸牌器的相互作用,限定了麻将牌在吸附至吸牌盘上时麻将牌在吸牌盘上的朝向,同时通过在定位轨道上设置挡牌面来保证麻将牌在随吸牌盘转动至定位轨道对应的位置时,麻将牌能够通过宽度方向的边缘与挡牌面的撞击来保证麻将牌能够以其宽度方向进入到定位轨道。
因此,当在将本申请中的麻将机吸牌送牌结构应用到麻将机上时,麻将机将不再需要额外设置将输送带上的麻将牌进行转向的装置,从而能够有效地方便麻将机送牌,简化麻将机的内部结构。因此,本申请中的麻将机吸牌送牌结构有效地解决了现有技术中麻将机的麻将牌输送装置不利于麻将机送牌的问题。
附图说明
构成本申请的一部分的说明书附图用来提供对本申请的进一步理解,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1示出了根据本申请的一个具体实施例的麻将机吸牌送牌结构的结构示意图;
图2示出了本申请中麻将机吸牌送牌结构的挡牌面与麻将牌撞击时麻将牌与挡牌面的位置关系示意图;
图3示出了本申请中麻将机吸牌送牌结构的挡牌面与麻将牌撞击时麻将牌与挡牌面的另一种位置关系示意图。
其中,上述附图包括以下附图标记:
1、定位轨道;10、进牌段;11、进牌口;12、第一止挡板;121、挡牌面;13、底板;14、第二止挡板;20、送牌段;30、吸牌盘;31、定位吸牌结构;40、洗牌盘;50、麻将牌。
具体实施方式
需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本申请。
为了解决现有技术中麻将机的麻将牌输送装置不利于麻将机送牌的问题,本申请提供了一种麻将机吸牌送牌结构及麻将机。
并且,本申请中的麻将机包括下述的麻将机吸牌送牌结构,麻将机还包括洗牌盘40,麻将机吸牌送牌结构的吸牌盘30从洗牌盘40上吸取麻将牌50,吸牌盘30位于吸牌盘30的上方,麻将机吸牌送牌结构的定位轨道1位于吸牌盘30的下方。
如图1所示,本申请中的麻将机吸牌送牌结构,包括:吸牌盘30和定位轨道1,吸牌盘30具有至少一个用于吸附麻将牌50的定位吸牌结构31,麻将牌50的内部具有与定位吸牌结构31配合的定位吸牌器,定位吸牌结构31具有定位方向线,被定位吸牌结构31吸附的麻将牌50的长度方向与定位方向线之间具有夹角a,夹角a在-15°到15°之间,以使麻将牌50进入定位轨道1时,麻将牌50的宽度方向的里侧面与定位轨道1的内侧壁撞击;定位轨道1靠近吸牌盘30的一端与吸附在吸牌盘30上的麻将牌50的运动轨迹相交并具有进牌口11,定位轨道1靠近吸牌盘30旋转中心的一侧的内侧壁具有用于与麻将牌50接触的挡牌面121,以用于与麻将牌50的宽度方向的边缘撞击。
使用本申请中的麻将机吸牌送牌结构时,麻将机吸牌送牌结构的吸牌盘30和定位轨道1均设置在麻将机的内部,且麻将机与吸牌盘30驱动连接,并在麻将机洗牌的过程中,麻将机能够驱动吸牌盘30相对麻将机的洗牌盘40转动,并且吸牌盘30能够通过定位吸牌结构31吸取洗牌盘40上的麻将牌50,洗牌盘40上的麻将牌50能够通过定位吸牌结构31和定位吸牌器的相互作用下吸附到吸牌盘30上并随吸牌盘30一同运动。并且,在麻将牌50吸附到吸牌盘30上后,随着吸牌盘30的继续转动,当麻将牌50随吸牌盘30转动至定位轨道1对应的位置时,麻将牌50会在与定位轨道1的撞击作用下与吸牌盘30分离。同时由于麻将牌50进入定位轨道1时,麻将牌50的宽度方向的里侧面与定位轨道1的内侧壁撞击,所以麻将牌50在定位轨道1内的运动方向与麻将牌50的宽度方向相同。所以,本申请中的麻将机吸牌送牌结构通过使用吸牌盘30上的定位吸牌结构31与麻将牌50的定位吸牌器的相互作用,限定了麻将牌50在吸附至吸牌盘30上时麻将牌50在吸牌盘30上的朝向,同时通过在定位轨道1上设置挡牌面121来保证麻将牌50在随吸牌盘30转动至定位轨道1对应的位置时,麻将牌50能够通过宽度方向的边缘与挡牌面121的撞击来保证麻将牌50能够以其宽度方向进入到定位轨道1。
因此,当在将本申请中的麻将机吸牌送牌结构应用到麻将机上时,麻将机将不再需要额外设置将输送带上的麻将牌50进行转向的装置,从而能够有效地方便麻将机送牌,简化麻将机的内部结构。因此,本申请中的麻将机吸牌送牌结构有效地解决了现有技术中麻将机的麻将牌输送装置不利于麻将机送牌的问题。当然,在本申请中,麻将机也可以通过驱动洗牌盘转动,然后通过洗牌盘驱动吸牌盘转动。
在仅有磁场力约束时,且在麻将牌被定位吸牌结构吸附并且麻将牌稳定在定位吸牌结构上后,麻将牌的长度方向与定位方向线之间是平行的,定位方向线可以为经过定位吸牌结构中心的一条线。仅在磁场力的约束下,不考虑麻将牌被定位吸牌结构吸附过程中的除磁场力之外的摩擦力和重力等一切阻力,麻将牌的长度方向与定位方向线之间是平行的,麻将牌被 定位吸牌结构吸附并且麻将牌稳定在定位吸牌结构上后是稳定在一个特定的位置,而现有技术中的麻将机是没有这样的功能的。
而在现实条件下,考虑到在麻将牌与定位吸牌结构之间存在摩擦力,还要受到自重和麻将机震动的影响,但是麻将牌与定位吸牌结构之间存在摩擦力对麻将牌在定位吸牌结构上的位置的影响最大,每次定位吸牌结构将麻将牌吸附上来时,麻将牌的长度方向与定位方向线,但是在多次测量麻将牌的长度方向与定位方向线之间的夹角,并取平均值,可以得到平均值r,r的值随着测量次数的增加会逐渐收敛到一个常数p,在只考虑摩擦力对r影响的条件下,常数p的值十分接近0。这说明:主麻将牌的长度方向与定位方向线之间的夹角是处于一个范围内的,这个范围随着麻将牌与定位吸牌结构之间的摩擦力产生的阻碍麻将旋转的扭矩的增大而增大,随着麻将牌与定位吸牌结构之间的摩擦力产生的阻碍麻将旋转的扭矩的减小而减小,本领域技术人员通过控制麻将牌与定位吸牌结构之间的摩擦力产生的阻碍麻将旋转的扭矩以及定位方向线与定位吸牌结构运动方向的夹角即可将麻将牌的长侧面迎向运动方向,从而实现直接将麻将牌以宽度方向送入存牌轨道,这就不需要对麻将牌的方向再进行调整,节约了时间和结构,提高了效率。麻将牌为长方体具有一对长侧面、一对短侧面、正面和背面。
在本实施例中,如图1所示,定位吸牌结构为一对圆柱磁铁,N极朝下,麻将牌内设置有长方体状磁铁,S极朝向麻将牌背面,在麻将牌被两个圆柱磁铁吸附后,麻将牌的长度方向可以与两个圆柱磁铁轴线所在平面平行,两个圆柱磁铁下表面圆心连线可以作为定位方向线。
在本示例里另一个未示出的方案中,定位吸牌结构为一个长方体磁铁,N极朝下,长方体长度方向上的中线经过吸牌盘轴线并与吸牌盘轴线垂直,麻将牌内设置有长方体状磁铁,S极朝向麻将牌背面,在麻将牌被长方体磁铁吸附后,麻将牌的长度方向可以与长方体磁铁长度方向上的中线平行,长度方向上的中线可以作为定位方向线。
可选地,定位轨道1的底面到洗牌盘40的边缘所在平面的距离小于等于5mm。由于麻将机在洗牌的过程中,洗牌盘40上的麻将牌50会相对定位轨道1转动,所以这样设置的目地是为了保证洗牌盘40的边缘和定位轨道1之间能够具有用于避让麻将牌50的避让间隙,以保证麻将机洗牌程序的正常运行。并且这样还能够减少麻将牌50落到定位轨道1上时所产生的噪音。
具体地,吸附在吸牌盘30上的麻将牌50的宽度方向的里侧面与定位轨道1的内侧壁碰撞时,麻将牌50与定位轨道1撞击的里侧面与定位轨道1的内侧壁碰撞处的切面的夹角为0到60度。通过这样设置不仅能够保证麻将牌50能够与吸牌盘30分离,而且还能够保证麻将牌50在与挡牌面121产生撞击后,麻将牌50不会在惯性力的作用下出现翻转,从而保证了麻将牌50能够以宽度方向在定位轨道1内运动。
具体地,定位轨道1包括顺次连接的进牌段10和送牌段20,进牌段10远离送牌段20的一端具有进牌口11,进牌口11的开口宽度大于麻将牌50的长度,进牌口11的开口方向与送牌段20的延伸方向之间具有夹角,以使麻将牌50进入定位轨道1时沿麻将牌50的宽度方向运动。由于在麻将牌50进入到定位轨道1并与定位轨道1产生撞击时,麻将牌50在定位轨 道1的长度方向上是呈一定角度进入定位轨道1的,因此将进牌口11的开口宽度大于麻将牌50的长度能够保证麻将牌50能够更加容易地进入到定位轨道1内部并与定位轨道1产生撞击。
具体地,进牌段10和送牌段20的连接处具有弯折角,且进牌段10远离送牌段20的一端沿靠近吸牌盘30的一侧偏斜。由于麻将牌50会通过定位轨道1输送至麻将机的码牌位置,因此通过在进牌段10和送牌段20的连接处设置弯折角能够更加有利于麻将牌50的输送。同时由于吸牌盘30是带着麻将牌50作圆周运动的,因此为了保证吸牌盘30上的麻将牌50能够与进牌段10的内侧壁的挡牌面121装置,需要设置进牌段10远离送牌段20的一端沿靠近吸牌盘30的一侧偏斜。
需要说明的是,在本申请中定位轨道1的长度方向的截面是呈U型的。或者说,定位轨道1的上方是不存在遮挡的。因此,在本申请的一个具体实施例中进牌段10包括顺次连接的第一止挡板12、底板13以及第二止挡板14,第一止挡板12和第二止挡板14分别与底板13垂直。并且,第一止挡板12与进牌段10的延伸方向的夹角大于第二止挡板14与进牌段10的延伸方向的夹角。
可选地,第一止挡板12为弧形板。并且,第一止挡板12与第二止挡板14相对的一侧在远离送牌段20的一端具有挡牌面121。
可选地,第二止挡板14为弧形板。
通过这样设置能够保证麻将牌50能够更加容易地与挡牌面121产生撞击。并且,在本申请中第一止挡板12的圆形和第二止挡板14的圆心均位于进牌段10的同一侧。
可选地,进牌段10远离送牌段20的一端的宽度沿靠近送牌段20的方向逐渐减小。通过这样设置,能够当麻将牌50进入到定位轨道1并沿定位轨道1运动时对麻将牌50进行限位,从而保证麻将牌50在运动的过程中不会出现偏转,进而能够保证麻将机洗牌程序的正常运行。
可选地,定位轨道1靠近吸牌盘30的一侧与吸牌盘30之间具有避让间隙。需要说明的是,这里的定位轨道1靠近吸牌盘30的一侧是相对洗牌盘40而言的,或者说是在麻将机的高度方向上。由于麻将牌50下吸附到吸牌盘30上后,麻将牌50是位于吸牌盘30靠近定位轨道1的一侧的,即吸牌盘30在厚度方向上靠近定位轨道1的那个底面上的。所以为了保证麻将牌50能够进入到定位轨道1内,定位轨道1和吸牌盘30在高度方向上具有能够使麻将牌50运动一定距离的空间。也就是说,这样设置能够保证麻将牌50在由吸牌盘30上脱落并进入到定位轨道1时,可以在重力的作用下运动一定的距离,从而保证麻将牌50与吸牌盘30的完全分离。
具体地,定位轨道1靠近进牌口11一端的侧壁与吸牌盘30的吸牌位之间的距离小于麻将牌50的厚度。这样设置的目地是为了保证麻将牌50在随吸牌盘30转动到定位轨道1对应的位置时,麻将牌50的宽度方向一侧的侧面能够与挡牌面121产生撞击,进而保证麻将牌50能够从吸牌盘30上脱落。
在本申请的一个具体实施例中,为了保证麻将牌50进入定位轨道1时,麻将牌50的宽度方向的里侧面与定位轨道1的内侧壁撞击,当吸牌盘30带动麻将牌50转动时,麻将牌50靠近转动中心的一侧的运动轨迹为第一弧形轨迹,麻将牌50远离转动中心的一侧的运动轨迹为第二弧形轨迹,定位轨道1的进牌段10的第一止挡板12远离定位轨道1的送牌段20的一端位于第一弧形轨迹靠近转动中心的一侧,进牌段10的第二止挡板14远离送牌段20的一端位于第二弧形轨迹远离转动中心的一侧。并且,第一止挡板12靠近送牌段20的一端位于第一弧形轨迹远离转动中心的一侧。
可选地,第一止挡板12的两端的连线与第一弧形轨迹在进牌口11处的切线的夹角大于等于0度且小于等于10度。
可选地,定位轨道1的进牌段10到洗牌盘40的距离小于定位轨道1的送牌段20到洗牌盘40的距离。
本申请中吸牌盘30上设置有主吸牌器即定位吸牌结构,麻将牌50上设置有副吸牌器即定位吸牌器,主吸牌器与副吸牌器相互吸引,主吸牌器为同极条形吸体或者同极条形吸体阵,副吸牌器为同极条形吸体或者同极条形吸体阵,在麻将牌50被吸附时,麻将牌50的长度方向转向吸牌盘30的设定方向。在本申请的一个具体实施例中,主吸牌器包括两个圆形磁铁,两个圆形磁铁的中心连线即为设定方向。这样可以吸到想要的方向的麻将牌50。
上述实施例是采用两个磁铁的吸牌方式,当然本申请中也可以是一个长条形磁铁,或者是两个中心对称的磁铁,在吸牌盘30上设置有两个磁铁,麻将牌上是一个长条形磁铁,所以吸牌盘30上的两个磁铁会各自吸附麻将牌的长条磁铁的两端,这样就实现了一个定位的效果,在两个磁铁的连线与长条形磁铁的长度方向呈度垂直时,理论上麻将牌会处于一个平衡位置,就不会转动,而实际上,因为在麻将机在运行过程中会不断有震动产生,且吸牌盘30是运动的,麻将牌的这个平衡状态就会被破坏,所以吸牌盘30上的两个磁铁还是会各自吸附麻将牌的长条磁铁的两端,实现定位的效果。
并且,在本申请中主吸牌器可以嵌埋在吸牌部的内部。或者主吸牌器的一部分位于吸牌部的内部,而另一部分裸露在吸牌部的外表面。同时,吸牌部具有用于放置主吸牌器的安装槽。
需要说明的是,如图2和图3所示,在本申请中当麻将牌50进入到定位轨道1上时,麻将牌50与挡牌面121之间可以存在至少两种撞击情况。一种是麻将牌50上的面与挡牌面121靠近进牌口11边缘处的点撞击,即麻将牌撞击的部分是面,挡牌面撞击的部分是点。另一种是麻将牌50上的点与挡牌面121撞击,即麻将牌撞击的部分是点,挡牌面撞击的部分是面。当然,在本申请中也可以是麻将牌的面与挡牌面的面撞击。
从以上的描述中,可以看出,本申请上述的实施例实现了如下技术效果:
1、有效地解决了现有技术中麻将机的麻将牌输送装置不利于麻将机送牌的问题;
2、能够简化麻将机的内部结构;
3、结构简单,性能稳定。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (16)

  1. 一种麻将机吸牌送牌结构,其特征在于,包括:吸牌盘(30)和定位轨道(1),
    所述吸牌盘(30)具有至少一个用于吸附麻将牌(50)的定位吸牌结构(31),所述麻将牌(50)的内部具有与所述定位吸牌结构(31)配合的定位吸牌器,所述定位吸牌结构(31)具有定位方向线,被所述定位吸牌结构(31)吸附的麻将牌(50)的长度方向与所述定位方向线之间具有夹角a,所述夹角a在-15°到15°之间,以使所述麻将牌(50)进入所述定位轨道(1)时,所述麻将牌(50)的宽度方向的里侧面与所述定位轨道(1)的内侧壁撞击;
    所述定位轨道(1)靠近所述吸牌盘(30)的一端与吸附在所述吸牌盘(30)上的所述麻将牌(50)的运动轨迹相交并具有进牌口(11),所述定位轨道(1)靠近所述吸牌盘(30)旋转中心的一侧的内侧壁具有用于与所述麻将牌(50)接触的挡牌面(121),以用于与麻将牌(50)的宽度方向的边缘撞击。
  2. 根据权利要求1所述的麻将机吸牌送牌结构,其特征在于,吸附在所述吸牌盘(30)上的所述麻将牌(50)的宽度方向的里侧面与所述定位轨道(1)的内侧壁碰撞时,所述麻将牌(50)与所述定位轨道(1)撞击的里侧面与所述定位轨道(1)的内侧壁碰撞处的切面的夹角为0到60度。
  3. 根据权利要求1所述的麻将机吸牌送牌结构,其特征在于,所述定位轨道(1)包括顺次连接的进牌段(10)和送牌段(20),所述进牌段(10)远离所述送牌段(20)的一端具有所述进牌口(11),所述进牌口(11)的开口宽度大于麻将牌(50)的长度,所述进牌口(11)的开口方向与所述送牌段(20)的延伸方向之间具有夹角,以使所述麻将牌(50)进入所述定位轨道(1)时沿所述麻将牌(50)的宽度方向运动。
  4. 根据权利要求3所述的麻将机吸牌送牌结构,其特征在于,所述进牌段(10)和所述送牌段(20)的连接处具有弯折角,且所述进牌段(10)远离所述送牌段(20)的一端沿靠近吸牌盘(30)的一侧偏斜。
  5. 根据权利要求3所述的麻将机吸牌送牌结构,其特征在于,所述进牌段(10)包括顺次连接的第一止挡板(12)、底板(13)以及第二止挡板(14),所述第一止挡板(12)和所述第二止挡板(14)分别与所述底板(13)垂直。
  6. 根据权利要求5所述的麻将机吸牌送牌结构,其特征在于,所述第一止挡板(12)与所述进牌段(10)的延伸方向的夹角大于所述第二止挡板(14)与所述进牌段(10)的延伸方向的夹角。
  7. 根据权利要求5所述的麻将机吸牌送牌结构,其特征在于,
    所述第一止挡板(12)为弧形板;
    所述第二止挡板(14)为弧形板。
  8. 根据权利要求5所述的麻将机吸牌送牌结构,其特征在于,所述第一止挡板(12)与所述第二止挡板(14)相对的一侧在远离所述送牌段(20)的一端具有所述挡牌面(121)。
  9. 根据权利要求3至8中任一项所述的麻将机吸牌送牌结构,其特征在于,所述进牌段(10)远离所述送牌段(20)的一端的宽度沿靠近所述送牌段(20)的方向逐渐减小。
  10. 根据权利要求3至8中任一项所述的麻将机吸牌送牌结构,其特征在于,
    所述定位轨道(1)靠近所述吸牌盘(30)的一侧与所述吸牌盘(30)之间具有避让间隙;
    所述定位轨道(1)靠近所述进牌口(11)一端的侧壁与所述吸牌盘(30)的吸牌位之间的距离小于麻将牌(50)的厚度。
  11. 根据权利要求3至8中任一项所述的麻将机吸牌送牌结构,其特征在于,当所述吸牌盘(30)带动麻将牌(50)转动时,所述麻将牌(50)靠近转动中心的一侧的运动轨迹为第一弧形轨迹,所述麻将牌(50)远离所述转动中心的一侧的运动轨迹为第二弧形轨迹,所述定位轨道(1)的进牌段(10)的第一止挡板(12)远离所述定位轨道(1)的送牌段(20)的一端位于所述第一弧形轨迹靠近所述转动中心的一侧,所述进牌段(10)的第二止挡板(14)远离所述送牌段(20)的一端位于所述第二弧形轨迹远离所述转动中心的一侧。
  12. 根据权利要求11所述的麻将机吸牌送牌结构,其特征在于,所述第一止挡板(12)靠近所述送牌段(20)的一端位于所述第一弧形轨迹远离所述转动中心的一侧。
  13. 根据权利要求11所述的麻将机吸牌送牌结构,其特征在于,所述第一止挡板(12)的两端的连线与所述第一弧形轨迹在所述进牌口(11)处的切线的夹角大于等于0度且小于等于10度。
  14. 一种麻将机,其特征在于,包括权利要求1至13中任一项所述的麻将机吸牌送牌结构,所述麻将机还包括:
    洗牌盘(40),所述麻将机吸牌送牌结构的吸牌盘(30)从洗牌盘(40)上吸取麻将牌(50),所述吸牌盘(30)位于所述吸牌盘(30)的上方,所述麻将机吸牌送牌结构的定位轨道(1)位于所述吸牌盘(30)的下方。
  15. 根据权利要求14所述的麻将机,其特征在于,所述定位轨道(1)的底面到所述洗牌盘(40)的边缘所在平面的距离小于等于5mm。
  16. 根据权利要求14所述的麻将机,其特征在于,所述定位轨道(1)的进牌段(10)到所述洗牌盘(40)的距离小于所述定位轨道(1)的送牌段(20)到所述洗牌盘(40)的距离。
PCT/CN2023/111094 2022-08-03 2023-08-03 麻将机吸牌送牌结构及麻将机 WO2024027806A1 (zh)

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