A passbook processing device
By designing a passbook processing device, the automatic issuance and collection of passbooks were realized, solving the problem of low automation in existing technologies and improving efficiency and security.
Patent Information
- Application Number
- CN202210594128.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-27
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2042-05-27
Smart Images

Figure CN114944041B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bank automation equipment, and more specifically to a passbook processing device. Background Technology
[0002] A passbook is a book used to record bank transactions for deposit accounts. Currently, various banks, rural cooperatives, and other financial institutions still issue passbooks manually. Funds for medical care, pensions, and subsidies are currently disbursed through passbook accounts. Furthermore, many elderly people are accustomed to using passbooks for deposits and withdrawals, allowing them to check the status of their funds in real time; therefore, passbooks are frequently used.
[0003] The entire process of issuing passbooks, except for the printing of passbooks, is currently entirely manual, with low automation, low efficiency, and a high risk of errors. At the same time, it is making the workload of business personnel increasingly heavy.
[0004] Therefore, given the current problems of low automation and low efficiency in passbook issuance, it is urgent to change the passbook issuance process to automatic issuance and registration, eliminating the need for manual intervention. This can be integrated into a single device, allowing for 24-hour self-service operation, reducing the workload of passbook operations, thereby lowering labor costs and improving work efficiency. Summary of the Invention
[0005] To achieve the above objectives, the present invention aims to provide a new technical solution that is highly efficient, saves manpower, and is safer.
[0006] The technical solution of the present invention to solve the above-mentioned technical problems is as follows:
[0007] The passbook box, disbursement device, activity channel, registration mechanism, gate mechanism, recycling bin, and lower box;
[0008] The lower box has an internal cavity; the passbook box is installed on the upper surface of the lower box; the passbook box also has an internal cavity, with an openable top plate at the upper end and an open opening at the lower end; the upper end of the lower box communicates with the open opening; the dispensing device is installed inside the lower box at the upper part and directly below the open opening; the movable channel is close to the passbook box and hinged to the upper surface of the lower box; the registration mechanism is installed close to the movable channel; the movable channel connects the open opening and the registration mechanism; the gate mechanism is installed on the side of the registration mechanism away from the movable channel; the recycling bin is also installed inside the lower part of the lower box.
[0009] The beneficial effects of this invention are as follows: Passbooks are stacked inside the passbook box via the top plate at the top of the box, and then issued through the opening by the dispensing device. They pass through a movable channel to the registration mechanism for automatic identification and printing. After the registration mechanism completes its operation, the passbook is sent to the gate mechanism, from which the customer can retrieve it. Furthermore, if a passbook remains unclaimed for an extended period, to prevent loss, the registration mechanism returns the passbook to the movable channel, where it then enters the recycling bin. The entire process is automated, convenient, fast, and highly efficient.
[0010] Based on the above technical solution, the present invention can be further improved as follows:
[0011] Furthermore, the passbook box also includes a spring and a pressure plate. The spring is vertically installed at the upper end of the inside of the passbook box, and the pressure plate is connected to the lower end of the spring. Under the action of the spring, the pressure plate presses tightly against the passbooks stacked inside the box.
[0012] The beneficial effects of adopting the above-mentioned further solution are: the spring and pressure plate are used to press the internally stacked passbooks, so that the passbooks are close to the open opening at the bottom of the passbook box. The spring provides pressure throughout the process, and the pressure plate expands the pressure area, reducing excessive pressure on the top passbook and preventing damage to the top passbook.
[0013] Furthermore, the dispensing device includes a friction wheel assembly, a dispensing motor, an anti-double-tightening baffle, an anti-double-tightening wheel, and a check motor; the opening includes multiple rectangular through holes located directly below the passbook box and a dispensing outlet located on the lower side of the passbook box; the dispensing motor is rotatably connected to the friction wheel assembly, the friction wheel assembly is installed in the lower box and located in the rectangular through holes; the dispensing outlet communicates with the movable channel; the check motor drives the anti-double-tightening wheel to rotate; the anti-double-tightening wheel is installed at the upper front end of the dispensing outlet; the anti-double-tightening baffle is installed in front of the dispensing outlet and located between the anti-double-tightening wheel and the dispensing outlet.
[0014] The beneficial effects of adopting the above-mentioned further solution are as follows: the dispensing motor rotates and connects to the friction wheel assembly, which then rotates within a rectangular through-hole, using friction to push the passbook out from the side dispensing outlet. The anti-double-bill wheel, driven by the check motor, initially rotates counter-clockwise to increase the thrust of the passbook out of the dispensing outlet. The distance between the anti-double-bill baffle and the bottom surface of the dispensing outlet is set to the thickness of one passbook, thus preventing the friction wheel assembly and anti-double-bill wheel from initially dispensing two passbooks at once. When this passbook encounters the anti-double-bill baffle, the check motor drives the anti-double-bill wheel to rotate clockwise, thus returning the extra passbook to the passbook box. The entire passbook dispensing process is cleverly designed, effectively achieving efficient and rapid dispensing of passbooks while avoiding the error of dispensing two passbooks.
[0015] Furthermore, the friction wheel assembly has multiple friction wheels, which are distributed at an angle from low to high in the rectangular through hole toward the dispensing outlet, reaching their highest point near the dispensing outlet. Each friction wheel is also equipped with an adaptive spring below it.
[0016] The beneficial effect of adopting the above-mentioned further solution is that multiple friction wheels are distributed at an incline from low to high in the rectangular through hole along the direction of the dispensing outlet, so that the passbook is in a forward-tilted state in the passbook box. This can reduce the height difference between the passbook and the anti-double-blind baffle, making the passbook encounter less resistance when passing through the anti-double-blind baffle, and greatly improving the dispensing success rate.
[0017] Furthermore, the movable channel includes a housing, a transport channel, a channel drive wheel, and a channel motor. The housing is hinged to the lower box, and the housing can be lifted along the hinge. When the housing is placed horizontally, the transport channel is formed between the bottom end of the housing and the lower box. The transport channel connects to the open opening and the replenishment mechanism. The channel motor is connected to and drives the channel drive wheel to rotate. The channel drive wheel is installed at the bottom end of the housing and is located above the transport channel. The upper end of the lower box is also provided with a driven wheel, which is located below the transport channel. The channel drive wheel drives the driven wheel to rotate through friction.
[0018] The beneficial effects of adopting the above-mentioned further scheme are as follows: the transport channel is used for the passage of passbooks. The front end of the transport channel is used to send the passbooks over by a friction wheel set. After the passbooks are placed at the front end of the transport channel, the channel motor drives the channel drive wheel to rotate. With the cooperation of the driven wheel, the passbooks are carried between the channel drive wheel and the driven wheel to the rear end of the transport channel, and then enter the registration channel.
[0019] Furthermore, the lower housing is also provided with a recycling gap connecting to the transport channel. The recycling gap is located between the channel drive wheel and the open opening. An inclined recycling flap is also hinged in the lower housing, and the hinge point is located in the upper half of the recycling flap. The recycling flap has a plate-like structure and is located below the open opening. The upper end of the recycling flap extends into the transport channel through the recycling gap, and the lower end of the recycling flap, by its own weight, causes the upper end of the recycling flap to abut against the recycling gap and be close to the side of the open opening.
[0020] The beneficial effects of adopting the above-mentioned further solution are as follows: the retrieval gap is used to allow passbooks that have not been retrieved for a long time to enter the retrieval box when brought back by the replenishment mechanism. Specifically, the retrieval flap is hinged in the lower box via its upper section. Under gravity, the upper end of the retrieval flap abuts against the side of the retrieval gap near the open opening. This design ensures that when the passbook enters the transport channel through the dispensing outlet, the upper end of the retrieval flap rotates along the hinge point to cover and block the retrieval gap as the passbook moves, preventing the passbook from entering the retrieval box during dispensing. Simultaneously, when the passbook needs to enter the retrieval box from the transport channel, the retrieval gap blocks the rotation of the retrieval flap, causing the upper end of the retrieval flap extending into the transport channel to block the passbook from entering the dispensing outlet. This ensures that the passbook can only pass through the retrieval gap and be guided into the retrieval box by the retrieval flap. The entire process is cleverly designed, satisfying the passbook retrieval requirement without affecting the dispensing process, improving overall work efficiency, and reducing personnel workload.
[0021] Furthermore, the registration mechanism includes a registration channel and a printing mechanism. The registration channel is located below the printing mechanism and connects the active channel and the gate mechanism.
[0022] The beneficial effects of adopting the above-mentioned further scheme are: the supplementary registration mechanism is used to read and write magnetic stripe information and print relevant information on the passbook, wherein the supplementary registration channel is used for the passbook to pass through, the printing mechanism is used to print the passbook and push the passbook forward, and at the same time, when the passbook is retrieved, the printing mechanism can also be used to push the passbook to move in the opposite direction.
[0023] Furthermore, the gate mechanism includes a cover, a support plate, a flap, and a telescopic cylinder. The cover is connected to the replenishment mechanism. The support plate is installed at the bottom of the cover. The flap is hinged to the end of the support plate and connects the inside of the cover with the outside. The telescopic cylinder is connected to the flap and drives the flap to rotate along the hinge, so as to realize the connection between the cover and the outside.
[0024] The beneficial effect of adopting the above-mentioned further solution is that when the passbook is printing information at the supplementary printing institution, it often goes in and out several times. In order to avoid the customer misunderstanding and taking it before the printing is finished, a gate mechanism is used to control the retrieval. When the printing is completed, the passbook is located on the support plate. At this time, the telescopic cylinder pulls the flip plate to flip down along the hinge, thereby opening the cover. At this time, the customer can reach in from the original position of the flip plate to take it.
[0025] Furthermore, the lower housing is also provided with an outward-opening door, which corresponds to the recycling bin. The outward-opening door can be opened to remove the recycling bin.
[0026] The beneficial effect of adopting the above-mentioned further solution is that the lower box can be easily removed by opening the outward door, and then the bankbooks collected in the recycling box can be taken out, which is convenient and quick. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the structure of the present invention;
[0028] Figure 2 This is a cross-sectional view of the internal structure flap of the present invention opened downwards;
[0029] Figure 3 This is a cross-sectional view of the internal structure of the present invention with the flaps facing upwards and closed.
[0030] Figure 4 This is a schematic diagram of the structure of the raised active channel of the present invention;
[0031] Figure 5 This is a schematic diagram of the friction wheel assembly and adaptive spring of the present invention.
[0032] The attached diagram lists the components represented by each number as follows:
[0033] 1. Passbook box; 11. Top plate; 12. Opening; 13. Spring; 14. Pressure plate; 2. Disbursement device; 21. Friction wheel assembly; 22. Disbursement motor; 23. Anti-double-tightening baffle; 24. Anti-double-tightening wheel; 25. Adaptive spring; 3. Moving channel; 31. Housing; 32. Transport channel; 33. Channel drive wheel; 34. Channel motor; 4. Replenishment mechanism; 41. Replenishment channel; 42. Printing mechanism; 5. Gate mechanism; 51. Cover; 52. Support plate; 53. Flip plate; 54. Telescopic cylinder; 6. Recycling box; 7. Lower box body; 71. Driven wheel; 72. Recycling flip plate; 73. Recycling gap; 74. Outward opening door. Detailed Implementation
[0034] To make the purpose, technical solution, and advantages of the invention clearer, the invention will be further described in detail below with reference to the accompanying drawings, but this is not intended to limit the scope of the invention.
[0035] Example 1: As Figure 1-2 As shown, an embodiment of a passbook processing device disclosed in this invention includes:
[0036] 1. Passbook box; 2. Issuance device; 3. Activity channel; 4. Replenishment mechanism; 5. Gate mechanism; 6. Recycling box; and 7. Lower box body.
[0037] The lower box 7 has an internal cavity; the passbook box 1 is installed on the upper surface of the lower box 7; the passbook box 1 also has an internal cavity, and has an openable top plate 11 at the upper end and an open opening 12 at the lower end; the upper end of the lower box 7 is connected to the open opening 12; the dispensing device 2 is installed inside the upper part of the lower box 7 and is located directly below the open opening 12; the movable channel 3 is close to the passbook box 1 and hinged to the upper surface of the lower box 7; the refilling mechanism 4 is installed close to the movable channel 3; the movable channel 3 connects the open opening 12 and the refilling mechanism 4; a gate mechanism 5 is installed on the side of the refilling mechanism 4 away from the movable channel 3; a recycling box 6 is also installed inside the lower end of the lower box 7.
[0038] Specifically, the passbooks are stacked below the passbook box 1 by opening the top plate 11. Multiple passbooks are stacked with their first pages open in the internal space of the passbook box 1, with the original passbook in front and the first page behind, and the page to be printed facing down. The dispensing device 2 is installed inside the lower box 7 and above the opening 12. The dispensing device 2 pushes out the passbook at the bottom of the passbook box 1 from the opening 12 to the activity channel 3. The activity channel 3 then sends the passbook to the registration mechanism 4. The registration mechanism 4 reads and writes the magnetic stripe information on the passbook and prints the relevant information on the passbook. The printed passbook is then transported to the gate mechanism 5 and taken away by the customer. If the passbook is not taken away for a long time during this process, in order to avoid loss, the registration mechanism 4 will reverse the transport of the passbook and then transport it back to the recycling box 6 via the activity channel 3.
[0039] It should be understood that the coefficient of friction of the page to be printed on the passbook is much greater than that of the outermost surface. Placing the page to be printed downwards is more conducive to the dispensing device 2 pushing the page to be printed on the passbook than placing it upwards. This facilitates the passbook being pushed out of the opening 12 into the moving channel 3, which is used for the rapid passage of the passbook. The registration mechanism 4 completes the reading and printing of the information on the passbook and sends the completed passbook to the gate mechanism 5 for the user to take away. The whole process is automated, convenient, fast, and efficient, saving a lot of manpower and resources. It can also be connected to the network for convenient self-service operation.
[0040] Based on Example 1, Example 2: as follows Figure 1-3 As shown, the passbook box 1 also includes a spring 13 and a pressure plate 14. The spring 13 is vertically installed at the upper end of the inside of the passbook box 1, and the pressure plate 14 is connected to the lower end of the spring 13. Under the action of the spring 13, the pressure plate 14 presses tightly against the passbooks stacked inside the box.
[0041] Specifically, spring 13 is vertically installed at the upper end of the internal cavity of passbook box 1, and pressure plate 14 is connected to the lower end of spring 13. Under the action of spring 13, pressure plate 14 is pressed tightly against the stacked passbooks. Whenever a passbook is used up, pressure plate 14 can still maintain pressure on the remaining passbooks so that the friction force of dispensing device 2 on the bottom passbook is large enough to complete the push-out of the passbooks. Spring 13 provides pressure for the entire push-out process, and pressure plate 14 increases the pressure area of the passbooks, reduces the squeezing force on the top passbook, and avoids damaging the top passbook.
[0042] Based on Example 1, Example 3: as follows Figure 2-3 As shown, the dispensing device 2 includes a friction wheel assembly 21, a dispensing motor 22, an anti-double-tightening baffle 23, an anti-double-tightening wheel 24, and a check motor; the open opening 12 includes multiple rectangular through holes located directly below the passbook box 1 and a dispensing outlet located on the lower side of the passbook box 1. The dispensing motor 22 is rotatably connected to the friction wheel assembly 21. The friction wheel assembly 21 is installed in the lower box 7 and located in the rectangular through holes. The dispensing outlet is connected to the movable channel 3. The check motor drives the anti-double-tightening wheel 24 to rotate. The anti-double-tightening wheel 24 is installed at the upper front end of the dispensing outlet. The anti-double-tightening baffle 23 is installed in front of the dispensing outlet and is located between the anti-double-tightening wheel 24 and the dispensing outlet.
[0043] Specifically, the dispensing motor 22 drives the friction wheel assembly 21 to rotate. The friction wheel assembly 21 provides friction to the face of the passbook facing down through the rectangular through hole. At this time, the passbook is pushed out of the dispensing outlet under the drive of the friction wheel assembly 21. At the same time, the check motor drives the anti-double-opening wheel 24 to rotate counterclockwise, which also provides friction for pushing out the passbook. However, since there is also friction between the passbooks, two passbooks may be pushed out at this time. Therefore, the anti-double-opening baffle 23 blocks the movement of the top passbook. At the same time, after the anti-double-opening wheel 24 senses the force on the anti-double-opening baffle 23, it starts to rotate from counterclockwise to clockwise, thereby sending the second passbook back into the passbook box 1.
[0044] It should be understood that the anti-double-bill wheel 24, driven by the check motor, rotates counterclockwise in the early stage to increase the thrust of the passbook out of the dispensing outlet. The distance between the anti-double-bill baffle 23 and the bottom surface of the dispensing outlet is the thickness of one passbook, thus preventing the friction wheel group 21 and the anti-double-bill wheel 24 from pushing two passbooks through the dispensing outlet into the active channel 3 at the same time. When two passbooks are pushed out to the anti-double-bill baffle 23, the check motor drives the anti-double-bill wheel 24 to rotate clockwise when the passbook hits the anti-double-bill baffle 23, thus sending the extra passbook back to the passbook box 1. The entire passbook dispensing process is cleverly designed and effectively achieves efficient and rapid dispensing of passbooks, while avoiding the error of dispensing two passbooks.
[0045] Preferably, the distance between the lowest end face of the anti-double-passage baffle 23 and the lowest end face of the dispensing outlet is slightly greater than the thickness of the passbook minus the thickness of the first page. On the one hand, the thickness of the main text is much greater than the thickness of the first page, making it easier for the anti-double-passage baffle 23 to determine the difference between one and two passbooks, and thus enabling the top passbook to be sent back to the passbook box 1 more quickly via the anti-double-passage wheel 24.
[0046] Preferably, the anti-double-book baffle 23 is equipped with a sensor switch. When the passbook touches the sensor switch on the anti-double-book baffle 23, the anti-double-book wheel 24 rotates from counterclockwise to clockwise, thereby sending the second passbook back into the passbook box 1.
[0047] Based on Example 3, Example 4: as follows Figure 5 As shown, the friction wheel assembly 21 has multiple friction wheels, which are distributed in a rectangular through hole at an incline from low to high towards the dispensing outlet, reaching their highest point near the dispensing outlet. Each friction wheel is also equipped with an adaptive spring 25.
[0048] Specifically, multiple friction wheels rotate in the rectangular through hole, which pushes the passbook out of the passbook box 1 along the disbursement outlet. The multiple friction wheels are distributed at an angle from low to high, so that the passbook is in a forward tilted state in the passbook box 1. This can reduce the height difference between the passbook and the anti-double-opening baffle 23, so that the passbook has less resistance when passing through the anti-double-opening baffle 23, which greatly improves the disbursement success rate. The adaptive spring 25 can ensure that when there are too many or too few passbooks in the passbook box 1, under the action of the friction wheel group 21, spring 13 and pressure plate 14 corresponding to the adaptive spring 25, the force on the bottom passbook in the passbook box 1 is still kept at a suitable level.
[0049] It should be understood that multiple friction wheels provide greater friction, thereby meeting the force required when the passbook is pushed out. The adaptive spring 25 can provide different elastic forces under different forces to meet the requirements when the passbook is pushed out.
[0050] Preferably, the multiple friction wheels are connected to the shaft of the motor 22 by bearings, the adaptive spring 25 is vertically connected to the bearings, and the multiple friction wheels have a vertical swing space in the vertical direction.
[0051] Based on Example 1, Example 5: as follows Figure 2-4As shown, the movable channel 3 includes a housing 31, a transport channel 32, a channel drive wheel 33, and a channel motor 34. The housing 31 is hinged to the lower box 7, and the housing 31 can be lifted along the hinge. When the housing 31 is placed horizontally, a transport channel 32 is formed between the bottom end of the housing 31 and the lower box 7. The transport channel 32 connects to the open opening 12 and the replenishment mechanism 4. The channel motor 34 is connected to and drives the channel drive wheel 33 to rotate. The channel drive wheel 33 is installed at the bottom end of the housing 31 and is located above the transport channel 32. The upper end of the lower box 7 is also provided with a driven wheel 71, which is located below the transport channel 32. The channel drive wheel 33 drives the driven wheel 71 to rotate through friction.
[0052] Specifically, the housing 31 can be lifted along the hinge, but the transport channel 32 can only be formed when the housing 31 is placed horizontally. At this time, the dispensing motor 22 drives the friction wheel group 21 to rotate and send the passbook out into the transport channel 32. The channel motor 34 drives the channel drive wheel 33 to rotate, and with the driven wheel 71 also provided at the upper end of the lower box 7, the passbook passes between the channel drive wheel 33 and the driven wheel 71 and is sent into the registration mechanism 4.
[0053] It should be understood that the housing 31 can be lifted along the hinge, which is convenient to remove the jammed passbook or check the fault by lifting the housing 31 when a paper jam or other fault occurs in the transport channel 32. At the same time, the cooperation between the channel drive wheel 33 and the driven wheel 71 ensures the transport of the passbook and the overall flatness, which is convenient for the next step of printing.
[0054] Based on Example 5, Example 6: as follows Figure 2-3 As shown, the lower box 7 is also provided with a recycling gap 73 connecting the transport channel 32. The recycling gap 73 is located between the channel drive wheel 33 and the opening 12. An inclined recycling flap 72 is also hinged in the lower box 7, and the hinge point is located in the upper half of the recycling flap 72. The recycling flap 72 is a plate-shaped structure and is located below the opening 12. The upper end of the recycling flap 72 extends into the transport channel 32 through the recycling gap 73. The lower end of the recycling flap 72 is supported by its own weight, so that the upper end of the recycling flap 72 abuts against the recycling gap and is close to the side of the opening 12.
[0055] Specifically, the recycling gap 73 is located between the channel drive wheel 33 and the open opening 12. It is mainly used for passbooks that have not been taken by the user for a long time or have been forgotten to be taken. The recycling gap 73 is located above the recycling box 6. The passbook falls into the recycling box through the recycling gap 73. Under normal circumstances, the recycling flap 72 relies on its own weight to pull left and right to ensure that its end is against the side of the recycling gap 73 near the open opening 12. When the passbook passes through normally, the passbook will push the recycling flap 72 to the other side of the recycling gap 73, thereby covering the recycling gap 73 and preventing the passbook from falling into the recycling gap 73. When the passbook needs to be recycled, since it is in the opposite direction to the delivery, the pushing of the recycling flap 72 under its own weight will block the direction of the passbook's movement towards the delivery outlet. At this time, the recycling gap 73 is open, and the upper end of the recycling flap 72 is also extended, providing guidance for the movement of the passbook. Thus, the recycled passbook can only flow into the recycling box 6 through the recycling gap 73.
[0056] It should be understood that the design of the recycling gap 73 and the recycling flap 72 enables different paths for transporting passbooks in different directions. The hinge and self-weight design of the recycling flap 72 ensure that the recycling flap 72 does not affect the passage of passbooks under normal conditions, and provides guidance for passbooks during recycling. The entire process is cleverly designed, which satisfies the need for passbook recycling without affecting the issuance process, improves overall work efficiency, and reduces the workload of personnel.
[0057] Preferably, the recycling flap 72 can also be held in place by installing a spring instead of relying on its own weight to form an inclination, thereby allowing one end of the recycling flap 72 to extend out of the recycling gap 73 and be close to one side of the opening 12.
[0058] Based on Example 1, Example 7: as follows Figure 2-3 As shown, the registration mechanism 4 includes a registration channel 41 and a printing mechanism 42. The registration channel 41 is located below the printing mechanism 42 and connects the movable channel 3 and the gate mechanism 5.
[0059] Specifically, the supplementary registration mechanism 4 is used to read and write magnetic stripe information and print relevant information on the passbook. The supplementary registration channel 41 is used for the passbook to pass through, and the printing mechanism 42 is used to print the passbook and push the passbook forward. At the same time, when the passbook is retrieved, the printing mechanism 42 can also be used to push the passbook to move in the opposite direction.
[0060] It should be understood that supplementary registration agency 4 is a printer used to print information for passbooks.
[0061] Preferably, the passbook is not completely detached from the printing mechanism 42 after printing. When it needs to be taken out, it can be pulled out directly. When the passbook is recycled, since the printing mechanism 42 still holds part of the passbook, the internal program can reverse the process to complete the reverse transport of the passbook and complete the recycling process.
[0062] Preferably, when the passbook enters the active channel 3 from the registration mechanism 4 during the recycling process, the drive wheel 33 and the driven wheel 71 rotate in opposite directions, thereby pushing the passbook into the recycling gap 73 and finally dropping it into the recycling box 6.
[0063] Based on Example 1, Example 8: as follows Figure 2-3 As shown, the gate mechanism 5 includes a cover 51, a support plate 52, a flap 53, and a telescopic cylinder 54. The cover 51 is connected to the supplementary loading mechanism 4. The support plate 52 is installed at the bottom of the cover 51. The flap 53 is hinged to the end of the support plate 52 and connects the inside of the cover 51 with the outside. The telescopic cylinder 54 is connected to the flap 53 and drives the flap 53 to rotate along the hinge to realize the connection between the cover 51 and the outside.
[0064] Specifically, the front end of the cover 51 is connected to the registration mechanism 4, and the rear end is connected to the outside through the flap 53. When the passbook is printed, it is sent to the support plate 52 at the bottom of the cover 51. The telescopic cylinder 54 is connected to the flap 53 and drives the flap 53 to rotate along the hinge, thereby realizing the rotation of the flap 53 and opening the cover 51. At this time, the user can directly take the passbook.
[0065] It should be understood that when the passbook is being printed at the information update center, it often goes in and out several times. In order to prevent the customer from misunderstanding and taking it before the printing is finished, the gate mechanism 5 is used to control the retrieval. The structure of the telescopic cylinder 54 connected to the flap 53 can ensure that the user does not misoperate.
[0066] Preferably, the cover 51 is also equipped with a prompter. When the passbook is printed and the cover 51 is opened, the prompter will also emit an audible and visual reminder to remind you to retrieve the passbook.
[0067] The preferred cover 51 may also be equipped with a display screen to show the status of the passbook at each step, so that the user can understand the printing status.
[0068] Based on Example 1, Example 9: as follows Figure 1 As shown, the lower box 7 is also provided with an outward opening door 74, which corresponds to the recycling bin 6. The outward opening door 74 is opened to take out the recycling bin 6.
[0069] It should be understood that the lower box 7 is also equipped with an outward opening door 74, which allows staff to open the outward opening door 74 to take out the recycling box 6 and obtain the recycling passbook.
[0070] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A passbook processing device, characterized in that, include: The passbook box (1), the disbursement device (2), the activity channel (3), the registration mechanism (4), the gate mechanism (5), the recycling box (6), and the lower box (7); The lower box (7) has an internal cavity; the passbook box (1) is installed on the upper surface of the lower box (7); the passbook box (1) also has an internal cavity, and has an openable top plate (11) at the upper end and an open opening (12) at the lower end; the upper end of the lower box (7) is connected to the open opening (12); the dispensing device (2) is installed inside the lower box (7) and located directly below the open opening (12); the movable channel (3) is close to the passbook box (1) and hinged to the upper surface of the lower box (7); the registration mechanism (4) is installed close to the movable channel (3); the movable channel (3) connects the open opening (12) and the registration mechanism (4); the gate mechanism (5) is installed on the side of the registration mechanism (4) away from the movable channel (3); the recycling box (6) is also installed at the lower end of the lower box (7). The dispensing device (2) includes a friction wheel assembly (21), a dispensing motor (22), an anti-double-tightening baffle (23), an anti-double-tightening wheel (24), and a check motor; the open opening (12) includes multiple rectangular through holes located directly below the passbook box (1) and a dispensing outlet located on the lower side of the passbook box (1). The dispensing motor (22) is rotatably connected to the friction wheel assembly (21). The friction wheel assembly (21) is installed in the lower box (7) and located in the rectangular through holes. The dispensing outlet is connected to the movable channel (3). The check motor drives the anti-double-tightening wheel (24) to rotate. The anti-double-tightening wheel (24) is installed at the upper front end of the dispensing outlet. The anti-double-tightening baffle (23) is installed in front of the dispensing outlet and located between the anti-double-tightening wheel (24) and the dispensing outlet. The active channel (3) includes a housing (31), a transport channel (32), a channel drive wheel (33), and a channel motor (34). The housing (31) is hinged to the lower box (7). The housing (31) can be lifted along the hinge. When the housing (31) is placed horizontally, the transport channel (32) is formed between the bottom end of the housing (31) and the lower box (7). The transport channel (32) connects the open opening (12) and the replenishment mechanism (4). The channel motor (34) connects to and drives the channel drive wheel (33) to rotate. The channel drive wheel (33) is installed at the bottom end of the housing (31) and is located above the transport channel (32). The upper end of the lower box (7) is also provided with a driven wheel (71) and is located below the transport channel (32). The channel drive wheel (33) drives the driven wheel (71) to rotate through friction. The lower box (7) is also provided with a recycling gap (73) connecting the transport channel (32). The recycling gap (73) is located between the channel drive wheel (33) and the opening (12). The lower box (7) is also hinged with an inclined recycling flap (72), and the hinge point is located in the upper half of the recycling flap (72). The recycling flap (72) is a plate-shaped structure and is located below the opening (12). The upper end of the recycling flap (72) extends into the transport channel (32) through the recycling gap (73). The lower end of the recycling flap (72) is subjected to its own weight so that the upper end of the recycling flap (72) abuts against the recycling gap and is close to the side of the opening (12).
2. The passbook processing device according to claim 1, characterized in that, The passbook box (1) also includes a spring (13) and a pressure plate (14). The spring (13) is vertically installed at the upper end of the inside of the passbook box (1). The pressure plate (14) is connected to the lower end of the spring (13). The pressure plate (14) presses tightly against the passbooks stacked inside the box under the action of the spring (13).
3. The passbook processing device according to claim 1, characterized in that, The friction wheel assembly (21) has multiple friction wheels, which are distributed in the rectangular through hole at an incline from low to high in the direction of the dispensing outlet, reaching their highest point near the dispensing outlet. Each friction wheel is also fitted with an adaptive spring (25).
4. The passbook processing device according to claim 1, characterized in that, The registration mechanism (4) includes a registration channel (41) and a printing mechanism (42). The registration channel (41) is located below the printing mechanism (42) and connects the active channel (3) and the gate mechanism (5).
5. The passbook processing device according to claim 1, characterized in that, The gate mechanism (5) includes a cover (51), a support plate (52), a flap (53), and a telescopic cylinder (54). The cover (51) is connected to the supplementary mechanism (4). The support plate (52) is installed at the bottom of the cover (51). The flap (53) is hinged to the end of the support plate (52) and connects the inside of the cover (51) with the outside. The telescopic cylinder (54) is connected to the flap (53) and drives the flap (53) to rotate along the hinge to realize the connection between the cover (51) and the outside.
6. The passbook processing device according to any one of claims 1 to 5, characterized in that, The lower box (7) is also provided with an outward opening door (74), which corresponds to the recycling bin (6). The outward opening door (74) is opened to take out the recycling bin (6).
Citation Information
Patent Citations
Bankbook processing equipment
CN217588178U