Mahjong machine and tile picking and carrying system thereof

By placing the card-carrying guide shaft on the inner side of the card-carrying plate above the outer side of the shuffling tray in the mahjong machine and fixing it with an extension arm, the problem of limited shuffling space is solved, enabling the shuffling of larger and more numerous mahjong tiles, and improving stacking efficiency and stability.

CN223944938UActive Publication Date: 2026-02-27ZHEJIANG XUANHE ELECTROMECHANICAL CO LTD
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Patent Information

Application Number
CN202520162480.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-12-11
Filing Date
2025-01-23
Publication Date
2026-02-27
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

The existing mahjong machine's flat-push card-loading device interferes with the shuffling tray and card-delivery device, resulting in limited shuffling space, affecting the size and quantity of mahjong tiles, and also causing low stacking efficiency and unstable operation.

Method used

The card-carrying guide shaft on the inner side of the card-carrying plate is set above the outer side of the shuffling tray and is fixedly connected by an extension arm. The card-carrying plate can be pushed further inward to avoid interference with the shuffling space. At the same time, a reasonable transmission mechanism is adopted to shorten the card delivery channel length and improve the stacking efficiency.

Benefits of technology

Without increasing the overall thickness of the mahjong machine, the shuffling tray and shuffling space have been enlarged, enabling the shuffling of larger and more numerous mahjong tiles, meeting the needs of more players, and improving the stability and efficiency of stacking and pushing tiles.

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Abstract

The utility model discloses a mahjong machine and a tile picking and carrying system thereof. The tile picking and carrying system comprises a tile feeding device, a flat-pushing tile feeding device and a tile pushing device, the horizontally-pushing tile feeding device comprises a tile bearing plate, a tile supporting plate and a tile pushing plate, and further comprises a tile feeding seat and a horizontally-pushing tile feeding motor, the tile bearing plate is fixedly arranged on the tile feeding seat, the horizontally-pushing tile feeding motor and a tile feeding transmission mechanism of the horizontally-pushing tile feeding motor are both installed on the tile feeding seat, and the horizontally-pushing tile feeding motor drives the tile pushing plate to horizontally move to push tiles and drives the tile supporting plate to lift to feed the tiles through the tile feeding transmission mechanism; the inner side end of the tile feeding seat extends forwards to be provided with an extension arm, an inner side tile feeding guide shaft of the tile supporting plate is fixedly arranged on the extension arm, the inner side tile feeding guide shaft is sleeved with an inner side tile feeding guide sleeve, and the inner side tile feeding guide sleeve is fixedly connected with the tile supporting plate. According to the scheme, the interference limitation of the tile supporting plate in the horizontally-pushing tile feeding device on the large shuffling plate is reduced, and the large shuffling plate and the shuffling space are increased on the mahjong machine bottom plate with the same size under the condition that the thickness of the whole mahjong machine is not increased.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to mahjong machine manufacturing field, especially relate to a mahjong machine and its pick up and carry system. BACKGROUND

[0002] Mahjong is a kind of leisure and entertainment tool and is loved by the masses, and is listed as a sports competition. The traditional mahjong machine four mahjong tiles are parallel to the four edges of the desktop after being lifted to the desktop, and the mahjong tiles are very close to the table edge, which is not reasonable, and the player needs to manually move the mahjong tiles to the appropriate position before picking up the tiles. In the process of moving the mahjong tiles, the mahjong tiles are easy to fall, which brings inconvenience to the player.

[0003] Patent documents with publication numbers CN109381855A, CN109794059A and CN112023390A disclose a large windmill-shaped mahjong machine. The flat pushing tile feeding device is inclined relative to the side edge of the same side of the desktop panel. The tile feeding port end of the flat pushing tile feeding device is closer to the other end. The four mahjong tiles of the mahjong machine are lifted to the mahjong machine desktop in the form of being inclined to the four edges of the mahjong machine desktop panel and close to the center of the mahjong machine desktop panel. By placing the flat pushing tile feeding device obliquely, the corresponding tile feeding port and tile supporting plate are also inclined relative to the side edge of the same side of the desktop panel. When the mahjong tile wall is lifted to the desktop panel, it is already in an inclined state, which saves the process of manually pushing the tiles by the player, conforms to the playing habits of the player, and there is no problem of tile falling. However, compared with the common four-port mahjong machine (the flat pushing tile feeding device is parallel to the side edge of the same side of the desktop panel), the inclined setting of the flat pushing tile feeding device makes the tile feeding port end closer to the center of the mahjong machine desktop panel, which affects the setting of the tile shuffling disc and occupies the tile shuffling space. In order to increase the size of the tile shuffling disc to play larger size mahjong tiles, a part of the tile supporting plate of the flat pushing tile feeding device is generally arranged above the tile feeding device. This results in a large height difference between the tile feeding port height of the tile feeding device and the lowest position of the tile supporting plate, which leads to too large lifting span of the tile supporting block in the tile pushing device, low tile pushing efficiency, unstable operation and easy mahjong tile confusion.

[0004] Patent literature with publication number CN109381855A and the like disclose a mahjong machine. In order to avoid the guiding sliding shaft at the inner side end of the card lifting plate (card supporting plate) from occupying the shuffling space, the sliding shaft at the inner side end of the card lifting plate is cancelled, and the inner side end of the card lifting plate is fixedly connected with the adjacent another card lifting plate through a fixing sheet, so that the four card lifting plates are connected as a whole and synchronously lifted. However, because the four card lifting plates are connected as a whole and have a large volume, it is difficult to synchronously lift the card lifting plates driven by the four card feeding motors, and the action stability of the card feeding mechanism is poor and the card feeding mechanism is prone to be stuck and damaged. In addition, the size of the shuffling disc is also limited by the blocking of the card supporting device (card supporting plate and the flower grid plate below the card supporting plate) and cannot be increased.

[0005] Patent literature with publication number CN109794059A and the like disclose an automatic mahjong machine. A gap for letting the shuffling disc is arranged between the bottom of the flat pushing and lifting card device and the bottom plate, so that the shuffling disc can extend into the gap, and the diameter size of the shuffling disc is no longer limited by the interference of the flat pushing and lifting card device. The end of the flat pushing and lifting card device away from the center of the shuffling disc is fixed on the bottom plate, and the rest of the flat pushing and lifting card device is suspended relative to the shuffling disc. A rocker arm connecting rod is used instead of a gear mechanism to realize transmission, so as to increase the hollow height of the bottom of the flat pushing and lifting card device and increase the shuffling gap. However, the bottom is partially hollowed out, and the connecting rod mechanism and the hinge point are all arranged directly below the card lifting plate. Therefore, the hollow height of the bottom of the flat pushing and lifting card device is limited, the shuffling space is not actually increased much, and the flat pushing and lifting card device arranged above the card feeding device not only increases the thickness of the mahjong machine, but also causes a large height difference between the card outlet height of the card feeding device and the lowest position of the card lifting plate, resulting in a large lifting span (at least the thickness of three mahjong tiles) of the card supporting block in the pushing card device, low tile pushing efficiency, unstable operation, and easy tile disorder and jamming. In addition, arranging the tile pushing device in the shuffling disc or above the edge of the shuffling disc also increases the thickness of the mahjong machine and occupies the shuffling space, and the different transmission stages and lengths of the two card lifting rocker arms also easily cause asynchronization or unstable operation.

[0006] Patent literature with publication numbers CN112023387A and CN112023390A and the like disclose a mahjong machine and a flat pushing and lifting card device thereof. The card supporting plate is also lifted and lowered by the flat pushing and lifting motor. Therefore, the size of the shuffling disc is also limited by the blocking of the card supporting plate, the flower grid plate below the card supporting plate and the lifting mechanism.

[0007] Therefore, the flat push-up tile type windmill-shaped mahjong machine disclosed in the above patent document has the four-wall mahjong tiles placed in a windmill shape and inclined, which is more outward relative to the four-wall mahjong tiles of the slope-up tile type windmill-shaped mahjong machine. Generally, the player still needs to manually push the mahjong tile wall a little bit to make it suitable for the player to play mahjong, which still causes inconvenience to the player. The main reason is that the flat push-up tile device interferes with the shuffling large disc and the tile feeding device at the edge of the shuffling large disc, which causes the flat push-up tile device and the tile supporting plate for lifting tiles to be unable to be pushed further inward, otherwise, it will excessively occupy the shuffling space, and the maximum size of the mahjong tiles used by the mahjong machine will be greatly reduced.

[0008] Therefore, the patent documents with publication numbers CN117982870A, CN117982871A, CN117982868A, etc. disclose a mahjong machine and a flat push-up tile device thereof, as shown in the drawings. Figure 1 As shown, the dashed line schematically shows the flat push-up tile device. The mahjong machine includes a shuffling large disc 2 located at the center of the machine frame bottom plate. Four groups of tile picking and carrying systems are arranged around the shuffling large disc 2. The tile picking and carrying system includes a tile feeding device 5, a flat push-up tile device, and a tile pushing device. The flat push-up tile device includes a tile supporting plate 72, a tile supporting plate 74, and a tile pushing plate 73. The tile supporting plate 74 is located at the inner side of the tile supporting plate 72. The tile pushing plate 73 is located at the outer side of the tile supporting plate 72 and pushes the tiles from the outside to the inside. One end of the tile supporting plate 72 extending along the length direction is an tile inlet. The tile inlet is provided with a tile supporting block 62 of the tile pushing device. A tile pushing motor 71 drives the tile pushing plate 73 to translate to push the tiles and drives the tile supporting plate 74 to lift to push up the tiles. The tile supporting plate 74 is respectively arranged to be inclined relative to the side edges of the table plate. Four walls are independently flat pushed up. By partially or completely hollowing the tile pushing-up seat of the flat push-up tile device close to the inner side wall of the shuffling large disc, the edge of the shuffling large disc can be expanded to the directly below the tile supporting plate, and the tile feeding motor of the tile feeding device can also be extended to the directly below the tile supporting plate. In this way, most of the tile supporting plate and part of the tile supporting plate are located above the shuffling frame. Not only can the size of the shuffling large disc be increased while effectively increasing the shuffling space, but also the length of the tile feeding channel of the tile feeding device can be shortened, so that the positions of the tile supporting block of the tile pushing device and the tile inlet of the flat push-up tile device are more reasonable. The interference and limitation of the flat push-up tile device and the tile feeding device on the shuffling large disc and the shuffling space are reduced, so that the shuffling frame and the shuffling large disc can be maximized. On the same size of the mahjong machine bottom plate, without increasing the thickness of the mahjong machine, the size of the shuffling large disc and the shuffling space are increased, for example, 108 pieces of 62 mahjong tiles are arranged and shuffled on a 36 table mahjong machine. However, from the perspective of the player, the mahjong tiles are still not pushed far enough, and the player still needs to manually push the mahjong tiles a little bit to make it suitable for the player to play mahjong, which still causes inconvenience to the player. Figure 1 It can be seen that the inner side tile feeding guide shaft 706 of the tile supporting plate 74 is still located on the outer side of the shuffling large disc 2. In the prior art, the inner and outer tile feeding guide shafts of the tile supporting plate are fixed at the bottom of the tile supporting plate. When the tile supporting plate is lowered, the lower end of the inner side tile feeding guide shaft will approach or even need to pass through the bottom plate, thereby limiting the expansion of the shuffling large disc and affecting the further increase of the shuffling space. SUMMARY

[0009] To solve the above technical problems, the mahjong machine and the mahjong picking and carrying system are provided, the interference and limitation of the mahjong supporting plate on the shuffling large tray are reduced, the shuffling large tray and the shuffling space are increased without increasing the thickness of the mahjong machine.

[0010] To achieve the above purpose, the mahjong machine and the mahjong picking and carrying system are provided, the mahjong supporting plate on the shuffling large tray are reduced, the shuffling large tray and the shuffling space are increased without increasing the thickness of the mahjong machine.

[0011] The mahjong machine and the mahjong picking and carrying system are provided, the mahjong supporting plate on the shuffling large tray are reduced, the shuffling large tray and the shuffling space are increased without increasing the thickness of the mahjong machine.

[0012] As a preferred, the mahjong supporting plate is provided with a mahjong supporting plate transmission mechanism and a mahjong pushing plate transmission mechanism.

[0013] As a preferred, the mahjong supporting plate is provided with a mahjong supporting plate transmission mechanism and a mahjong pushing plate transmission mechanism.

[0014] As a preferred, the mahjong supporting plate is provided with a mahjong supporting plate transmission mechanism and a mahjong pushing plate transmission mechanism.

[0015] As preferred, the card supporting plate transmission mechanism comprises two card supporting curve cams, two card supporting rocker arms, two card supporting rocker arm shafts, two card supporting rocker arm cams and two first gears; the two card supporting curve cams are respectively installed on the left and right sides of the bottom of the card supporting plate, the two card supporting rocker arms are respectively matched with the two card supporting curve cams to move, the card supporting rocker arm shaft is rotatably installed on the card supporting seat, the card supporting rocker arm is fixedly arranged on the card supporting rocker arm shaft, the card supporting rocker arm cam is fixedly connected with the card supporting rocker arm shaft, the card supporting rocker arm cam is provided with a cam groove, the first gear is rotatably installed on the card supporting seat, the first gear is matched with the card supporting rocker arm cam to drive through a crank, and the two first gears are driven to synchronously rotate by the card pushing and supporting motor.

[0016] As preferred, the crank is matched with the cam groove on the card supporting rocker arm cam to drive through a roller, and the crank is fixedly connected with or integrally formed with the first gear.

[0017] As preferred, the card supporting plate transmission mechanism further comprises two second gears, the two second gears are matched with each other to synchronously rotate, the two second gears are respectively matched with the two first gears to drive, and one of the second gears is driven to rotate by the card pushing and supporting motor.

[0018] As preferred, the card pushing plate transmission mechanism comprises a card pushing frame, a card pushing sliding block, a card pushing cam and a card pushing swing rod, the card pushing sliding block slides on the card pushing frame, the card pushing plate is fixed on the card pushing sliding block, the upper end of the card pushing swing rod is movably connected with the card pushing sliding block, the lower end of the card pushing swing rod is hingedly connected with the card supporting seat through a card pushing swing rod shaft, the card pushing swing rod shaft is fixedly provided with a card pushing rocker arm, the swing end of the card pushing rocker arm is movably matched with the card pushing cam through a roller, the other second gear is coaxially fixedly connected with the card pushing cam to synchronously rotate, so that the card pushing and supporting motor drives the card pushing sliding block to slide forward and backward through the card pushing cam and the card pushing swing rod to implement the card pushing.

[0019] As preferred, the card pushing device comprises a card pushing frame, a card pushing sliding block, a card pushing cam and a card pushing swing rod, the card pushing sliding block slides on the card pushing frame, the card pushing plate is fixed on the card pushing sliding block, the upper end of the card pushing swing rod is movably connected with the card pushing sliding block, the lower end of the card pushing swing rod is hingedly connected with the card supporting seat through a card pushing swing rod shaft, the card pushing swing rod shaft is fixedly provided with a card pushing rocker arm, the swing end of the card pushing rocker arm is movably matched with the card pushing cam through a roller, the other second gear is coaxially fixedly connected with the card pushing cam to synchronously rotate, so that the card pushing and supporting motor drives the card pushing sliding block to slide forward and backward through the card pushing cam and the card pushing swing rod to implement the card pushing.

[0020] A mahjong machine comprises a mahjong machine's card picking and carrying system as described above.

[0021] Because this invention employs the above technical solution, the length of the inner guide shaft of the card-holding plate only needs to be slightly greater than the lifting height of the card-holding plate, and will not extend downwards into the shuffling space to affect the shuffling. Therefore, the card-holding plate can be pushed further inwards without interfering with the shuffling space, so that the edge distance of the card-holding plate is not limited by the shuffling frame (shuffling barrel). This allows for the use of a larger shuffling tray for the same edge distance of the card-holding plate. A larger shuffling tray can shuffle larger and more stacks of cards, meeting the needs of more players. For example, on a 36-player mahjong machine, it can shuffle and arrange 120 tiles of 64-tile mahjong, while the minimum edge distance of the card-holding plate can be 290 mm. Attached Figure Description

[0022] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute a limitation thereof.

[0023] Figure 1 This is a schematic diagram showing the arrangement of various devices in an existing mahjong machine.

[0024] Figure 2 This is a schematic diagram showing the arrangement of the various devices in the mahjong machine of this utility model.

[0025] Figure 3 This is a schematic diagram of the structure of the mahjong machine of this utility model (without the flat-push tile loading device).

[0026] Figure 4 This is a schematic diagram of the structure of the mahjong machine of this utility model (with an upper tile holder);

[0027] Figure 5 for Figure 4 Enlarged view of point I in the image.

[0028] Figure 6 for Figure 4 A three-dimensional diagram (base plate omitted).

[0029] Figure 7 This is a schematic diagram of the structure of the mahjong machine of this utility model.

[0030] Figure 8 for Figure 7 A 3D diagram (omitting the card cover plates on both sides).

[0031] Figure 9 This is a schematic diagram of the structure of the flat-push plate-loading device of this utility model (plate support plate raised, inner view).

[0032] Figure 10 This is a schematic diagram of the structure of the flat-push plate-loading device of this utility model (plate support plate raised, outer view).

[0033] Figure 11It is the schematic diagram of the transmission structure of the flat pushing and card feeding device (the card supporting plate is raised, the outer side view angle).

[0034] Figure 12 It is the schematic diagram of the transmission structure of the flat pushing and card feeding device (the card supporting plate is raised, the inner side view angle).

[0035] Figure 13 It is the schematic diagram of the transmission structure of the flat pushing and card feeding device (the card supporting plate is raised, the inner side view angle).

[0036] Figure 14 It is the schematic diagram of the transmission structure of the flat pushing and card feeding device (the card supporting plate is raised, the inner side view angle).

[0037] Figure 15 It is the schematic diagram of the transmission structure of the flat pushing and card feeding device (the card supporting plate is raised, the inner side view angle).

[0038] Figure 16 It is the schematic diagram of the card feeding seat.

[0039] Figure 17 It is the schematic diagram of the card feeding seat main body.

[0040] Figure 18 It is the schematic diagram of the card shuffling barrel (the side view from above).

[0041] Figure 19 It is the schematic diagram of the card shuffling barrel (the side view from below).

[0042] Figure 20 It is the schematic diagram of the flat pushing and card blocking mechanism.

[0043] Figure 21 It is the schematic diagram of the flat pushing and card blocking mechanism (omitting the card feeding seat main body).

[0044] Figure 22 It is the schematic diagram of another embodiment of the card feeding device (the inner side view angle).

[0045] Figure 23 It is the schematic diagram of another embodiment of the card feeding device (the outer side view angle).

[0046] Wherein, 1, bottom plate; 2, shuffle large tray; 3, card scraper; 4, whole shuffling barrel; 41, card hole; 42, square mounting table; 421, ventilation opening; 422, fan; 43, card supporting plate step; 431, card feeding rocker arm avoiding groove; 432, extension arm avoiding groove; 44, card supporting plate step; 441, card feeding rocker arm shaft seat support; 442, cantilever part support; 45, card guiding step; 46, mounting ring; 461, card pushing seat support; 462, card feeding seat support; 47, card feeding mounting opening; 5, card feeding device; 51, card feeding motor; 52, card suction wheel; 53, card feeding seat; 531, outer side shell; 5311, card feeding side stop; 532, inner side shell; 54, inner side card stopping plate; 6, card pushing device; 61, card pushing motor; 62, card supporting block; 63, card pushing head; 64, card stopping block; 65, card pushing seat; 7, flat pushing card feeding device; 70, card feeding seat; 701, card feeding seat main body; 7011, first card feeding mounting foot; 7012, second card feeding mounting foot; 702, detachable plate; 703, extension part; 704, card feeding guide shaft seat; 705, extension arm; 706, inner side card feeding guide shaft; 707, cantilever part; 71, flat pushing card feeding motor; 711, first transmission gear; 72, card supporting plate; 721, side stop plate; 73, card pushing plate; 731, card pushing frame; 7311, flat pushing sliding block; 732, flat pushing cam; 733, flat pushing rocker arm; 734, flat pushing swing lever; 735, flat pushing swing lever shaft; 736, card pushing cover plate; 74, card supporting plate; 740, inner side card feeding guide sleeve; 741, outer side card feeding guide shaft; 742, front stop plate; 743, card feeding rocker arm; 744, card feeding curved cam; 745, card feeding rocker arm shaft; 7451, card feeding rocker arm shaft seat; 746, card feeding rocker arm cam; 747, crank; 748, first gear; 749, second gear; 75, support column; 8, card stopping cover; 9, outer side card stopping plate; 91, card guiding part; 92, movable stop plate. DETAILED DESCRIPTION

[0047] The utility model will be further explained in connection with the drawings and examples.

[0048] It should be noted that the following detailed description is exemplary and is intended to provide further explanation of the present application. Unless otherwise indicated, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs.

[0049] The embodiments of the utility model are described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary and are intended to explain the utility model, and cannot be understood as a limitation of the utility model.

[0050] In the description of the utility model, unless the context clearly indicates otherwise, the singular form is intended to include the plural form, and in addition, it should be understood that when the terms "comprising" and / or "including" are used in the specification, they indicate the presence of a feature, step, operation, device, component and / or their combination.

[0051] In the description of the utility model, it should be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise" are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting the indicated device or element to have a particular orientation, to be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0052] In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the utility model, unless otherwise stated, the meaning of "multiple" is two or more, unless otherwise explicitly limited.

[0053] In the utility model, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0054] In the utility model, unless otherwise explicitly specified and limited, the "upper" or "lower" of the first feature to the second feature can include the direct contact of the first and second features, or it can include the contact of the first and second features through another feature between them. Moreover, the "upper", "upper" and "upper" of the first feature to the second feature include the vertical direction of the first feature above and oblique above the second feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The "below", "below" and "below" of the first feature to the second feature include the vertical direction of the first feature below and oblique below the second feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.

[0055] For the convenience of description, in the utility model, the center of mahjong machine host is "inner", and the four sides of mahjong machine host are "outer". In terms of each side's flat push card device, the side close to the center of mahjong machine host is "front", and the opposite side is "back".

[0056] For the convenience of description, in the utility model, the length of mahjong tile, the width of mahjong tile, the thickness of mahjong tile and the like are used to explain the size parameters, wherein the mahjong tile refers to the mahjong tile actually used on the mahjong machine, not to any specification and size mahjong tile, and does not include the mahjong tile that cannot be shuffled and arranged on the mahjong machine.

[0057] Embodiment 1:

[0058] As shown in Figures 2 to 8 A mahjong machine, comprising a shuffling large tray 2, a card scraper 3 and a central lifting device located in the center of the chassis bottom plate 1, four groups of card picking and carrying systems are arranged around the shuffling large tray 2, the card picking and carrying system comprises a card feeding device 5 for picking up mahjong tiles one by one from the shuffling large tray and feeding out, a flat push card device 7 for feeding the arranged multiple piles of mahjong tiles onto the mahjong machine table top at one time and a card pushing device 6 for pushing the mahjong tiles fed out by the card feeding device 5 into the flat push card device 7.

[0059] The card feeding device 5 comprises a card suction wheel for picking up mahjong tiles and a card feeding channel for moving and feeding mahjong tiles. In the preferred embodiment, the card feeding device 5 further comprises a card feeding seat 53 and a card feeding motor 51, the card feeding channel is arranged on the card feeding seat 53, a card suction wheel 52 is arranged at the card feeding channel inlet, a card feeding roller is arranged at the card feeding channel outlet, a conveying belt is arranged in the card feeding channel, the conveying belt is wrapped around the card suction wheel 52 and the card feeding roller, and the card suction wheel 52 is driven by the card feeding motor 51 mounted on the card feeding seat 53 to convey the mahjong tiles. In other embodiments, the conveying belt can also be omitted, and the card suction wheel and / or the card feeding roller can also be directly driven by the card feeding motor, or can also be transmissionally connected with the card feeding motor through gears, friction wheels or transmission belts. The specific structure of the card feeding device can refer to various embodiments disclosed in the patent documents with publication numbers CN105363195A, CN213965119U, CN206881091U, CN212941371U, CN108786098A, CN205832557U, CN219376041U, CN221981537U, CN220801883U, CN108992914A and the like.

[0060] The pushing device 6 includes a tile receiving block 62 for receiving the mahjong tiles sent by the tile sending device 5 and a tile pushing head 63 for pushing the mahjong tiles on the tile receiving block 62 to the flat pushing tile placing device 7. In a preferred embodiment, the pushing device 6 further includes a pushing seat 65 and a pushing motor 61, and the tile receiving block 62 and the tile pushing head 63 are movably mounted outside the pushing seat 65 and are driven by the pushing motor 61 mounted on the pushing seat 65. In a further preferred embodiment, a pushing transmission mechanism is arranged in the pushing seat, the pushing motor 61 drives the tile receiving block 62 to move up and down through the pushing transmission mechanism to realize the stacking of the mahjong tiles, and the pushing motor 61 drives the tile pushing head 63 to move horizontally through the pushing transmission mechanism to push the stacked mahjong tiles out of the tile receiving block 62. The specific structure of the pushing device can refer to various embodiments disclosed in patent documents with publication numbers CN201906453U, CN201949619U, CN103861280A, CN204699375U, CN209500734U, CN112057840A, CN112023390A, CN114247127A, CN114146397A, CN117982871A, etc.

[0061] The flat pushing tile placing device 7 includes a tile receiving plate 72 for receiving a plurality of arranged mahjong tiles, a tile supporting plate 74 for sending the plurality of arranged mahjong tiles onto the table top at one time, and a tile pushing plate 73 for pushing the plurality of arranged mahjong tiles on the tile receiving plate 72 to the tile supporting plate 74, the tile receiving plate 72 is formed with a tile storage channel for storing the plurality of arranged mahjong tiles, the tile supporting plate 74 is located on the inner side of the tile receiving plate 72 and can move up and down, and the tile pushing plate 73 is located on the outer side of the tile receiving plate 72 and pushes the tiles from outside to inside. In a preferred embodiment, the flat pushing tile placing device further includes a tile placing seat 70 and a flat pushing tile placing motor 71, the tile receiving plate 72 is fixedly arranged on the tile placing seat 70, the tile placing seat 70 is provided with a tile placing transmission mechanism, and the flat pushing tile placing motor 71 drives the tile pushing plate 73 to move horizontally and the tile supporting plate 74 to move up and down through the tile placing transmission mechanism to place the tiles; the tile placing transmission mechanism includes a tile supporting plate transmission mechanism for driving the tile supporting plate 74 to move up and down and a tile pushing plate transmission mechanism for driving the tile pushing plate 73 to move horizontally. In other embodiments, the tile receiving plate 72 can also be arranged on the tile placing seat 70 in a manner capable of moving up and down and be driven to move up and down by the flat pushing tile placing motor 71. The specific structure of the flat pushing tile placing device can refer to various embodiments disclosed in patent documents with publication numbers CN109381855A, CN109794059A, CN112023390A, CN114247127A, CN114146397A, CN117982871A, etc.

[0062] In other embodiments of the utility model, two or three of the above-mentioned card feeding seat, card pushing seat and flat pushing card seat can be integrally formed or fixedly connected as a whole, and two or three of the above-mentioned card feeding motor, card pushing motor and flat pushing card motor can be the same motor, that is, two or three of the card feeding device, card pushing device and flat pushing card device share one motor.

[0063] The utility model discloses a pinwheel-shaped mahjong machine, four card feeding ports are arranged on the mahjong machine tabletop, and the four card feeding ports are respectively arranged along the four side edges of the tabletop in a tilted manner to form a pinwheel-shaped layout.

[0064] In this way, the flat pushing card device is arranged along the side edge of the tabletop in a tilted manner, the card feeding port end of the flat pushing card device is closer to the other end, and the four mahjong tiles are lifted onto the tabletop in a form of being tilted along the four edges of the mahjong machine tabletop and being close to the center of the mahjong machine tabletop. By arranging the flat pushing card device in a tilted manner, the corresponding card feeding port and the card supporting plate are also arranged in a tilted manner along the side edge of the tabletop, and the mahjong tile wall is in a tilted state when being lifted onto the tabletop, which meets the playing habit of the player and saves the process of manually pushing the mahjong tiles by the player, thereby realizing the function of pushing the mahjong tiles without manual operation, and the mahjong tiles are arranged in a flat pushing manner and are pushed onto the card supporting plate, and then are lifted onto the tabletop, so that the problem of the mahjong tiles being reversed does not exist.

[0065] As shown in Figure 2 and Figure 8 In the utility model, the card supporting block 62 of the card pushing device 6 is arranged outside the card feeding port of the card feeding channel, one end of the card supporting plate 72 extending along the length direction is the card feeding port of the card storage channel, the other end of the card supporting plate 72 extending along the length direction is provided with a side baffle 721, the front and rear blocks of the card storage channel are respectively a front baffle 742 and a card pushing plate 73, and the front baffle 742 is fixedly connected with the card supporting plate 74 or integrally formed.

[0066] In the utility model, the height of the card outlet of the card feeding channel is lower than the lowest position of the card supporting plate, and the thickness of one mahjong card is exceeded. In the preferred embodiment, the card supporting block 62 of the card pushing device has at least three height positions: the first card supporting position, the second card supporting position and the card pushing position. When the mahjong cards are stacked and pushed: the card supporting block 62 first supports the first mahjong card sent by the card feeding device at the first card supporting position; the card supporting block 62 is lowered to the second card supporting position to support the second mahjong card sent by the card feeding device, and the second mahjong card is stacked on the first mahjong card; then, the card supporting block 62 is raised to the card pushing position, and the pushing head 63 pushes the two mahjong cards stacked above and below out of the card supporting block 62; the card supporting block 62 is lowered to reset to the first card supporting position; the pushing head 63 is also reset and waits for the next time of stacking and pushing. The card pushing position of the card supporting block 62 is at least two mahjong card thicknesses higher than the second card supporting position.

[0067] In the utility model, the card supporting block 62 of the card pushing device 6 is arranged outside the shuffling frame, therefore, the card outlet of the card feeding device 5 and the card inlet of the flat pushing card feeding device 7 are also arranged outside the shuffling frame. In this way, the shuffling space is not occupied when the card supporting block is lowered, so that the shuffling frame and the shuffling large disc can be maximized.

[0068] In an embodiment of the utility model, the card supporting plate can adopt the prior art disclosed in the patent document with the publication number CN117982871A and the like:

[0069] The card feeding seat 70 of the flat pushing card feeding device 7 is hollowed out close to the inner side wall part of the shuffling large disc or is completely hollowed out, so that the edge of the shuffling large disc 2 can be expanded to be directly below the card supporting plate 72, and the card feeding motor 51 of the card feeding device 5 can also be extended to be directly below the card supporting plate 72. In this way, most of the card supporting plate 74 and part of the card supporting plate 72 are located above the shuffling frame, and the card feeding outlet of the card feeding device 5 and the card supporting block 62 of the card pushing device 6 are located directly below the card supporting plate 74, which not only effectively increases the shuffling space while increasing the size of the shuffling large disc, but also shortens the length of the card feeding channel of the card feeding device 5, so that the positions of the card supporting block 62 of the card pushing device 6 and the card inlet of the flat pushing card feeding device 7 are more reasonable; the interference and limitation of the flat pushing card feeding device and the card feeding device on the shuffling large disc and the shuffling space are reduced, so that the shuffling frame and the shuffling large disc can be maximized, and the shuffling large disc and the shuffling space are increased without increasing the thickness of the mahjong machine in the same size of the mahjong machine bottom plate, for example, 108 mahjong cards of 62 mahjong cards are realized on a 36 table mahjong machine. However, from the perspective of the shuffling process, the card feeding channel of the card feeding device 5 is located above the shuffling frame, and the card supporting block 62 of the card pushing device 6 is located below the shuffling frame, so that the card feeding channel of the card feeding device 5 and the card supporting block 62 of the card pushing device 6 are not in the same plane, and the shuffling process is not smooth. Figure 1It can be seen that the inner side card guiding shaft 706 of the card receiving plate 74 is still located on the outer side of the card shuffling tray 2. In the prior art, the inner and outer card guiding shafts of the card receiving plate are fixed on the bottom of the card receiving plate. When the card receiving plate is lowered, the lower end of the inner side card guiding shaft approaches or even penetrates through the bottom plate, thereby limiting the expansion of the card shuffling tray and affecting the further increase of the card shuffling space.

[0070] Therefore, in the preferred embodiment of the present application, as shown in Figure 2 the inner side card guiding shaft 706 of the card receiving plate 74 is arranged above the inner side of the outer circumference of the card shuffling tray 2. The inner side card guiding shaft 706 is fixedly connected or integrally formed on the card receiving seat 70, the whole card shuffling barrel 4 or the card feeding seat 53. An inner side card guiding sleeve 740 is sleeved on the inner side card guiding shaft 706, and the inner side card guiding sleeve 740 is fixedly connected with the card receiving plate 74. In this way, the length of the inner side card guiding shaft 706 only needs to be slightly larger than the lifting height of the card receiving plate 74, and will not extend downward into the card shuffling space to affect card shuffling. Therefore, the card receiving plate can be further pushed inward and does not interfere with the card shuffling space, so that the card receiving plate is not limited by the card shuffling frame (card shuffling barrel) in terms of the side distance, thereby realizing that a larger card shuffling tray can be selected for the same card receiving plate side distance, a larger card shuffling tray can be used to shuffle more cards and more tiles, and more players can be satisfied. For example, 120 pieces of 64 mahjong can be realized on a 36-table mahjong machine, and the minimum side distance of the card receiving plate can be 290 mm.

[0071] In the preferred embodiment, the inner side end of the card receiving seat 70 is provided with an extension arm 705, and the inner side card guiding shaft 706 of the card receiving plate 74 is fixedly arranged on the extension arm 705. The card receiving seat 70 is provided with a card guiding shaft seat 704 on the outer side segment, and the outer side card guiding shaft 741 of the card receiving plate 74 is slidingly installed in the card guiding shaft seat 704. In this way, the bearing structure of the card receiving plate is more balanced, and the lifting guiding and positioning reference of the inner and outer sides of the card receiving plate are all on the card receiving seat, so that installation and debugging are more convenient, and the lifting action is more stable and reliable.

[0072] In the preferred embodiment, the inner side card guiding shaft 706 of one card receiving plate 74 is arranged between the inner side end and the length side of another card receiving plate 74. In this way, the gap between the two card receiving plates can be fully utilized, not only facilitating the arrangement of the extension arm and the flat pushing and tile blocking structure, but also facilitating the formation of good support for the table top plate at the narrow side between the two card feeding ports.

[0073] In other embodiments, the inner side card guiding shaft 706 of the card receiving plate 74 can also be arranged on the front side of the length side, i.e. between the card receiving plate 74 and the central lifting device of the mahjong machine (between the card receiving plate and the tile feeding hole of the card shuffling barrel). Such a structure is particularly suitable for the case where the inner side card guiding shaft of the card receiving plate is fixedly arranged on the card shuffling barrel, and the overall structure is more simple and reasonable.

[0074] In an embodiment of the present application, the upper card seat can be configured using the prior art disclosed in patent documents with publication number CN117982871A and the like.

[0075] The upper card seat no longer has a front side wall on the front side close to the shuffling frame, so that the internal space of the upper card seat (the space below the card receiving plate) becomes an open space, allowing the shuffling tray / shuffling frame and the card feeding motor to extend into the open space, and the upper card seat becomes an open seat structure formed by the rear side wall, the top wall, and the left and right side walls. The top wall of the upper card seat is used to form a fixed and non-lifting card receiving plate. Since the top wall is fixed, it is relatively thin, and the shuffling frame is arranged below it, which does not continue to increase the height difference between the card outlet position of the card feeding device and the lowest position of the card receiving plate, nor does it increase the thickness of the mahjong machine. It is more reasonable than the bottom hollow structure disclosed in patent documents with publication number CN109794059A and the like. The rear side wall of the upper card seat is used to mount the flat push card feeding motor 71 and the card feeding transmission mechanism. In order to reduce the volume occupied by the card feeding transmission mechanism in the open space (the space below the card receiving plate), the rear side wall is preferably convexly arranged towards the rear, thereby forming a plurality of grooves in front of it for accommodating part of the components of the card feeding transmission mechanism. The left and right side walls of the upper card seat are used to fixedly connect the card guiding shaft seat. In order to increase the overall strength of the upper card seat and facilitate injection molding, a bottom wall is also provided, but the bottom wall can be hollowed out at the interference position with the shuffling tray and the card feeding motor to avoid affecting the arrangement of the two. However, in this structure, the top wall of the upper card seat is a thin-walled structure with a relatively long length, which results in poor structural strength and load-bearing capacity, and the guide shaft seat inside the upper card seat and its connected side wall structure also limit the arrangement and maintenance and disassembly of the washing space and the card feeding device.

[0076] Therefore, in the preferred embodiment of the present application, as shown in Figure 6 , Figure 16 and Figure 17As shown, the upper tile seat 70 includes an upper tile seat body 701 mounted on the bottom plate 1, the upper tile motor 71 and the upper tile driving mechanism for driving the tile pushing plate 73 to translate and the tile supporting plate 74 to lift the upper tile are all mounted on the upper tile seat body 701, the top wall of the forward extension of the upper tile seat body 701 forms part of the tile supporting plate 72, the inner side of the upper tile seat body 701 is provided with a cantilever part 707 extending forward, the cantilever part 707 is hollowed out below, the top of the cantilever part 707 forms part of the tile supporting plate 72, the tile pushing seat is arranged at the rear side of the cantilever part 707 and is fixedly connected with the cantilever part 707 and the upper tile seat body 701 respectively, so as to form a reinforced support for the cantilever part 707, the inner side end of the cantilever part 707 is provided with an extension arm 705 extending forward, the inner side tile guide shaft 706 of the tile supporting plate 74 is fixedly arranged on the extension arm 705, the inner side tile guide sleeve 740 is sleeved on the inner side tile guide shaft 706, and the inner side tile guide sleeve 740 is fixedly connected with the tile supporting plate 74. The outer side of the upper tile seat body 701 is provided with an upper tile guide shaft seat 704 extending forward, the outer side tile guide shaft 741 of the tile supporting plate 74 is arranged in the upper tile guide shaft seat 704, and the outer side tile guide shaft 741 is fixed on the bottom of the tile supporting plate 74 and synchronously lifts and lowers with the tile supporting plate 74. In this way, the cantilever part and the extension arm are hollowed out to avoid the upper tile seat from occupying the shuffling space, the tile pushing seat is fixedly connected with the upper tile seat body and the cantilever part to strengthen the structural strength and bearing capacity of the cantilever part, the upper tile motor and the upper tile driving mechanism are all mounted on the upper tile seat body at the periphery of the shuffling barrel to avoid them from occupying the shuffling space, the structure is reasonable and does not affect each other, and the disassembly, assembly and maintenance are convenient.

[0077] In other embodiments, the outer side tile guide shaft 741 of the tile supporting plate 74 can also be fixed on the upper tile seat 70, an outer side tile guide sleeve is sleeved on the outer side tile guide shaft 741, and the outer side tile guide sleeve is fixed on the bottom of the tile supporting plate 74 and synchronously lifts and lowers with the tile supporting plate 74.

[0078] In this embodiment, the outer side end of the upper tile seat 70 is provided with an extension part 703, the extension part 703, the cantilever part 707 and the top wall of the forward extension of the upper tile seat body 701 jointly form the tile supporting plate 72, and the outer side end of the extension part 703 is fixedly connected or integrally formed with a side baffle 721 for blocking mahjong tiles. In this way, the length of the top thin wall structure of the upper tile seat can be avoided from being too long to affect the structural strength and bearing capacity, and the extension part is arranged to make the tile pushing and lifting device have better universality, and suitable extension parts can be replaced according to the use requirements of mahjong machines of different specifications, without the need to replace the entire tile pushing and lifting device, thereby reducing the mold opening cost and the inventory cost.

[0079] In this embodiment, the upper tile seat body 701, the extension part 703, the cantilever part 707 and the extension arm 705 all adopt a grid-shaped reinforcing structure to increase the structural strength and bearing capacity thereof.

[0080] Preferably, the top wall of the upper card seat main body 701 extends forward and is provided with an upper and lower through opening. The lower part of the opening is provided with a card feeding motor 51 of the card feeding device 5. A detachable plate 702 is fixed in the opening. The top part of the detachable plate 702 forms part of the card receiving plate 72. In this way, when the card feeding device is disassembled from the mahjong tile shuffling barrel, the detachable plate can be disassembled first to form an opening through which the card feeding motor can pass from bottom to top. Then the card feeding device is disassembled. The card feeding device can be taken out without disassembling the surrounding flat push card feeding device. The maintenance and disassembly are very convenient.

[0081] Further preferably, the upper card seat 70 is provided with a card pushing frame 731. The opening is located in front of the card pushing frame 731. In this way, the card feeding motor 51 can be installed close to the tile suction wheel 52 or directly drive the tile suction wheel 52. The card feeding device is shorter and more convenient to maintain and disassemble.

[0082] Preferably, the bottom of the upper card seat main body 701 is provided with a first upper card mounting foot 7011 for fixedly connecting to the whole mahjong tile shuffling barrel and a second upper card mounting foot 7012 for fixedly connecting to the bottom plate 1. In this way, the upper card seat is positioned and fixed on the whole mahjong tile shuffling barrel and the bottom plate. The whole mahjong machine core is more convenient to position and install. The whole connection structure is more reasonable and has higher strength.

[0083] In an embodiment of the utility model, the setting of the card supporting plate transmission mechanism can adopt the prior art disclosed in patent documents such as CN109381855A, CN112023390A, CN114247127A, CN114146397A and CN117982871A, and the card supporting plate transmission mechanism comprises: card feeding curve cams, two card feeding curve cams are respectively installed on the left and right sides of the bottom of the card supporting plate, the left and right ends of the bottom of the card supporting plate are slidably connected with the upper card seat through two guide shafts or sliding sleeves; card feeding rocker arms, two card feeding rocker arms are respectively movably connected with the two card feeding curve cams; card feeding rocker shafts, the card feeding rocker shafts are rotatably installed on the upper card seat, and the two card feeding rocker arms are respectively fixed on the two card feeding rocker shafts; a card feeding driving cam, the card feeding driving cam is installed on the upper card seat and is driven to rotate by a card feeding motor; a card feeding connecting rod, the card feeding connecting rod is driven to move by the card feeding driving cam; the card feeding connecting rod drives the two card feeding rocker shafts to synchronously rotate, so that the card supporting plate is driven to move up and down by driving the two card feeding rocker arms to rotate. In this way, the volume of the card feeding curve cam is small, the installation position of the card feeding rocker arm is high, and the card feeding rocker arm is intermittently swung, the card feeding rocker shaft is extended forward to suspend and set the card feeding rocker arm, the card feeding connecting rod and the card feeding driving cam are arranged more rearward, the card supporting plate transmission mechanism occupies less shuffling space, the diameter of the shuffling disc can be increased, the shuffling space is increased, the shuffling efficiency is improved, and the probability of mutual impact of mahjong tiles on the shuffling disc is reduced, so that the shuffling noise is reduced. However, the suspension of the card feeding rocker shaft and the cam connecting rod driving mechanism leads to insufficient support strength and weak bearing capacity of the card supporting plate, the connecting rod is prone to blockage, the two card feeding rocker arms are unevenly stressed, the synchronization is poor, and the installation and maintenance and debugging are difficult.

[0084] Therefore, in the preferred embodiment of the utility model, as shown in Figures 9 to 15 The card supporting plate transmission mechanism comprises:

[0085] Two card feeding curve cams 744, the two card feeding curve cams 744 are respectively installed on the left and right sides of the bottom of the card supporting plate 71;

[0086] Two card feeding rocker arms 743, the two card feeding rocker arms 743 are respectively movably connected with the two card feeding curve cams 744;

[0087] Two card feeding rocker shafts 745, the card feeding rocker shafts 745 are rotatably installed on the upper card seat 70, and the card feeding rocker arms 743 are fixedly arranged on the card feeding rocker shafts 745;

[0088] Two card feeding rocker cams 746, the card feeding rocker cams 746 are fixedly connected with the card feeding rocker shafts 745, and the card feeding rocker cams 746 are provided with cam grooves 7461;

[0089] Two first gears 748 are rotatably installed on the upper card seat 70, and the first gears 748 are driven synchronously by the flat pushing upper card motor 71 through the cooperation of the cranks 747 and the upper card arm cam 746.

[0090] In this way, the gear transmission mechanism is adopted, the cam is installed on the upper card arm shaft and is driven in cooperation with the crank gear, the torque transmission is large, the stability and synchronism are better, the installation and debugging are more convenient, and the maintenance and disassembly are also more convenient.

[0091] The embodiment preferably further comprises two second gears 749 which are synchronously rotated in mesh with each other and are in mesh with and drive the two first gears 748 respectively, and one of the second gears 749 is driven to rotate by the flat pushing upper card motor 71. Such a gear transmission mechanism has a reasonable structure, smooth movement, large torque transmission, and is also more convenient to install and maintain.

[0092] The embodiment preferably, during the lifting of the card supporting plate 74, the two upper card arms 743 are synchronously rotated in opposite directions, and the two first gears 748 are synchronously rotated in opposite directions. In this way, the lifting structure of the card supporting plate 74 is reasonable and the movement is smooth.

[0093] The embodiment preferably, the crank 747 is driven in cooperation with the cam groove 7461 on the upper card arm cam 746 through a roller, and the crank 747 is fixedly connected or integrally formed with the first gear 748. In other embodiments, the crank gear can also not highlight the shape of the crank, but a roller or a column for cooperation with the cam groove is installed at the eccentric position of the first gear to form a virtual crank gear transmission structure.

[0094] The embodiment preferably, the upper card arm 743, the upper card arm shaft seat 7451 and the upper card arm cam 746 are sequentially sleeved on the front-to-rear end of the upper card arm shaft 745. In this way, not only can the occupation and influence of the upper card arm cam and the gear transmission mechanism on the shuffling space be reduced, but also the transmission structure is more stable and reliable.

[0095] The embodiment preferably, the front end of the upper card arm shaft 745 is fixedly connected or integrally formed with the upper card arm 743, the rear end of the upper card arm shaft 745 is installed on the upper card seat main body 701 through a bearing, and the upper card arm cam 746 is fixedly connected or integrally formed with the upper card arm shaft 745.

[0096] The embodiment preferably, the bottom of one of the upper card arm shaft seats 7451 on the upper card seat 70 close to the card storage channel card inlet is supported by the shuffling barrel, and the bottom of the other upper card arm shaft seat 7451 is supported by the support column 75, and the support column 75 is fixedly connected or integrally formed with the upper card seat 70. In this way, the support strength and bearing capacity of the card supporting plate can be maximized.

[0097] In this embodiment, the upper card shaking arm shaft seat 7451 is preferably composed of two parts, the upper half of the upper card shaking arm shaft seat 7451 is fixed to the front side of the upper card seat 70 by horizontal fasteners, and the upper and lower parts of the upper card shaking arm shaft seat 7451 are fixed and connected together by vertical fasteners.

[0098] In this embodiment, the pushing plate transmission mechanism preferably includes a pushing frame 731, a pushing sliding block 7311, a pushing cam 732, and a pushing swing lever 734, the pushing sliding block 7311 slides back and forth on the pushing frame 731 along a guide rod, the pushing plate 73 is fixed to the pushing sliding block 7311, the upper end of the pushing swing lever 734 is movably connected to the pushing sliding block 7311, the lower end of the pushing swing lever 734 is hinged to the upper card seat 70 through a pushing swing lever shaft 735, the pushing swing lever shaft 735 is fixed with a pushing swing arm 733, the swinging end of the pushing swing arm 733 is movably connected to the pushing cam 732 through a roller, one second gear 749 is driven to rotate by the pushing upper card motor 71, and the other second gear 749 is coaxially fixed and synchronously rotates with the pushing cam 732, so that the pushing upper card motor 71 drives the pushing sliding block 7311 to slide back and forth through the pushing cam 732 and the pushing swing lever 734 to implement pushing of the cards. Further preferably, the pushing swing arm 733 is arranged between the pushing upper card motor 71 and the pushing cam 732. Further preferably, a pushing cover plate 736 is fixedly arranged above the pushing plate 73. In other embodiments, the card supporting plate transmission mechanism and the pushing plate transmission mechanism can also refer to various embodiments disclosed in patent documents with publication numbers CN109381855A, CN109794059A, CN112023390A, CN114247127A, CN114146397A, CN117982871A, etc.

[0099] In this embodiment, as shown in Figure 21 Fig. 6, there is a gap C between the card supporting plate 72 and the card supporting plate 74, the width of the gap C is less than one third of the length of a mahjong tile, and when the card supporting plate 74 is lowered to the bottom, the top supporting plane of the card supporting plate 74 is not higher than the tile storage plane of the card supporting plate 72. In this way, the position of the card supporting plate can be further pushed inward without changing the overall layout of the mahjong machine (the positions of the card supporting block in the pushing device and the card supporting plate in the pushing upper card device are not adjusted), so that the distance between the card supporting plates can be further reduced. Further preferably, the width of the gap C is 3 to 15 mm, and the height difference between the top supporting plane of the card supporting plate 74 and the tile storage plane of the card supporting plate 72 is 0.5 to 1.5 mm.

[0100] In other embodiments, a transition plate can also be provided between the supporting plate and the supporting plate, and the mahjong tiles on the supporting plate are pushed to the supporting plate through the transition plate when the pushing plate pushes the mahjong tiles. In this way, the position of the supporting plate can be pushed more inwardly so as to push the four mahjong tile walls inwardly, and the distance between the supporting plates is minimized. The specific setting of the transition plate can refer to various embodiments disclosed in patent documents with publication numbers CN114146396A, CN114146398A and the like.

[0101] The action process of the flat pushing mahjong device is preferably as follows:

[0102] As shown in Figures 9 to 12 , the supporting plate 74 is in the raised state, the flat pushing mahjong motor 71 drives the crank gear 748 to rotate 75-110 degrees, and the supporting plate 74 moves from the high point to the low point to receive the mahjong, as shown in Figure 13 and Figure 14 , the crank gear 748 continues to rotate 80-125 degrees, the pushing plate 73 pushes the mahjong tiles on the supporting plate 72 to the supporting plate 74, and the crank gear 748 continues to rotate 105-160 degrees, and the supporting plate 74 is raised to the tabletop and can be played. The whole process is repeated.

[0103] When the pushing plate pushes the mahjong tile wall on the supporting plate to the supporting plate, in order to avoid the mahjong tiles being pushed out of the supporting plate by the pushing plate and falling into the mahjong tile or being stuck, a tile blocking frame is preferably provided on the inner side of the four supporting plates, and the tile blocking frame is used to prevent the mahjong tile wall on the supporting plate from moving inwardly.

[0104] The flat push blocking structure can adopt the existing technology disclosed in patent documents CN112023390A, CN117982870A, CN114247127A, CN114146397A, CN117982871A, CN219149199U, etc. The blocking frame extends outwardly with an outer blocking part to match the length of each side tile plate, and blocks the mahjong tiles on the tile plate from moving inward from the inner side of the tile plate, thereby ensuring the uniformity of the mahjong tile wall pushed onto the tile plate. Because in the fixed tile plate windmill-shaped mahjong machine structure, the tile pushing head of the tile pushing device moves at a relatively high position, which is higher than the height of the tile plate of the flat push tile device, which causes the tile pushing head of the tile pushing device to interfere with the outer blocking part of the adjacent side blocking frame. Therefore, in a preferred embodiment, the outer blocking part of the adjacent side blocking frame is provided with an opening above the tile block of the tile pushing device to avoid affecting the tile pushing head of the tile pushing device, and the tile pushing head is stopped at a suitable position to realize the flat push blocking function together with the blocking frame and its outer blocking part. However, because the tile pushing head is an active component, its stopping position is not extremely accurate (otherwise the cost will be high), it is difficult to ensure that the back side of the tile pushing head is flush with the blocking frame and its outer blocking part, and the tile pushing head also has unavoidable looseness caused by transmission gap, so in actual use, there is often a problem that the mahjong tile wall pushed onto the tile plate is not uniform.

[0105] To solve the above problems, one embodiment is to install a blocking plate on the back side of the tile pushing head, which can move relative to the tile pushing head (relatively small movement range), and the blocking plate moves together with the tile pushing head during tile pushing by the tile pushing device. The blocking plate can be positioned and fixed with the tile plate during flat push tile by the flat push tile device, so that it is flush with the blocking frame and its outer blocking part, blocks the mahjong tiles on the tile plate from moving inward from the inner side of the tile plate, and realizes the flat push blocking function, thereby ensuring the uniformity of the mahjong tile wall pushed onto the tile plate. In this way, by setting a blocking plate movable relative to the tile pushing head, the blocking plate is positioned and fixed by the tile plate during flat push tile to ensure that it is flush with the blocking frame and its outer blocking part, thereby overcoming the defect that the tile pushing head cannot be relatively positioned and easily loosened during flat push blocking. Another embodiment is that the flat push blocking mechanism includes a blocking frame for blocking the mahjong tiles on the tile plate of the flat push tile device from moving inward, the blocking frame is located on the inner side of the tile plate, and the blocking frame extends outwardly with an outer blocking part; the outer blocking part is provided with an opening above the tile block of the tile pushing device for the tile pushing head of the tile pushing device to move through; and further includes a movable blocking plate, which is installed on the outer blocking part in a way that it can be flipped and swung up and down, and is driven by the tile pushing head or the tile plate to flip and swing up and down, and is reset by a elastic member.

[0106] The above-mentioned signboard frame and the outer signboard part can be two or more components which are directly fixedly connected or indirectly fixedly connected through other intermediate components. In other preferred embodiments, the signboard frame and the outer signboard part thereof can be integrally formed.

[0107] In this embodiment, a flat push signboard structure is preferably provided, as shown in Figure 20 The four signboard frames are integrally connected to form a square signboard cover 8. Each of the four outer signboard parts includes an inner part, i.e., an inner signboard plate 54, and an outer part, i.e., an outer signboard plate 9. An opening is provided between the inner signboard plate 54 and the outer signboard plate 9 for the pusher head 63 to pass through. An active baffle 92 is provided in the opening. The active baffle 92 is installed on the mahjong machine tabletop in a manner that it can be flipped up and down and is reset by a resilient member. The outer signboard plate 9 is a separate component which is directly fixed on the mahjong machine bottom plate. The inner signboard plate 54 can be a separate component which is fixed on the signboard cover 8, the integral mahjong shuffling barrel 4, or the tile feeding seat 53, or can be integrally formed with the signboard cover 8, the integral mahjong shuffling barrel 4, or the tile feeding seat 53.

[0108] In this embodiment, the inner signboard plate 54 is fixedly connected to or integrally formed with the tile feeding seat 53. This facilitates the maintenance and disassembly of the tile feeding device. As shown in Figure 22 and Figure 23 The inner signboard plate 54 is integrally formed with the inner housing 532 of the tile feeding seat 53.

[0109] In this embodiment, as shown in Figure 5 and Figure 20 A signboard block 64 is provided outside the tile outlet of the tile feeding device 5, and a tile feeding side blocking part 5311 is provided on the tile feeding seat 53. When the tile receiving block 62 receives the mahjong tiles fed by the tile feeding device 5, the signboard block 64 and the tile outlet of the tile feeding device are located on opposite sides of the tile receiving block 62, and the tile feeding side blocking part 5311 and the pusher seat 65 / upper tile seat 70 (cantilever part 707) are located on the other opposite sides of the tile receiving block 62. This not only avoids the mahjong tiles from falling into the space outside the tile receiving block and causing failure, but also makes the structure more reasonable and reliable.

[0110] In this embodiment, as shown in Figure 2 and Figure 5As shown, in the same group of card picking and carrying system, the angle A between the length side of the card supporting plate 74 and the card feeding direction of the card feeding device 5 is 75°-85°, and the angle B between the card pushing direction of the card pushing device 6 and the card feeding direction of the card feeding device 5 is 75°-85°; the inner side card blocking plate 54 is pressed above the card feeding opening of the card feeding channel, and the maximum distance between the outer side end of the inner side card blocking plate 54 and the inner side end of the card pushing head 63 is less than the width of a mahjong tile. In this way, not only the angle between the tile suction wheel of the conveying device and the large mahjong tile washing disc is more reasonable, the mahjong tile washing space is larger, and the mahjong tile picking efficiency is higher, but also the mahjong tiles can be prevented from being pushed to the upper side of the card feeding seat when the tile receiving block receives the tiles and the card pushing head pushes the tiles, thereby avoiding the failure caused by the adjustment of the angle of the mahjong tiles.

[0111] Preferably, in the embodiment, the angle between the card blocking surface of the tile receiving block 64 facing the card feeding opening of the card feeding device 5 and the card feeding direction of the card feeding device 5 is 85°-89°, and the angle between the card blocking surface of the tile receiving block 64 and the tile feeding direction of the tile storage channel is 5°-10°. In this way, the angle position of the mahjong tile on the tile receiving block is closer to the tile feeding direction of the tile storage channel, and the adjustment of the angle of the mahjong tile when the card pushing head pushes the tiles is avoided, thereby preventing the pushing of the tiles from being blocked or the mahjong tiles from being pushed to jump.

[0112] Preferably, in the embodiment, the card pushing and guiding structure is provided, such as Figure 5 and Figure 20 As shown, the outer side card blocking plate 9 is provided with a card guiding piece 91 near the opening, the card guiding piece 91 is embedded in the outer side card blocking plate 91 and is fixed by a fastener, the inner side end of the card guiding piece 91 extends into the opening and is provided with an outer side card guiding surface 911 for contacting the mahjong tile, the outer side end of the inner side card blocking plate 54 is provided with an inner side card guiding surface 541 for contacting the mahjong tile, the pushing path of the card pushing head 63 is located between the outer side card guiding surface 911 and the inner side card guiding surface 541, the outer side card guiding surface 911 and the inner side card guiding surface 541 are oppositely arranged and form a horn shape from large to small along the pushing direction of the card pushing head, thereby guiding the mahjong tile to the tile feeding opening of the tile storage channel when the card pushing head pushes the tiles. In this way, the angle and direction of the mahjong tile can be adjusted by the horn during the pushing process of the card pushing head, so that the angle and direction of the mahjong tile entering the tile storage channel of the flat pushing and card feeding device are consistent with the length side direction of the card supporting plate, and the mahjong tiles are arranged in order.

[0113] Preferably, in the embodiment, the angle between the outer side card guiding surface 911 of the card guiding piece 91 and the tile feeding direction of the tile storage channel is 5°-10°, and the angle between the inner side card guiding surface 541 of the inner side card blocking plate 54 and the tile feeding direction of the tile storage channel is 5°-10°.

[0114] The top of the stopper block 64 preferably extends into the opening and is formed with a flat push stopper surface flush with the outer stopper plate 9 for flat pushing of the stopper and a push stopper guide surface cooperating with the stopper guide 91 for guiding the stopper. The gap between the stopper block 64 and the stopper guide 91 above it and the gap between the stopper block 64 and the outer stopper plate 9 outside it can allow the connecting arm 631 of the push head 63 to pass through. Thus, the action structure is simple and reasonable.

[0115] The stopper block 64 is preferably adjustably fixed on the push seat, and the stopper guide 91 is adjustably fixed on the outer stopper plate 9. Thus, by adjusting the installation positions of the stopper block and the stopper guide, different sizes of mahjong tiles can be adapted. In other embodiments, the stopper block 64 can be fixedly connected or integrally formed with the push seat or the outer stopper plate, and the stopper guide 91 can be fixedly connected or integrally formed with the outer stopper plate 9.

[0116] In an embodiment of the utility model, the shuffling barrel can adopt the prior art disclosed in patent documents with publication number CN117982871A and the like: two adjacent tile feeding devices 5 are connected and transitioned through a connecting wall, four tile feeding devices 5 in four tile picking and carrying systems are connected head to tail through four connecting walls to form a shuffling frame (a shuffling space is inside the shuffling frame), the shuffling frame is arranged around the shuffling tray 2, the tile feeding port of the tile feeding device 5 is located on the inner side wall of the shuffling frame, the tile feeding port of the tile feeding device 5 is located on the outer side of the shuffling frame, and four tile feeding motors 51 are installed on the outer side wall of the shuffling frame. However, the shuffling frame with such a spliced structure has too many parts, the splicing and installation are complicated, the overall strength of the shuffling frame is poor, the installation and positioning accuracy is low, a lot of space is occupied, and the tile feeding device is also very inconvenient to disassemble, maintain and repair.

[0117] Therefore, in the preferred embodiment of the utility model, a whole shuffling barrel integrally injection molded is adopted, such as Figure 3 、 Figure 6 、 Figure 18 and Figure 19As shown, the four sets of card feeding devices 5 of the card picking and carrying system are all installed on a whole shuffling barrel 4, which covers the shuffling tray 2 and is fixed on the bottom plate 1. The top of the whole shuffling barrel is a square mounting table 42, the center of which is a card placing hole 41. The bottom of the whole shuffling barrel is a mounting ring 46 in the shape of a circle, the outer diameter of which is larger than that of the square mounting table 42. The square mounting table 42 is connected with the mounting ring 46 through four barrel walls. Adjacent two barrel walls are provided with a card feeding mounting opening 47 for installing the card feeding device. Each barrel wall is formed with a card supporting plate step 43 and a card receiving plate step 44. The card supporting plate step 43 is located above the inner side of the card receiving plate step 44, and the height difference between the two is greater than the thickness of a mahjong tile (i.e. similar to the height of the front baffle 742, generally 25-55 mm). The card supporting plate step 43 is located below the card supporting plate 74 in the flat pushing card feeding device, and the card receiving plate step 44 is located below the card receiving plate 72 in the flat pushing card feeding device.

[0118] In this way, the whole shuffling barrel has fewer parts and is easier to install than the shuffling frame assembled by four square card feeding devices. The card feeding device can be made shorter, and the barrel wall is thin-walled, which is easy to form, avoid structure and occupy less space. The internal shuffling space is large, and the whole shuffling barrel has better stress strength and is not easy to deform. It is convenient to install, position and debug, and the card feeding seat, the pushing card seat and the card feeding seat are easy to position, install and support.

[0119] As shown in Figure 18 and Figure 19 Each barrel wall is provided with a card guiding step 45 on the side close to the card feeding mounting opening 47. The card guiding step 45 is located between the card receiving plate step 44 and the mounting ring 46 and on the side of each barrel wall close to the card feeding opening of the card receiving channel. In this way, the shuffling space in the shuffling barrel can form a card guiding space between the shuffling tray and the card guiding step to limit the height of the mahjong tiles entering the lower part of the card suction wheel, avoid the card suction wheel from being blocked and improve the shuffling efficiency.

[0120] The square mounting table 42 is provided with a ventilation opening 421, and a fan 422 is installed on the ventilation opening 421. In this way, it is convenient to ventilate, dehumidify and deodorize the shuffling space.

[0121] The square mounting table 42 is provided with a card blocking cover 8, which is fixedly connected with or integrally formed with the square mounting table 42 and located on the inner side of the card supporting plate step 43. In this way, the card blocking cover not only prevents the mahjong tiles from falling, but also effectively supports the table top. The shuffling barrel and the card blocking cover 8 are separately formed and then fixedly connected, which is also convenient for the installation and maintenance of the fan, the circuit board and the like on the square mounting table 42.

[0122] The upper card feeding arm avoiding groove 431 is arranged on the card supporting plate step 43 to accommodate the upper card feeding arm 743 and the upper card feeding cam 744 in the flat pushing card feeding device. When the card supporting plate 74 is lowered, the upper card feeding arm avoiding groove 431 can accommodate the upper card feeding arm 743 and the upper card feeding cam 744, so that the card supporting plate step 43 can provide good support for the card supporting plate 74, and the card supporting plate step 43 is easy to be formed and occupies less space.

[0123] The avoiding groove 432 or the avoiding hole is arranged at one end of the card supporting plate step 43 to accommodate the extension arm 705 in the flat pushing card feeding device. Thus, the extension arm 705 on the upper card seat 70 can be inserted into the avoiding groove 432 or the avoiding hole, so that the extension arm 705 can avoid interference with each other, and positioning cooperation and reliable support can be formed.

[0124] In other embodiments, the inner side upper card guide shaft 706 of the card supporting plate 74 can also be fixed on the card supporting plate step 43 of the shuffling barrel. Thus, the extension arm 705 can not be arranged on the upper card seat 70, so that the structure is simplified and the upper card seat 70 is easy to be formed.

[0125] The upper card feeding arm shaft seat support 441 for supporting the upper card feeding arm shaft 745 in the flat pushing card feeding device and the cantilever part support 442 for supporting the cantilever part 707 in the flat pushing card feeding device are arranged on the card receiving plate step 44. Thus, the shuffling barrel can provide reliable support for the upper card feeding arm shaft 745 and the cantilever part 707 on the upper card seat 70, so that the supporting strength of the card receiving plate and the card supporting plate and the weight that can be supported are increased.

[0126] The pushing seat support 461 for supporting the pushing seat 65 in the pushing card device 6 and the upper card seat support 462 for supporting the upper card seat 70 in the flat pushing card feeding device 7 are arranged on the mounting ring 46. Thus, the pushing seat 65 in the pushing card device 6 is supported by the pushing seat support 461 and is fixed on the shuffling barrel and the bottom plate by fasteners, the upper card seat 70 in the flat pushing card feeding device 7 is supported by the upper card seat support 462 and is fixed on the shuffling barrel and the bottom plate by fasteners, and the inner and outer sides of the pushing seat 65 and the upper card seat 70 are leveled by the support pads, so that positioning, installation and debugging are facilitated.

[0127] The pushing seat support 461 for supporting the pushing seat 65 in the pushing card device 6 and the upper card seat support 462 for supporting the upper card seat 70 in the flat pushing card feeding device 7 are arranged on the mounting ring 46. Thus, the pushing seat 65 in the pushing card device 6 is supported by the pushing seat support 461 and is fixed on the shuffling barrel and the bottom plate by fasteners, the upper card seat 70 in the flat pushing card feeding device 7 is supported by the upper card seat support 462 and is fixed on the shuffling barrel and the bottom plate by fasteners, and the inner and outer sides of the pushing seat 65 and the upper card seat 70 are leveled by the support pads, so that positioning, installation and debugging are facilitated. Figure 3 and Figure 18 The card feeding installation opening 47 penetrates downward from the card supporting plate step 43 to the mounting ring 46, the inner side end of the card feeding seat 53 is fixedly installed at the card supporting plate step 43, the outer side of the card feeding seat 53 is rested on the mounting ring 46 and the card guide step 45 and is fixed by fasteners, the card sucking wheel 52 is located above the card feeding installation opening 47, and the card feeding motor 51 is located outside the card supporting plate step 43. Thus, the installation screws of the card feeding device 5 are all vertical, and the card feeding device 5 is very convenient to disassemble and assemble.

[0128] The card feeding installation opening 47 penetrates downward from the card supporting plate step 43 to the mounting ring 46, the inner side end of the card feeding seat 53 is fixedly installed at the card supporting plate step 43, the outer side of the card feeding seat 53 is rested on the mounting ring 46 and the card guide step 45 and is fixed by fasteners, the card sucking wheel 52 is located above the card feeding installation opening 47, and the card feeding motor 51 is located outside the card supporting plate step 43. Thus, the installation screws of the card feeding device 5 are all vertical, and the card feeding device 5 is very convenient to disassemble and assemble. Figure 22and Figure 23 As shown in the figure, the card feeding seat 53 includes an outer shell 531 and an inner shell 532 fixedly connected as a whole, a card feeding passage is arranged between the two, the outer shell 531 extends beyond the card feeding passage to form a card feeding side stop portion 5311; the outer shell 531 is placed on the mounting ring 46 and fixedly connected, and the inner shell 532 is placed on the card guiding step 45 and fixedly connected with the whole shuffling barrel.

[0129] The mahjong tile arrangement method of the mahjong machine adopts the following steps:

[0130] 1) Card feeding; the card feeding device 5 picks up mahjong tiles from the shuffling tray 2 and feeds them to the tile pushing device 6;

[0131] 2) Tile stacking and pushing; the tile receiving block 62 of the tile pushing device 6 receives a mahjong tile sent out by the card feeding device 5 at the first tile receiving position; the tile receiving block 62 descends to the second tile receiving position to receive another mahjong tile sent out by the card feeding device 5; the tile receiving block 62 ascends to the tile pushing position and the tile pushing head 63 pushes the two mahjong tiles stacked into a stack to the tile receiving plate 72 of the flat tile pushing device 7, and then the tile receiving block 62 and the tile pushing head 63 are reset respectively;

[0132] 3) Repeat the above step 2) until the tile receiving plate 72 of the flat tile pushing device 7 stores the required multiple stacks of mahjong tiles;

[0133] 4) Flat tile pushing; after receiving the tile feeding instruction, the tile receiving plate 74 of the flat tile pushing device 7 descends to the bottom from the tabletop; the tile pushing plate 73 pushes the multiple stacks of mahjong tiles on the tile receiving plate 72 to the tile receiving plate 74; and the tile receiving plate 74 ascends to the tabletop.

[0134] As Figure 1 shown, the existing windmill-shaped mahjong machine (36 tabletop 81.5*81.5 cm square) has a shuffling tray and an effective shuffling space with a maximum diameter of 600 mm, and can only shuffle 108 62 mahjong tiles. As Figure 2 shown, the same size mahjong machine core adopts the structure of the embodiment, the shuffling tray and the effective shuffling space can have a maximum diameter of 650 mm, and 120 64 mahjong tiles can be shuffled on the 36 tabletop mahjong machine, and the minimum distance between the tile receiving plates can be 290 mm.

[0135] In the description of the present specification, the description referring to the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0136] Although the embodiments of the present application have been shown and described above, it should be understood that the above-described embodiments are exemplary, and should not be construed as limiting the present application, and those skilled in the art can make changes, modifications, replacements and variations to the above-described embodiments within the scope of the present application without departing from the principles and spirits of the present application.

Claims

1. A mahjong machine's picking and carrying system, comprising a tile feeding device (5) for picking and feeding mahjong tiles one by one from a shuffling tray, a flat pushing tile feeding device (7) for feeding a plurality of arranged mahjong tiles onto a mahjong machine's table at one time, and a pushing tile device (6) for pushing the mahjong tiles fed by the tile feeding device (5) into the flat pushing tile feeding device (7); the tile feeding device (5) comprises a tile sucking wheel for picking mahjong tiles and a tile feeding channel for feeding the mahjong tiles; the pushing tile device (6) comprises a tile receiving block (62) for receiving the mahjong tiles fed by the tile feeding device (5) and a pushing tile head (63) for pushing the mahjong tiles on the tile receiving block (62) to the flat pushing tile feeding device (7); the flat pushing tile feeding device (7) comprises a tile receiving plate (72) for receiving a plurality of arranged mahjong tiles, a tile receiving plate (74) for feeding the plurality of arranged mahjong tiles onto the table at one time, and a pushing tile plate (73) for pushing the plurality of arranged mahjong tiles on the tile receiving plate (72) to the tile receiving plate (74), the tile receiving plate (72) is provided with a tile storage channel for storing the plurality of arranged mahjong tiles, the tile receiving plate (74) is located on the inner side of the tile receiving plate (72) and can be lifted up and down, and the pushing tile plate (73) is located on the outer side of the tile receiving plate (72) and pushes the tiles from outside to inside; characterized in that: The flat pushing and placing device (7) further comprises a placing seat (70) and a flat pushing and placing motor (71), the card receiving plate (72) is fixedly arranged on the placing seat (70), the flat pushing and placing motor (71) and its placing transmission mechanism are installed on the placing seat (70), the flat pushing and placing motor (71) drives the pushing plate (73) to translate and push the card and drives the card supporting plate (74) to lift and place the card through the placing transmission mechanism; an extension arm (705) is arranged on the inner side end of the placing seat (70) and extends forward, the inner side card placing guide shaft (706) of the card supporting plate (74) is fixedly arranged on the extension arm (705), the inner side card placing guide sleeve (740) is sleeved on the inner side card placing guide shaft (706), and the inner side card placing guide sleeve (740) is fixedly connected with the card supporting plate (74).

2. The tile pickup and transport system of claim 1, wherein, The placing seat (70) is provided with a card placing guide shaft seat (704) on the outer side section, and the outer side card placing guide shaft (741) of the card supporting plate (74) is slidingly installed in the card placing guide shaft seat (704).

3. The tile-picking and carrying system of a mahjong machine according to claim 1, wherein, The included angle A between the length side of the card supporting plate (74) and the card sending direction of the card sending device (5) is 75°-85°, and the included angle B between the pushing direction of the pushing device (6) and the card sending direction of the card sending device (5) is 75°-85°.

4. The tile-picking and carrying system of a mahjong machine according to claim 1, wherein, The placing transmission mechanism comprises a card supporting plate transmission mechanism and a pushing plate transmission mechanism.

5. The system according to claim 1, wherein The card supporting plate transmission mechanism comprises two card placing curve cams (744), two card placing rocker arms (743), two card placing rocker arm shafts (745), two card placing rocker arm cams (746) and two first gears (748); the two card placing curve cams (744) are respectively installed on the left and right sides of the bottom of the card supporting plate (74), the two card placing rocker arms (743) are respectively matched with the two card placing curve cams (744) to move, the card placing rocker arm shaft (745) is rotatably installed on the placing seat (70), the card placing rocker arm (743) is fixedly arranged on the card placing rocker arm shaft (745), the card placing rocker arm cam (746) is fixedly connected with the card placing rocker arm shaft (745), the card placing rocker arm cam (746) is provided with a cam groove (7461), the first gear (748) is rotatably installed on the placing seat (70), the first gear (748) is matched with the card placing rocker arm cam (746) to drive through the crank (747), and the two first gears (748) are driven to synchronously rotate by the flat pushing and placing motor (71).

6. The tile-picking and carrying system of a mahjong machine according to claim 5, wherein The crank (747) is matched with the cam groove (7461) on the card placing rocker arm cam (746) to drive through the roller, and the crank (747) is fixedly connected with or integrally formed with the first gear (748).

7. The system according to claim 5, wherein the system further comprises a plurality of conveyors (2) arranged in parallel and a plurality of conveyors (3) arranged in parallel, and the conveyors (2) and the conveyors (3) are arranged alternately. The two second gears (749) are matched with each other to synchronously rotate, the two second gears (749) are respectively matched with the two first gears (748) to drive, and one of the second gears (749) is driven to rotate by the flat pushing and placing motor (71).

8. The tile-picking and carrying system of a mahjong machine according to claim 7, wherein, The pushing plate transmission mechanism comprises a pushing plate frame (731), a pushing plate sliding block (7311), a pushing plate cam (732) and a pushing plate swing lever (734). The pushing plate sliding block (7311) slides on the pushing plate frame (731), and the pushing plate (73) is fixed on the pushing plate sliding block (7311). The upper end of the pushing plate swing lever (734) is movably connected with the pushing plate sliding block (7311), and the lower end of the pushing plate swing lever (734) is hingedly connected with the upper tile seat (70) through a pushing plate swing lever shaft (735). The pushing plate swing lever shaft (735) is fixed with a pushing plate rocker arm (733), the swinging end of the pushing plate rocker arm (733) is movably connected with the pushing plate cam (732) through a roller, and another second gear (749) is coaxially fixed with the pushing plate cam (732) to rotate synchronously, so that the pushing plate motor (71) drives the pushing plate sliding block (7311) to slide forward and backward through the pushing plate cam (732) and the pushing plate swing lever (734) to implement pushing of tiles.

9. The system according to claim 1, wherein The tile outlet of the tile feeding channel is lower than the lowest position of the tile supporting plate, and the thickness of one mahjong tile is greater than the height difference between the lowest position of the tile supporting plate and the tile outlet. The tile supporting block (62) of the tile pushing device has at least three height positions, i.e., a first tile supporting position, a second tile supporting position and a tile pushing position. When the mahjong tiles are pushed, the tile supporting block (62) first supports the first mahjong tile sent by the tile feeding device at the first tile supporting position, then the tile supporting block (62) is lowered to the second tile supporting position to support the second mahjong tile sent by the tile feeding device, the second mahjong tile is stacked on the first mahjong tile, then the tile supporting block (62) is raised to the tile pushing position, the tile pushing head (63) pushes the two mahjong tiles stacked on each other out of the tile supporting block (62), and the tile supporting block (62) is lowered to the first tile supporting position.

10. A mahjong machine, characterized by, A tile picking and carrying system comprising a mahjong machine according to any one of claims 1 to 9.

Citation Information

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