Automatic voucher issuing device and financial equipment
By designing an automatic voucher issuing device, and using the coordinated work of the media issuing mechanism, load transfer mechanism and printing mechanism, the problem of voucher issuing in the existing technology depends on manual operation, and the automated issuance and printing of vouchers is realized, which improves work efficiency and the degree of automation of equipment.
Patent Information
- Application Number
- CN202421658967.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-12
AI Technical Summary
In the issuance of vouchers such as passbooks, seal cards, business power of attorneys, etc., existing financial equipment relies on manual operations, and cannot realize the integrated operation of voucher issuance, registration and printing, and it is difficult to deal with a variety of blank vouchers.
An automatic certificate issuance device is designed, including a body, a medium distribution mechanism, a load transfer mechanism and a printing mechanism. The medium distributor is distributed on multiple placement layers, and the load transfer mechanism realizes automatic transmission and printing of the medium through the transfer table and the paper feeding assembly, and the printing mechanism is used to form the required credentials.
It realizes the automatic issuance, transfer and printing of vouchers, reduces manual operations, improves work efficiency, integrates the issuance, transfer and printing functions, simplifies the operation process, and can handle multiple types of vouchers.
Smart Images

Figure CN223006475U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of financial equipment, and more specifically, to a voucher automatic dispensing device and a financial equipment. Background Art
[0002] Modern financial enterprises such as banks have an increasing demand for the automation of financial equipment. At present, for vouchers such as passbooks, seal cards, business commission letters, etc., their dispensing mainly relies on manual operation. Staff need to put blank vouchers into a printer for printing and then conduct manual dispensing. In particular, for the transfer of media on financial equipment, it is relatively inconvenient and difficult to perform multi-layer back-and-forth automated media transmission.
[0003] Moreover, a large amount of manual operation is still required for the dispensing of blank vouchers. Even with some automated equipment, only semi-automation can be achieved. Staff need to manually obtain, register, and print, and it is impossible to achieve the integrated operation of voucher dispensing, registration, and printing, let alone handle various types of blank vouchers. Therefore, there is an urgent need to design an autonomous dispensing device for vouchers with highly integrated functions. Summary of the Utility Model
[0004] In view of this, the purpose of the present utility model is to provide a voucher automatic dispensing device and a financial equipment to solve the above problems.
[0005] The present utility model adopts the following solutions:
[0006] The present application provides a voucher automatic dispensing device, including a body, a media dispensing mechanism, a transfer mechanism, and a printing mechanism; the body is provided with a plurality of placement layers arranged longitudinally, and each placement layer is equipped with its own media dispensing mechanism; the transfer mechanism is movably configured on the body, corresponding to rotate between each media dispensing mechanism, and can further transport the media output by the media dispensing mechanism to the printing mechanism; the printing mechanism is used to print or supplement the media transmitted by the transfer mechanism to form the required vouchers; the transfer mechanism includes a transfer table, a paper feeding component configured on the transfer table, a guiding component for guiding the transfer table to move up and down longitudinally, and a driving component for providing power; the transfer table can be controlled by the driving component to move to the corresponding placement layer, so that the paper inlet of the paper feeding component is directly opposite to the paper outlet of the media dispensing mechanism to receive the media into the paper feeding component.
[0007] As a further improvement, the guiding component is composed of a plurality of guiding columns with sliding bearings, and the transfer table passes through the guiding columns and is fixed on the sliding bearings.
[0008] As a further improvement, the machine body includes a bottom plate and two side plates disposed on the bottom plate. The side plates are opposed to each other on the bottom plate and define an internal space for forming a placement layer through an upper frame beam and a lower frame beam horizontally disposed between the two side plates.
[0009] As a further improvement, there are three guiding columns. One end of one guiding column is directly fixed on the upper frame beam, and the other end thereof passes through the edge of the transfer table and is fixedly supported on the lower frame beam. The other two guiding columns are opposed to each other on the front and rear sides through mounting rods horizontally and vertically fixed on the frame beam, and have the same threading method as the previous guiding column.
[0010] As a further improvement, a plurality of mounting beams are horizontally disposed between the side plates, and at least two mounting beams are provided on the same layer. The space between the adjacent upper and lower mounting beams is used to define the placement layer.
[0011] As a further improvement, the bottom plate extends horizontally to form an installation space for the printing mechanism. After the transfer table moves to the lower limit position, the paper outlet of the paper feeding assembly is directly opposite to the paper inlet of the printing mechanism to receive the medium to the printing mechanism.
[0012] As a further improvement, the driving assembly includes a motor component, a driving wheel connected to the motor component, a driven wheel disposed above the driving wheel, and a belt connected between the driving wheel and the driven wheel; and the transfer table is fixed on the belt to move up and down following the belt.
[0013] As a further improvement, a tension spring component is provided on the machine body. The tension spring component is connected to the transfer table to provide an upward lifting force; and, a position sensor is provided on the placement layer of the machine body, as well as an upper limit sensor and a lower limit sensor for restricting the lifting path of the transfer table. An induction component cooperating with the sensor is provided on the transfer table; and, a control mechanism is further provided on the machine body. The control mechanism is electrically connected to the driving assembly and each sensor.
[0014] As a further improvement, it further includes a cutting mechanism, a gate mechanism and a recycling mechanism; the gate mechanism is disposed in front of the paper outlet of the printing mechanism. The cutting mechanism at least includes an automatic cutting assembly and a magnetic strip cutting assembly. The recycling mechanism is used to receive the cut medium waste.
[0015] The present application further provides a financial device, including the above-mentioned voucher automatic issuing device.
[0016] By adopting the above technical solutions, the following technical effects can be achieved by the present utility model:
[0017] 1. The voucher automatic dispensing device of the present application realizes the automatic dispensing, transfer, and printing of vouchers through the mutual cooperation among the medium dispensing mechanism, the transfer mechanism, and the printing mechanism. This significantly reduces manual operations, improves work efficiency, integrates the functions of voucher dispensing, transfer, and printing, simplifies the operation process, and enhances the overall performance and automation level of the device.
[0018] 2. Among them, the transfer table of the transfer mechanism can be controlled by the driving component to move up and down to the corresponding placement layer, correspondingly transfer the blank medium of the medium dispensing mechanism to the paper feeding component, and then transfer it to the printing mechanism. The longitudinal arrangement design of multiple placement layers on the machine body enables the processing of various types of vouchers to meet different business requirements on the one hand. On the other hand, the vertically stacked medium dispensing mechanisms are more conducive to the transfer table receiving paper during the lifting process, further improving the efficiency of automatic transfer. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a schematic structural diagram of the voucher automatic dispensing device according to an embodiment of the present utility model;
[0020] Figure 2 is Figure 1 a schematic structural diagram from another perspective in;
[0021] Figure 3 is a schematic structural diagram of the transfer mechanism and the medium mechanism of the voucher automatic dispensing device according to an embodiment of the present utility model on the machine body;
[0022] Figure 4 is Figure 3 a schematic structural diagram from another perspective;
[0023] Figure 5 is a sectional view of the voucher automatic dispensing device according to an embodiment of the present utility model;
[0024] Figures 6 to 8 is a schematic structural diagram of one of the medium dispensing mechanisms of the voucher automatic dispensing device according to an embodiment of the present utility model;
[0025] Figures 9 to 12 is a schematic structural diagram of another one of the medium dispensing mechanisms of the voucher automatic dispensing device according to an embodiment of the present utility model;
[0026] Figures 13 to 15 is a schematic structural diagram of the paper feeding component of the voucher automatic dispensing device according to an embodiment of the present utility model;
[0027] Figures 16 to 18 is a schematic structural diagram of the cutting mechanism of the voucher automatic dispensing device according to an embodiment of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model. Therefore, the following detailed description of the embodiments of the present utility model provided in the drawings is not intended to limit the scope of the present utility model claimed, but merely represents selected embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0029] Embodiment
[0030] Combined with Figures 1 to 5 , this embodiment provides an automatic voucher issuing device, which includes a machine body 1, a medium issuing mechanism 2, a transfer mechanism 3 and a printing mechanism 4.
[0031] Among them, the machine body 1 is provided with a plurality of placement layers arranged longitudinally, and each placement layer is equipped with its own medium issuing mechanism 2.
[0032] Among them, the transfer mechanism 3 is movably configured on the machine body 1, rotates between the respective medium issuing mechanisms 2, and can further transport the medium output by the medium issuing mechanism 2 to the printing mechanism 4.
[0033] Among them, the printing mechanism 4 is used to print or supplement the medium transmitted by the transfer mechanism 3 to form the required vouchers.
[0034] Furthermore, the transfer mechanism 3 includes a transfer table 5, a paper feeding component 6 arranged on the transfer table 5, a guiding component 7 for guiding the transfer table 5 to move up and down longitudinally, and a driving component 8 for providing power. The transfer table 5 can be controlled by the driving component 8 to move to the corresponding placement layer, so that the paper inlet of the paper feeding component 6 is directly opposite to the paper outlet of the medium issuing mechanism 2 to receive the medium into the paper feeding component 6.
[0035] In this embodiment, the guiding assembly 7 is composed of a plurality of guiding columns 9 with sliding bearings, and the transfer table 5 is disposed through the guiding columns 9 and fixed on the sliding bearings. The sliding bearings enable the transfer table 5 to move up and down more smoothly under the guidance of the guiding columns 9, and the use of the sliding bearings ensures the smooth movement of the transfer table 5 on the guiding columns 9, reduces friction and jamming phenomena, and provides high-precision guiding and positioning, enabling the transfer table 5 to accurately align with the media dispensing mechanisms 2 of each placement layer.
[0036] In this embodiment, the machine body 1 includes a bottom plate 10 and two side plates 11 disposed on the bottom plate 10. The side plates 11 are opposed to each other on the bottom plate 10, and the upper frame beam 12 and the lower frame beam 12 horizontally disposed between the two side plates 11 correspondingly define an internal space for forming the placement layer. Preferably, each media dispensing mechanism 2 is used to send media of different types and specifications. In this way, the bottom plate 10, the side plates 11, and the frame beam 12 together constitute a whole firm machine body 1 frame, providing good structural strength and stability, and the internal space is reasonably divided into a plurality of placement layers, maximizing the use of the internal space of the machine body 1 and being able to accommodate more media dispensing mechanisms 2.
[0037] Further, there are three guiding columns 9. One of the guiding columns 9 is directly fixed on the upper frame beam 12 at one end, and its other end is disposed through the edge of the transfer table 5 and fixedly supported on the lower frame beam 12. The other two guiding columns 9 are opposed to each other on the front and rear sides through mounting rods 13 horizontally and vertically fixed on the frame beam 12, and have the same threading manner as the previous guiding column 9. Thus, the three guiding columns 9 are evenly distributed at different positions of the transfer table 5, providing balanced supporting force and ensuring the smoothness of the transfer table 5 during movement.
[0038] Among them, a plurality of mounting beams 14 are horizontally disposed between the side plates 11, and at least two mounting beams 14 are provided on the same layer. The space between the adjacent upper and lower mounting beams 14 is used to define the placement layer. The horizontal arrangement of the mounting beams 14 enhances the connection between the side plates 11 and the stability of the overall structure. The setting of at least two mounting beams 14 on each layer ensures clear and orderly space division between adjacent placement layers, which is beneficial to placing different types of media dispensing mechanisms 2.
[0039] In this embodiment, the bottom plate 10 extends horizontally to form an installation space for the printing mechanism 4. After the transfer table 5 moves to the lower limit position, the paper outlet of the paper feeding assembly 6 is directly opposite to the paper inlet of the printing mechanism 4 to receive the medium and transfer it to the printing mechanism 4. On the one hand, the bottom plate 10 provides sufficient space, enabling the printing mechanism 4 to be conveniently installed and maintained, while ensuring the stability and reliability of operation. On the other hand, when the transfer table 5 is at the lower limit position, the precise docking of the paper feeding assembly 6 and the printing mechanism 4 ensures the accuracy and smoothness of medium transmission, thereby realizing efficient medium feeding and printing operations and greatly improving work efficiency.
[0040] In this embodiment, the driving assembly 8 includes a motor part 15, a driving wheel 16 connected to the motor part 15, a driven wheel 17 arranged above the driving wheel 16, and a belt 18 connecting the driving wheel 16 and the driven wheel 17. The transfer table 5 is fixed on the belt 18 to move up and down with the belt 18. By driving the belt 18 transmission system with the motor part 15, the up and down movement of the transfer table 5 can be precisely controlled to ensure that the transfer table 5 can accurately align with the medium dispensing mechanism 2 of each placement layer.
[0041] In this embodiment, a tension spring part 19 is provided on the machine body 1, and the tension spring part 19 is connected to the transfer table 5 to provide an upward lifting force. The tension spring part 19 can effectively bear the weight of the entire transfer mechanism 3, making it lighter and more stable during the lifting movement.
[0042] It should be noted that the machine body 1 is provided with a position sensor on the placement layer, as well as an upper limit sensor and a lower limit sensor for restricting the lifting path of the transfer table 5, and the transfer table 5 is provided with an induction part that cooperates with the sensors. The cooperation between the sensors and the induction part belongs to the existing optoelectronic sensing technology, so it will not be elaborated here.
[0043] Obviously, a control mechanism 20 is also provided on the machine body 1, and the control mechanism 20 is electrically connected to the driving assembly 8 and each sensor. As the central control system of the entire device, the control mechanism 20 can effectively conduct electrical control over each electrical mechanism.
[0044] In this embodiment, the voucher automatic dispensing device further includes a cutting mechanism 21, a gate mechanism 22, and a recycling mechanism 23. The gate mechanism 22 is arranged in front of the paper outlet of the printing mechanism 4. The cutting mechanism 21 at least includes an automatic cutting assembly and a magnetic stripe cutting assembly. The recycling mechanism 23 is used to receive the cut medium waste.
[0045] In addition, this embodiment also provides a financial device, including the above-mentioned voucher automatic dispensing device.
[0046] Next, the media dispensing mechanism 2, the paper feeding assembly 6, and the cutting mechanism 21 will be further described in detail.
[0047] Please refer to Figures 6 to 8 , in which a media dispensing mechanism 2 is configured to include an outer frame 24 and a storage box 25 that can be placed on the outer frame 24. A driving member 26 and a paper feeding roller 27 are provided on the outer frame 24. A plurality of stacked media are stored in the storage box 25, and an avoidance space allowing the paper feeding roller 27 to contact the media is correspondingly provided at the bottom of the storage box 25. The storage box 25 is provided with an outlet baffle 28 for forming a paper outlet. After being controlled by the driving member 26, the paper feeding roller 27 rotates to output the media in the storage box 25 along the direction of the paper outlet. The outlet baffle 28 is provided with a plurality of elastic piece assemblies, and each elastic piece assembly at least partially blocks the paper outlet to reduce the thickness of the media that can be selectively output from the paper outlet. In the above, by correspondingly blocking each elastic piece assembly at the paper outlet, the thickness of the media that can enter and exit the paper outlet is limited, preventing multiple media from being output at one time, and achieving a good anti-fooling purpose.
[0048] In this embodiment, at least a first elastic piece assembly 29 and a second elastic piece assembly 30 are provided. The first elastic piece assembly 29 is used to be installed and defined at the first height of the outlet baffle 28 to form a first constriction position for the paper outlet below. The second elastic piece assembly 30 is used to be installed and defined at the second height of the outlet baffle 28 to form a second constriction position for the paper outlet below. Thus, by setting the first and second elastic piece assemblies, constriction positions can be formed at different heights, providing greater flexibility to adapt to the requirements of different thicknesses and types of paper. And the user can easily adjust the height of the outlet baffle 28 according to actual needs, simplifying the operation steps and improving the use convenience.
[0049] In this embodiment, the first elastic piece assembly 29 is arranged in front of the outlet baffle 28, the second elastic piece assembly 30 is placed in front of the first elastic piece assembly 29, and the first height is greater than the second height. The first constriction position is used to allow the output of two or fewer media, and the second constriction position is used to allow the output of at most one media. In this way, by setting constriction positions at different heights, the output quantity of the media can be precisely controlled, avoiding chaos and paper jams caused by multiple sheets of paper being output simultaneously, and providing multiple guarantees to ensure that only one sheet of media can be output at a time.
[0050] It should be noted that the paper feeding roller 27 is provided inside the box-shaped body, and the paper feeding roller 27 is a rubber roller formed by a roller shaft. The driving member 26 transmits power in a belt drive manner. Thus, through power transmission, the paper feeding roller 27 is driven to rotate, and the rubber roller contacts the lowermost layer of the media in the storage box 25, and the media is correspondingly output along the paper outlet by relying on gravity when the rubber roller rotates.
[0051] In addition, a medium pressing mechanism is correspondingly provided inside the storage box 25 for keeping the internal medium in a pressed state at all times. It should be noted that for the pressing mechanism, reference can further be made to a passbook storage box with the patent number CN202121270409.7 in the applicant's prior application, and the passbook pressing mechanism disclosed therein will not be elaborated here.
[0052] Please refer to Figures 9 to 12 , in which another medium dispensing mechanism 2 is configured to include a housing 31, a paper feed cassette 32, and a paper feed assembly. An outlet 33 is provided at the front end of the housing 31, and the paper feed cassette 32 is correspondingly installed at the rear end of the housing 31. The paper feed assembly includes a paper lifting roller 34 and a set of conveying rollers 35. The paper feed cassette 32 is provided with a tray 36 for supporting the medium and an elastic member 37 for providing the tray 36 with a pressing force for pressing the medium along the direction of the paper lifting roller 34. The set of conveying rollers 35 forms a paper feeding channel, and the paper lifting roller 34 can correspondingly convey the contacted medium to the paper feeding channel, and then convey the medium along the outlet 33 through the set of conveying rollers 35.
[0053] The above-mentioned automatic dispensing mechanism for the medium conveys the medium in the paper feed cassette 32 to the set of conveying rollers 35 through the paper lifting roller 34, and then conveys the medium along the paper feeding channel to the outlet 33, so as to realize automatic medium dispensing without manual intervention, greatly improving work efficiency and operation convenience. In particular, the mutual cooperation of the paper lifting roller 34 and the set of conveying rollers 35 of the paper feed assembly enables the medium to be smoothly and steadily conveyed from the paper feed cassette 32 to the outlet 33, reducing the risk of paper jams or paper damage. In particular, the elastic member 37 can provide a stable pressure for the tray 36 to ensure good contact between the medium and the paper lifting roller 34, improving the reliability and accuracy of medium extraction, and the relative configuration of the tray 36 and the elastic member 37 can be adjusted according to needs to adapt to different types and thicknesses of media, with a wide range of applications.
[0054] In this embodiment, one side of the tray 36 is configured as a hinged end, and the other side is configured as a swinging end, so that the tray 36 can be limited to swing up and down relative to the paper feed cassette 32, and the elastic member 37 is close to and supported on the swinging end. As Figure 2 and Figure 3 shown, specifically, hinge shafts 38 pivotally connected to the paper feed cassette are correspondingly provided on both sides of the rear end of the tray 36, and a limiting shaft 39 is correspondingly provided at the front end of the tray 36. An activity slot 40 allowing the limiting shaft 39 to swing up and down is correspondingly opened on the side wall of the paper feed cassette, so that the whole tray 36 swings up and down relative to its hinge shaft 38, and under the action of the elastic member 37, the tray 36 is inclined upward in the paper feed cassette.
[0055] Further, the paper lifting roller 34 is disposed opposite to the swing end, and after the tray 36 swings to the extreme position, at least the last medium stacked can elastically contact the paper lifting roller 34. Preferably, the elastic member 37 is configured as a plurality of springs abutting between the bottom of the paper feeding cassette and the bottom of the tray 36.
[0056] It should be noted that the media is stacked on the tray 36 and is defined on the tray 36 under the pressing of the paper lifting roller 34. In the state of full media, the elastic member 37 is in a compressed state. As the media is transported to the transfer roller group 35 and the paper outlet 33 by the paper lifting roller 34 one by one, the thickness of the media material gradually becomes smaller. At this time, the elastic member 37 is released from the compressed state until it expands to make the tray 36 in the extreme position. A medium is accommodated between the tray 36 and the paper lifting roller 34 in the extreme position and always remains elastically pressed to allow the medium to be sent out by the paper lifting roller 34.
[0057] In this embodiment, the paper lifting roller 34 is connected to a power member. The paper feeding power provided by the power member to the paper lifting roller 34 facilitates the transfer of the medium to the transfer roller group 35 in the next stage. The transfer roller group 35 is composed of two rubber rollers that are arranged opposite to each other to form the paper feeding channel. One of the rubber rollers is connected to another power member. The power member provides rotation to the rubber roller to drive the rubber roller to feed the paper to the paper outlet 33.
[0058] In this embodiment, a guiding member 41 is provided between the paper lifting roller 34 and the transfer roller group 35. The guiding member 41 is smoothly connected to the paper feeding channel in a slope. By arranging the guiding member 41 between the paper lifting roller 34 and the transfer roller group 35, the medium transported by the paper lifting roller 34 first feeds the paper along the guiding member 41, which is convenient for the medium to be further accurately transported between the two rubber rollers of the transfer roller group 35.
[0059] Please refer to Figures 13 to 15 , the paper feeding assembly 6 is configured as a carrier 43 provided on the base 42 (i.e., the above-mentioned transfer table 5). The carrier 43 is provided with a plurality of transfer rollers 44 for transporting the medium, and the transfer rollers 44 correspondingly form a paper feeding channel. The transfer rollers 44 include an upper rubber roller 45 and an upper rubber roller 46 that are arranged opposite to each other to transport the medium A. The upper rubber roller 45 is configured to be movable up and down relative to the upper rubber roller 46 on the carrier 43. The carrier 43 is further provided with an elastic member 47 that can provide downward pressure to the upper rubber roller 45 to contact the medium A. When the medium enters the paper feeding channel, the upper rubber roller 46 and the upper rubber roller 45 keep the input medium A elastically pressed to correspondingly output the medium.
[0060] In the above-mentioned medium transmission and processing mechanism, an elastic member 47 is provided on the coating roller 45 to provide elastic pressure to the coating roller, which can not only ensure the transmission of medium A, but also will not cause excessive indentation or damage to medium A, thus protecting the integrity of medium A. And by adjusting and applying pressure to the coating roller 45 through the elastic member 47, the structural configuration is simpler, the manufacturing and maintenance costs are lower, and at the same time, the reliability and service life of the device are improved. It can be widely applied to financial equipment and occasions such as printing and transmission, and has wide applicability.
[0061] In this embodiment, the elastic member 47 includes spring pressing plates respectively pressed on both ends of the coating roller 45. The spring pressing plates elastically deform after the medium enters and exits the two coating rollers, and correspondingly provide a downward elastic pressing force to the coating roller 45. Among them, the elastic deformation of the spring pressing plate can automatically adjust the pressing force of the coating roller 45 on the medium, ensuring that a stable pressure can still be provided in the case of different medium thicknesses or different medium hardnesses. And the provided elastic pressure can better protect the surface of the medium and reduce medium damage or scratches caused by overpressure. In particular, it can be adapted to the free output of media with different thicknesses without adjusting the distance between the coating rollers, and is extremely suitable for the transmission scenarios of various medium thicknesses.
[0062] In this embodiment, the coating roller 45 is rotatably arranged in a strip-shaped groove 48 extending longitudinally on the carrier 43. The two ends of the strip-shaped groove 48 correspondingly define the upper limit position and the lower limit position of the coating roller 45. Thus, by horizontally arranging in the two strip-shaped grooves 48 to correspondingly define the position of the coating roller 45, both ends of the coating roller 45 are horizontally arranged in the strip-shaped groove 48 and can rotate relatively freely. When transmitting a medium with a larger thickness, the coating roller 45 is squeezed by the medium and correspondingly moves upward against the elastic force of the elastic member 47, and remains tightly pressed on the medium. When the coating roller 45 moves to the upper limit position, it correspondingly forms the largest paper feeding gap with the coating roller 46. When the coating roller 45 moves to the lower limit position, it correspondingly forms the smallest paper feeding gap with the coating roller 46. Thus, it is possible to allow the transmission and processing of medium thicknesses within the range of the two paper feeding gaps.
[0063] It should be noted that the coating roller 46 is axially hinged on the carrier 43 and is located below the coating roller 45. Relative to the coating roller 45 that can move up and down, the coating roller 46 can be stably limited on the carrier 43 to rotate relative to its axis direction after being driven by an external force.
[0064] In this embodiment, the carrier table 43 is provided with an electromagnet 49, and the electromagnets 49 are respectively arranged above the two end parts of the glue application roller 45, and are used to adsorb the glue application roller 45 to the upper limit position by overcoming the elastic force after the electromagnets 49 are energized. Preferably, on the conveying glue roller in the latter section close to the medium output, an electromagnet 49 is correspondingly provided, and the glue application roller 45 is actively switched to the upper limit position by magnetic attraction, so as to achieve zero pressure on the medium in a specific required state.
[0065] In this embodiment, a driving element is provided on the carrier table 43 for driving the paper feeding of each conveying roller 44, and the driving element is a unified belt pulley transmission method. It should be noted that the conveying rollers 44 are arranged at intervals in sequence along the paper feeding channel, and at least two groups of magnetic strip cutting mechanisms 21 for the medium are correspondingly provided between two of the conveying rollers 44. The medium enters the mechanism along the conveying roller 44 at the front section of the input, and is correspondingly output to the latter section under the cooperation of each conveying roller 44. The provided magnetic strip cutting mechanism 21 is used for individually cutting the medium.
[0066] Please refer to Figures 16 to 18 , the cutting mechanism 21 is configured to include a base seat 50, a swing arm 51 arranged on the base seat 50, and a cutter assembly 52 installed on the swing arm 51. A power assembly 53 is provided on the base seat 50. The swing arm 51 is connected to the power assembly 53 to freely rotate relative to the lifting position and the cutting position. An induction sheet 54 is provided on the swing arm 51, and an inductor cooperating with the induction sheet 54 is provided on the base seat 50. The induction sheet 54 has a first induction area 55 and a second induction area 56, and when the first induction area 55 is acquired by the inductor, the swing arm 51 is correspondingly limited to the lifting position, and when the second induction area 56 is acquired by the inductor, the swing arm 51 is correspondingly limited to the cutting position.
[0067] The above-mentioned magnetic strip cutting mechanism realizes the precise control of the swing arm 51 between the lifting position and the cutting position through the cooperation of the induction sheet 54 and the inductor. The first induction area 55 and the second induction area 56 provided on the induction sheet 54 respectively correspond to the lifting position and the cutting position of the swing arm 51, so that the swing arm 51 is accurately limited in the lifting position and the cutting position, reducing the risk of misoperation, ensuring the accuracy and consistency of the cutting operation, guaranteeing the safety of the operator, ensuring the stability and reliability of the position of the swing arm 51, eliminating the need for manual intervention, simplifying the process of the cutting operation, and significantly improving the automatic cutting of the magnetic strip.
[0068] In this embodiment, at least a first sensor 57 for acquiring a first sensing area 55 and a second sensor 58 for acquiring a second sensing area 56 are provided on the base seat 50. The sensing piece 54 follows to make its first sensing area 55 cooperate in alignment with the first sensor 57, and the sensing piece 54 follows to make its second sensing area 56 cooperate in alignment with the second sensor 58. In this way, when the first sensing area 55 is in alignment with the first sensor 57, the swing arm 51 is limited to the lifting position at this time. When the second sensing area 56 is in alignment with the second sensor 58, the swing arm 51 is limited to the cutting position at this time. The combined use of the two sensors makes the switching between different sensing areas smoother and more reliable.
[0069] Specifically, the first sensor 57 is in the shape of a socket and is horizontally placed in a horizontal position, the second sensor 58 is in the shape of a socket and is vertically placed in a vertical position, and the sensing piece 54 is semicircular and rotatably accommodated in the sockets of the respective sensors. On the one hand, the arrangement of the sensors in the horizontal and vertical directions enables the sensing system to make full use of space and avoids interference between the sensors. On the other hand, the semicircular design and rotatable characteristics of the sensing piece 54 enable it to sense in the horizontal and vertical directions, realizing multi-directional alignment cooperation.
[0070] Furthermore, both the first sensing area 55 and the second sensing area 56 are formed on the sensing piece 54 in the form of hollowed-out grooves, and the width of the first sensing area 55 is greater than the width of the second sensing area 56. In the prior art, when the swing arm 51 is lifted and suddenly stopped, there will be an inertial deflection, resulting in the inability to find the original zero position and causing a malfunction. In this embodiment, the width of the first sensing area 55 is designed to be widened, which can effectively avoid the occurrence of such problems. Even if the deflection is caused by sudden stop, it will be controlled within the first sensing area 55, thereby improving the effectiveness of the work.
[0071] It should be noted that each sensor is provided with a transmitting end at the front end in the shape of a socket, and a receiving end is correspondingly provided at the rear end, and the main body of the sensing piece 54 can block the transmitting end and the receiving end, and the sensing area of the sensing piece 54 can correspondingly release the blocking. Obviously, for the transmission and reception of the sensor, as well as the blocking and reception, the specific working principle of the existing sensor can be referred to, which will not be elaborated here.
[0072] In this embodiment, the cutter assembly 52 includes a tool holder 59, as well as a first blade 60 and a second blade 61. The tool holder 59 is in a U shape and is detachably configured at the end of the swing arm 51, and the first blade 60 and the second blade 61 are respectively configured at the left and right ends of the tool holder 59. Through the mutual cooperation of the first blade 60 and the second blade 61 arranged on both sides, the magnetic strip is quickly cut.
[0073] Furthermore, the first blade 60 and the second blade 61 are arranged in a staggered manner at the position where the tool holder 59 is located, so as to respectively cut onto the medium to be cut during the cutting process. Thus, a certain stagger is provided between the two blades on the tool holder 59, and then the blades can be cut separately when cutting, effectively reducing the cutting resistance and making the cut incision smoother and flatter.
[0074] The above are only the preferred embodiments of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention.
Claims
1. A voucher automatic issuing device, comprising a body, a medium issuing mechanism, a transfer mechanism and a printing mechanism; characterized in that: The machine body is provided with a plurality of placement layers arranged in the longitudinal direction, and each placement layer is provided with a medium dispensing mechanism belonging to the respective placement layers; The transfer mechanism is movably arranged on the machine body, correspondingly circulates between the medium dispensing mechanisms, and can further transport the medium output by the medium dispensing mechanism to the printing mechanism; The printing mechanism is used to print or supplement the medium transferred by the transfer mechanism to form the required voucher; in, The transfer mechanism includes a transfer platform, a paper feeding assembly arranged on the transfer platform, a guide assembly for guiding the transfer platform to move up and down in the longitudinal direction, and a driving assembly for providing power; the transfer platform can be controlled by the driving assembly and then move to the corresponding placement layer, so that the paper inlet of the paper feeding assembly and the paper outlet of the medium dispensing mechanism are opposite to each other, so as to receive the medium to the paper feeding assembly.
2. The automatic voucher issuing device according to claim 1, characterized in that: The guide assembly is composed of a plurality of guide columns with sliding bearings, and the transfer platform is penetrated through the guide columns and fixed on the sliding bearings.
3. The automatic voucher issuance device according to claim 2, characterized in that: The machine body includes a bottom plate and two side plates arranged on the bottom plate. The side plates are opposite to the bottom plate and define an internal space for forming a placement layer through an upper frame beam and a lower frame beam horizontally arranged between the two side plates.
4. The automatic voucher issuing device according to claim 3, characterized in that: There are three guide columns, one of which has one end directly fixed on the upper frame beam, and the other end is passed through the edge of the transfer platform and fixedly supported on the lower frame beam. The other two guide columns are arranged on the front and rear sides through mounting rods fixed horizontally and vertically on the frame beams, and are consistent with the passing method of the previous guide column.
5. The automatic voucher issuing device according to claim 3, characterized in that: A plurality of mounting beams are disposed transversely between the side plates, and at least two mounting beams are disposed on the same layer. The mounting beams of two adjacent upper and lower layers are used to define the placement layer.
6. The automatic voucher issuing device according to claim 3, characterized in that: The bottom plate extends in the horizontal direction to form an installation space for the printing mechanism. After the transfer platform moves to the lower limit position, the paper outlet of the paper feeding assembly and the paper inlet of the printing mechanism face each other to receive the medium to the printing mechanism.
7. The automatic voucher issuing device according to claim 1, characterized in that: The driving assembly includes a motor, a driving wheel connected to the motor, a driven wheel arranged above the driving wheel, and a belt connected between the driving wheel and the driven wheel; and the transfer platform is fixed on the belt to move up and down following the belt.
8. The automatic voucher issuing device according to claim 1, characterized in that: The machine body is provided with a tension spring, and the tension spring is connected to the transfer platform to provide an upward lifting force; and The machine body is provided with a position sensor on the placement layer, and an upper limit sensor and a lower limit sensor for limiting the lifting path of the transfer platform, and a sensing element cooperating with the sensor is provided on the transfer platform; and, The machine body is also provided with a control mechanism, which is electrically connected with the driving component and each sensor.
9. The automatic voucher issuing device according to claim 1, characterized in that: It also includes a cutting mechanism, a gate mechanism and a recycling mechanism; the gate mechanism is arranged in front of the paper outlet of the printing mechanism, the cutting mechanism at least includes an automatic cutting component and a magnetic stripe cutting component, and the recycling mechanism is used to receive the waste media after cutting.
10. A financial device, characterized in that: It comprises the automatic voucher issuance device as described in any one of claims 1-9.
Citation Information
Patent Citations
Bankbook storage box
CN215476686U
Cited By
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