Rotary dealing machine

By adopting the parallel base setting of the rotating motor and the design of the worm transmission system in the dealer, the problems of large space and noise of the motor are solved, and the compact structure and stable rotation of the dealer are achieved, improving the user experience and adaptability.

CN223287594UActive Publication Date: 2025-09-02WEIXING CHUANGKE(SHENZHEN)TECH CO LTD
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Patent Information

Application Number
CN202421689822.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-09-02
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

The rotary drive motor of existing dealers requires the motor output shaft to be set downward, which takes up a large space and affects the overall volume. At the same time, there are problems such as high cost, poor adaptability and high noise.

Method used

The motor output shaft of the rotating motor is arranged in parallel with the base, and the double-layer gear structure co-rotating with the coaxial axis through the worm transmission system to achieve power transmission and deceleration effects, and is rotatably positioned in combination with the photoelectric induction component.

Benefits of technology

It achieves a compact structure, low noise and good adaptability of the dealer, improves the user experience and rotation stability of the dealer, and can deal cards in multiple directions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a rotary dealing machine and relates to the technical field of entertainment products. The dealing machine comprises a dealing machine main body, a base; the base can rotate relative to the dealing machine main body; the rotating motor is used for driving the dealing machine main body and the base to rotate relatively; the rotating motor is arranged in the dealing machine main body, a motor output shaft of the rotating motor is parallel to the base, and an output worm is arranged on the motor output shaft; the rotating fluted disc is arranged in the base, and the upper end of a rotating shaft of the rotating fluted disc is rotationally connected to the bottom of the dealing machine body; the transmission assembly is arranged in the card dealing machine body, one end of the transmission assembly is connected with an output worm on the output shaft of the motor, and the other end of the transmission assembly is connected with the rotating fluted disc, so that power of the rotating motor is transmitted downwards to the rotating fluted disc, and the base and the card dealing machine body are driven to rotate relative to each other. The technical scheme has the advantages of being good in adaptability, stable in operation, low in noise, compact in structure, small in size and low in production cost.
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Description

Technical Field

[0001] The utility model relates to the technical field of entertainment products, in particular to a rotary card dealing machine. Background Art

[0002] Poker, a common recreational item in people's lives, is beloved by the public for its diverse gameplay and appeal to all ages. With the advancement of technology, a variety of machines have emerged to replace manual dealing, significantly enhancing the poker experience. Currently, most card dealing machines feature a rotating card dealing function. The rotating body of the card dealing machine allows cards to be dealt in multiple directions, achieving optimal results and satisfying user gaming needs.

[0003] However, the rotary drive of the card dealing machine requires that the output shaft of the motor be set downward. Using a general motor will occupy a large space inside the card dealing machine, affecting the overall volume of the card dealing machine. Using some motors with the horizontal output shaft facing downward has problems such as high cost, poor adaptability, and high operating noise, which affects the overall user experience of the card dealing machine. Utility Model Content

[0004] The purpose of the utility model is to provide a rotary card dealing machine in view of the defects and shortcomings of the existing technology, which has the advantages of good adaptability, stable operation, low noise, compact structure, small size and low production cost.

[0005] To achieve the above-mentioned purpose, the technical solution adopted by the present invention is: a rotary card dealing machine, comprising:

[0006] The main body of the card dealing machine;

[0007] A base is provided at the bottom of the card dealing machine body and is used to provide support for the card dealing machine body; the base is rotatable relative to the card dealing machine body;

[0008] a rotary motor for driving the card dealing machine body and the base to rotate relative to each other; the rotary motor is disposed in the card dealing machine body, the motor output shaft of the rotary motor is disposed parallel to the base, and an output worm is disposed on the motor output shaft;

[0009] A rotating toothed disc is disposed in the base, and the upper end of the rotating shaft of the rotating toothed disc is rotatably connected to the bottom of the card dealing machine body;

[0010] A transmission assembly is disposed in the main body of the card dealing machine, one end of the transmission assembly being connected to the output worm on the output shaft of the motor, and the other end being connected to the rotating gear disc, so as to transmit the power of the rotating motor downward to the rotating gear disc, thereby driving the base and the main body of the card dealing machine to rotate relative to each other.

[0011] The present invention is further provided that the transmission assembly includes: a first gear connected to the output worm, a second gear connected to the first gear, and a third gear connected to the second gear and the rotating gear.

[0012] The present invention is further configured such that the first gear is a coaxial and corotating double-layer gear, comprising: a first ring gear connected to the output worm, and a second ring gear connected to the second gear, the second ring gear being located below the first ring gear, and the second ring gear being smaller than the first ring gear.

[0013] The utility model further provides that the third gear is a coaxial and corotating double-layer gear, including: a third gear ring connected to the second gear, and a fourth gear ring connected to the rotating gear disc, the fourth gear ring is located below the third gear ring, and the fourth gear ring is smaller than the third gear ring.

[0014] The present invention further provides that the second gear is a coaxial and corotating double-layer gear, including: a fifth gear ring connected to the first gear, and a sixth gear ring connected to the third gear, the sixth gear ring is located below the fifth gear ring, and the sixth gear ring is smaller than the fifth gear ring.

[0015] The present invention is further provided with a mounting groove 330 and a fixing plate for mounting the rotating motor in the main body of the card dealing machine, and an output hole for extending the output shaft of the motor is provided on the fixing plate.

[0016] The present invention is further provided with a detachable dust cover installed inside the main body of the card dealing machine and above the transmission assembly.

[0017] The present invention is further provided with a positioning gear connected to the rotating gear disc or the output end of the transmission component, and a rotation sensing component for detecting the rotation state of the positioning gear is provided on the positioning gear.

[0018] The utility model is further configured that the positioning gear is rotatably arranged at the bottom of the card dealing machine body and is meshedly connected with the rotating gear disc;

[0019] The rotation sensing component is configured as a photoelectric sensing component, comprising: a plurality of sensing sheets evenly arranged around the circumference of the positioning gear, and a photoelectric sensor matched with the sensing sheets.

[0020] After adopting the above technical solution, the beneficial effects of the utility model are:

[0021] 1. In this utility model, the rotary motor is horizontally positioned within the main body of the card dealing machine, with its output shaft arranged parallel to the base. This allows for a more convenient and economical installation of the rotary motor within the main body of the card dealing machine, ensuring a compact interior space and reducing the overall size of the card dealing machine. An output worm is provided on the motor output shaft, which delivers power to the rotary motor. This not only makes the rotary motor more compact, but also provides a smoother output and lowers operating noise, enhancing the user experience of the card dealing machine.

[0022] 2. In the present invention, the setting of the transmission structure makes the rotary motor more adaptable to the card dealing machine. The transmission component can also be set according to the actual required rotation speed of the card dealing machine, the installation position of the rotary motor, the speed of the drive motor, etc., to set the specific structure of the transmission component, the position of each gear, and the selection of the number of gear teeth to achieve a good transmission effect and enhance the experience of the rotary card dealing machine.

[0023] 3. In the present invention, the first gear, the second gear and the third gear are all configured as coaxial and corotating double-layer gears, and the output teeth of each gear are smaller than the input teeth, which can achieve a certain deceleration effect, making the transmission component structure compact while achieving a good deceleration effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0025] Figure 1 It is a structural diagram of the utility model;

[0026] Figure 2 This is a structural schematic diagram from another perspective of the present invention;

[0027] Figure 3 It is a schematic diagram of the explosion structure of the utility model;

[0028] Figure 4 This is a schematic diagram of the exploded structure of the utility model from another perspective;

[0029] Figure 5 yes Figure 4 , an enlarged schematic diagram of point A;

[0030] Figure 6 This is a structural diagram of the utility model's rotating motor, transmission assembly, rotating gear plate and positioning gear;

[0031] Figure 7 This is a schematic structural diagram of the positioning gear of the utility model;

[0032] Figure 8 It is a structural diagram of the transmission component of the utility model.

[0033] Explanation of the accompanying reference numerals: 100, main body of the card dealing machine; 200, base; 110, card bin; 120, card dealing channel; 130, card dealing mechanism; 300, rotating motor; 320, output worm; 400, rotating gear disc; 500, positioning gear; 610, sensor plate; 620, photoelectric sensor; 210, arc-shaped fixed groove; 800, anti-slip pad; 900, transmission assembly; 910, first gear; 911, first ring gear; 912, second ring gear; 920, second gear; 921, fifth ring gear; 922, sixth ring gear; 930, third gear; 931, third ring gear; 932, fourth ring gear; 940, dust cover; 330, mounting groove; 340, fixing plate; 321, output hole. DETAILED DESCRIPTION

[0034] The present invention will be described in further detail below with reference to the accompanying drawings.

[0035] This specific embodiment is merely an explanation of the present invention and is not a limitation of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed, but as long as they are within the scope of the claims of the present invention, they are protected by patent law.

[0036] This embodiment relates to a rotary card dealing machine, such as Figure 1-8 As shown, it includes: a card dealing machine body 100 and a base 200.

[0037] The card dealing machine body 100 is used to dispense playing cards from within the card dealing machine body 100, achieving the effects of dealing and splitting cards. In this embodiment, the card dealing machine body 100 is provided with: a card compartment 110 for accommodating playing cards; a card delivery channel 120 located at the bottom front of the card compartment 110, connecting the card compartment 110 with the exterior of the card dealing machine body 100; and a card delivery mechanism 130 that drives the playing cards in the card compartment 110 through the card delivery channel 120 to the exterior of the card dealing machine body 100, thereby achieving a good card delivery effect. Of course, in other embodiments, the card dealing machine body 100 can also be configured with other structures to achieve the card delivery function.

[0038] The base 200 is provided at the bottom of the main body 100 of the card dealing machine and is used to support the main body 100 of the card dealing machine. The base 200 can rotate relative to the main body 100 of the card dealing machine, so that the main body 100 of the card dealing machine can deal playing cards in multiple directions, thereby achieving a multi-directional card dealing effect and improving the user experience of the card dealing machine.

[0039] A rotary motor 300 is installed within the main body 100 of the card dealing machine. This motor is used to drive the relative rotation between the main body 100 and the base 200. The rotary motor 300 is horizontally positioned within the main body 100, with its output shaft parallel to the base 200. This allows the rotary motor 300 to be installed within the main body 100 in a suitable and economical manner, ensuring a compact interior space within the main body 100 and reducing the overall size of the card dealing machine. An output worm 320 is installed on the motor output shaft. This worm delivers power to the rotary motor 300, making the structure of the rotary motor 300 more compact and providing smoother output and quieter operation, thus enhancing the user experience of the card dealing machine.

[0040] A rotating gear disc 400 is disposed within the base 200. The upper end of the rotating shaft of the rotating gear disc 400 is rotatably connected to the bottom of the card dealing machine body 100. A transmission assembly 900 is disposed within the card dealing machine body 100. One end of the transmission assembly 900 is connected to the worm on the motor output shaft, and the other end is connected to the rotating gear disc 400, thereby transmitting power from the rotating motor 300 downward to the rotating gear disc 400. The output worm 320 driven by the rotating motor 300 rotates, and the power transmitted by the transmission assembly 900 drives the card dealing machine body 100 to rotate about the rotating shaft of the rotating gear disc 400. This allows the card dealing machine body 100 to rotate relative to the base 200, allowing the card dealing machine body 100 to face different directions, thereby achieving multi-directional card dealing.

[0041] Specifically, in this embodiment, the transmission assembly 900 includes a first gear 910 meshingly connected to the output worm 320, a second gear 920 meshingly connected to the first gear 910, and a third gear 930 meshingly connected to the second gear 920 and the rotating gear. These three gears function to output power from the rotating motor 300 to the rotating toothed disc 400, thereby driving the card dealer. The meshing connection between the first gear 910 and the output worm 320 forms a worm gear transmission system, which transmits power from the rotating motor 300 to the transmission assembly 900. This system provides stable and reliable transmission, low operating noise, and a high transmission ratio. This system effectively reduces the transmission speed from the rotating motor 300 to the rotating toothed disc 400, increases the torque provided by the rotating motor 300 to rotate the card dealer body 100, and achieves a good rotational effect. The setting of the transmission structure makes the rotary motor 300 more adaptable to the card dealing machine. The transmission component 900 can also be set according to the actual required rotation speed of the card dealing machine, the installation position of the rotary motor 300, the speed of the drive motor, etc., to set the specific structure of the transmission component 900, the position of each gear, and the number of gear teeth to achieve a good transmission effect and enhance the experience of the card dealing machine's rotation.

[0042] As a preferred embodiment, the first gear 910 is a coaxial, corotating, double-layer gear comprising a first ring gear 911 meshingly connected to the output worm 320, and a second ring gear 912 meshingly connected to the second gear 920. The output worm 320 can drive the first and second ring gears 911, 912 to rotate simultaneously about the same axis, transmitting power to the second gear 920. The second ring gear 912 is located below the first ring gear 911 and is smaller than the first ring gear 911. The first gear 910 transmits power to the second gear 920 via the second ring gear, achieving a reduction in speed from the first gear 910 to the second gear 920. This ingenious reduction mechanism can achieve a reduction in speed in a relatively small space. Furthermore, the output gear and the second gear 920 are connected to different ring gears on the first gear 910, reducing wear on the same ring gear of the first gear 910 and preventing wear and failure of the first gear 910, which could affect the performance of the card dealing machine.

[0043] In this embodiment, second gear 920 is a coaxial, corotating, double-layer gear comprising a fifth ring gear 921 meshingly connected to the second ring gear of first gear 910DE, and a sixth ring gear 922 meshingly connected to the third ring gear of third gear 930. The first gear can drive fifth and sixth ring gears 921, 922 to rotate simultaneously about the same axis of rotation, thereby transmitting power to third gear 930. Sixth ring gear 922 is located below fifth ring gear 921 and is smaller than fifth ring gear 921, achieving a speed reduction effect from second gear 920 to second gear 930.

[0044] The third gear 930 is also configured as a coaxial, corotating double-layer gear, comprising: a third ring gear 931 meshingly connected to the second gear 920, and a fourth ring gear 932 meshingly connected to the rotating gear disc 400. The second gear 920 can drive the third and fourth ring gears 931, 932 to rotate simultaneously about the same rotation axis, thereby transmitting power to the rotating gear disc 400 and driving the card dealer body 100 to rotate. The fourth ring gear 932 is located below the third ring gear 931, further outputting power downward, allowing the fourth ring gear 932 to better cooperate with the rotating gear disc 400 to achieve rotation of the card dealer. The fourth ring gear 932 is smaller than the third ring gear 931, achieving further deceleration from the third gear 930 to the rotating gear disc 400, making the transmission assembly 900 structure as compact as possible while achieving the desired deceleration effect. As a preferred solution, the third gear ring 931 is larger than the sixth gear 922, thereby improving the transmission deceleration effect between the second gear 920 and the third gear 930; the fifth gear ring 921 is larger than the second gear ring, thereby improving the transmission deceleration effect between the first gear 910 and the second gear 920, thereby increasing the overall transmission ratio of the transmission assembly 900, improving the deceleration effect of the transmission assembly 900, and improving the stability of the card dealing machine.

[0045] As a preferred solution, a mounting groove 330 and a fixing plate 340 for mounting the rotary motor 300 are provided in the main body 100 of the card dealing machine, so as to fix the rotary motor 300 inside the main body 100 of the card dealing machine and achieve a good fixing effect.

[0046] The fixed plate 340 is provided with an output hole 321 through which the power supply output shaft extends, facilitating power output from the rotary motor 300. In this embodiment, a removable dust cover 940 is installed above the transmission assembly 900 within the card dealing machine body 100 to protect the transmission assembly 900 from dust and foreign matter, thereby preventing contamination of the transmission assembly 900 and affecting transmission efficiency.

[0047] As a preferred embodiment, a positioning gear 500 is disposed within the base 200. The positioning gear 500 meshes with the rotating toothed disc 400 on the inner side of the base 2002 or the output end of the transmission assembly 900. A rotation sensing component is provided on the positioning gear 500 for detecting the rotational state of the positioning gear 500. By sensing the state of the positioning gear 500, the rotational state and rotational position of the card dealing machine body 100 are determined, thereby achieving optimal rotational positioning of the card dealing machine body 100. Specifically, in this embodiment, the positioning gear 500 is rotatably disposed at the bottom of the card dealing machine body 100 and meshes with the rotating toothed disc 400 on the base 200. When the card dealing machine body 100 and the base 200 rotate relative to each other, the card dealing machine body 100 will drive the positioning gear 500 to rotate together, and the positioning gear 500 will revolve. The circumference of the positioning gear 500 is engaged with the rotating gear plate 400, so that the circumference of the positioning gear 500 will rotate relative to the rotating gear plate 400, that is, drive the positioning gear 500 to rotate. At this time, the number of rotating teeth of the positioning gear 500 is equal to the number of rotating teeth of the card dealing machine body 100 and the rotating gear plate 400. The rotation state of the positioning gear 500 is sensed by the rotation sensing component, which corresponds to the number of rotating teeth of the positioning gear 500. The rotation state of the card dealing machine body 100 can be calculated, thereby positioning the rotation direction of the card dealing machine body 100. The positioning gear 500 is significantly smaller than the rotating toothed disc 400. By sensing the rotation of the positioning gear 500 to correspond to the rotational state of the card dealing machine body 100 relative to the rotating toothed disc 400, the rotational state of the card dealing machine body 100 can be further refined to sense the rotational state of the card dealing machine body 100, thereby increasing the number of positioning points and positioning accuracy for rotational positioning. Of course, in other embodiments, the positioning gear 500 can also be meshedly connected to the output end of the transmission assembly, namely the fourth ring gear 932, to detect the rotational state of the card dealing machine body 100.

[0048] In this embodiment, the rotation sensing component is configured as a photoelectric sensor component to sense the rotational state of the positioning gear 500. The rotation sensing component includes a sensor plate 610 disposed around the positioning gear 500 and rotating with the positioning gear 500, and a photoelectric sensor 620 fixed to the bottom of the card dealing machine body 100 and cooperating with the sensor plate 610. The photoelectric sensor 620 senses the sensor plate 610 around the positioning gear 500 to determine whether the rotational state of the positioning gear 500 corresponds to the number of teeth on the positioning gear 500, thereby identifying the rotational state of the card dealing machine body 100. This further refines the number of rotational positioning levels of the card dealing machine body 100, resulting in more and more densely distributed positioning points, enabling cards to be dealt in more directions, meeting the needs of more people playing poker games. Furthermore, the denser positioning points enable more detailed and accurate game positioning, ensuring precise and accurate delivery of cards in the desired direction. Of course, in other embodiments, the rotation sensing component can also be configured as a Hall effect sensor component to achieve better positioning results.

[0049] In this embodiment, a non-slip pad 800 is provided at the bottom of the base 200 to increase the friction between the base 200 and the tabletop, preventing the base 200 and the tabletop from sliding relative to each other, which would affect the stability of the card dealing machine and the accuracy of the card dealing direction. Preferably, the non-slip pad 800 is made of a material such as silicone or foam.

[0050] The above is only used to illustrate the technical solution of the present invention and is not intended to limit it. Other modifications or equivalent substitutions made to the technical solution of the present invention by ordinary technicians in this field should be included in the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solution of the present invention.

Claims

1. A rotary card dealing machine, characterized in that: include: Card dealing machine body (100); A base (200) is provided at the bottom of the card dealing machine body (100) and is used to provide support for the card dealing machine body; the base (200) is rotatable relative to the card dealing machine body (100); a rotating motor (300) for driving the card dealing machine body (100) and the base (200) to rotate relative to each other; the rotating motor (300) is arranged in the card dealing machine body (100), the motor output shaft of the rotating motor (300) is arranged parallel to the base (200), and an output worm (320) is arranged on the motor output shaft; A rotating toothed disc (400) is disposed in the base (200), and the upper end of the rotating shaft of the rotating toothed disc (400) is rotatably connected to the bottom of the card dealing machine body (100); A transmission assembly (900) is arranged in the card dealing machine body (100), one end of the transmission assembly (900) is connected to the output worm (320) on the motor output shaft, and the other end is connected to the rotating gear disc (400) to transmit the power of the rotating motor (300) downward to the rotating gear disc (400), thereby driving the base (200) and the card dealing machine body (100) to rotate relative to each other.

2. The rotary card dealing machine according to claim 1, wherein: The transmission assembly (900) includes a first gear (910) connected to the output worm (320), a second gear (920) connected to the first gear (910), and a third gear (930) connected to the second gear (920) and the rotating gear.

3. The rotary card dealing machine according to claim 2, wherein: The first gear (910) is a coaxial and corotating double-layer gear, comprising: a first ring gear (911) connected to the output worm (320), and a second ring gear (912) connected to the second gear (920), wherein the second ring gear (912) is located below the first ring gear (911) and is smaller than the first ring gear (911).

4. The rotary card dealing machine according to claim 2, wherein: The second gear (920) is a coaxial and corotating double-layer gear, comprising: a fifth gear ring (921) connected to the first gear (910), and a sixth gear ring (922) connected to the third gear (930), wherein the sixth gear ring (922) is located below the fifth gear ring (921), and the sixth gear ring (922) is smaller than the fifth gear ring (921).

5. The rotary card dealing machine according to claim 2, wherein: The third gear (930) is a coaxial and corotating double-layer gear, comprising: a third gear ring (931) connected to the second gear (920), and a fourth gear ring (932) connected to the rotating gear disc (400), wherein the fourth gear ring (932) is located below the third gear ring (931), and the fourth gear ring (932) is smaller than the third gear ring (931).

6. The rotary card dealing machine according to claim 1, wherein: The main body (100) of the card dealing machine is provided with a mounting groove (330) for mounting the rotating motor (300) and a fixing plate (340), and the fixing plate (340) is provided with an output hole (321) for the output shaft of the motor to extend.

7. The rotary card dealing machine according to claim 1, wherein: A dust cover (940) is detachably mounted inside the card dealing machine body (100) and above the transmission assembly (900).

8. The rotary card dealing machine according to claim 1, wherein: A positioning gear (500) connected to the rotating toothed disc (400) or the output end of the transmission assembly (900) is also provided in the base (200), and a rotation sensing assembly for detecting the rotation state of the positioning gear (500) is provided on the positioning gear (500).

9. The rotary card dealing machine according to claim 8, wherein: The positioning gear (500) is rotatably arranged at the bottom of the card dealing machine body (100) and is meshedly connected with the rotating toothed disc (400); The rotation sensing component is configured as a photoelectric sensing component, comprising: a plurality of sensing sheets (610) uniformly arranged around the circumference of the positioning gear (500), and a photoelectric sensor (620) matched with the sensing sheets (610).