Card dealing machine
By using a single drive unit and a complex transmission assembly in the card dealing machine, the problems of asynchronous start-stop and gear jamming caused by multi-motor drives are solved, achieving synchronized start-stop, reduced costs, and improved card dealing smoothness.
Patent Information
- Application Number
- CN202422946710.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-07-16
- Filing Date
- 2024-11-28
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-28
AI Technical Summary
Existing card dealing machines use multiple motors for driving, resulting in asynchronous start and stop, high cost, and a tendency for gear jamming, affecting the smoothness and distance of card dealing.
A single drive unit drives the card-distributing, card-feeding, and card-dealing rollers through a complex transmission assembly. Specific gear angles are used to avoid gear jamming, and one-way bearings are used to achieve power transmission and cut-off.
It achieves synchronized start and stop of the card dealing machine, reduces production costs, shrinks size, and improves the smoothness and distance of card dealing.
Smart Images

Figure CN223555461U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of recreational products, in particular to a card dispenser. BACKGROUND
[0002] As the most common recreational product in people's life, playing cards are popular among the public because of their diverse playing methods and suitability for all ages. With the development of technology, various machines that replace manual card dealing have emerged, greatly improving the experience of playing cards.
[0003] The existing card dispenser generally has multiple power output mechanisms to provide power for the issuance of playing cards, ensuring stable card dispensing effect of the card dispenser. The multiple power output mechanisms are driven by multiple motors, which may cause the start and stop of each power output mechanism of the card dispenser to be out of sync, affecting the use experience of the card dispenser. In addition, the use of multiple motors is costly and the card dispenser is large in size. Some card dispensers currently use one motor to drive the card dispensing, which requires some transmission components to achieve power transmission between parts. Due to the error of transmission gears, the gears may be easily jammed, affecting the smoothness and distance of card dispensing. SUMMARY
[0004] The utility model aims at the defects and deficiencies of the prior art and provides a card dispenser, which has the advantages of using only one driving machine to achieve card dispensing, synchronization of start and stop, small size, smooth card dispensing, and difficulty in jamming.
[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a card dispenser, which comprises:
[0006] A card dispenser main body has a card compartment for accommodating playing cards. The bottom front side of the card compartment is provided with a card inlet. The outer side of the card dispenser main body is provided with a card outlet corresponding to the card inlet.
[0007] A card feeding assembly comprises a card feeding roller arranged at the bottom of the card compartment and partially exposed from the card compartment, for feeding playing cards in the card compartment into the card inlet; and a card feeding shaft arranged in the card dispenser main body, for sleeving the card feeding roller and driving the card feeding roller to rotate.
[0008] A card separating assembly comprises a card separating roller arranged on the upper side or lower side of the card inlet, for separating playing cards one by one on the other side of the card inlet, so that the playing cards enter the card inlet one by one; and a card separating shaft arranged in the card dispenser main body, for sleeving the card separating roller and driving the card separating roller to rotate.
[0009] The card dispensing assembly comprises: a card dispensing roller arranged in the card dispensing machine body between the card inlet and the card outlet and used for dispensing the playing cards in the card inlet from the card outlet, and a card dispensing shaft arranged in the card dispensing machine body and sleeved with the card dispensing roller and used for driving the card dispensing roller to rotate;
[0010] A driving member is arranged in the card dispensing machine body.
[0011] A first transmission assembly is arranged in the card dispensing machine body, connected with the output shaft of the driving member, and used for driving the card dispensing shaft to rotate under the driving of the driving member.
[0012] A second transmission assembly is arranged in the card dispensing machine body, connected with the card dispensing shaft at the input end and connected with the card distributing shaft at the output end, and used for driving the card distributing shaft to rotate.
[0013] A third transmission assembly is arranged in the card dispensing machine body, connected with the second transmission assembly at the input end and connected with the card feeding shaft at the output end.
[0014] The second transmission assembly comprises: a card dispensing gear sleeved on the card dispensing shaft, a card distributing gear sleeved on the card distributing shaft, a third gear, a second gear meshed between the card dispensing gear and the third gear, and a fourth gear meshed between the third gear and the card distributing gear.
[0015] The third gear is arranged above the card dispensing gear, the second gear is arranged between the third gear and the card dispensing gear, and the axis of the second gear is located on the side of the connecting line of the card dispensing gear and the third gear close to the card outlet; the card distributing gear is arranged below the third gear, the fourth gear is arranged between the third gear and the card distributing gear, and the axis of the fourth gear is located on the side of the connecting line of the card distributing gear and the third gear away from the card outlet.
[0016] The utility model further sets up, the included angle between the second gear and the connecting line of the card dispensing gear and the third gear and the connecting line of the card dispensing gear is 20-30 DEG.
[0017] The utility model further sets up, the included angle between the fourth gear and the connecting line of the card distributing gear and the third gear and the connecting line of the card distributing gear is 25-35 DEG.
[0018] The utility model further sets up, the first transmission assembly comprises: a driving belt pulley sleeved on the output shaft of the driving member, a card dispensing belt pulley sleeved on the card dispensing shaft, and a first belt connecting the driving belt pulley and the card dispensing belt pulley.
[0019] The utility model further sets up, the deal gear and the deal belt pulley are respectively arranged at the both ends of the deal axle.
[0020] The utility model further sets up, the third transmission subassembly includes: the card sending belt pulley of setting on the card sending axle, the transmission belt pulley of setting at the third gear outside, with the same rotation axis rotation of the third gear simultaneously, and the third belt that connects the card sending belt pulley and the transmission belt pulley.
[0021] The utility model further sets up, the single direction bearing is arranged between the card distribution gear and the card distribution axle, the single direction bearing is used for realizing the power transmission and cutting off between the card distribution gear and the card distribution axle, and the rotating speed of the card distribution roller is lower than the rotating speed of the deal roller.
[0022] The utility model further sets up, the diameter of the third gear is greater than the diameter of second gear, and the diameter of the second gear is greater than the diameter of the deal gear.
[0023] The utility model further sets up, the diameter of the second gear is same with the diameter of the fourth gear.
[0024] The utility model further sets up, the diameter of the card distribution gear is greater than the diameter of the deal gear.
[0025] After adopting the above technical scheme, the utility model has the beneficial effects that:
[0026] 1、In the utility model, through the power transmission of first transmission subassembly, second transmission subassembly and third transmission subassembly, make the deal machine only set up one drive piece can drive the rotation of card distribution roller, card sending roller and deal roller, to the issue of the poker in the card store, make card distribution roller, card sending roller and deal roller can start simultaneously or stop when the deal machine starts and stops, improve the use experience of the deal machine. Simultaneously only set up one drive piece, can effectively reduce the production cost of the deal machine, reduce the size of the deal machine.
[0027] 2、In the utility model, the third gear is arranged above the deal gear, the second gear is arranged between the third gear and the deal gear, and the axis of the second gear is located on the side of the card outlet, so that when the deal gear rotates to drive the second gear, an acting force is applied to the second gear; when the second gear rotates to drive the third gear, the third gear applies a counteracting force to the second gear, both acting forces push the second gear away from the third gear and the deal gear, which can avoid the second gear being stuck between the third gear and the deal gear, causing the teeth of the second gear to be stuck with the third gear and the deal gear, affecting the smoothness and distance of the deal machine. BRIEF DESCRIPTION OF DRAWINGS
[0028] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0029] Figure 1 is a structural schematic diagram of the present application;
[0030] Figure 2 is a structural schematic diagram of another view of the present application;
[0031] Figure 3 is a structural schematic diagram of another view of the present application;
[0032] Figure 4 is Figure 3 , a cross-sectional view in A-A direction;
[0033] Figure 5 is a structural schematic diagram of the card dispensing power mechanism of the present application;
[0034] Figure 6 is a structural schematic diagram of the card dispensing power mechanism of the present application;
[0035] Figure 7 is a structural schematic diagram of the second transmission assembly of the present application;
[0036] Figure 8 is a structural schematic diagram of another view of the second transmission assembly of the present application.
[0037] Explanation of reference signs: 100, card dispenser main body; 110, card bin; 120, card inlet; 130, card outlet; 200, card feeding assembly; 210, card feeding roller; 220, card feeding shaft; 300, card distributing assembly; 310, card distributing roller; 320, card distributing shaft; 400, card dispensing assembly; 410, card dispensing roller; 420, card dispensing shaft; 500, first transmission assembly; 510, driving pulley; 520, first belt; 530, card dispensing pulley; 600, second transmission assembly; 610, card dispensing gear; 620, second gear; 630, third gear; 640, fourth gear; 650, card distributing gear; 700, third transmission assembly; 710, card feeding pulley; 720, transmission pulley; 730, third belt; 800, driving member; 900, one-way bearing. DETAILED DESCRIPTION
[0038] The present application will be further described in detail below in combination with the drawings.
[0039] The specific embodiment is only an explanation of the utility model, and is not a limitation of the utility model, and a modification without creative contribution can be made to the embodiment according to the needs after the specification is read by the person skilled in the art, but as long as the modification is within the scope of the claims of the utility model, the modification is protected by the patent law.
[0040] The embodiment relates to a card dealer, as shown in the figure, comprising a card dealer main body 100, a card feeding assembly 200, a card separating assembly 300, a card dealing assembly 400, a first transmission assembly 500, a second transmission assembly 600, and a third transmission assembly 700. In the embodiment, the direction of dealing playing cards is the front side. Figures 1-8
[0041] The card warehouse 110 can accommodate a certain number of playing cards for dealing, so that the card dealer does not need to frequently replenish cards, can continuously deal cards, and guarantees a good use experience. A card inlet 120 is arranged at the bottom front side of the card warehouse 110, a card outlet 130 corresponding to the card inlet 120 is arranged at the outer side of the card dealer main body 100, and a card dealing channel is formed between the card inlet 120 and the card outlet 130 in the card dealer main body 100, and the card dealing channel is in communication with the card warehouse 110 and the outer side of the card dealer main body 100. Under the action of a card dealing power mechanism, the playing cards in the card warehouse 110 can enter the card dealing channel from the card inlet 120, and then are dealt out to the outer side of the card dealer main body 100 through the card outlet 130, so that the playing cards are dealt out, and a good card dealing effect is achieved.
[0042] The card feeding assembly 200 comprises a card feeding roller 210 arranged at the bottom of the card warehouse 110, partially exposed to the card warehouse 110, and used for feeding the playing cards in the card warehouse 110 into the card inlet 120, and a card feeding shaft 220 arranged in the card dealer main body 100, used for sleeving the card feeding roller 210 and driving the card feeding roller 210 to rotate. The card feeding roller 210 can contact the playing cards in the card warehouse 110, and the playing cards in the card warehouse 110 are fed into the card inlet 120 through the rotation of the card feeding roller 210.
[0043] The card separating assembly 300 comprises a card separating roller 310 arranged at the upper side or the lower side of the card inlet 120, used for separating the playing cards one by one on the other side of the card inlet 120, and making the playing cards enter the card inlet 120 one by one, and a card separating shaft 320 arranged in the card dealer main body 100, used for sleeving the card separating roller 310 and driving the card separating roller 310 to rotate. The rotation of the card separating roller 310 can cooperate with the other side of the card inlet 120 to rub open the playing cards fed into the card inlet 120 by the card feeding roller 210, so that the playing cards at the card inlet 120 are separated one by one, and enter the card inlet 120 one by one, and a good and accurate card dealing effect is guaranteed.
[0044] The dealing assembly 400 comprises a dealing roller 410 arranged in the dealing machine body 100 between the card inlet 120 and the card outlet 130 and used for sending the playing cards in the card inlet 120 out of the card outlet 130, and a dealing shaft 420 arranged in the dealing machine body 100 and sleeved with the dealing roller 410 and used for driving the dealing roller 410 to rotate. The rotation of the dealing roller 410 can drive the playing cards in the card inlet 120 to be sent out of the card outlet 130, thereby ensuring good dealing effect and sufficient dealing distance.
[0045] The driving member 800 is arranged in the dealing machine body 100 and is a power part for driving the dealing machine to complete the dealing; the first transmission assembly 500 is arranged in the dealing machine body 100, connected with the output shaft of the driving member 800, and driven by the driving member 800 to drive the dealing shaft 420 to rotate; the second transmission assembly 600 is arranged in the dealing machine body 100, connected with the dealing shaft 420 at the input end and connected with the card distributing shaft 320 at the output end to drive the card distributing shaft 320 to rotate; and the third transmission assembly 700 is arranged in the dealing machine body 100, connected with the second transmission assembly 600 at the input end and connected with the card feeding shaft 220 at the output end to drive the card feeding shaft 220 to rotate. Through the power transmission of the first transmission assembly 500, the second transmission assembly 600 and the third transmission assembly 700, the dealing machine can drive the card distributing roller 310, the card feeding roller 210 and the dealing roller 410 to rotate by only arranging one driving member 800, so as to send the playing cards in the card compartment 110 out. In this way, the card distributing roller 310, the card feeding roller 210 and the dealing roller 410 can be started or stopped at the same time when the dealing machine is started or stopped, thereby improving the use experience of the dealing machine. Meanwhile, only one driving member 800 is arranged, which can effectively reduce the production cost of the dealing machine and reduce the size of the dealing machine.
[0046] Specifically, the second transmission assembly 600 comprises a dealing gear 610 sleeved on the dealing shaft 420, a card distributing gear 650 sleeved on the card distributing shaft 320, a third gear 630 connected with the third transmission assembly 700, a second gear 620 engaged between the dealing gear 610 and the third gear 630, and a fourth gear 640 engaged between the third gear 630 and the card distributing gear 650.
[0047] The third gear 630 is arranged above the dealing gear 610, the second gear 620 is arranged between the third gear 630 and the dealing gear 610, and the axis of the second gear 620 is located on the side of the dealing gear 610 and the third gear 630 away from the dealing port 130; so that the dealing gear 610 gives the second gear 620 an action force when rotating to drive the second gear 620; and the third gear 630 gives the second gear 620 another reaction force when the second gear 620 rotates to drive the third gear 630, both of the two forces push the second gear 620 away from the third gear 630 and the dealing gear 610, which can avoid the second gear 620 being stuck between the third gear 630 and the dealing gear 610, and causing the teeth of the second gear 620 to be stuck with the dealing gear 610 and the third gear 630, affecting the smoothness and distance of the dealing machine.
[0048] The fourth gear 640 is arranged between the third gear 630 and the dealing gear 650, and the axis of the fourth gear 640 is located on the side of the dealing gear 650 and the third gear 630 away from the dealing port 130; so that the third gear 630 gives the fourth gear 640 an action force when rotating to drive the fourth gear 640; and the dealing gear 650 gives the fourth gear 640 another reaction force when the fourth gear 640 rotates to drive the dealing gear 650, both of the two forces push the second gear 620 away from the third gear 630 and the dealing gear 610, which can avoid the fourth gear 640 being stuck between the third gear 630 and the dealing gear 650, and causing the teeth of the fourth gear 640 to be stuck with the third gear and the dealing gear 650, affecting the smoothness and distance of the dealing machine.
[0049] As a preferred scheme, the included angle between the axis of the second gear 620 and the axis of the dealing gear 610 and the axis of the third gear 630 and the axis of the dealing gear 610 is 27°, so that the second gear 620 can achieve good and smooth transmission and good dealing effect. Of course, in other embodiments, the included angle between the axis of the second gear 620 and the axis of the dealing gear 610 and the axis of the third gear 630 and the axis of the dealing gear 610 can also be 20°, 21°, 22°, 23°, 24°, 25°, 26°, 28°, 29°, 30°.
[0050] As a preferred scheme, the included angle between the fourth gear 640 and the common line of the division gear 650 and the third gear 630 is 31°, which ensures that the fourth gear 640 can achieve a good and smooth transmission effect and avoid the occurrence of tooth jamming, thereby improving the use experience of the card dealer. Of course, in other embodiments, the included angle between the fourth gear 640 and the common line of the division gear 650 and the third gear 630 can also be 25°, 26°, 27°, 28°, 29°, 30°, 32°, 33°, 34°, 35°.
[0051] In the embodiment, the first transmission assembly 500 includes a driving belt pulley 510 sleeved on the output shaft of the driving member 800, a card feeding belt pulley 530 sleeved on the card feeding shaft 420, and a first belt 520 connecting the driving belt pulley 510 and the card feeding belt pulley 530. The driving belt pulley 510 is driven to rotate by the output shaft of the driving member 800, and then drives the card feeding belt pulley 530 sleeved on the card feeding shaft 420 to rotate through the first belt 520, thereby driving the card feeding shaft 420 to rotate, so that the card feeding roller 410 rotates to achieve a good card feeding effect and ensure stable and reliable transmission. Of course, in other embodiments, the first transmission assembly 500 can also be provided in other structures to achieve power transmission from the driving member 800 to the card feeding shaft 420. As a preferred scheme, the card feeding gear 610 and the card feeding belt pulley 530 are respectively arranged at two ends of the card feeding shaft 420, which not only avoids mutual interference between the first transmission assembly 500 and the second transmission assembly 600, but also balances the forces at the two ends of the card feeding shaft 420, thereby ensuring stable operation of the card dealer.
[0052] In the embodiment, the third transmission assembly 700 includes a card feeding belt pulley 710 sleeved on the card feeding shaft 220, a transmission belt pulley 720 arranged outside the third gear 630 and rotating around the same rotation axis as the third gear 630, and a third belt 730 connecting the card feeding belt pulley 710 and the transmission belt pulley 720, so as to achieve power transmission from the third gear 630 to the card feeding shaft 220 and ensure the efficiency and stability of power transmission.
[0053] Specifically in the embodiment, the diameter of the third gear 630 is greater than the diameter of the second gear 620, and the diameter of the second gear 620 is greater than the diameter of the dealing gear 610, so that the dealing gear 610 transmits power to the third gear 630 while achieving a certain speed reduction effect. As a preferred solution, the second gear 620 and the fourth gear 640 are the same size, so that the second gear 620 and the fourth gear 640 are balanced with each other in the second transmission assembly 600, achieving stable transmission effect. The diameter of the card distribution gear 650 is greater than the diameter of the dealing gear 610, so that under the action of the second transmission assembly 600, the rotating speed of the card distribution gear 650 is lower than the rotating speed of the dealing gear 610, that is, the rotating speed of the card distribution roller 310 is lower than the rotating speed of the dealing roller 410, achieving good dealing effect.
[0054] As a preferred solution, the rotating speed of the card distribution roller 310 is lower than the rotating speed of the dealing roller 410 by setting the transmission ratio of the second transmission assembly 600. A one-way bearing 900 is arranged between the card distribution gear 650 and the card distribution shaft 320, which is used to realize power transmission and cut-off between the card distribution gear 650 and the card distribution shaft 320. The one-way bearing 900 belongs to the prior art, the outer ring of the one-way bearing 900 is connected with the card distribution gear 650, and the inner ring of the one-way bearing 900 is connected with the card distribution shaft 320. When it is needed to use the rotation of the card distribution roller 310 to distribute cards, the card distribution gear 650 applies a force to the one-way bearing 900, at this time, when the rotating speed of the outer ring of the one-way bearing 900 exceeds the rotating speed of the inner ring, the inner and outer rings of the one-way bearing 900 are combined, and the outer ring drives the inner ring to rotate, so as to transmit the power of the card distribution gear 650 to the dealing shaft 420, thereby driving the card distribution roller 310 to rotate to distribute the playing cards on the card distribution roller 310 at the card inlet 120; when the card distribution roller 310 forwards the playing cards, so that the front side of the playing cards contacts the dealing roller 410, since the rotating speed of the dealing roller 410 is greater than the rotating speed of the card distribution roller 310, the dealing roller 410 drives the card distribution roller 310 to rotate through the playing cards, the card distribution roller 310 drives the card distribution shaft 320 to rotate, so that the rotating speed of the card distribution shaft 320 is greater than the rotating speed of the card distribution gear 650, due to the one-way transmission characteristic of the one-way bearing 900, the inner and outer rings of the one-way bearing 900 are separated and independently rotate, the rotating speed of the inner ring of the one-way bearing 900 is greater than the rotating speed of the outer ring, so that the power of the card distribution gear 650 cannot be transmitted to the card distribution shaft 320 through the one-way bearing 900, and the card distribution roller 310 will not be slowed down under the action of the second transmission assembly 600, so that the smooth distribution and dealing effect can be better achieved.
[0055] The above merely aims to illustrate the technical solutions of the present application and is not intended to limit the present application. Other modifications or equivalent replacements made by those skilled in the art to the technical solutions of the present application should be encompassed in the scope of the claims of the present application, as long as they do not depart from the spirit and scope of the present application.
Claims
1. A card dealing machine, characterized in that, include: The main body (100) of the card dealing machine has a card compartment (110) for holding playing cards. The card compartment (110) has a card inlet (120) on the bottom front side. The card outlet (130) corresponding to the card inlet (120) is provided on the outside of the main body (100). The card feeding assembly (200) includes: a card feeding roller (210) disposed at the bottom of the card compartment (110) and partially exposed in the card compartment (110) for feeding playing cards in the card compartment (110) into the card inlet (120); and a card feeding shaft (220) disposed in the main body (100) of the card dealing machine for the card feeding roller (210) to be fitted and for driving the card feeding roller (210) to rotate; The card-splitting assembly (300) includes: a card-splitting roller (310) disposed on the upper or lower side of the card inlet (120) to cooperate with the other side of the card inlet (120) to separate the playing cards one by one and allow the playing cards to enter the card inlet (120) one by one; and a card-splitting shaft (320) disposed inside the card-dealing machine body (100) for the card-splitting roller (310) to be fitted and used to drive the card-splitting roller (310) to rotate. The card dealing assembly (400) includes: a card dealing roller (410) disposed within the card dealing machine body (100), between the card inlet (120) and the card outlet (130), for dispensing playing cards from the card inlet (120) through the card outlet (130); and a card dealing shaft (420) disposed within the card dealing machine body (100), fitted onto the card dealing roller (410), and for driving the card dealing roller (410) to rotate. A drive unit (800) is disposed within the main body (100) of the card dealing machine; The first transmission component (500) is disposed inside the main body (100) of the card dealing machine, connected to the output shaft of the drive component (800), and drives the card dealing shaft (420) to rotate under the drive of the drive component (800); The second transmission component (600) is disposed inside the main body (100) of the card dealing machine. Its input end is connected to the card dealing shaft (420), and its output end is connected to the card dispensing shaft (320) to drive the card dispensing shaft (320) to rotate. The third transmission component (700) is disposed inside the main body (100) of the card dealer, with its input end connected to the second transmission component (600) and its output end connected to the card feeding shaft (220); The second transmission assembly (600) includes: a dealing gear (610) sleeved on the dealing shaft (420), a card-splitting gear (650) sleeved on the card-splitting shaft (320), a third gear (630), a second gear (620) meshing between the dealing gear (610) and the third gear (630), and a fourth gear (640) meshing between the third gear (630) and the card-splitting gear (650); The third gear (630) is positioned above the dealing gear (610), and the second gear (620) is positioned between the third gear (630) and the dealing gear (610), with the axis of the second gear (620) located on the side of the line connecting the center of the dealing gear (610) and the third gear (630) closer to the card outlet (130). The card-separating gear (650) is positioned below the third gear (630), and the fourth gear (640) is positioned between the third gear (630) and the card-separating gear (650), with the axis of the fourth gear (640) located on the side of the line connecting the center of the card-separating gear (650) and the third gear (630) away from the card outlet (130).
2. The card dealing machine according to claim 1, characterized in that, The angle between the line connecting the center of the second gear (620) and the card dealing gear (610) and the line connecting the center of the third gear (630) and the card dealing gear (610) is 20-30°.
3. The card dealing machine according to claim 1, characterized in that, The angle between the line connecting the center of the fourth gear (640) and the card-splitting gear (650) and the line connecting the center of the third gear (630) and the card-splitting gear (650) is 25-35°.
4. The card dealing machine according to claim 1, characterized in that, The first transmission assembly (500) includes: a drive pulley (510) sleeved on the output shaft of the drive member (800), a card dealing pulley (530) sleeved on the card dealing shaft (420), and a first belt (520) connecting the drive pulley (510) and the card dealing pulley (530).
5. The card dealing machine according to claim 4, characterized in that, The card-dealing gear (610) and the card-dealing pulley (530) are respectively disposed at both ends of the card-dealing shaft (420).
6. The card dealing machine according to claim 1, characterized in that, The third transmission assembly (700) includes: a card-feeding pulley (710) sleeved on the card-feeding shaft (220), a transmission pulley (720) disposed outside the third gear (630) and rotating simultaneously with the third gear (630) around the same rotation axis, and a third belt (730) connecting the card-feeding pulley (710) and the transmission pulley (720).
7. The card dealing machine according to claim 1, characterized in that, A one-way bearing (900) is provided between the card-splitting gear (650) and the card-splitting shaft (320). The one-way bearing (900) is used to realize the power transmission and cut-off between the card-splitting gear (650) and the card-splitting shaft (320). The rotational speed of the card-splitting roller (310) is lower than that of the card-dealing roller (410).
8. The card dealing machine according to claim 1, characterized in that, The diameter of the third gear (630) is greater than the diameter of the second gear (620), and the diameter of the second gear (620) is greater than the diameter of the dealing gear (610).
9. The card dealing machine according to claim 8, characterized in that, The diameter of the second gear (620) is the same as the diameter of the fourth gear (640).
10. The card dealing machine according to claim 9, characterized in that, The diameter of the card-distributing gear (650) is larger than the diameter of the card-dealing gear (610).