Card discharging mechanism and circulating card issuing equipment
By designing active and passive card-ejecting states for the active roller assembly and the driven roller assembly in the circulating card issuing device, the problem of unsmooth card extraction is solved, achieving smoother card extraction and better user experience.
Patent Information
- Application Number
- CN202422819174.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-11-19
AI Technical Summary
The card dispensing mechanism of existing recycling card issuing equipment does not extract cards smoothly, resulting in a poor user experience.
A card ejection mechanism is designed, including a drive assembly, an active roller assembly, and a driven roller assembly. By setting an axis hole and a supporting portion, an active card ejection state and a passive card ejection state are realized. In the active card ejection state, the drive assembly drives the roller to rotate. In the passive card ejection state, the card is pulled out without affecting the drive assembly, thereby avoiding additional resistance.
Card extraction is smoother, providing a better user experience, reducing unnecessary resistance, and improving device stability and reliability.
Smart Images

Figure CN223436244U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of card issuing equipment, in particular to a card issuing mechanism and a circulating card issuing equipment. Background Art
[0002] A card recycling machine is an automated device primarily used in various applications requiring automated card issuance and collection, such as hotel self-service check-in and personnel and vehicle access management. This equipment improves the efficiency and accuracy of card management and reduces the need for manual operations.
[0003] In related technologies, circular card issuance equipment features a card dispensing mechanism that moves cards from a storage location to a user's card retrieval location. This mechanism typically uses a motor-driven roller to move the cards. To retrieve a card, the user pulls out the card. However, this rotation drives the roller, which in turn may also drive the motor, increasing resistance to card extraction and preventing smooth card removal. Utility Model Content
[0004] The main purpose of the utility model is to provide a card dispensing mechanism and a circular card dispensing device, aiming to solve the problem that the card dispensing mechanism of the existing circular card dispensing device cannot smoothly dispense cards.
[0005] To achieve the above-mentioned purpose, the utility model proposes a card-discharging mechanism, which is applied to a card-issuing device, the card-discharging mechanism comprising: a driving assembly, the driving assembly being provided with an axial hole and a supporting portion adjacent to the axial hole; an active roller assembly, the active roller assembly comprising a connecting shaft and a transmission member connected to the connecting shaft, one end of the connecting shaft being movably passed through the axial hole, and the transmission member movably abutting the supporting portion; and a driven roller assembly, the driven roller assembly being arranged opposite to the active roller assembly and forming a card-discharging channel; wherein, the card-discharging mechanism has an active card-discharging state and a passive card-discharging state; in the active card-discharging state, the transmission member abuts against the supporting portion, so that the driving assembly drives the active roller assembly to drive the driven roller assembly to rotate, so that the card is discharged from the card-discharging channel; in the passive card-discharging state, the driving assembly stops, and the active roller assembly drives the transmission member away from the abutting portion.
[0006] In one embodiment, the driving assembly includes a motor, a driving wheel and a transmission wheel, the driving wheel is connected to the output shaft of the motor, the driving wheel is connected to the transmission wheel through a belt, and the transmission wheel is provided with the shaft hole and the abutment portion.
[0007] In one embodiment, a movable groove connected to the shaft hole is formed on the transmission wheel, the abutment portion is formed by the groove wall of the movable groove protruding toward the shaft hole, and the transmission member extends into the movable groove and abuts against the abutment portion.
[0008] In one embodiment, there are multiple movable grooves, and the multiple movable grooves are arranged on the transmission wheel at intervals along the circumferential direction, and each movable groove is provided with a supporting portion; there are multiple transmission members, and the multiple transmission members are arranged on the connecting shaft at intervals along the circumferential direction, and the transmission members are arranged in a one-to-one correspondence with the movable grooves and the supporting portions.
[0009] In one embodiment, there are two movable grooves, which are symmetrically arranged on the transmission wheel; there are two transmission members, which are symmetrically arranged on the connecting shaft and are arranged in a one-to-one correspondence with the two movable grooves.
[0010] In one embodiment, the central angle of the movable groove is 100 degrees to 170 degrees.
[0011] In one embodiment, the active roller assembly further includes two rollers, which are fixedly connected to the connecting shaft; the transmission member includes a pin shaft, which is inserted into the connecting shaft along the side of the connecting shaft and partially exposed outside the connecting shaft, and the pin shaft movably abuts against the supporting portion.
[0012] In one embodiment, both ends of the pin shaft extend out along the side walls of the connecting shaft respectively, and the driving assembly is provided with two abutting portions, and both ends of the pin shaft abut against the two abutting portions respectively.
[0013] The present invention also proposes a circular card issuing device, which includes a shell and a card output mechanism as described above, wherein the shell is provided with a card bin and a card output port, and the card output mechanism is provided in the shell and located between the card bin and the card output port to connect the card bin and the card output port.
[0014] In one embodiment, the circulating card issuing device also includes an electric card nozzle, which includes a main body, an indicator light, a rocker arm and a sensor. The main body is arranged in the shell, the main body is provided with the card outlet, an installation space is provided below the main body, the indicator light, the rocker arm and the sensor are provided in the installation space, and an inclined surface is provided above the main body; and / or, the active roller assembly is spaced apart from the card outlet, the circulating card issuing device also includes a card blocking mechanism and a recycling box, the card blocking mechanism is rotatably connected to the shell and is located between the active roller assembly and the card magazine, and the recycling box is arranged in the shell and is located at the bottom of the card blocking mechanism.
[0015] Compared with the prior art, the card dispensing mechanism and the circular card issuing device provided by the present invention have the following beneficial effects:
[0016] The technical solution of the utility model is to provide an axis hole and a supporting part on the driving assembly, and the active roller assembly is provided with a connecting shaft and a transmission member, and the connecting shaft is movably inserted into the axis hole, and the transmission member movably abuts the abutting part, and the card output has an active card output state and a passive card output state. In the active card output state, the abutting part abuts the transmission member, so that the driving assembly can drive the active roller assembly to rotate, and then drive the driven roller assembly to rotate, and the active roller assembly cooperates with the driven roller assembly to move the card from the card output channel to the card taking position; in the passive card output state, the user takes the card from the card taking position, and the driving assembly is in a stopped state. When the card is pulled out, the active roller assembly will be driven to rotate, so the transmission member will rotate relative to the abutting part in a direction away from the abutting part, gradually away from the abutting part, will not affect the driving assembly, and will not drive the driving assembly to rotate together, thereby avoiding unnecessary resistance, making the card extraction process smoother and the user experience better. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] 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 the structures shown in these drawings without paying any creative work.
[0018] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the circular card issuing device of the present utility model;
[0019] Figure 2 This is a schematic diagram of the internal structure of an embodiment of the circular card issuing device of the present utility model;
[0020] Figure 3 This is a cross-sectional view of an embodiment of the circular card issuing device of the present utility model;
[0021] Figure 4 This is a structural diagram of an embodiment of the active roller assembly and the driving mechanism of the utility model;
[0022] Figure 5 This is a structural diagram of an embodiment of the connecting shaft, pin shaft and transmission wheel of the utility model;
[0023] Figure 6 This is a schematic structural diagram of an embodiment of a transmission wheel of the present utility model;
[0024] Figure 7 This is an exploded view of an embodiment of the electric nozzle of the present invention.
[0025] BRIEF DESCRIPTION OF DRAWINGS
[0026] 100, circulating card equipment; 10, card issuing mechanism; 11, driving assembly; 111, motor; 112, driving wheel; 113, transmission wheel; 1131, shaft hole; 1132, abutting part; 1133, movable slot; 12, driving roller assembly; 121, connecting shaft; 122, transmission part; 1221, pin shaft; 123, roller; 13, driven roller assembly; 14, card issuing channel; 20, shell; 21, card bin; 22, card issuing port; 30, electric card nozzle; 31, body; 311, mounting space; 312, inclined surface; 32, indicator light; 33, swing rod; 34, sensor; 40, card blocking mechanism; 50, recycling box; 200, card.
[0027] The implementation, functional features and advantages of the utility model will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0029] It should be noted that all the directionality indications (such as up, down, left, right, front, back, etc.) in the embodiments of the utility model are only used to explain the relative position relationship, movement condition, etc. between the components in a certain specific posture (as shown in the accompanying drawings), and if the specific posture changes, the directionality indications also change accordingly.
[0030] In addition, the description of "first", "second" and the like in the utility model is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of those skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0031] Please refer to Figures 1 to 7The utility model provides a card delivery mechanism 10, apply to card delivery equipment, card delivery mechanism 10 includes: drive assembly 11, drive assembly 11 is equipped with shaft hole 1131 and the abutting portion 1132 adjacent to shaft hole 1131, driving roller assembly 12, driving roller assembly 12 includes connecting shaft 121 and the transmission 122 connected to connecting shaft 121, one end of connecting shaft 121 is movably arranged in shaft hole 1131, and transmission 122 is movably abutted in abutting portion 1132, and driven roller assembly 13, driven roller assembly 13 is oppositely arranged with driving roller assembly 12 and forms card delivery channel 14, wherein card delivery mechanism 10 has driving card delivery state and passive card delivery state, in driving card delivery state, transmission 122 is abutted with abutting portion 1132, makes drive assembly 11 drive driving roller assembly 12 drive driven roller assembly 13 rotation to make card delivery channel 14 card delivery, in passive card delivery state, drive assembly 11 stops, and driving roller assembly 12 drive transmission 122 is away from abutting portion 1132.
[0032] Specifically, card delivery mechanism 10 is applied to card delivery equipment, and the card delivery equipment can be automatic card delivery equipment, circulating card delivery equipment 100 or access control system card delivery equipment and the like. Card delivery mechanism 10 includes drive assembly 11, driving roller assembly 12 and driven roller assembly 13, drive assembly 11 is used to drive driving roller assembly 12 to rotate, driving roller assembly 12 is oppositely arranged with driven roller assembly 13 to form card delivery channel 14, and driving roller assembly 12 and driven roller assembly 13 are clamped and push card 200 to deliver from card delivery channel 14.
[0033] The drive of drive assembly 11 can select motor 111 or pneumatic motor and the like mechanism, connecting shaft 121 is movably arranged in shaft hole 1131, transmission 122 is movably abutted in abutting portion 1132, when drive assembly 11 needs to drive driving roller assembly 12 to rotate, transmission 122 is abutted on abutting portion 1132 to further drive connecting shaft 121 to move. If transmission 122 is not abutted with abutting portion 1132, then drive assembly 11 needs to move first, drive abutting portion 1132 to move to the position of transmission 122, reaches the state of abutting with transmission 122, can drive driving roller assembly 12 to rotate, but the driving force of drive assembly 11 is enough, so the time spent in the process can be ignored in actual use.
[0034] The card outlet mechanism 10 has an active card outlet state and a passive card outlet state. The active card outlet state refers to the driving assembly 11 driving the active roller assembly 12 to drive the driven roller assembly 13 to rotate, so that the card 200 is ejected from the card outlet channel 14. The passive card outlet state refers to that the card 200 has been moved from the storage position to the user card taking position, and the user takes the card manually.
[0035] In the active card outlet state, the transmission member 122 abuts against the abutting portion 1132, the driving assembly 11 drives the active roller assembly 12 to rotate, and in turn drives the driven roller assembly 13 to rotate. The card 200 is moved from the card outlet channel 14 to the card taking position under the joint action of the active roller assembly 12 and the driven roller assembly 13.
[0036] In the passive card outlet state, the driving assembly 11 is in a static state, and the user takes the card manually. The card 200 is pulled out of the card outlet channel 14, which drives the active roller assembly 12 to rotate. Therefore, the transmission member 122 gradually moves away from the abutting portion 1132 relative to the abutting portion 1132. At this time, the driving assembly 11 is not affected, the pulling out of the card 200 does not drive the driving assembly 11 to move, and no additional resistance is generated, so that the card 200 is pulled out more smoothly.
[0037] The abutting portion 1132 can be arranged on one side of the shaft hole 1131 and communicate with the shaft hole 1131, or can be arranged on the side wall of the driving assembly 11 and adjacent to the shaft hole 1131. The specific position can be selected according to actual needs. The structure of the abutting portion 1132 can be selected as an abutting column or a protrusion. The specific structure can be selected according to actual needs, as long as the abutting effect can be achieved.
[0038] The structure of the transmission member 122 can be a transmission block or a transmission column. The specific structure can also be arranged according to the structure of the abutting portion 1132.
[0039] The utility model discloses technical scheme is through being provided with shaft hole 1131 and the bearing part 1132 on the drive assembly 11, and the drive roller assembly 12 is provided with connecting shaft 121 and transmission part 122, connecting shaft 121 is movably arranged in the shaft hole 1131, and transmission part 122 is movably abuts at the bearing part 1132, and the card has initiative card state and passive card state, when initiative card state, through the abutment of bearing part 1132 and transmission part 122, drive assembly 11 can drive drive roller assembly 12 to rotate, and then drive driven roller assembly 13 to rotate, and drive roller assembly 12 and driven roller assembly 13 cooperate, and card 200 moves from the card channel 14 to the card position, when passive card state, the user takes card from the card position, drive assembly 11 is the stop state at this time, and when card 200 is extracted, drive roller assembly 12 will be driven to rotate, and therefore transmission part 122 will rotate relative to bearing part 1132 and move away from bearing part 1132, gradually away from bearing part 1132, will not affect drive assembly 11, will not drive drive assembly 11 to rotate together, thereby unnecessary resistance is avoided, and the card 200 extraction process is more smooth, and the user experience is better.
[0040] In the embodiment of the utility model, the drive assembly 11 includes motor 111, drive wheel 112 and transmission wheel 113, the drive wheel 112 is connected to the output shaft of motor 111, the drive wheel 112 is drivenly connected with transmission wheel 113 through belt, and the transmission wheel 113 is equipped with shaft hole 1131 and bearing part 1132.
[0041] In detail, drive wheel 112 and transmission wheel 113 are belt-drivenly connected, so that motor 111 drives drive wheel 112 to rotate, and then drives transmission wheel 113 to rotate, and shaft hole 1131 and bearing part 1132 are arranged on transmission wheel 113, which facilitates cooperation with connecting shaft 121 and transmission part 122 to drive connecting shaft 121 to rotate.
[0042] The belt drive can absorb vibration and impact, improve stability, and allow a certain distance between the drive wheel 112 and the transmission wheel 113, which makes the layout of the entire drive assembly 11 more flexible and facilitates installation and adjustment in limited space. By driving the motor 111, the bearing part 1132 on the transmission wheel 113 abuts against the transmission part 122 of the drive roller assembly 12, thereby driving the drive roller assembly 12 and the driven roller assembly 13 to rotate, ensuring that the card 200 can be smoothly and accurately moved to the card position.
[0043] In an embodiment of the present utility model, a movable groove 1133 connected to the shaft hole 1131 is provided on the transmission wheel 113, and the supporting portion 1132 is formed by the groove wall of the movable groove 1133 protruding toward the shaft hole 1131, and the transmission member 122 extends into the movable groove 1133 and abuts against the supporting portion 1132.
[0044] It is noteworthy that the movable slot 1133 provided in the transmission wheel 113 allows for quick positioning of the transmission member 122 during installation. The transmission member 122 can be directly inserted into the movable slot 1133, making installation simple and quick. The movable slot 1133 provides a precise guide path for the transmission member 122, ensuring that the transmission member 122 always maintains the correct direction and position during movement, preventing deviation and jamming. Furthermore, the design of the movable slot 1133 allows for a certain range of adjustment to accommodate transmission members 122 of varying sizes and shapes, thereby increasing the flexibility and adaptability of the system.
[0045] The supporting portion 1132 is formed by the protrusion of the groove wall of the movable groove 1133, which can fit tightly with the transmission member 122 to provide stable support and positioning. The movable groove 1133 and the supporting portion 1132 can be integrally formed, simplifying the manufacturing process, reducing the number of parts, and lowering production costs.
[0046] When the user takes the card out from the card taking position, the card 200 drives the active roller assembly 12 to rotate, and the transmission member 122 moves in the movable groove 1133 in the direction away from the supporting portion 1132, which will not affect the static state of the driving assembly 11, thereby reducing the resistance to pulling out the card 200 and making the card 200 easier to pull out.
[0047] In an embodiment of the present utility model, there are multiple movable grooves 1133, and the multiple movable grooves 1133 are arranged on the transmission wheel 113 at intervals along the circumferential direction, and each movable groove 1133 is provided with a supporting portion 1132; there are multiple transmission members 122, and the multiple transmission members 122 are arranged on the connecting shaft 121 at intervals along the circumferential direction, and the transmission members 122 are arranged in a one-to-one correspondence with the movable grooves 1133 and the supporting portions 1132.
[0048] Specifically, by setting multiple active grooves 1133 and multiple abutting parts 1132, multiple transmission members 122 are set to cooperate with multiple active grooves 1133 and multiple abutting parts 1132, and in use, the stress is more uniform, avoiding imbalance and deflection caused by single-point stress, improving the overall stability and balance of the equipment. Multiple transmission members 122 share the load in motion, reducing the burden of individual components. Even if one of the transmission members 122 fails, the other transmission members 122 can still work, improving the reliability and fault tolerance of the equipment. The design of multiple transmission members 122 makes the card 200 more smooth and stable during the card ejection process, reducing card jamming and failure, and improving user experience.
[0049] In the embodiment of the utility model, the active groove 1133 is equipped with two, two active grooves 1133 symmetry is equipped with on the transmission wheel 113, the transmission member 122 is equipped with two, two transmission members 122 symmetry is equipped with on the connecting shaft 121, and with two active grooves 1133 one-to-one corresponding setting.
[0050] In detail, as Figure 6 The active groove 1133 is set to two, symmetrically arranged and interconnected, and the symmetric design makes the manufacturing process simpler, reduces the complexity of mold and processing, reduces the manufacturing cost, can better utilize materials, reduces waste, and further reduces cost. The transmission member 122 is also cooperatively arranged as two, and in use, the symmetric distribution of the two active grooves 1133 and the two transmission members 122 makes the stress uniform, avoiding imbalance and deflection caused by single-sided stress, improving the overall stability, and providing double support. The two active grooves 1133 provide a more accurate guide path for the transmission member 122, ensuring that the transmission member 122 always maintains the correct direction and position during movement. The two transmission members 122 move synchronously, ensuring the uniformity and consistency of power transmission, and improving the accuracy of movement. And it can respond to the action of the driving assembly 11 faster, improving the response speed and dynamic performance of the system.
[0051] In the passive card ejection state, the two transmission members 122 can better adapt to the card 200 extraction action, reducing the resistance and making the card 200 extraction smoother.
[0052] In addition, the transmission member 122 can be set to one, extending from the lateral ends of the connecting shaft 121, or set to two, respectively arranged on the connecting shaft 121 for cooperation, as long as it can correspondingly cooperate with the two abutting parts 1132.
[0053] In the embodiment of the utility model, the central angle of the active groove 1133 is 100-170 degrees.
[0054] It is worth noting that the angle of the central angle needs to be large enough to ensure that the active slot 1133 has sufficient length. The angle of the central angle of the active slot 1133 is set to 100-170 degrees, so that the transmission member 122 can move freely from one end of the active slot 1133 to the other end without being hindered when the card 200 is being pulled out, i.e. from the end close to the abutting portion 1132 to the end away from the abutting portion 1132, avoiding the generation of a card jam or additional resistance during the pulling out of the card 200.
[0055] In actual use, in the passive card-out state, the card 200 has been sent out from the card-out channel 14, and at this time, half of the card 200 is exposed outside the card 200 channel, and the user can manually pull out the card 200. Therefore, the angle of the central angle of the active slot 1133 is set to 100-170 degrees, so that when the user pulls out the card 200, the transmission member 122 has sufficient space to move freely in the active slot 1133 from the end close to the abutting portion 1132 to the other end, so as to avoid resistance to the pulling out of the card 200. Since the movement of the transmission member 122 in the active slot 1133 does not generate additional resistance to the pulling out of the card 200, the user can easily pull out the card 200 without feeling significant resistance.
[0056] In a specific embodiment, the angle of the central angle of the active slot 1133 is set to 120 degrees, which provides sufficient active space, facilitates the compact design of the transmission wheel 113 while realizing the free movement of the transmission member 122, maintains the best performance and user experience, and is suitable for most application scenarios.
[0057] In another embodiment, as Figure 5 , the active slot 1133 is an arc-shaped slot, and the abutting portion 1132 is provided at the joint of the two active slots 1133. The arc-shaped active slot 1133 provides a continuous movement path, ensuring that the movement of the transmission member 122 in the active slot 1133 is smoother. The abutting portion 1132 at the joint of the two active slots 1133 can provide a clear positioning point, ensuring that the transmission member 122 closely fits the abutting portion 1132 in the active card-out state, and the transmission of power is more efficient. This design avoids right angles or sharp edges, reduces local stress concentration, makes the card 200 more smooth and stable during the card-out process, reduces card jams and failures, makes the pulling out of the card 200 more smooth, and improves the user experience.
[0058] In an embodiment of the present utility model, the active roller assembly 12 also includes two rollers 123, which are fixedly connected to the connecting shaft 121; the transmission member 122 includes a pin 1221, which is inserted into the connecting shaft 121 along the side of the connecting shaft 121 and partially exposed outside the connecting shaft 121, and the pin 1221 movably abuts against the supporting portion 1132.
[0059] Specifically, the two rollers 123 are fixedly connected to the connecting shaft 121 , and the two rollers 123 fit tightly with the card 200 , so that the friction force on the card 200 during movement is more uniform and the movement is more stable.
[0060] Pin 1221 movably abuts against abutment 1132, ensuring that transmission member 122 closely adheres to abutment 1132 during active card ejection, enabling more efficient power transmission. During passive card ejection, pin 1221 better accommodates the card 200's withdrawal, reducing resistance and enabling smoother card 200 withdrawal. The design of dual rollers 123 and pin 1221 makes the entire active roller assembly 12 more compact, saving space and making it suitable for space-constrained applications.
[0061] In one embodiment, if Figure 2 The driven roller assembly 13 is also provided with a rotating shaft (not marked in the figure) and two driven rollers (not marked in the figure). The two driven rollers are arranged corresponding to the two rollers 123 of the active roller assembly 12. The cooperation between the two can better clamp the card 200, reduce the shaking and shaking of the card 200 during the movement, and ensure the smooth movement of the card 200.
[0062] In an embodiment of the present invention, both ends of the pin shaft 1221 extend out along the side walls of the connecting shaft 121 , and the driving assembly 11 is provided with two abutting portions 1132 , on which both ends of the pin shaft 1221 abut.
[0063] In detail, such as Figure 5 The two ends of the pin 1221 extend along the sidewalls of the connecting shaft 121. Using one pin 1221 as two transmission members 122 reduces the number of components. The two ends of the pin 1221 respectively abut against the two abutting portions 1132, providing multiple points of contact and facilitating use. The pin 1221 is inserted into the connecting shaft 121. During installation, it is only necessary to insert the pin 1221 into the corresponding hole of the connecting shaft 121. This is a simple and quick operation, reducing installation time and difficulty.
[0064] The present invention also provides a circulating card issuing device 100, which includes a shell 20 and a card output mechanism 10 as described above. The shell 20 is provided with a card bin 21 and a card output port 22. The card output mechanism 10 is arranged in the shell 20 and is located between the card bin 21 and the card output port 22 to connect the card bin 21 and the card output port 22.
[0065] Specifically, the card bin 21 is used to store the card 200, and the card output mechanism 10 is used to push the card 200 from the card 200 channel to the card output port 22 for the user to take out, or the user pushes the card 200 from the card output port 22, and the card output mechanism 10 recovers the card 200 from the card output port 22 through the card 200 channel to the card bin 21.
[0066] The specific structure of the card issuing mechanism 10 refers to the above embodiments. Since the circulating card issuing device 100 adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be described one by one here.
[0067] In an embodiment of the present utility model, the circulating card issuing device 100 also includes an electric nozzle 30, which includes a main body 31, an indicator light 32, a rocker arm 33 and a sensor 34. The main body 31 is arranged in the shell 20, and the main body 31 is provided with the card outlet 22. An installation space 311 is provided below the main body 31, and the indicator light 32, the rocker arm 33 and the sensor 34 are provided in the installation space 311. An inclined surface 312 is provided above the main body 31; and / or, the active roller assembly 12 is spaced apart from the card outlet 22. The circulating card issuing device 100 also includes a card blocking mechanism 40 and a recycling box 50. The card blocking mechanism 40 is rotatably connected to the shell 20 and is located between the active roller assembly 12 and the card magazine 21. The recycling box 50 is arranged in the shell 20 and is located at the bottom of the card blocking mechanism 40.
[0068] It is worth noting that in the prior art, in an electronic card nozzle, the indicator light 32, sensor 34, and rocker 33 are generally arranged above the body 31. In the present application, the indicator light 32, sensor 34, and rocker 33 are arranged in the installation space 311 below the body 31, so that the top of the body 31 can be made into an inclined surface 312. Since the card-issuing device 100 needs to be relatively small in size to achieve the purpose of portability, the inclined surface 312 is provided above the body 31. When in use, the outermost part of the card-issuing device 100 will also be provided with an external packaging. A display panel can be provided on the inclined surface 312 to display information for easy viewing. Therefore, the design of the inclined surface 312 also reduces the overall space occupied and facilitates card retrieval by users.
[0069] like Figure 3The recycling box 50 is arranged at the bottom of the shell 20, when the card 200 needs to be recycled to the recycling box 50, the card 200 is stopped by the card stopping mechanism 40 between the driving roller assembly 12 and the card slot 21, and then the card 200 falls into the recycling box 50, in the process, if the card 200 is hard, the card 200 will be deformed in the process of resisting the card stopping mechanism 40, therefore, the driving roller assembly 12 is arranged at intervals with the card outlet 22, so as to accommodate the deformation of the hard card 200, and facilitate the card 200 to fall into the recycling box 50.
[0070] The above only describes the preferred embodiments of the present application, and does not limit the patent range of the present application, any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection range of the present application.
Claims
1. A card issuing mechanism, used in card issuing equipment, characterized in that: The card issuing mechanism includes: A driving assembly, wherein the driving assembly is provided with an axial hole and a supporting portion adjacent to the axial hole; An active roller assembly, the active roller assembly comprising a connecting shaft and a transmission member connected to the connecting shaft, one end of the connecting shaft movably passing through the shaft hole, and the transmission member movably abutting against the abutting portion; and A driven roller assembly, the driven roller assembly being arranged opposite to the active roller assembly and forming a card output channel; Wherein, the card issuing mechanism has an active card issuing state and a passive card issuing state; In the active card-ejecting state, the transmission member abuts against the abutting portion, so that the driving assembly drives the active roller assembly to drive the driven roller assembly to rotate, so that the card is ejected from the card-ejecting channel; In the passive card ejection state, the driving assembly stops, and the active roller assembly drives the transmission member away from the abutting portion.
2. The card issuing mechanism according to claim 1, wherein: The driving assembly includes a motor, a driving wheel and a transmission wheel. The driving wheel is connected to the output shaft of the motor. The driving wheel is connected to the transmission wheel through a belt. The transmission wheel is provided with the shaft hole and the abutting portion.
3. The card issuing mechanism according to claim 2, wherein: The transmission wheel is provided with a movable groove connected with the shaft hole, the abutment is formed by the groove wall of the movable groove protruding toward the shaft hole, the transmission member extends into the movable groove and abuts against the abutment.
4. The card issuing mechanism according to claim 3, wherein: There are a plurality of movable grooves, which are arranged on the transmission wheel at intervals along the circumferential direction, and each movable groove is provided with a supporting portion; There are multiple transmission members, and the multiple transmission members are arranged on the connecting shaft at intervals along the circumferential direction. The transmission members are arranged in a one-to-one correspondence with the movable grooves and the abutting parts.
5. The card issuing mechanism according to claim 4, wherein: There are two movable grooves, and the two movable grooves are symmetrically arranged on the transmission wheel; There are two transmission members, which are symmetrically arranged on the connecting shaft and correspond one to one to the two movable grooves.
6. The card issuing mechanism according to claim 5, wherein: The central angle of the movable groove is 100 degrees to 170 degrees.
7. The card issuing mechanism according to claim 1, wherein: The active roller assembly further comprises two rollers, which are fixedly connected to the connecting shaft; The transmission member includes a pin shaft, which is inserted into the connecting shaft along the side of the connecting shaft and partially exposed outside the connecting shaft. The pin shaft is movably abutted against the abutting portion.
8. The card issuing mechanism according to claim 7, wherein: The two ends of the pin shaft respectively extend out along the side wall of the connecting shaft, the driving assembly is provided with two abutting parts, and the two ends of the pin shaft respectively abut on the two abutting parts.
9. A card-issuing device, characterized in that: The circulating card issuing device includes a shell and a card output mechanism as described in any one of claims 1 to 8 above, the shell is provided with a card bin and a card output port, the card output mechanism is arranged in the shell and located between the card bin and the card output port to connect the card bin and the card output port.
10. The card-issuing device according to claim 9, wherein: The circular card issuing device further includes an electric card nozzle, which includes a body, an indicator light, a swing rod and a sensor. The body is arranged in the housing, the body is provided with the card outlet, an installation space is provided below the body, the indicator light, the swing rod and the sensor are provided in the installation space, and an inclined surface is provided above the body; And / or, the active roller assembly is spaced apart from the card outlet, and the circulating card issuing device also includes a card blocking mechanism and a recycling box, the card blocking mechanism is rotatably connected to the shell and is located between the active roller assembly and the card magazine, and the recycling box is arranged in the shell and is located at the bottom of the card blocking mechanism.