CN106390439B - Full-automatic mahjong machine - Google Patents

Full-automatic mahjong machine Download PDF

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Publication number
CN106390439B
CN106390439B CN201610392737.1A CN201610392737A CN106390439B CN 106390439 B CN106390439 B CN 106390439B CN 201610392737 A CN201610392737 A CN 201610392737A CN 106390439 B CN106390439 B CN 106390439B
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China
Prior art keywords
tile
mahjong
pushing
turning track
groove
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CN201610392737.1A
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CN106390439A (en
Inventor
魏震宇
胡仁泉
俞佳彬
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Matsuoka Electromechanical China Co Ltd
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Matsuoka Electromechanical China Co Ltd
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Publication of CN106390439A publication Critical patent/CN106390439A/en
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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)
  • Toys (AREA)
  • Separation, Sorting, Adjustment, Or Bending Of Sheets To Be Conveyed (AREA)

Abstract

The invention relates to a full-automatic mahjong machine, which solves the problem that the existing mahjong feeding groove and the existing mahjong storage groove are required to be vertically arranged. The full-automatic mahjong machine comprises a tile feeding groove, a tile storage groove and a tile stacking mechanism connected with a tile outlet of the tile feeding groove, wherein the full-automatic mahjong machine further comprises a rotary tile pushing mechanism, the rotary tile pushing mechanism comprises a tile turning track, tile pushing pieces arranged in the tile turning track and driving pieces capable of driving the tile pushing pieces to rotate, the tile turning track is positioned between the tile stacking mechanism and a tile inlet of the tile storage groove, and the tile pushing pieces are rotated to push mahjong tiles on the tile stacking mechanism to the tile storage groove along the tile turning track.

Description

Full-automatic mahjong machine
Technical Field
The invention relates to a full-automatic mahjong machine.
Background
Referring to fig. 11 and 12, the full-automatic mahjong machine comprises a tile feeding groove 01, a tile stacking mechanism and a tile storage groove which are sequentially connected, wherein the tile stacking mechanism comprises a tile supporting plate 02, the tile storage groove is formed by connecting a straight groove 03 and a bent groove in a tangential mode, the straight groove 03 is connected with the tile feeding groove 01 through the tile supporting plate 02, and the tile feeding groove 01 is perpendicular to the straight groove 03. The full-automatic mahjong machine also comprises a pushing head 04, and when one pier of mahjong pieces 05 is stacked on the mahjong supporting plate 02, the pushing head 04 pushes the pier of mahjong pieces 05 to slide into the straight groove 03 along the straight line direction. However, when the card feed slot 01 is disposed perpendicular to the straight slot 03, if the mounting position of the card storage slot is not changed, the mounting position of the card feed slot 01 cannot be adjusted.
Disclosure of Invention
The invention aims to solve the problem of providing a full-automatic mahjong machine, which is convenient for adjusting the installation position of a mahjong tile feeding groove.
In order to solve the problems, the invention provides the following technical scheme:
the full-automatic mahjong machine comprises a tile feeding groove, a tile storage groove and a tile stacking mechanism connected with a tile outlet of the tile feeding groove, wherein the full-automatic mahjong machine further comprises a rotary tile pushing mechanism, the rotary tile pushing mechanism comprises a tile turning track, tile pushing pieces arranged in the tile turning track and driving pieces capable of driving the tile pushing pieces to rotate, the tile turning track is positioned between the tile stacking mechanism and a tile inlet of the tile storage groove, and the tile pushing pieces are rotated to push mahjong tiles on the tile stacking mechanism to the tile storage groove along the tile turning track.
The rotary tile pushing mechanism comprises a tile pushing piece and a driving piece, wherein the driving piece drives the tile pushing piece to rotate, and the tile pushing piece can rotationally push mahjong tiles to slide along the circumference of a tile rotating track in the process that the tile pushing piece rotates around the tile rotating track. So designed, the tile pushing piece applies a rotating pushing force to the mahjong tile to limit the movement track of the mahjong tile.
The existing full-automatic mahjong machine also comprises a mahjong table top, wherein the mahjong table top is provided with a mahjong outlet and a support plate door strip for opening and closing the mahjong outlet, and the support plate door strip is connected with the mahjong storage groove. As is well known, mahjong has a plurality of playing methods, such as hangzhou mahjong, sichuan mahjong and Guangzhou mahjong, the number of mahjong pieces needed by different playing methods is also different, the existing full-automatic mahjong machine is suitable for different playing methods of mahjong, under the condition that the installation position of a mahjong storage groove is not changed, the tail end of a straight groove extends outwards to improve the mahjong storage amount of the mahjong storage groove, and when the extension section of the tail end of the straight groove is in a straight line shape, the mahjong feeding groove needs to horizontally move to the outside of a shuffling tray to be vertically arranged with the mahjong storage groove.
The mahjong tile transferring track is positioned between the tile stacking mechanism and the tile inlet of the tile storing groove, and when mahjong tiles can slide into the tile storing groove along the circumferential direction of the mahjong tile transferring track, the tile feeding groove and the tile storing groove do not need to be arranged vertically. By the design, the installation position of the card feeding groove is adaptively adjusted according to the shape of the card rotating rail.
In addition, when the card feeding groove and the card storage groove do not need to be vertically arranged, the orthographic projection of the card feeding groove and the adjacent card storage groove on the horizontal plane can avoid cross overlapping. By the design, the installation height of the card storage groove can be reduced.
Further, a guide plate for guiding mahjong tiles to slide into the tile storage groove from the tile turning track is arranged at the edge of the tile storage groove, and a notch for avoiding the tile pushing piece is arranged on the guide plate. When the guide plate is used for guiding the mahjong tiles to slide into the tile storage groove from the tile turning track, the notch can prevent the guide plate from interfering the tile pushing piece to rotate.
Further, the guide plate comprises an upper guide plate corresponding to the upper mahjong tile and a lower guide plate corresponding to the lower mahjong tile, and the notch is formed between the upper guide plate and the lower guide plate. By the design, the upper mahjong tiles and the lower mahjong tiles can slide synchronously, so that the falling probability of the upper mahjong tiles from the lower mahjong tiles is reduced.
Further, a baffle plate for guiding mahjong tiles to enter the tile turning track along the tile feeding direction of the tile feeding groove is arranged at the position of the tile turning track adjacent to the tile feeding groove. The baffle blocks the mahjong tiles from deflecting circumferentially in the process of moving the mahjong tiles from the tile feeding groove to the tile stacking mechanism.
Further, an elastic element is connected to the baffle plate, and the elastic element pushes the baffle plate inwards to the card rotating track.
Further, the tile pushing piece is provided with a tile blocking surface for blocking the mahjong tiles from falling out of the tile supporting mechanism and a tile pushing surface for pushing the mahjong tiles to slide along the tile turning track, and two adjacent side surfaces on the mahjong tiles are respectively abutted against the tile blocking surface and the tile pushing surface. By the design, mahjong tiles can slide in the tile turning track stably.
Further, a gasket for buffering the impact force of the mahjong tiles is arranged on the tile blocking surface. By the design, noise generated when the mahjong tiles strike the tile blocking surface is reduced.
Further, the tile blocking surface is provided with a tile blocking rib protruding outwards, and the tile blocking rib, the tile blocking surface and the tile pushing surface are connected to form a limiting groove for limiting the sliding track of the mahjong tile. By the design, mahjong tiles are prevented from being clamped between the tile pushing piece and the tile turning track.
Further, the full-automatic mahjong machine further comprises a bottom plate and a coaming, wherein the coaming surrounds the periphery of the bottom plate, the card turning track is formed between the coaming and the bottom plate, and the card turning sliding groove is the card turning track. The card rotating rail is simple in structure and convenient to manufacture.
Further, a mounting opening is formed in the bottom wall of the card rotating rail, a conveying belt is arranged on the card feeding groove, and part of the conveying belt extends into the card rotating rail and corresponds to the mounting opening so as to form the card stacking mechanism. The design simplifies the card stacking mechanism.
Drawings
FIG. 1 is a top view of a fully automatic mahjong machine in a preferred embodiment of the invention;
FIG. 2 is a perspective view of a fully automatic mahjong machine (mahjong tiles not stacked on a tile stacking mechanism) in accordance with a preferred embodiment of the present invention;
FIG. 3 is a perspective view of a fully automatic mahjong machine (first schematic view of a tile pushing member rotating to push mahjong tiles) in a preferred embodiment of the present invention;
FIG. 4 is a perspective view of a fully automatic mahjong machine (a second schematic view of a tile pushing member rotating to push the mahjong tiles) in a preferred embodiment of the present invention;
FIG. 5 is an enlarged view of a portion of FIG. 4 at A;
FIG. 6 is a perspective view of a fully automatic mahjong machine (a third schematic view of a tile pushing member rotating to push mahjong tiles) in a preferred embodiment of the present invention;
FIG. 7 is a perspective view of a fully automatic mahjong machine (a fourth schematic view of a tile pushing member for rotating and pushing mahjong tiles) in a preferred embodiment of the present invention;
FIG. 8 is a perspective view of a fully automatic mahjong machine (a fifth schematic view of a tile pushing member for rotating and pushing mahjong tiles) in a preferred embodiment of the present invention;
FIG. 9 is a top view of a fully automatic mahjong machine (with the elastic baffle mounted on the tile feed carriage) in accordance with the preferred embodiment of the present invention;
FIG. 10 is a schematic view of the construction of a card pusher in a preferred embodiment of the present invention;
FIG. 11 is a top view of a prior art fully automatic mahjong machine (mahjong tiles stacked on a tile holding pallet);
fig. 12 is a top view of a conventional full-automatic mahjong machine (a pusher head pushes a pier of mahjong tiles stacked on a tile bearing plate into a tile storage groove).
Detailed Description
Referring to fig. 1, the full-automatic mahjong machine comprises a mahjong table top and four groups of tile picking and carrying devices positioned below the mahjong table top, wherein a tile outlet is formed in the mahjong table top, each group of tile picking and carrying devices comprises a tile feeding groove 1, a tile stacking mechanism, a tile storage groove 3 and a supporting plate door strip which are sequentially connected, and the supporting plate door strip is matched with the tile outlet and is used for opening or closing the tile outlet.
Referring to fig. 2, the difference from the prior art is that: the full-automatic mahjong machine further comprises a tile turning track and a rotary tile pushing mechanism, the tile stacking mechanism is connected with the tile storage groove 3 through the tile turning track, the rotary tile pushing mechanism comprises a tile pushing piece 5 and a driving piece for driving the tile pushing piece 5 to rotate relative to the tile turning track, the tile pushing piece 5 is arranged on the tile turning track, and when one pier of mahjong pieces 9 are stacked on the tile stacking mechanism, the tile pushing piece 5 is used for rotationally pushing the pier of mahjong pieces 9 to slide through the tile turning track and enter the tile storage groove 3.
Referring to fig. 3, the fully automatic mahjong machine further comprises a bottom plate 41 and a coaming 42, wherein the coaming 42 surrounds the periphery of the bottom plate 41, and a tile turning chute 4 is formed between the two, and the tile turning chute 4 is a tile turning track, specifically: the bounding wall 42 of this embodiment sets up vertically, and bounding wall 42 is located bottom plate 41 top and two integrated into one piece, and wherein, bounding wall 42 one end is connected with the inside wall that send tablet groove 1, and the bounding wall 42 other end is connected with the lateral wall of storing up tablet groove 3. In other embodiments of the invention, the coaming is connected with the mahjong table top into a whole, the bottom plate is connected with the tile feeding groove and/or the tile storage groove, when the bottom plate is inserted into the coaming and is matched with the coaming in a clearance way, a tile turning chute is formed between the bottom plate and the coaming, and the tile turning chute is a tile turning track; in addition, the inner side wall of the card feeding groove and the outer side wall of the card storage groove can be disconnected with the coaming.
Referring to fig. 2, a mounting opening 411 is formed in the bottom wall of the card turning rail, a conveying belt 2 is arranged on the card feeding slot 1, and part of the conveying belt 2 extends into the card turning rail to correspond to the mounting opening 411 so as to form a card stacking mechanism, specifically: the conveyer belt 2 of this embodiment includes conveying section 21 and tile-bearing section 22 that set gradually along the direction of delivering the tablet, tile-bearing section 22 is the pile mechanism that corresponds with mounting port 411, and wherein, tile-bearing section 22 is less than conveying section 21 and the difference in height of both is greater than the thickness of mahjong pieces 9, and mahjong pieces 9 carry to tile-bearing section 22 through conveying section 21 and pile up. In other embodiments of the present invention, the tile stacking mechanism includes a tile supporting plate capable of moving up and down, the mahjong tiles are conveyed to the tile supporting plate by the conveying belt and stacked, in addition, the tile turning track may be a step groove, the step groove includes an upper step surface and a lower step surface, the mahjong tiles slide along the upper step surface, the tile supporting section is located above the lower step surface, and the tile supporting section is connected with the upper step surface.
Referring to fig. 4 and 5, the edge of the tile storage groove 3 is provided with a guide plate 31 for guiding a pier of mahjong tiles 9 to slide into the tile storage groove 3 from the tile turning track, the guide plate 31 is provided with a notch 311 for avoiding the tile pushing piece 5, specifically: the guide plate 31 is arranged on the inner side wall of the tile storage groove 3, the guide plate 31 comprises an upper guide plate 312, a lower guide plate 313 and a connecting plate 314 for connecting the upper guide plate 312 and the lower guide plate 313, the guide plate 31 is connected with the inner side wall of the tile storage groove 3 through the connecting plate 314, the upper guide plate 312 corresponds to the mahjong tile 9 on the upper layer so as to enable the upper guide plate 312 to guide the mahjong tile 9 on the upper layer to slide into the tile storage groove 3 from the tile turning chute 4, the lower guide plate 313 corresponds to the mahjong tile 9 on the lower layer so as to enable the lower guide plate 313 to guide the mahjong tile 9 on the lower layer to slide into the tile storage groove 3 from the tile turning chute 4, and a gap 311 is formed between the upper guide plate 312 and the lower guide plate 313; when the upper mahjong pieces 9 slide into the mahjong storage groove 3 from the mahjong turning sliding groove 4 along the upper guide plate 312, and the lower mahjong pieces 9 slide into the mahjong storage groove 3 from the mahjong turning sliding groove 4 along the lower guide plate 313, the mahjong pushing piece 5 passes through the notch 311 and rotates to a direction approaching to the mahjong stacking mechanism. In other embodiments of the invention, the guide plate comprises an upper guide plate and a lower guide plate, which are respectively connected with the inner side walls of the card slot.
Of course, in other embodiments of the invention, the upper guide plate may be formed by a downward extension of the mahjong table and the lower guide plate may be formed by an upward extension of the base plate.
It should be noted that: in the embodiment, the side wall of the card feeding groove 1 far away from the card feeding groove 3 is the inner side wall of the card feeding groove 1, the side wall of the card feeding groove 3 far away from the card feeding groove 1 is the outer side wall of the card feeding groove 3, and the side wall of the card feeding groove 3 close to the card feeding groove 1 is the inner side wall of the card feeding groove 3; in addition, the upper mahjong tiles 9 of the present embodiment are stacked on the lower mahjong tiles 9 to form a pier of mahjong tiles 9.
Referring to fig. 5, the guide plate 31 is preferably an arc-shaped plate, one end of the arc-shaped plate connected with the inner side wall of the card storage slot 3 is defined as a fixed end, one end of the arc-shaped plate far away from the card storage slot 3 is defined as a free end, and the arc-shaped plate extends from the fixed end to the free end towards the card stacking mechanism. In other embodiments of the present invention, the guide plate is an inclined plate, and the inclined plate extends from the fixed end to the free end in the direction of the card stacking mechanism.
Referring to fig. 9, a baffle 20 for guiding the mahjong tiles 9 to enter the tile turning track along the tile feeding direction of the conveyer belt 2 is arranged at the position of the tile turning track adjacent to the tile feeding groove 1, wherein the baffle 20 can be abutted against the mahjong tiles 9 on the upper layer and the mahjong tiles 9 on the lower layer. The baffle 20 provides a pushing force against the mahjong tiles 9 during the falling of the mahjong tiles 9 from the delivery section 21 to the tile carrying section 22 and during the movement of the mahjong tiles 9 with the tile carrying section 22 to hinder the circumferential deflection of the mahjong tiles 9.
Referring to fig. 2 and 9, in this embodiment, an elastic element 30 is connected to the baffle 20, the elastic element 30 pushes the baffle 20 inward toward the tile turning track, specifically, an avoidance hole 421 is formed in a side wall of the tile turning track, the baffle 20 is located at the avoidance hole 421 and is rotationally connected with the side wall of the tile turning track, the fully automatic mahjong machine further includes a fixed plate 422 adjacent to the avoidance hole 421, an elastic element 30 is connected between the fixed plate 422 and the baffle 20, and the elastic element 30 acts on the baffle 20 to keep the tendency of the baffle 20 moving away from the avoidance hole 421. The principle of operation of the mahjong tiles 9 stacked on the tile carrying section 22 sliding along the tile turning track through the baffle 20: when a pier of mahjong tiles 9 is stacked on the tile supporting section 22 and the tile pushing piece 5 rotates around the tile sliding chute 4, the tile pushing piece 5 pushes the pier of mahjong tiles 9 to press the baffle 20, and in the process that the tile pushing piece 5 pushes the pier of mahjong tiles 9 to press the baffle 20, the baffle 20 moves towards the avoidance hole 421 to avoid the mahjong tiles 9. In other embodiments of the present invention, the baffle is an elastic baffle, the elastic baffle is connected to the tile feeding slot, and the baffle deforms towards the direction of avoiding the hole to avoid the mahjong tile when the tile pushing piece pushes a pier of mahjong tile to squeeze the baffle; of course, when the interval distance between the coaming and the card pushing piece is large enough, the coaming is not required to be provided with the avoiding holes; in other embodiments, the flapper may be connected only to the spring element, the flapper being movable in translation in the spring direction.
Referring to fig. 9, preferably, a fixing plate 422 adjacent to the escape hole 421 is provided on an outer sidewall of the shroud 42, wherein the fixing plate 422 includes an extension portion extending outwardly from the outer sidewall of the shroud 42 and a fixing portion connected to an end of the extension portion, the elastic member 30 is a coil spring, and the coil spring is connected between the baffle 20 and the fixing portion. In other embodiments of the invention, the elastic element may also be rubber.
Referring to fig. 6, 7 and 10, the tile blocking surface 51 for blocking the tile 9 from falling out of the tile supporting mechanism and the tile pushing surface 52 for pushing the tile 9 to slide along the tile turning track are arranged on the tile pushing piece 5, two adjacent side surfaces on the tile 9 are respectively abutted against the tile blocking surface 51 and the tile pushing surface 52, wherein when the tile blocking surface 51 blocks a pier tile 9 from falling out of the tile supporting section 22, the tile blocking surface 51 is abutted against the tile 9 on the upper layer and the tile 9 on the lower layer, and when the tile pushing surface 52 pushes a pier tile 9 to slide along the tile turning track, the tile pushing surface 52 is abutted against the tile 9 on the upper layer and the tile 9 on the lower layer, specifically: the tile pushing piece 5 of the embodiment is four tile pushing rods, the tail ends of the four tile pushing rods are connected with each other, each tile pushing rod is provided with a tile blocking surface 51 and a tile pushing surface 52, two adjacent tile pushing rods are called a first tile pushing rod and a second tile pushing rod for convenience in description, the first tile pushing rod and the second tile pushing rod are vertically arranged, and two adjacent side surfaces on the mahjong tile 9 are respectively propped against the tile blocking surface 51 of the first tile pushing rod and the tile pushing surface 52 of the second tile pushing rod; alternatively, two adjacent side surfaces of the mahjong pieces 9 are respectively abutted against the blocking surface 51 of the second mahjong piece pushing rod and the pushing surface 52 of the first mahjong piece pushing rod. In other embodiments of the present invention, the tile pushing pieces are two tile pushing rods, wherein one tile pushing piece is provided with a tile blocking surface for blocking the mahjong tile from falling out of the tile supporting mechanism, and the other tile pushing piece is provided with a tile pushing surface for pushing the mahjong tile to slide along the tile rotating track; or the tile pushing piece is a pushing block, the pushing block is provided with a tile pushing groove, and the tile pushing groove comprises a tile blocking surface for blocking the mahjong tile from falling out of the tile bearing mechanism and a tile pushing surface for pushing the mahjong tile to slide along the tile rotating track.
Referring to fig. 8, a spacer 511 for buffering the impact force of the mahjong pieces 9 is provided on the tile blocking surface 51 of the present embodiment, and preferably, the spacer 511 may be made of one of rubber, plastic, spring piece and cardboard.
Referring to fig. 8 and 10, preferably, the tile blocking surface 51 is provided with a tile blocking rib 512 protruding outwards, and the tile blocking rib 512, the tile blocking surface 51 and the tile pushing surface 52 are connected to form a limit groove 53 for limiting the sliding track of the mahjong tile 9, taking the first tile pushing rod and the second tile pushing rod as examples: the blocking rib 512 is arranged on the blocking surface 51 of the first tile pushing rod, and the blocking rib 512, the blocking surface 51 of the first tile pushing rod and the tile pushing surface 52 of the second tile pushing rod are connected to form a limiting groove 53, and at least part of the mahjong tiles 9 are inserted into the limiting groove 53.
Referring to fig. 2, the full-automatic mahjong machine further comprises a motor, a driving wheel 7 and a driving wheel 6 connected with the driving wheel 7, wherein the driving wheel 7 is sleeved on an output shaft of the motor, the driving wheel 6 is a driving piece and is connected with the tile pushing piece 5, and preferably: the full-automatic mahjong machine further comprises a rotating shaft 10, wherein the rotating shaft 10 penetrates through the bottom plate 41, one end of the rotating shaft 10 is fixedly connected with the tile pushing piece 5, and the other end of the rotating shaft 10 is fixedly connected with the driving wheel 6; the driving wheel 7 of the embodiment is a driving gear, the driving wheel 6 is a transmission gear, the transmission gear is meshed with the driving gear, when the motor works, the output shaft of the motor drives the driving gear to circumferentially rotate, in the circumferential rotation process of the driving gear, the transmission gear circumferentially rotates along with the driving gear, and the card pushing piece 5 is driven to rotate around the card rotating chute 4 through the rotating shaft 10. In other embodiments of the present invention, the driving wheel is a first friction wheel, the driving wheel is a second friction wheel, the second friction wheel extrudes the first friction wheel, when the motor works, the output shaft of the motor drives the first friction wheel to rotate circumferentially, during the circumferential rotation of the first friction wheel, the second friction wheel rotates circumferentially along with the first friction wheel, and the card pushing piece is driven to rotate around the card rotating chute through the rotating shaft.
Of course, in other embodiments of the present invention, the full-automatic mahjong machine further comprises a motor and a rotating shaft, the rotating shaft penetrates through the bottom plate, one end of the rotating shaft is fixedly connected with the tile pushing piece, and the other end of the rotating shaft is connected with an output shaft of the motor through a coupling; or, the full-automatic mahjong machine also comprises a motor, the motor is arranged on the lower surface of the mahjong table, and an output shaft of the motor is fixedly connected with the tile pushing piece.
Referring to fig. 2 and 8, the fully automatic mahjong machine preferably further comprises a sensor 8 arranged on the tile pushing piece 5, wherein the sensor 8 is used for detecting mahjong tiles 9 entering the tile stacking mechanism, and specifically: the sensor 8 is connected with the motor and is used for connecting or disconnecting a power circuit of the motor, when the sensor 8 senses that the tile supporting section 22 is stacked with the tile supporting chute 9, the sensor 8 is connected with the power circuit of the motor, after the motor is connected with the power circuit, the motor drives the driving wheel 7 to rotate, the driving wheel 6 rotates along with the driving wheel 7, and the tile pushing piece 5 is driven to rotate around the tile rotating chute 4 through the rotating shaft 10.
Referring to fig. 6 and 8, the card slot 3 of the present embodiment is formed by connecting a curved slot 31 and a straight slot 32 tangentially, wherein the straight slot 32 is engaged with the card turning chute 4.
Referring to fig. 1, in this embodiment, a limit rib 11 is disposed on a side wall of the card feeding slot 1, and the limit rib 11 is transversely disposed along the card feeding direction of the card feeding slot 1. When the mahjong pieces 9 are conveyed by the conveying belt 2, the side surfaces of the mahjong pieces 9 are propped against the limit ribs 11. By such design, the movement track of the mahjong pieces 9 on the mahjong feeding slot 1 can be further limited.
While the invention has been described in terms of specific embodiments, it will be appreciated by those skilled in the art that the invention is not limited thereto but includes, but is not limited to, those shown in the drawings and described in the foregoing detailed description. Any modifications which do not depart from the functional and structural principles of the present invention are intended to be included within the scope of the appended claims.

Claims (10)

1. The full-automatic mahjong machine comprises a tile feeding groove, a tile storage groove and a tile stacking mechanism connected with a tile outlet of the tile feeding groove, and is characterized in that the full-automatic mahjong machine further comprises a rotary tile pushing mechanism, the rotary tile pushing mechanism comprises a tile turning track, tile pushing pieces arranged in the tile turning track and driving pieces for driving the tile pushing pieces to rotate, the tile turning track is positioned between the tile stacking mechanism and a tile inlet of the tile storage groove, the tile feeding groove and the tile storage groove are arranged in a non-perpendicular mode, and the tile pushing pieces are rotated to push tiles on the tile stacking mechanism to the tile storage groove along the tile turning track.
2. The fully automatic mahjong machine according to claim 1, wherein the edge of the mahjong storage groove is provided with a guide plate for guiding mahjong tiles to slide into the mahjong storage groove from the mahjong tile turning track, and the guide plate is provided with a notch for avoiding the mahjong tile pushing piece.
3. The fully automatic mahjong machine according to claim 2, wherein said guide plates include an upper guide plate for corresponding to an upper mahjong tile and a lower guide plate for corresponding to a lower mahjong tile, said gap being formed between said upper guide plate and said lower guide plate.
4. The fully automatic mahjong machine according to claim 1, wherein a baffle for guiding mahjong tiles to enter the tile turning track along the tile feeding direction of the tile feeding groove is arranged at a position of the tile turning track adjacent to the tile feeding groove.
5. The fully automatic mahjong machine according to claim 4 wherein said baffle is connected with an elastic element, said elastic element pushing said baffle inwardly of said tile turning track.
6. The fully automatic mahjong machine according to one of claims 1 to 5, wherein a blocking surface for blocking mahjong tiles from falling out of the stacking mechanism and a pushing surface for pushing mahjong tiles to slide along the tile turning track are arranged on the tile pushing piece, and two adjacent side surfaces on the mahjong tiles are respectively abutted against the blocking surface and the pushing surface.
7. The fully automatic mahjong machine according to claim 6, wherein a gasket for buffering the impact force of the mahjong tiles is arranged on the tile blocking surface.
8. The fully automatic mahjong machine according to claim 6, wherein the tile blocking surface is provided with a tile blocking rib protruding outwards, and the tile blocking rib, the tile blocking surface and the tile pushing surface are connected to form a limit groove for limiting the sliding track of the mahjong tile.
9. The fully automatic mahjong machine according to one of claims 1 to 5, further comprising a base plate and a surrounding plate, wherein said surrounding plate surrounds a peripheral side of said base plate and forms said tile turning chute therebetween, which is said tile turning rail.
10. The fully automatic mahjong machine according to one of claims 1 to 5, wherein a mounting opening is formed in the bottom wall of the tile turning track, a conveyor belt is arranged on the tile feeding groove, and part of the conveyor belt extends into the tile turning track to correspond to the mounting opening so as to form the tile stacking mechanism.
CN201610392737.1A 2016-06-03 2016-06-03 Full-automatic mahjong machine Active CN106390439B (en)

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CN109663341B (en) * 2018-09-30 2024-04-12 唐加红 Tile distributing structure unit of no-holding mahjong machine

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