Push-to-integrate type card falling prevention card shuffler storage slot and card shuffler
Patent Information
- Application Number
- CN202520063891.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-01-10
- Filing Date
- 2025-01-10
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-01-10
AI Technical Summary
[0005]针对由于存储在储牌槽中的娱乐牌没有阻力会落入升牌板下方间隙的技术问题,本实用新型目的在于提供一种推挡一体式防掉牌的理牌机储牌槽及理牌机
[0030]1)本实用新型推牌头的推挡牌头作为推牌头时,可在环形槽内周向旋转将环形槽中的一副方块娱乐牌推至升牌板上,当推挡牌头转至环形槽的出牌端时,作为挡牌头使用停留在出牌端,阻挡下一副方块娱乐牌例如麻将牌从间隙中掉落至升牌板的下方,避免卡堵并提升洗牌效率。同时,推挡牌头可以旋转穿过直线槽内侧壁的通孔至环形槽的进牌端进行推牌。也即推挡牌头具有一杆多用的功能。
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Figure CN224655949U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the card arranging machine manufacturing technical field, especially is involved in a kind of push and block integrated anti-falling card's card arranging machine storage card groove and card arranging machine. BACKGROUND
[0002] The machine that arranges square entertainment card is called card arranging machine, and card arranging machine has many varieties, for example mahjong machine, card nine machine etc.For example, mahjong machine is divided into rotary wing mahjong machine and roller coaster mahjong machine.
[0003] The rising card plate of rotary wing mahjong machine and roller coaster mahjong machine is lowered and is connected with the card outlet end of storage card groove after the card inlet end, mahjong card in storage card groove is pushed to the rising card plate under the action of push card head, and mahjong card is transported to tabletop by lifting the card inlet end of rising card plate, at this time, the rising card plate is flush with the tabletop of mahjong machine, and a gap is formed between the card inlet end of rising card plate and the card outlet end of storage card groove, however, the next mahjong card is stored in storage card groove.
[0004] Then mahjong card stored in storage card groove is easily dropped from the gap to the lower of rising card plate without resistance, leading to insufficient mahjong card in the next round of game, or mahjong card is stuck in the gap, thereby affecting the lowering of rising card plate, finally leading to low mahjong machine shuffling efficiency. Therefore, it is necessary to improve. INVENTION CONTENTS
[0005] In view of the technical problem that entertainment card stored in storage card groove falls into the gap below rising card plate without resistance, the utility model aims at providing a kind of push and block integrated anti-falling card's card arranging machine storage card groove and card arranging machine.
[0006] The push and block integrated anti-falling card's card arranging machine storage card groove of the utility model, preferably, the storage card groove has:
[0007] Annular groove and straight line groove, the card inlet end of straight line groove is tangent to the card outlet end of annular groove and connects;
[0008] Push and block card head that can rotate in the circumference of annular groove, when push and block card head rotates in the circumference of annular groove and pushes card, push and block card head is push card head, when push and block card head stays in the card outlet end of annular groove and blocks card, push and block card head is block card head;
[0009] Wherein, the inner side wall of straight line groove has through hole for the rotation of push and block card head.
[0010] Preferably, the push and block card head is radial push and block card head, the radial push and block card head has a radial arm and push and block head, and the push and block head is fixed on the circumferential side end of the radial arm.
[0011] When the radial pusher head rotates circumferentially within the annular groove to push the card, the radial pusher head is a radial pusher head; when the radial pusher head stops at the card-dispensing end of the annular groove to block the card, the radial pusher head is a radial blocker head.
[0012] Preferably, the push head is located inside the annular groove.
[0013] Preferably, the push-stop head is longitudinally fixed to the lower end of the circumferential end of the radial arm of the rod;
[0014] The through hole has a planar through hole through which the radial arm of the rod rotates and a longitudinal through hole through which the push head passes. The planar through hole and the longitudinal through hole are integrally formed to form an L-shaped through hole.
[0015] Preferably, the card-dispensing end of the annular groove is provided with a positioning sensor, and the radial push-block card head is provided with a sensing element. The positioning sensor is used to detect the sensing element to position the push-block head.
[0016] Preferably, the positioning sensor is disposed at the bottom of the card-dispensing end of the annular groove;
[0017] The sensing element is disposed on the push head of the radial push head.
[0018] Preferably, the positioning sensor is disposed on the inner sidewall of the card-dispensing end of the annular groove;
[0019] The sensing element is disposed on the radial arm of the rod of the radial push-block head.
[0020] Preferably, the annular groove has a motor at its center;
[0021] The center end of the radial push-block head is connected to the motor drive.
[0022] Preferably, the annular groove has a hollow inner cavity at its center, and the motor is disposed within the hollow inner cavity.
[0023] Preferably, with the forward direction of the square entertainment card as a reference, the annular groove includes a passage section from the card-in end to the card-out end for the square entertainment card to pass through and a non-passing section from the card-out end to the card-in end; when the push-block card head rotates circumferentially within the passage section of the annular groove, the push-block card head is a push-block card head.
[0024] Preferably, the outer wall of the card-feeding end of the annular groove has an entrance for the passage of the diamond entertainment cards.
[0025] Preferably, a guide plate is provided on one side of the entrance of the annular groove, and the guide plate separates the passage section and the non-passage section. There is a gap between the guide plate and the inner wall of the annular groove, which allows the peripheral end of the radial push-block head to pass through.
[0026] Preferably, the card storage slot of the card sorting machine is a card storage slot for a mahjong machine or a dominoes machine.
[0027] The card sorting machine of this utility model has the aforementioned integrated push-block anti-drop card storage slot.
[0028] Preferably, the card sorting machine is a mahjong machine or a dominoes machine.
[0029] The positive and progressive effects of this utility model are as follows:
[0030] 1) When the pusher head of this utility model is used as a pusher head, it can rotate circumferentially within the annular groove to push a set of square entertainment tiles from the annular groove onto the lifting plate. When the pusher head rotates to the dispensing end of the annular groove, it acts as a stopper head, preventing the next set of square entertainment tiles, such as mahjong tiles, from falling through the gaps to the bottom of the lifting plate, thus avoiding jamming and improving shuffling efficiency. Simultaneously, the pusher head can rotate through the through-hole in the inner wall of the straight groove to the inlet end of the annular groove to push tiles. In other words, the pusher head has a multi-functional design.
[0031] 2) A positioning sensor is installed on the annular groove, and a sensing element is installed on the push-block head. The positioning sensor detects the sensing element to control the rotation and stop of the motor, thereby controlling the rotation and stop of the push-block head. Attached Figure Description
[0032] Figure 1 This is a schematic diagram of the card storage slot of the card sorting machine of this utility model;
[0033] Figure 2 This is a schematic diagram of the structure of the push-block sign head of this utility model;
[0034] Figure 3A This is a schematic diagram illustrating the principle of the square entertainment card in this utility model, where the push-block card head is positioned at the card-dispensing end to block the card storage slot channel.
[0035] Figure 3B This is a schematic diagram illustrating the principle of how the pusher head of this utility model pushes square entertainment cards within the passage section of the card storage slot;
[0036] Figure 3C This is a schematic diagram illustrating the process by which the pusher head of this utility model rotates from the card-dispensing end back to the card-receiving end via a non-passing section to push out the square entertainment cards. Detailed Implementation
[0037] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.
[0038] like Figure 1 The diagram shows the structure of the card storage slot 20 of the card sorting machine with a push-block card head 10 according to this utility model. Further, the square entertainment cards 30 are mahjong tiles or dominoes tiles, preferably mahjong tiles. The card sorting machine 40 is a mahjong machine or a dominoes machine, preferably a mahjong machine. The card storage slot 20 of the card sorting machine is divided into two parts: a front part is an annular slot 21, and a rear part is a straight slot 22. The annular slot 21 has a card-feeding end 211 and a card-discharging end 212, and the straight slot 22 has a card-feeding end 221, with the card-feeding end 221 of the straight slot 22 connected tangentially to the card-discharging end 212 of the annular slot 21. Using the direction of movement of the diamond tiles as a reference, the annular groove 21 comprises two sections: a passageway 21a from the tile-in end 211 to the tile-out end 212 for the diamond tiles to pass through, and a non-passageway 21b where the diamond tiles do not pass through. The non-passageway 21b is located between the tile-out end 212 and the tile-in end 211 according to the direction of movement of the diamond tiles. The passageway 21a of the annular groove 21 and the straight groove 22 form the entire forward passage of the mahjong tiles. A tile sorting machine, such as a mahjong machine, has this tile storage groove 20 and a tile lifting plate 41 rotatably hinged to the end of the straight groove 22 of the tile storage groove 20. The lifting plate 41 has a starting end 411. The starting end 411 of the lifting plate 41 can be raised to be level with the mahjong machine table, or it can be lowered to the bottom of the card-feeding end 221 of the straight groove 22. When the starting end 411 of the lifting plate 41 lowers to the bottom of the straight groove 22, the starting end 411 of the lifting plate 41 returns to the position of the card-feeding end 221 of the straight groove 22. That is, after the starting end 411 of the lifting plate 41 lowers, the starting end 411 of the lifting plate 41 will be connected and aligned with the card-dispensing end 211 of the annular groove 21, and the square entertainment cards 30 will be pushed onto the lifting plate 41 under the action of the push-blocking card head 10. When the lifting plate 41 rises from its starting end 411, it delivers a set of diamond entertainment tiles 30 to the tabletop, level with the mahjong machine table. At this point, there is a gap between the starting end 411 of the lifting plate 41 and the tile-dispensing end 212 of the annular groove 21. Therefore, the next set of diamond entertainment tiles 30, such as mahjong tiles, stored in the annular groove 21, could easily fall through this gap and below the lifting plate 41. At this time, the push-blocking tile head 10 in the annular groove 21 can block the next set of diamond entertainment tiles 30, preventing it from falling through the gap and below the lifting plate 41.
[0039] Continue as Figure 1As shown, the card storage slot 20 contains a card-pushing head 10 that can rotate circumferentially within the annular slot 21. When the card-pushing head 10 rotates circumferentially within the annular slot 21, it functions as a card-pushing head. When the card-pushing head 10 is positioned at the card-dispensing end 212 of the annular slot 21, it functions as a card-blocking head. That is, the card-pushing head 10 has different functions depending on its position within the annular slot 21. When the card-pushing head 10 rotates circumferentially within the annular slot 21, it pushes the diamond entertainment cards from the annular slot 21 onto the card-lifting plate 41, thus functioning as a card-pushing head. When the card-pushing head 10 is positioned at the card-dispensing end 212 of the annular slot 21, it blocks the diamond entertainment cards from falling into the gap below the beginning of the card-lifting plate 41, thus functioning as a card-blocking head. Meanwhile, the inner wall 223 of the straight groove 22 has a through hole 222 through which the push-block head 10 can rotate, so that the push-block head 10 can rotate circumferentially in the annular groove 21.
[0040] like Figure 2 The diagram shows the structure of the push-block head 10 of this utility model. The push-block head 10 can rotate in any shape within the annular groove 21, as long as it functions as both a pusher and a blocker. In this example, the push-block head 10 is a radial push-block head, meaning it is radially positioned within the annular groove 21. Further, the radial push-block head 10 has a radial arm 101 and a push-block head 102. The push-block head 102 is positioned at the circumferential end 101a of the radial arm 101. Preferably, the push-block head 102 is longitudinally fixed at the lower end of the circumferential end 101a of the radial arm 101. The push-block head 102 and the radial arm 101 can be fixed at any angle; preferably, the push-block head 102 is perpendicularly fixed to the radial arm 101. When the radial push-blocking card head rotates circumferentially within the annular groove 21, the radial push-blocking card head is a radial push-blocking card head. When the radial push-blocking card head stops at the card-dispensing end 212 of the annular groove 21, the radial push-blocking card head is a radial blocking card head.
[0041] In this example, the radial push-stop head has a center end 103, through which the radial push-stop head can be positioned on the annular groove 21. That is, the radial push-stop head can rotate circumferentially around the center of the annular groove 21. At this time, the push-stop head 102 is located in the groove of the annular groove 21 and rotates circumferentially along the annular groove 21. Below the center end 103 of the radial push-stop head is a connecting shaft 104 that can be connected to a motor. The center of the connecting shaft 104 has a shaft hole that can be fixed on the motor shaft. Preferably, the shaft hole is not circular to prevent the motor shaft and the connecting shaft 104 from being unable to rotate relative to each other. One shape of the shaft hole is, for example, a D-shaped shaft hole, or other shapes are also possible, such as a star-shaped shaft hole, a quadrilateral shaft hole, etc. (not shown in the figure). Preferably, the connecting shaft 104 is perpendicular to the radial push-stop head.
[0042] Continue as Figure 1As shown, the center of the annular groove 21 of the card storage slot 20 is a hollow cavity. A motor is installed inside the hollow cavity of the annular groove 21. The shaft hole of the connecting shaft 104 at the center end 103 of the radial push-block head is fixed to the motor shaft of the motor, which can control the rotation or stop of the radial push-block head on the annular groove 21. In this example, since the push-block head 102 is fixedly connected to the radial arm 101, the through hole 222 on the inner sidewall 223 of the straight groove 22 has a planar through hole through which the radial arm 101 can rotate, and a longitudinal through hole through which the push-block head 102 can rotate. The shape of the planar through hole and the longitudinal through hole after being integrally formed depends on the shape of the push-block head 102 after being fixed to the radial arm 101. Preferably, the push-block head 102 is fixed perpendicularly to the radial arm 101, that is, the planar through hole and the longitudinal through hole are set perpendicularly. At this time, the planar through hole and the longitudinal through hole are integrally formed to form an L-shaped through hole.
[0043] An inlet 2111 is located on the outer wall of the card-entry end 211 of the annular groove 21, which is just large enough for a single square entertainment card 30 to pass through. A guide plate 2112 is provided on the side of the inlet 2111 opposite to the direction of movement of the square entertainment card 30. The guide plate 2112 is located in the groove of the annular groove 21, separating the passage section 21a and the non-passage section 21b, to prevent the square entertainment card 30 from entering the non-passage section 21b. At the same time, a gap is left between the guide plate 2112 and the inner wall of the annular groove 21, allowing the peripheral end 101a of the radially pushing card head to pass through, so that the pushing head 102 of the radially pushing card head can rotate normally circumferentially within the groove of the annular groove 21.
[0044] A positioning sensor 213 is also provided on the annular groove 21, and a corresponding sensing element is provided on the push-block head 10. The positioning sensor 213 and the sensing element can be set in any position, as long as the positioning sensor 213 can detect the sensing element and transmit the information to the motor so that the motor can make the corresponding action when the push-block head 10 needs to rotate or stop rotating. For example, the positioning sensor 213 can be set at the bottom of the card-dispensing end 212 of the annular groove 21, and the sensing element can be set on the push-block head 102 of the push-block head 10. In this example, it is also feasible to set the positioning sensor 213 on the inner side wall of the card-dispensing end 212 of the annular groove 21 and the sensing element on the radial arm 101 of the push-block head 10.
[0045] like Figure 3A and Figure 3B The diagram shows the working principle of the card storage slot 20 of the card sorting machine with a pusher head 10 according to this utility model. After a set of diamond entertainment cards 30 is pushed, that is, when the pusher head 10 pushes the diamond entertainment cards 30 onto the card lifting plate 30, as shown... Figure 3CAs shown, the push-block card head 10 is located within the L-shaped through hole 222. At this time, the push-block card head 10 will retract to the card-dispensing end 212 of the annular groove 21. The positioning sensor 213 on the inner wall of the card-dispensing end 212 of the annular groove 21 will detect the sensing element on the radial arm 101 of the push-block card head 10 and transmit the information to the motor. The motor will stop rotating, causing the push-block card head 10 to remain at the card-dispensing end 212 of the annular groove 21. At this time, the push-block card head 10 acts as a blocking card head. Continuing as... Figure 3A As shown, after the starting end 411 of the card-raising plate 41 rises and delivers the diamond entertainment card 30 to a position flush with the table, the card-blocking head blocks the diamond entertainment card 30 waiting for the next round, preventing it from falling into the gap below the card-raising plate 41. Continuing as... Figure 3B As shown, when the number of square entertainment cards 30 in the annular groove 21 meets the requirements and the next round of the game is started, the square entertainment cards 30 need to be sent to the table. At this time, the beginning end 411 of the lifting plate 41 will descend to the bottom of the outlet end 212 of the annular groove 21. The pusher head 10 will rotate through the L-shaped through hole 222 and the non-passage section 21b to the inlet end 211 of the annular groove 21. At this time, the pusher head 10 acts as a pusher head, and the pusher head continues to rotate along the passage section 21a of the annular groove 21, pushing the square entertainment cards 30 onto the lifting plate 41. After all the entertainment cards 30 are pushed onto the lifting plate 41, the pusher head retracts to the outlet end 212 of the annular groove 21. The positioning sensor 213 detects the sensing element and transmits the information to the motor. The motor stops rotating and then acts as a blocker head, blocking the next set of waiting square entertainment cards 30 to prevent them from falling into the gap below the lifting plate 41.
[0046] The present invention has been described in detail above with reference to the accompanying drawings and embodiments. Those skilled in the art can make various modifications to the present invention based on the above description. Therefore, certain details in the embodiments should not be construed as limiting the present invention, and the scope of protection of the present invention shall be defined by the appended claims.
Claims
1. A card storage slot for a push-block integrated anti-drop card sorting machine, characterized in that... The card storage slot has: An annular groove and a straight groove, wherein the card-infeed end of the straight groove is tangentially connected to the card-outfeed end of the annular groove; A push-block head that can rotate circumferentially within the annular groove; When the pusher head rotates circumferentially within the annular groove to push the card, the pusher head is a pusher head; when the pusher head stops at the card-out end of the annular groove to block the card, the pusher head is a blocker head. The inner wall of the straight groove has a through hole through which the push plate head can rotate.
2. The card storage slot of the integrated push-block anti-drop card sorting machine as described in claim 1, characterized in that... The push-stop sign head is a radial push-stop sign head, which has a radial arm and a push-stop head, and the push-stop head is fixed to the peripheral end of the radial arm. When the radial push-blocking card head is circumferentially rotating and pushing the card within the annular groove, the radial push-blocking card head is a radial push-blocking card head; when the radial push-blocking card head stops at the card-dispensing end of the annular groove to block the card, the radial push-blocking card head is a radial blocking card head.
3. The card storage slot of the push-block integrated anti-drop card sorting machine as described in claim 2, characterized in that... The push head is located inside the annular groove.
4. The card storage slot of the push-block integrated anti-drop card sorting machine as described in claim 2, characterized in that... The push head is longitudinally fixed to the lower end of the circumferential end of the radial arm of the rod; The through hole has a planar through hole through which the radial arm of the rod rotates and a longitudinal through hole through which the push head passes. The planar through hole and the longitudinal through hole are integrally formed to form an L-shaped through hole.
5. The card storage slot of the integrated push-block anti-drop card sorting machine as described in claim 2, characterized in that... The card-dispensing end of the annular groove is equipped with a positioning sensor, and the radial push-block card head is equipped with a sensing element. The positioning sensor is used to detect the sensing element to position the push-block head.
6. The card storage slot of the integrated push-block anti-drop card sorting machine as described in claim 5, characterized in that... The positioning sensor is located at the bottom of the card-dispensing end of the annular groove; The sensing element is disposed on the push head of the radial push head.
7. The card storage slot of the push-block integrated anti-drop card sorting machine as described in claim 5, characterized in that... The positioning sensor is disposed on the inner wall of the card-dispensing end of the annular groove; The sensing element is disposed on the radial arm of the rod of the radial push-block head.
8. The card storage slot of the integrated push-block anti-drop card sorting machine as described in claim 2, characterized in that... The annular groove has a motor at its center; The center end of the radial push-block head is connected to the motor drive.
9. The card storage slot of the push-block integrated anti-drop card sorting machine as described in claim 8, characterized in that... The annular groove has a hollow inner cavity at its center, and the motor is disposed inside the hollow inner cavity.
10. The card storage slot of the push-block integrated anti-drop card sorting machine as described in claim 1, characterized in that... With the forward direction of the square entertainment card as a reference, the annular groove includes a passage section from the card-in end to the card-out end for the square entertainment card to pass through and a non-passing section from the card-out end to the card-in end; when the push-block card head rotates circumferentially within the passage section of the annular groove, the push-block card head is a push-block card head.
11. The card storage slot of the push-block integrated anti-drop card sorting machine as described in claim 10, characterized in that... The outer wall of the card-entry end of the annular groove has an entrance for the passage of the square entertainment cards.
12. The card storage slot of the integrated push-block anti-drop card sorting machine as described in claim 10, characterized in that... The push-stop sign head is a radial push-stop sign head, which has a radial arm and a push-stop head, and the push-stop head is fixed to the peripheral end of the radial arm. A guide plate is provided on one side of the entrance of the annular groove, and the guide plate separates the passage section and the non-passage section. There is a gap between the guide plate and the inner wall of the annular groove, which allows the peripheral end of the radial push-block head to pass through.
13. The card storage slot of the integrated push-block anti-drop card sorting machine as described in claim 1, characterized in that... The card storage slot of the card sorting machine is a card storage slot for a mahjong machine or a dominoes machine.
14. A card sorting machine, characterized in that... The card sorting machine has a card storage slot with an integrated push-block anti-drop card sorting machine as described in any one of claims 1 to 12.
15. The card sorting machine as described in claim 14, characterized in that... The card sorting machine is a mahjong machine or a dominoes machine.