CN220546563U - Noise-reducing tile pushing mechanism of mahjong machine - Google Patents

Noise-reducing tile pushing mechanism of mahjong machine Download PDF

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Publication number
CN220546563U
CN220546563U CN202321925703.6U CN202321925703U CN220546563U CN 220546563 U CN220546563 U CN 220546563U CN 202321925703 U CN202321925703 U CN 202321925703U CN 220546563 U CN220546563 U CN 220546563U
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China
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driving wheel
base
push rod
seat
guide
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CN202321925703.6U
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Chinese (zh)
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郑景理
姚国政
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Guangzhou Madian Technology Co ltd
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Guangzhou Madian Technology Co ltd
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Abstract

The utility model provides a noise-reducing tile pushing mechanism of a mahjong machine, which comprises a base, a push rod and a driving wheel, wherein the push rod and the driving wheel are both rotatably arranged on the base, a guide groove is formed in the push rod, the guide groove comprises a stable section and a speed changing section which is inclined forwards relative to the stable section, a guide piece is arranged on the driving wheel and moves circumferentially along with the rotation of the driving wheel, the guide piece is arranged in the guide groove, the push rod has tile pushing action and retracting action, and when the driving wheel rotates and the guide piece moves in the stable section, the push rod pushes tiles; when the driving wheel rotates and the guide piece moves from top to bottom in the guide groove, the push rod performs retracting action; because the shapes of the speed changing section and the stable section, and the push rod is directly arranged on the base in a rotating way, the speed of pushing and withdrawing the cards is more obvious, the speed of pushing the cards is low, the speed of withdrawing the cards is low, the whole operation speed is not reduced, and meanwhile, the touching sound during pushing the cards is reduced, so that the noise reduction is realized.

Description

Noise-reducing tile pushing mechanism of mahjong machine
Technical Field
The utility model relates to the field of mahjong machine hosts, in particular to a noise-reducing tile pushing mechanism of a mahjong machine.
Background
At present, most of automatic mahjong arranging machines adopt driving wheels to drive two sliding blocks which are respectively positioned in the longitudinal direction and the transverse direction to slide so as to drive a mahjong receiving seat and a mahjong pushing head to move, thus finishing the actions of stacking and pushing the mahjong, and the mahjong machine has relatively more accessories and complex assembly; in the tile pushing movement, when the tile pushing head pushes the mahjong tiles too fast, the tile pushing head and the mahjong tiles collide, so that noise is generated, and the experience of a user is reduced.
The Chinese patent of CN201520388069.6 discloses a stacking and pushing machine head with an improved structure, which comprises a machine head box, a card bearing block assembly, a guide rod, a circuit board, a card pushing swing arm, a card pushing head, a flat pushing sliding block, an inner curve wheel, a card bearing block swing rod, a machine head box cover and a machine head motor; the flat pushing sliding block track groove which is matched and arranged between the flat pushing sliding block and the inner curve wheel is a seven-shaped sliding groove, and the flat pushing sliding block track groove is divided into a straight line section and an arc section, wherein: the included angle between the straight line segment and the vertical plane of the horizontal pushing sliding block is 0-30 degrees, and the central angle of the arc segment is 90-120 degrees; the designed machine head has the advantages that the card pushing head is faster in the pushing process, the striking sound is more obvious, and the noise in the moving process can not meet the requirements of users; but if the moving speed of the horizontal pushing sliding block is slowed down, the working time of the machine head is influenced.
Therefore, a card pushing mechanism capable of reducing noise and not reducing the working speed is needed.
Disclosure of Invention
In order to solve the technical problems, the utility model provides a noise-reducing tile pushing mechanism of a mahjong machine, which comprises a base, a push rod and a driving wheel, wherein the push rod and the driving wheel are both rotatably arranged on the base, a guide groove is formed in the push rod, the guide groove comprises a stable section and a speed changing section which is inclined forwards relative to the stable section, a guide piece is arranged on the driving wheel and moves along with the rotation of the driving wheel in a circular manner, the guide piece is arranged in the guide groove, the push rod has tile pushing action and retracting action, and when the driving wheel rotates, the guide piece moves in the stable section, the push rod pushes tiles; when the driving wheel rotates and the guide piece moves from top to bottom in the guide groove, the push rod performs retracting action; because the shapes of the speed changing section and the stable section, and the push rod is directly arranged on the base in a rotating way, the speed of pushing and withdrawing the cards is more obvious, the speed of pushing the cards is low, the speed of withdrawing the cards is high, the whole operation speed is not reduced, and meanwhile, the touching sound during pushing the cards is reduced, so that the noise reduction is realized.
The technical scheme of the utility model is realized as follows:
a mahjong machine noise reduction tile pushing mechanism, comprising:
a base configured to support a main body of the card pushing mechanism;
the push rod is rotatably arranged on the base; the push rod is provided with a guide groove, the guide groove comprises a stable section and a speed changing section, and an included angle is formed between the stable section and the speed changing section;
the driving wheel is rotatably arranged on the base, a guide piece is arranged on the driving wheel, and the guide piece performs circular motion along with the rotation of the driving wheel; the guide piece is arranged in the guide groove, and the driving wheel is configured to move in the guide groove and drive the push rod to rotate relative to the base when the driving wheel rotates relative to the base;
the push rod has a card pushing action and a card withdrawing action, and when the driving wheel rotates and the guide piece moves in the stable section, the push rod performs the card pushing action; when the driving wheel rotates and the guide piece moves from top to bottom in the guide groove, the push rod performs retracting action;
the smooth section is positioned above the speed changing section, and the speed changing section is inclined from top to bottom towards the direction of the card pushing action.
Related parts such as a translation sliding block and a translation guide rod are omitted, a mechanism is simplified, cost is saved, and meanwhile assembly is simpler and faster.
Setting the direction of the card pushing action to be the front, and enabling the speed changing section to incline forwards relative to the stable section, so that the speed of driving the push rod to move is different when the guide piece moves in the stable section and the speed changing section, particularly when the guide piece enters the speed changing section from the stable section from top to bottom and the guide piece moves in the speed changing section from top to bottom, the driving push rod rotates faster, namely the speed of the card withdrawing action is faster than the speed of the card pushing action; the guide piece moves circularly when the driving wheel rotates, and moves downwards and backwards when the guide piece retracts, and the speed change section tilts forwards, so that the retracting movement of the push rod is faster due to the cooperation of the guide piece and the speed change section; above-mentioned guide way and guide, cooperation push rod make rotary motion for it is more obvious to push away the tablet and withdraw the speed, pushes away the tablet speed slowly, withdraws fast, when not reducing whole operation speed, reduces the touching noise when pushing away the tablet, thereby realizes making an uproar falls.
Preferably, the lifting device further comprises a swinging rod and a lifting seat, wherein the swinging rod is rotatably arranged on the base, the lifting seat is rotatably connected with the swinging rod, and the lifting seat is slidably arranged on the base along the vertical direction; when the driving wheel rotates relative to the base, the swinging rod and the push rod are driven to rotate relative to the base; the swinging rod is configured to drive the lifting seat to lift on the base when rotating relative to the base; the lifting seat is configured to support the mahjong tiles. The mahjong pieces are stacked together at one time, the lifting seat can move up and down, the mahjong pieces are positioned at a higher position when the first mahjong piece is supported, then the mahjong pieces are lowered to stack the second mahjong piece, after the two mahjong pieces are stacked, the push rod makes tile pushing movement to push the two mahjong pieces on the lifting seat to move forwards, and accordingly the mahjong pieces are repeatedly arranged, and automatic mahjong tile arranging is completed.
Preferably, the swinging rod and the push rod are respectively positioned at two sides of the driving wheel, the side of the driving wheel facing the swinging rod is provided with a cam groove, the middle part of the swinging rod is provided with a corresponding guide wheel, and the guide wheel is arranged in the cam groove. The swinging of the swinging rod is realized through the guide wheel and the cam groove, so that the lifting of the lifting seat is realized; the cam groove can enable lifting action of the lifting seat to be carried out under a specific angle, and meanwhile, the guide groove and the guide piece are matched to drive the push rod to move under the specific angle, so that orderly card stacking and pushing work is realized.
Preferably, the guide member and the guide wheel are rollers. The friction between the guide piece, the guide wheel and the driving wheel is reduced, so that the movement of the push rod and the lifting seat is smoother.
Preferably, a vertical sliding seat is arranged outside the base, a vertical sliding groove is formed in the sliding seat, a sliding rod is arranged below the lifting seat, and the sliding rod is inserted into the sliding groove of the sliding seat.
Preferably, the base beside the sliding seat is provided with an avoidance groove, and the swinging rod extends out of the avoidance groove and is rotationally connected with the lifting seat.
Preferably, the upper part of the base extends sideways to form a mounting seat, the mounting seat is provided with a photoelectric counting seat, the photoelectric counting seat is arranged beside the lifting table, and the photoelectric counting seat is configured to monitor the number of mahjong tiles supported on the lifting seat. The photoelectric counting seat monitors the number of mahjong tiles supported on the lifting table so as to give a signal for the movement of the driving wheel, so that the lifting seat ascends and descends along with the movement of the driving wheel, when the photoelectric counting seat monitors that no mahjong tile exists on the lifting seat, the photoelectric counting seat controls the driving wheel to rotate, so that the lifting seat is at the highest position to be ready for bearing a first mahjong tile, and when the photoelectric counting seat monitors that one mahjong tile exists on the lifting seat, the photoelectric counting seat controls the driving wheel to rotate, so that the lifting seat descends to be ready for bearing a second mahjong tile.
Preferably, the driving wheel is inserted with a driving shaft sleeve for connecting the motor, the swinging rod is positioned above the driving shaft sleeve, and a notch for attaching the driving shaft sleeve is formed in the lower portion of the swinging rod. When the lifting seat is at the lowest height, the notch of the swinging rod is attached to the transmission shaft sleeve, that is, the lowest point of the swinging stroke of the swinging rod is lower, and then the highest point of the swinging stroke of the swinging rod is also lower, so that the whole structure is more compact.
Preferably, the base is provided with a motor, the motor is in transmission connection with the driving wheel, and the motor drives the driving wheel to rotate relative to the base.
The design starting point, the idea and the beneficial effects of the utility model adopting the technical scheme are as follows:
1. setting the direction of the card pushing action to be the front, and enabling the speed changing section to incline forwards relative to the stable section, so that the speed of driving the push rod to move is different when the guide piece moves in the stable section and the speed changing section, particularly when the guide piece enters the speed changing section from the stable section from top to bottom and the guide piece moves in the speed changing section from top to bottom, the driving push rod rotates faster, namely the speed of the card withdrawing action is faster than the speed of the card pushing action; the guide piece moves circularly when the driving wheel rotates, and moves downwards and backwards when the guide piece retracts, and the speed change section tilts forwards, so that the retracting movement of the push rod is faster due to the cooperation of the guide piece and the speed change section; above-mentioned guide way and guide, cooperation push rod make rotary motion for it is more obvious to push away the tablet and withdraw the speed, pushes away the tablet speed slowly, withdraws fast, when not reducing whole operation speed, reduces the touching noise when pushing away the tablet, thereby realizes making an uproar falls.
2. Related parts such as a translation sliding block and a translation guide rod are omitted, a mechanism is simplified, cost is saved, and meanwhile assembly is simpler and faster.
3. The scheme has the advantages of few accessories, small volume, simple assembly, low cost, low tile pushing noise, low failure rate and durability.
Drawings
FIG. 1 is a schematic perspective view of the mechanism in an initial state in an embodiment of the present utility model;
FIG. 2 is a schematic perspective view of the mechanism of the present utility model when the cover is mounted in the embodiment;
FIG. 3 is an exploded view of the mechanism in an embodiment of the utility model;
FIG. 4 is a side view of the mechanism in an initial state in an embodiment of the utility model;
FIG. 5 is a partial cross-sectional view of the mechanism in an initial state in an embodiment of the utility model;
FIG. 6 is a schematic perspective view of the guide groove and the guide wheel in the embodiment of the utility model;
FIG. 7 is an illustration of the present utility model in an initial state with the guide wheel in the guide slot gear stage;
FIG. 8 is a schematic view of the present utility model with the guide wheels in the stationary segment of the guide slot during a card pushing action;
fig. 9 is a schematic view of the utility model in a guide slot gear shift stage with the guide wheel in a retracting motion.
The reference numerals are as follows: a base 1; a push rod 2; a card pushing head 21; a driving wheel 3; a guide groove 4; a plateau 41; a speed change section 42; a guide 5; a swinging rod 6; a lifting seat 7; a sliding seat 8; a chute 81; the avoidance groove 9; a slide bar 10; a rotating seat 11; a cam groove 12; a guide wheel 13; a mounting base 14; a photoelectric counting seat 15; a motor 16; a driving sleeve 17; a notch 18; a cover 19.
Detailed Description
In order that the above-recited objects, features and advantages of the present utility model will be more clearly understood, a more particular description of the utility model will be rendered by reference to the appended drawings and appended detailed description. It should be noted that, in the case of no conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model, however, the present utility model may be practiced in other ways than those described herein, and therefore the scope of the present utility model is not limited to the specific embodiments disclosed below.
In the description of the present utility model, the term "at least one" refers to one or more, unless explicitly defined otherwise. The terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
The specific embodiments of the present utility model are as follows:
1-3 and 7-9, the utility model provides a noise-reducing tile pushing mechanism of a mahjong machine, which comprises:
a base 1 configured as a main body support of the card pushing mechanism;
the push rod 2 is rotatably arranged on the base 1; the push rod 2 is provided with a guide groove 4, the guide groove 4 comprises a stable section 41 and a variable speed section 42, and an included angle is formed between the stable section 41 and the variable speed section 42;
the driving wheel 3 is rotatably arranged on the base 1, a guide piece 5 is arranged on the driving wheel 3, and the guide piece 5 performs circular motion along with the rotation of the driving wheel 3; the guide piece 5 is arranged in the guide groove 4, and the driving wheel 3 is configured such that when the driving wheel 3 rotates relative to the base 1, the guide piece 5 moves in the guide groove 4 and drives the push rod 2 to rotate relative to the base 1;
the push rod 2 has a card pushing action and a card retracting action, and when the driving wheel 3 rotates and the guide piece 5 moves in the stationary section 41, the push rod 2 performs the card pushing action; when the driving wheel 3 rotates and the guide piece 5 moves from top to bottom in the guide groove 4, the push rod 2 performs retracting action;
the stationary section 41 is located above the speed change section 42, and the speed change section 42 is inclined from top to bottom toward the direction of the card pushing action.
Related parts such as a translation sliding block and a translation guide rod are omitted, a mechanism is simplified, cost is saved, and meanwhile assembly is simpler and faster.
Setting the direction of the card pushing action to the front, the speed change section 42 is inclined forward relative to the stationary section 41, so that the speed of driving the push rod 2 is different when the guide 5 moves in the stationary section 41 and the speed change section 42, particularly when the guide 5 enters the speed change section 42 from the stationary section 41 from top to bottom and when the guide 5 moves in the speed change section 42 from top to bottom, the push rod 2 is driven to rotate faster, that is, the speed of the retracting action is faster than the speed of the card pushing action; because the guide piece 5 performs circular motion when the driving wheel 3 rotates, the guide piece 5 moves downwards and backwards when in retraction, and the speed change section 42 tilts forwards, the two are matched, so that the retraction motion of the push rod 2 is faster; the guide groove 4 and the guide piece 5 are matched with the push rod 2 to perform rotary motion, so that the card pushing and withdrawing speed is more obvious, the card pushing speed is low, the withdrawing speed is high, the whole operation speed is not reduced, and meanwhile, the hitting noise during card pushing is reduced, so that noise reduction is realized.
Specifically, as shown in fig. 3-6, the device further comprises a swinging rod 6 and a lifting seat 7, wherein the swinging rod 6 is rotatably arranged on the base 1, the lifting seat 7 is rotatably connected with the swinging rod 6, and the lifting seat 7 is slidably arranged on the base 1 along the vertical direction; when the driving wheel 3 rotates relative to the base 1, the swinging rod 6 and the push rod 2 are driven to rotate relative to the base 1; the swinging rod 6 is configured to drive the lifting seat 7 to lift on the base 1 when the swinging rod 6 rotates relative to the base 1; the lifting seat 7 is configured to support mahjong tiles. Still further, the base 1 is a box body, the driving wheel 3, the swinging rod 6 and the push rod 2 are all rotatably connected inside the base 1, a vertical sliding seat 8 is arranged outside the base 1, a vertical sliding groove 81 is formed in the sliding seat 8, a sliding rod 10 is arranged below the lifting seat 7, and the sliding rod 10 is inserted into the sliding groove 81 of the sliding seat 8; the push rod 2 comprises a tile pushing head 21 positioned at the upper end, the tile pushing head 21 is used for pushing mahjong tiles, and the tile pushing head 21 is positioned outside the base 1; the base 1 beside the sliding seat 8 is provided with an avoidance groove 9, and the swinging rod 6 extends out of the avoidance groove 9 and is rotationally connected with the lifting seat 7; the two sliding seats 8 are respectively arranged at the two end parts of the base 1 at intervals left and right, and the two sliding rods 10 are correspondingly arranged below the left end part and the right end part of the lifting seat 7; a rotating seat 11 extends downwards on the lifting seat 7 between the two slide bars 10, and the lower end part of the rotating seat 11 is hinged with the swinging rod 6.
As shown in fig. 4 and 5, the oscillating bar 6 and the push rod 2 are respectively positioned at two sides of the driving wheel 3, one side of the driving wheel 3 facing the oscillating bar 6 is provided with a cam groove 12, the middle part of the oscillating bar 6 is provided with a corresponding guide wheel 13, and the guide wheel 13 is arranged in the cam groove 12; the guide piece 5 and the guide wheel 13 are rollers, so that friction between the guide piece 5, the guide wheel 13 and the driving wheel 3 is reduced, and movement of the push rod 2 and the lifting seat 7 is smoother; the swinging of the swinging rod 6 is realized through the guide wheel 13 and the cam groove 12, so that the lifting of the lifting seat 7 is realized; the cam groove 12 can enable the lifting action of the lifting seat 7 to be carried out under a specific angle, and meanwhile, the push rod 2 is driven to move under the specific angle by matching the guide groove 4 and the guide piece 5, so that orderly card stacking and pushing work is realized.
As shown in fig. 2-6, the upper part of the base 1 extends sideways and is provided with a mounting seat 14, the mounting seat 14 is provided with a photoelectric counting seat 15, the photoelectric counting seat 15 is positioned beside the lifting table, and the photoelectric counting seat 15 is configured to monitor the number of mahjong tiles supported on the lifting seat 7; the photoelectric counting seat 15 monitors the number of mahjong tiles supported on the lifting table so as to give a signal for the movement of the driving wheel 3, so that the lifting seat 7 is lifted along with the movement of the driving wheel 3, when the photoelectric counting seat 15 monitors that no mahjong tile exists on the lifting seat 7, the photoelectric counting seat 15 controls the driving wheel 3 to rotate, so that the lifting seat 7 is at the highest position to be ready for supporting a first mahjong tile, and when the photoelectric counting seat 15 monitors that one mahjong tile exists on the lifting seat 7, the photoelectric counting seat 15 controls the driving wheel 3 to rotate, so that the lifting seat 7 descends to be ready for supporting a second mahjong tile.
The photoelectric counting seat 15 controls the driving wheel 3 to rotate by controlling the motor 16, the base 1 is provided with the motor 16, the motor 16 is in transmission connection with the driving wheel 3, and the motor 16 drives the driving wheel 3 to rotate relative to the base 1; the driving wheel 3 is inserted with a driving shaft sleeve 17 for connecting the motor 16, the swinging rod 6 is positioned above the driving shaft sleeve 17, and a notch 18 for attaching the driving shaft sleeve 17 is formed in the lower part of the swinging rod 6; when the lifting seat 7 is at the lowest height, the notch 18 of the swinging rod 6 is attached to the driving shaft sleeve 17, that is, the lowest point of the swinging stroke of the swinging rod 6 is lower, and then the highest point of the swinging stroke of the swinging rod 6 is also lower, so that the whole structure is more compact.
The mahjong pieces are stacked together at one time, the lifting seat 7 can move up and down, the mahjong pieces are positioned at a higher position when the first mahjong piece is supported, then the mahjong pieces are lowered to stack the second mahjong piece, after the two mahjong pieces are stacked, the push rod 2 makes pushing movement to push the two mahjong pieces on the lifting seat 7 to move forwards, and the mahjong pieces are repeatedly arranged, so that automatic mahjong tile arranging is completed.
The working process of the mechanism is as follows: as shown in fig. 4, 5 and 7-9, the mechanism has an initial state, in which the lifting seat 7 is at the highest point, the tile pushing head 21 is at the rearmost position, when the first mahjong tile falls down and is sensed by the photoelectric counting seat 15, the motor 16 is controlled to rotate, so that the driving wheel 3 rotates to drive the swinging rod 6 and the push rod 2 to rotate relative to the base 1, at the moment, the lifting seat 7 descends to prepare for supporting the next mahjong tile, and the tile pushing head 21 slightly approaches forwards to the mahjong tile; when the second mahjong tile falls onto the lifting table, the second mahjong tile is sensed by the photoelectric counting seat 15 again, the motor 16 is controlled to rotate, the driving wheel 3 drives the swinging rod 6 and the push rod 2 to rotate relative to the base 1 again, the lifting seat 7 keeps motionless, and the tile pushing head 21 moves forwards and pushes two mahjong tiles located on the lifting seat 7 forwards; after the card pushing movement is completed, the card pushing head 21 moves back quickly, the lifting seat 7 rises upwards, and the card pushing head and the lifting seat return to the initial state, so that one cycle is completed; the above working process is to control the movement of the card pushing head 21 through the guide groove 4 and the guide piece 5, control the movement of the lifting seat 7 through the cam groove 12 and the guide wheel 13, and control the movement sequence of the card pushing head 21 and the lifting seat 7 through the dislocation relation between the guide groove 4, the guide piece 5, the cam groove 12 and the guide wheel 13.
As shown in fig. 2 and 3, the mechanism further comprises a cover 19, the cover 19 is fixedly connected with the base 1 through screws, and the cover 19 covers the base 1 and is used for sealing the inside of the base 1.

Claims (9)

1. The utility model provides a mahjong machine falls and makes an uproar mechanism of pushing away which characterized in that includes:
a base configured to support a main body of the card pushing mechanism;
the push rod is rotatably arranged on the base; the push rod is provided with a guide groove, the guide groove comprises a stable section and a speed changing section, and an included angle is formed between the stable section and the speed changing section;
the driving wheel is rotatably arranged on the base, a guide piece is arranged on the driving wheel, and the guide piece performs circular motion along with the rotation of the driving wheel; the guide piece is arranged in the guide groove, and the driving wheel is configured to move in the guide groove and drive the push rod to rotate relative to the base when the driving wheel rotates relative to the base;
the push rod has a card pushing action and a card withdrawing action, and when the driving wheel rotates and the guide piece moves in the stable section, the push rod performs the card pushing action; when the driving wheel rotates and the guide piece moves from top to bottom in the guide groove, the push rod performs retracting action;
the smooth section is positioned above the speed changing section, and the speed changing section is inclined from top to bottom towards the direction of the card pushing action.
2. The mahjong machine noise reduction tile pushing mechanism according to claim 1, wherein: the lifting seat is connected with the swinging rod in a rotating way, and is arranged on the base in a sliding way along the vertical direction; when the driving wheel rotates relative to the base, the swinging rod and the push rod are driven to rotate relative to the base; the swinging rod is configured to drive the lifting seat to lift on the base when rotating relative to the base; the lifting seat is configured to support the mahjong tiles.
3. The mahjong machine noise reduction tile pushing mechanism according to claim 2, wherein: the swinging rod and the push rod are respectively positioned at two sides of the driving wheel, the driving wheel is provided with a cam groove towards one side of the swinging rod, the middle part of the swinging rod is provided with a corresponding guide wheel, and the guide wheel is arranged in the cam groove.
4. The mahjong machine noise reduction tile pushing mechanism according to claim 3, wherein: the guide piece and the guide wheel are rollers.
5. The mahjong machine noise reduction tile pushing mechanism according to claim 2, wherein: the outside of the base is provided with a vertical sliding seat, a vertical sliding groove is formed in the sliding seat, a sliding rod is arranged below the lifting seat, and the sliding rod is inserted into the sliding groove of the sliding seat.
6. The mahjong machine noise reduction tile pushing mechanism according to claim 5, wherein: the base beside the sliding seat is provided with an avoidance groove, and the swinging rod extends out of the avoidance groove and is rotationally connected with the lifting seat.
7. The mahjong machine noise reduction tile pushing mechanism according to claim 2, wherein: the upper part of the base extends sideways to form a mounting seat, a photoelectric counting seat is arranged on the mounting seat, the photoelectric counting seat is arranged beside the lifting table, and the photoelectric counting seat is configured to monitor the number of mahjong tiles supported on the lifting seat.
8. The mahjong machine noise reduction tile pushing mechanism according to claim 2, wherein: the action wheel is inserted and is equipped with the transfer sleeve that is used for connecting the motor, and the swinging arms is located the transfer sleeve top, and the breach that is used for laminating the transfer sleeve has been seted up to the swinging arms lower part.
9. The mahjong machine noise reduction tile pushing mechanism according to claim 1, wherein: the base is provided with a motor, the motor is in transmission connection with the driving wheel, and the motor drives the driving wheel to rotate relative to the base.
CN202321925703.6U 2023-07-20 2023-07-20 Noise-reducing tile pushing mechanism of mahjong machine Active CN220546563U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321925703.6U CN220546563U (en) 2023-07-20 2023-07-20 Noise-reducing tile pushing mechanism of mahjong machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321925703.6U CN220546563U (en) 2023-07-20 2023-07-20 Noise-reducing tile pushing mechanism of mahjong machine

Publications (1)

Publication Number Publication Date
CN220546563U true CN220546563U (en) 2024-03-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321925703.6U Active CN220546563U (en) 2023-07-20 2023-07-20 Noise-reducing tile pushing mechanism of mahjong machine

Country Status (1)

Country Link
CN (1) CN220546563U (en)

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