CN109985376B - Card stacking mechanism and mahjong machine card feeding device - Google Patents

Card stacking mechanism and mahjong machine card feeding device Download PDF

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Publication number
CN109985376B
CN109985376B CN201910389720.4A CN201910389720A CN109985376B CN 109985376 B CN109985376 B CN 109985376B CN 201910389720 A CN201910389720 A CN 201910389720A CN 109985376 B CN109985376 B CN 109985376B
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card
tile
track
mahjong
turntable
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CN109985376A (en
Inventor
陈志琪
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Matsuoka Electromechanical China Co Ltd
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Matsuoka Electromechanical China Co Ltd
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    • 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

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Control Of Vending Devices And Auxiliary Devices For Vending Devices (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

The invention discloses a tile stacking mechanism and a tile feeding device of a mahjong machine, wherein the tile stacking mechanism comprises a turntable and a tile bearing seat, the upper surface of the tile bearing seat forms a movable tile bearing surface, a circle of track surface is arranged on the turntable, the track surface is divided into an upper track plane and a lower track plane, and the tile stacking mechanism further comprises a transmission mechanism which can be acted by the track surface and is connected with the tile bearing seat; through the rotation of the turntable, the transmission mechanism is respectively acted by the lower rail plane and the upper rail plane, so that the card bearing seat is driven to switch between a lower state and an upper state higher than the lower state. The invention can reduce the free falling height of the first mahjong tile, enhance the falling stability of the first mahjong tile, and has the advantages of reducing the falling noise and avoiding the occurrence of the fault of the clamping machine head.

Description

Card stacking mechanism and mahjong machine card feeding device
Technical Field
The invention belongs to the technical field of mahjong machines, and particularly relates to a tile stacking mechanism and a tile feeding device of a mahjong machine.
Background
The mahjong is a popular entertainment tool for the masses, and the full-automatic mahjong machine capable of automatically shuffling and stacking the mahjong is particularly popular with the friends.
With the continuous development of mahjong machine technology, the inclined upward slope mahjong machine is provided, and the inclined upward slope mahjong machine is not provided with a tile lifting mechanism, so that the structure is simpler, and the tile lifting and clamping faults can not occur. One of the key mechanisms in the inclined upward mahjong machine is a tile feeding mechanism.
The Chinese patent application publication No. CN106807055A discloses a tile feeding mechanism and a mahjong table, wherein a tile feeding mechanism, a tile feeding rail and a tile feeding plate in the tile feeding mechanism are arranged on the same side of the mahjong machine, adjacent tile feeding mechanisms are not crossed, and on the basis, the tile feeding rail extends from the tile feeding opening of the tile feeding mechanism to the tile feeding opening of the tile feeding plate, so that the structure of the tile feeding mechanism is simplified, and the mahjong machine is more compact and reliable. However, in the tile feeding mechanism, the tile bearing plane of the tile feeding track is separated from the tile outlet plane of the tile conveying mechanism by the fall of two mahjong tiles, the first mahjong tile falls on the tile bearing plane of the tile feeding track through the free falling state after being punched out by the tile outlet of the tile conveying mechanism, and the second mahjong tile falls on the tile surface of the first mahjong tile through the free falling state after being punched out by the tile outlet of the tile conveying mechanism, and the fall of the first mahjong tile is far greater than the fall of the second mahjong tile, so that the first mahjong tile can generate larger tile falling noise, the tile falling action is unstable, and the fault of clamping the tile pushing head is easy to occur.
Disclosure of Invention
The invention aims to solve the technical problem of providing the tile stacking mechanism which can reduce the drop height of the first mahjong tile and enhance the tile falling stability of the first mahjong tile, thereby reducing tile falling noise and avoiding the occurrence of the fault of a clamping machine head and overcoming the defects in the prior art.
In order to solve the technical problems, the invention adopts the following technical scheme:
the utility model provides a fold tablet mechanism which characterized in that: the automatic card-holding device comprises a turntable, a card-holding seat and a transmission mechanism, wherein the upper surface of the card-holding seat forms a movable card-holding surface, a circle of track surface is arranged on the turntable and is divided into an upper track plane and a lower track plane, and the transmission mechanism can be acted by the track surface and is connected with the card-holding seat; the transmission mechanism is respectively acted by the lower rail plane and the upper rail plane through the rotation of the turntable, so that the card bearing seat is driven to be switched between a lower state and an upper state higher than the lower state; in the upper state, the movable tile bearing surface receives a first fallen mahjong tile, and in the lower state, the movable tile bearing surface receives a second fallen mahjong tile.
In a preferred embodiment of the invention, the transmission mechanism comprises a connecting rod mechanism and an elastic piece, wherein the connecting rod mechanism comprises a horizontal rod and a lifting rod, one end of the horizontal rod is hinged on a bracket below the turntable, the other end of the horizontal rod is connected with the card bearing seat, and the lower end of the lifting rod is hinged on the horizontal rod; the elastic piece acts on the connecting rod mechanism to enable the upper end of the lifting rod to always prop against the track surface.
In a preferred embodiment of the present invention, a roller is mounted on the upper end of the lifting rod, and the roller always abuts against the track surface.
In a preferred embodiment of the invention, the elastic member is a spring mounted under the card holder.
In the preferred embodiment of the invention, the lifting rod is also connected with guide rods extending towards two sides, the ends of the guide rods are provided with guide wheels, vertical guide grooves positioned at two sides of the guide rods are also arranged below the turntable, and the guide wheels are positioned in the guide grooves.
In order to solve the technical problems, the invention also provides a mahjong machine tile feeding device, which comprises the tile stacking mechanism and a tile feeding track arranged around the turntable, wherein a tile pushing head capable of moving along the tile feeding track is arranged in the tile feeding track, the tile bearing seat is arranged at the starting position of the tile feeding track, the movable tile bearing surface is flush with the main tile bearing surface of the tile feeding track, and the upper state is that the movable tile bearing surface is higher than the main tile bearing surface.
In the preferred embodiment of the invention, the card feeding device further comprises a card conveying mechanism and a card feeding plate, wherein the card feeding rail extends from the card outlet position of the card conveying mechanism to the card feeding port of the card feeding plate; and a drop is arranged between the card outlet and the starting position of the card feeding track.
In the preferred embodiment of the invention, the height of the drop is the thickness of the superposition of two mahjong tiles, and the upper state is that the movable tile bearing surface is positioned in the middle position of the drop.
In a preferred embodiment of the invention, the card pushing head is connected to the turntable by a connecting rod.
In a preferred embodiment of the invention, the projection of the card pusher onto the circumference of the turntable is in the section of the lower rail plane, and the distance from the front edge of the projection to the starting position of the lower rail plane is slightly larger than the width of the card holder.
By adopting the technical scheme, the mahjong tile feeding device of the mahjong machine disclosed by the invention enables the upper rail plane and the lower rail plane to respectively act as the transmission mechanism through the rotation of the turntable, the transmission mechanism drives the tile bearing seat to switch between the upper state and the lower state, and when the tile bearing seat is switched to the upper state, the free falling height of the first mahjong tile can be reduced, the tile falling stability of the first mahjong tile is enhanced, and therefore, the tile falling noise is reduced and the fault of a clamping machine head is avoided.
Drawings
The invention is described in detail below with reference to the following drawings:
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic perspective view showing a movable card bearing surface in an upper state according to the present invention;
FIG. 3 is a schematic perspective view showing a movable playing surface in a lowered position according to the present invention;
figure 4 is a schematic perspective view of the present invention showing the movement of the pusher head into the upper card track (the upper card track is hidden).
Detailed Description
As shown in fig. 1 and 2, the mahjong machine tile feeding device of the present invention comprises a tile conveying mechanism 100, a tile pushing mechanism 200, a tile feeding plate 300, a tile feeding track 400 and a tile stacking mechanism.
Wherein the upper card rail 400 surrounds the card pushing mechanism 200 and extends counterclockwise from the card exit position of the card delivery mechanism 100 to the upper card opening 311 of the upper card plate 300. The card delivery mechanism 100 and the card feeding plate 300 are located on the same side of the mahjong machine.
Specifically, the card conveying mechanism 100 is composed of a conveyor belt, baffles positioned on two sides of the conveyor belt, and a driving motor for driving the conveyor belt, and the front end of the conveyor belt forms a card outlet of the card conveying mechanism 100. The card feed mechanism 100 may take other forms and, as is known in the art, will not be described in any greater detail herein.
The card pushing mechanism 200 comprises a turntable 201, a card pushing head 202, a connecting rod 203 and a power motor 204. The turntable 201 is a circular disk with equal radius, and the power motor 204 is arranged below the turntable 201 and is used for driving the turntable 201 to rotate. The connecting rod 203 is connected to the turntable 201, extends out of the turntable in the radial direction, and is connected to the card pushing head 202. The card feeding rail 400 is arranged around the turntable 201 and consists of a card bearing surface 401, and an inner wall 402 and an outer wall 403 arranged on two sides of the card bearing surface 401. The portion of the connecting rod 203 outside the carousel 201 is cantilevered and spans over the inner wall 402 of the card feed rail 400. The card pushing head 202 is driven by the turntable 201 to move along the card feeding track 400 in the card feeding track 400.
At the end of the starting position of the card feeding rail 400 there is an end plate 431, which end plate 431 has a lower height than the connecting rod 203, so that the connecting rod 203 can pass over the end plate 431 and enter above the card feeding rail 400 when the turntable rotates. The end plate 431 defines an entrance 432 for receiving the pusher head 202 therethrough and into the card loading rail 400. A trackless zone 433 is provided between the card feed opening 311 of the card feed plate 300 and the start of the card feed track 400.
The drop between the card outlet of the card delivery mechanism 100 and the card bearing surface at the starting position of the card feeding track 400 is two pieces of mahjong tiles.
In the present invention, to reduce the height of the free fall of the first card, the card bearing surface 401 of the card feeding rail 400 is separated into a movable card bearing surface 421 at the initial position and a remaining main card bearing surface 422. Specifically, a rectangular hole is formed in the card loading rail 400 at a position just below the card outlet of the card conveying mechanism 100 at the start position. The hole is internally provided with a card bearing seat 511, and the upper surface of the card bearing seat 511 forms a movable card bearing surface 421 covering the hole.
In addition, the movable card bearing surface 421 is further lifted and lowered by setting a driving mechanism, so that the movable card bearing surface 421 is switched between an upper state and a lower state, wherein the lower state is that the movable card bearing surface 421 is flush with the main card bearing surface 422, and the upper state is that the movable card bearing surface 421 is higher than the main card bearing surface 422. By raising the movable carrying surface 421 higher than the main carrying surface 422, the drop height between the movable carrying surface 421 and the card outlet of the card conveying mechanism 100 can be reduced, so that the free falling height of the first mahjong tile is reduced, the falling stability of the first mahjong tile is enhanced, the falling noise is reduced, and the card machine head fault is avoided. In this embodiment, the upper state is that the movable tile bearing surface is located at the middle position of the drop, i.e. the height corresponding to the thickness of one mahjong tile is raised. The specific card falling mode is as follows: the movable tile bearing surface 421 is lifted to an upper state, at this time, the drop between the movable tile bearing surface 421 and the tile outlet of the tile conveying mechanism 100 is equal to the thickness of one mahjong tile, and the tile conveying mechanism 100 drives the first mahjong tile 11 to fall on the movable tile bearing surface 421 through the driving belt. Then the movable tile bearing surface is lowered to a lower position, at this time, the drop between the upper surface of the first tile 11 and the tile outlet of the tile conveying mechanism 100 is the thickness of one tile, and the tile conveying mechanism 100 drives the second tile 12 to fall on the first tile 11 through the driving belt, so that the stacking of the two tiles is realized. It can be seen that the height of the first mahjong tile 11 is reduced by half by the structure, and the stability of tile falling is enhanced.
The driving mechanism can adopt a motor or the combination of the motor and a transmission part to realize the driving of the movable card bearing surface, and can also adopt other power modes, such as an air cylinder, an electric cylinder and the like, which are not described too much because of the prior art.
In the present invention, the card pusher 200 can be operated in cooperation with the card pusher without adding a power device such as a motor. A transmission mechanism is arranged between the movable card bearing surface 421 and the card pushing mechanism 200. The movable card bearing surface 421 is driven to ascend and descend by a transmission mechanism driven by the turntable 201, so that a card stacking function is realized, namely the card stacking mechanism of the invention consists of a card bearing seat 511, a transmission mechanism and the turntable 201 in the shared card pushing mechanism 200, and the specific structure is as follows:
as shown in fig. 4, the bottom of the turntable 201 has a circumferential track surface divided into an upper track plane 211, which is a main body section, and a lower track plane 212, which is a partial section and protrudes downward, and the front and rear ends of the lower track plane 212 are smoothly connected to the upper track plane 211 by a front slope 213 and a rear slope 214, respectively.
As further shown in fig. 2 and 3, the transmission mechanism includes a linkage 510 and a spring. The linkage 510 includes a horizontal bar 512, a lift bar 513, and a roller 515. One end of a horizontal rod 512 is hinged on a bracket 601 below the turntable 201, the other end is connected with a card bearing seat 511, and the horizontal rod 512 can swing by taking a hinge point 602 as a rotation center. The upper end of the lifting rod 513 is provided with a roller 515, and the lower end is hinged to the middle position of the horizontal rod 512. The springs are arranged below the card bearing seat 511 (the springs are not shown in the figure, specifically, the support plate 521 is arranged below the card bearing seat 511, the springs are arranged between the support plate 521 and the card bearing seat 511), and an upward acting force is always exerted on the card bearing seat 511, so that the roller 515 is always abutted against the track surface at the bottom of the turntable 201. Of course, the spring may be disposed at other positions, such as below the horizontal rod 512 or at the hinge of the horizontal rod 512 and the bracket 601, so long as an upward force on the link mechanism can be achieved. Alternatively, the spring may be replaced by other resilient members, such as rubber pads.
In order to ensure the stability of the lifting of the link mechanism 510, vertical guide grooves (not shown) are further provided on both sides of the lifting rod 513, the lifting rod 513 is provided with guide rods 531 extending to both sides, and guide wheels (not shown) are mounted on the ends of the guide rods 531 and are positioned in the guide grooves. Such a structure ensures the stability of the lifting rod 513, and further ensures the stability of the lifting of the card holder 511.
As further shown in fig. 4, the forward slope 213 is designed to be short and steep in order to increase the speed of lifting of the movable playing surface. The rear ramp 214 may be designed to be long and gentle.
In the present invention, the projection of the card pushing head 202 onto the peripheral surface of the turntable 201 is in the section where the lower rail plane 212 is located, and the distance between the projected front edge of the card pushing head 202 and the starting position of the lower rail plane 212 is required to be slightly larger than the width of the card bearing seat 511, so that the card bearing seat 511 is not lifted when the card pushing head 202 passes through the card bearing seat 511, the movable card bearing surface 421 is in a lower position state, and the stacked mahjong tiles are pushed onto the main card bearing surface 422 from the movable card bearing surface 421 by the card pushing head 202.
The mahjong machine tile feeding device provided by the invention has the following working modes:
as shown in fig. 1 to 3, since the projected front edge of the card pusher 202 is slightly greater than the width of the card holder 511 from the front end of the lower rail plane 212, the front end of the card pusher 202 is located at the entrance 432 and is close to the front end of the card holder 511, and the roller 515 is located at the starting position on the lower rail plane 212, the lower rail plane 212 presses the link mechanism to descend, and the movable card bearing surface 421 is in a lower position flush with the main card bearing surface 422.
Firstly, the turntable 201 rotates clockwise, so that the roller 515 moves from the lower rail plane 212 to the upper rail plane 211 via the front slope 213, the position of the roller 515 rises, and the card bearing seat 511 also rises under the action of the spring until the movable card bearing surface 421 rises to the upper state of the middle position of the drop, and in this process, the card pushing head 202 retreats away from the inlet 432. At this time, the card feeding mechanism 100 pushes out the first mahjong tile 11, and the first mahjong tile falls on the movable card bearing surface 421 in the upper position.
The carousel 201 is then rotated counter-clockwise so that the roller 515 moves via the forward sloping surface 213 to the starting position of the lower track plane 212, at which time the movable playing surface 421 is lowered to a lowered position flush with the main playing surface 422, and the pusher 202 also reaches the entry 432 position, but does not enter the movable playing surface and does not contact the first tile 11 already on the movable playing surface. The delivery mechanism 100 then pushes the second tile 12 out, leaving it free to fall onto the first tile 11. Thus completing the stacking of the first mahjong pieces.
Then, the turntable 201 rotates anticlockwise and the tile pushing head 202 moves forwards to push the first stack of mahjong tiles forwards from the movable tile bearing surface 421 onto the main tile bearing surface 422. After the first mahjong tile stack completely enters the main mahjong tile bearing surface 422, the turntable 201 rotates clockwise again to drive the tile pushing head 202 to move backwards until the movable mahjong tile bearing surface 421 rises to an upper position state, and the second mahjong tile stack is received again. Then the turntable 201 rotates anticlockwise again, so that the movable tile bearing surface 421 descends to a lower position and receives a second mahjong tile of the second stack, then the turntable 201 continues to rotate anticlockwise, the tile pushing head 202 is driven to push the second mahjong tile stack forwards from the movable tile bearing surface 421 to the main tile bearing surface 422, and meanwhile, the second mahjong tile stack can push the first mahjong tile stack to advance along the tile feeding track 400. By doing so, a stacked mahjong tile on the side of the mahjong machine can be arranged in a row on the main tile bearing surface 422.
Finally, the turntable 201 continues to rotate anticlockwise, so that the tile pushing head 202 is driven to push the row of mahjong tiles from the rear along the tile feeding track 400, and finally the row of mahjong tiles completely enter the tile feeding plate 300. After pushing, the tile pushing head 202 is driven by the turntable 201 to return to the trackless section clockwise, and the next stacking and pushing of the mahjong tiles are waited.
As can be seen from the above detailed description, the mahjong machine tile feeding device can reduce the free falling height of the first mahjong tile when stacking the mahjong tiles, enhance the tile falling stability of the first mahjong tile, and has the advantages of reducing tile falling noise and avoiding the occurrence of the fault of a clamping head.
It should be noted that, in the foregoing embodiment, the turntable 201, the tile bearing seat 511, and the transmission mechanism may be separately assembled to form a tile stacking mechanism, which is used in a mahjong machine with other structures to implement a tile stacking function and achieve the effect of reducing the height of the free falling body of the first mahjong tile, and enhancing the tile falling stability of the first mahjong tile.
However, it will be appreciated by persons skilled in the art that the above embodiments are provided for illustration of the invention and not for limitation thereof, and that changes and modifications to the above described embodiments are intended to fall within the scope of the appended claims as long as they fall within the true spirit of the invention.

Claims (10)

1. The utility model provides a fold tablet mechanism which characterized in that: the automatic card-holding device comprises a turntable, a card-holding seat and a transmission mechanism, wherein the upper surface of the card-holding seat forms a movable card-holding surface, a circle of track surface is arranged on the turntable and is divided into an upper track plane and a lower track plane, and the transmission mechanism can be acted by the track surface and is connected with the card-holding seat; the transmission mechanism is respectively acted by the lower rail plane and the upper rail plane through the rotation of the turntable, so that the card bearing seat is driven to be switched between a lower state and an upper state higher than the lower state; in the upper state, the movable tile bearing surface receives a first fallen mahjong tile, and in the lower state, the movable tile bearing surface receives a second fallen mahjong tile.
2. The card stacking mechanism of claim 1, wherein: the transmission mechanism comprises a connecting rod mechanism and an elastic piece, wherein the connecting rod mechanism comprises a horizontal rod and a lifting rod, one end of the horizontal rod is hinged on a support below the turntable, the other end of the horizontal rod is connected with the card bearing seat, and the lower end of the lifting rod is hinged on the horizontal rod; the elastic piece acts on the connecting rod mechanism to enable the upper end of the lifting rod to always prop against the track surface.
3. The card stacking mechanism of claim 2, wherein: the upper end of the lifting rod is provided with a roller, and the roller always abuts against the track surface.
4. The card stacking mechanism of claim 2, wherein: the elastic piece is a spring arranged below the card bearing seat.
5. The card stacking mechanism of claim 2, wherein: the lifting rod is also connected with guide rods extending towards two sides, guide wheels are mounted at the ends of the guide rods, vertical guide grooves positioned at two sides of the guide rods are further formed below the rotary table, and the guide wheels are positioned in the guide grooves.
6. The utility model provides a mahjong machine device of putting on a mahjong which characterized in that: the card stacking mechanism comprises a card stacking mechanism according to any one of claims 1 to 5 and a card feeding track arranged around a turntable, wherein a card pushing head capable of moving along the card feeding track is arranged in the card feeding track, a card bearing seat is arranged at the starting position of the card feeding track, the lower state is that the movable card bearing surface is flush with the main card bearing surface of the card feeding track, and the upper state is that the movable card bearing surface is higher than the main card bearing surface.
7. The mahjong machine tile feeding device according to claim 6, wherein: the card feeding mechanism is characterized by further comprising a card conveying mechanism and a card feeding plate, wherein the card feeding rail extends from the card outlet position of the card conveying mechanism to the card feeding port of the card feeding plate; and a drop is arranged between the card outlet and the starting position of the card feeding track.
8. The mahjong machine tile feeding device according to claim 7, wherein: the height of the drop is the thickness of the superposition of the two mahjong tiles, and the upper state is that the movable tile bearing surface is positioned in the middle position of the drop.
9. The mahjong machine tile feeding device according to claim 6, wherein: the card pushing head is connected to the turntable through a connecting rod.
10. The mahjong machine tile feeding device according to claim 9, wherein: the projection of the card pushing head on the peripheral surface of the turntable is positioned in the section where the lower rail plane is positioned, and the distance between the front edge of the projection and the starting position of the lower rail plane is slightly larger than the width of the card bearing seat.
CN201910389720.4A 2019-05-10 2019-05-10 Card stacking mechanism and mahjong machine card feeding device Active CN109985376B (en)

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CN110721464A (en) * 2019-09-12 2020-01-24 韦琳 Stacking and pushing device and mute mahjong machine applying same

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