bank counter

By installing a scroll mechanism and drive unit within a placement box on the bank counter, banknotes are automatically smoothed out, solving the problem of bank staff manually sorting banknotes and improving work efficiency and processing speed.

CN116427818BActive Publication Date: 2025-10-28INDUSTRIAL AND COMMERCIAL BANK OF CHINA
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Patent Information

Application Number
CN202310423525.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-19
Publication Date
2025-10-28
Estimated Expiration
2043-04-19

AI Technical Summary

Technical Problem

Bank staff need to manually smooth and flatten banknotes before using a banknote counting machine, which makes the operation cumbersome and inefficient.

Method used

A placement frame is installed on the bank counter, with built-in scrolling parts and drive components. The drive components drive the scrolling parts to automatically smooth the banknotes.

Benefits of technology

The process has been simplified, staff efficiency has been improved, and processing time has been saved.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN116427818B_ABST
    Figure CN116427818B_ABST
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Abstract

This invention provides a bank counter, including a counter body; a transparent panel disposed above the counter body, dividing the counter body into a user side and a counter side; a placement frame movably disposed on the counter body, the placement frame having a placement opening and a placement cavity communicating with the placement opening, so that the placement opening can be moved to the user side or the counter side by moving the placement frame; a rolling element installed in the placement cavity, the rolling element being used to flatten items to be flattened in the placement cavity; a first driving assembly and a second driving assembly, both of which are connected to the rolling element, the first driving assembly being used to drive the rolling element to move closer to or away from the items to be flattened, and the second driving assembly being used to drive the rolling element to move within the flattened surface of the items to be flattened. This bank counter is simple to operate, can effectively improve the work efficiency of staff, and solves the problem in the prior art that bank staff need to manually smooth and flatten banknotes before using a banknote counting machine.
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Description

Technical Field

[0001] This invention relates to the field of financial facilities, and more specifically, to a bank counter. Background Technology

[0002] Currently, people go to the bank counter to deposit, withdraw, or conduct business at the bank. In existing technology, the bank counter is basically composed of bulletproof glass and the counter body, and the transfer of documents and other items between customers and staff is realized by setting a transfer slot on the counter body.

[0003] When customers need to deposit money at a bank counter, they usually hand the banknotes directly to the staff through the pass-through slot. The staff then puts the banknotes into a banknote counting machine for counting. However, because banknotes are made of a soft material, they can become bent, folded, or wrinkled during circulation due to differences in age and storage methods. This can cause problems such as banknote jamming during counting. Therefore, when staff receive the banknotes from customers, they first manually smooth them out before transferring them to the counting machine. The entire deposit process is time-consuming and cumbersome, thus reducing the efficiency of the staff. Summary of the Invention

[0004] The main objective of this invention is to provide a bank counter that solves the problem in the prior art where bank staff need to manually smooth and flatten banknotes before using a banknote counting machine.

[0005] To achieve the above objectives, the present invention provides a bank counter comprising: a counter body; a transparent plate disposed above the counter body, the transparent plate dividing the counter body into a user side and a counter side; a placement frame movably disposed on the counter body, the placement frame having a placement opening and a placement cavity communicating with the placement opening, so that the placement opening can be moved to the user side or the counter side by moving the placement frame; a rolling element installed in the placement cavity, the rolling element being used to flatten a piece to be flattened in the placement cavity; a first driving assembly and a second driving assembly, both the first driving assembly and the second driving assembly being connected to the rolling element, the first driving assembly being used to drive the rolling element to move closer to or away from the piece to be flattened, and the second driving assembly being used to drive the rolling element to move within the flattened surface of the piece to be flattened.

[0006] Furthermore, the driving ends of the first driving component and the second driving component are connected, the moving direction of the driving end of the first driving component and the moving direction of the driving end of the second driving component are set at a preset angle, and the driving end of the first driving component is connected to the rolling element.

[0007] Furthermore, the second drive assembly includes: a screw, which is rotatably disposed within the placement cavity; and a movable member, which has an internal threaded hole adapted to the external thread of the screw. The movable member is threadedly engaged with the screw so that the movement of the screw drives the movable member to move, and the movable member forms the drive end of the second drive assembly.

[0008] Furthermore, the screw is provided with a first threaded section and a second threaded section, the first threaded section and the second threaded section have opposite directions of rotation, there are at least two moving parts, one of the at least two moving parts has a first internal threaded hole that mates with the first threaded section, and the other of the at least two moving parts has a second internal threaded hole that mates with the second threaded section, so that the screw can drive one moving part and the other moving part to move closer or further away from each other; and / or the placement frame has a placement bottom surface that is disposed opposite to the placement opening, and the screw extends along the placement bottom surface to the placement opening.

[0009] Furthermore, the second drive assembly further includes: a first mounting frame disposed on the placement frame, the first mounting frame having a mounting cavity and a mounting opening communicating with the mounting cavity, the mounting opening communicating with the placement cavity, the mounting opening extending along the extension direction of the screw, the screw being installed in the mounting cavity, and at least a portion of the movable member being disposed opposite to or extending out of the mounting opening; wherein, one of the first mounting frame and the movable member is provided with a guide block, and the other of the first mounting frame and the movable member is provided with a guide channel adapted to the guide block, the guide channel extending along the extension direction of the screw, and the guide block being movably disposed within the guide channel along the extension direction of the guide channel.

[0010] Furthermore, the first driving component includes: a pusher forming the driving end of the first driving component, the pusher being movably disposed on the moving component, the pusher being spaced apart from the screw, and a rolling element being movably disposed on the side of the moving component.

[0011] Furthermore, the second drive assembly also includes a guide rod, which is connected to the rolling element and is movably mounted on the moving element. The guide rod extends along the pushing direction of the pusher, and the guide rod and the pusher are located on opposite sides of the screw.

[0012] Furthermore, the distance between the guide rod and the screw is greater than the distance between the pusher and the screw.

[0013] Furthermore, the second drive assembly also includes: a second mounting frame, the pusher and the guide rod are both connected to the second mounting frame, and the roller of the rolling element is rotatably mounted on the second mounting frame; and / or, the pushing direction of the rolling element, the pushing direction of the pusher and the moving direction of the moving element are all perpendicular to the extending direction of the roller of the rolling element.

[0014] Furthermore, the counter body is provided with an interaction slot, which is connected to both the user side and the counter side, and the placement frame can be movably placed in the interaction slot.

[0015] Furthermore, the interactive slot has a first slot segment and a second slot segment that are interconnected, with the first slot segment located on the user side and the second slot segment located on the counter side; the bank counter also includes: a blocking component, which is rotatably disposed within the interactive slot, and a placement frame is mounted on the blocking component. The blocking component is adapted to the shape of the interactive slot, and has a first blocking position and a second blocking position; when the blocking component is in the first blocking position, the blocking component blocks the connection between the first slot segment and the second slot segment, and the placement frame is located within the first slot segment; when the blocking component is in the second blocking position, the blocking component blocks the connection between the first slot segment and the second slot segment, and the placement frame is located within the second slot segment.

[0016] Furthermore, the bank counter also includes: a third drive assembly disposed within the interactive groove, the rotation shaft of the third drive assembly extending along the extension direction from the interactive groove to the transparent plate; and a sealing component including sealing plates, at least two sealing plates, which are respectively disposed on opposite sides of the rotation shaft, so that when the sealing component is in the first sealing position or the second sealing position, the connection between the first groove segment and the second groove segment is sealed by the two sealing plates.

[0017] Furthermore, a clearance notch is provided between the counter body and the transparent panel. The clearance notch is a strip-shaped opening that extends along the length of the transparent panel, so that the user side and the counter side can be connected through the clearance notch.

[0018] By applying the technical solution of this invention, a placement frame is set on the counter body, and a rolling element, a first driving component, and a second driving component are set inside the placement frame. The first driving component and the second driving component drive the rolling element to roll and flatten the items to be flattened placed in the placement frame, thereby automatically flattening the items and facilitating subsequent processing steps. This bank counter is simple to operate, effectively improves the work efficiency of staff, saves processing time for users and staff, and solves the problem in existing technologies where bank staff need to manually smooth and flatten banknotes before using a banknote counting machine. Attached Figure Description

[0019] The accompanying drawings, which form part of this application, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an undue limitation of the invention. In the drawings:

[0020] Figure 1 A three-dimensional structural schematic diagram of an embodiment of a bank counter according to the present invention is shown;

[0021] Figure 2 It shows Figure 1A close-up view of section A of the bank counter;

[0022] Figure 3 It shows Figure 1 A first-person view of a bank counter with the counter body and transparent panel removed;

[0023] Figure 4 It shows Figure 3 A close-up view of section B of the bank counter;

[0024] Figure 5 It shows Figure 4 A schematic diagram showing the connection between the first mounting frame and the second drive component of the bank counter; and

[0025] Figure 6 It shows Figure 1 A schematic diagram showing the connection between the placement frame of the bank counter and the third drive component and the sealing component.

[0026] The above figures include the following reference numerals:

[0027] 1. Counter body; 101. User side; 102. Counter side; 2. Transparent panel; 3. Placement frame; 301. Placement opening; 4. Rolling component; 5. First drive assembly; 6. Second drive assembly; 7. Screw; 8. Moving component; 9. First mounting frame; 10. Guide block; 11. Pushing component; 12. Guide rod; 13. Second mounting frame; 14. Interaction groove; 15. Sealing component; 1501. Sealing plate; 16. Third drive assembly; 17. Rotating shaft; 18. Guide channel; 19. Avoidance notch; 20. Drive component; 21. First turntable; 22. Second turntable. Detailed Implementation

[0028] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0029] Please refer to Figures 1 to 6This invention provides a bank counter, which includes a counter body 1; a transparent plate 2 disposed above the counter body 1, the transparent plate 2 dividing the counter body 1 into a user side 101 and a counter side 102; a placement frame 3, movably disposed on the counter body 1, the placement frame 3 having a placement opening 301 and a placement cavity communicating with the placement opening 301, so that the placement opening can be moved to the user side 101 or the counter side 102 by the movement of the placement frame 3; a rolling element 4, installed in the placement cavity, the rolling element 4 being used to flatten a part to be flattened in the placement cavity; a first driving assembly 5 and a second driving assembly 6, both of which are connected to the rolling element 4, the first driving assembly 5 being used to drive the rolling element 4 to move closer to or away from the part to be flattened, and the second driving assembly 6 being used to drive the rolling element 4 to move within the flattened surface of the part to be flattened.

[0030] As can be seen, the bank counter provided by this invention sets a placement frame 3 on the counter body 1, and sets a rolling element 4, a first driving component 5, and a second driving component 6 inside the placement frame 3. The first driving component 5 and the second driving component 6 drive the rolling element 4 to roll and flatten the items to be flattened placed in the placement frame 3, thereby automatically flattening the items and facilitating subsequent processing steps. This bank counter is simple to operate, can effectively improve the work efficiency of staff, save processing time for users and staff, and solves the problem in the prior art where bank staff need to manually smooth and flatten banknotes before using a banknote counting machine.

[0031] In practice, the item to be flattened can be banknotes or documents that need to be flattened; the transparent plate 2 can be bulletproof glass.

[0032] In this embodiment, the driving ends of the first driving component 5 and the second driving component 6 are connected. The moving direction of the driving end of the first driving component 5 and the moving direction of the driving end of the second driving component 6 are set at a preset angle. The driving end of the first driving component 5 is connected to the rolling element 4.

[0033] Preferably, the moving direction of the driving end of the first driving component 5 is set at 90° with the moving direction of the driving end of the second driving component 6.

[0034] In actual operation, when smoothing a surface to be flattened is required during business processing, the user or staff places the surface to be flattened into the placement cavity of the placement frame 3 through the placement port. First, the first drive assembly 5 moves the rolling element 4 closer to the surface to be flattened, pressing it onto the surface. Then, the second drive assembly 6 moves the rolling element 4 within the surface to be flattened, achieving a smoothing effect through rolling. After smoothing is complete, the first drive assembly 5 moves the rolling element 4 away from the surface to be flattened, and the second drive assembly 6 stops working.

[0035] In actual operation, the sequence of action of the first drive component 5 and the second drive component 6 can be adjusted arbitrarily according to the actual situation.

[0036] In this embodiment, the second driving assembly 6 includes a screw 7 and a movable member 8. The screw 7 is rotatably disposed within the placement cavity. The movable member 8 is provided with an internal threaded hole that matches the external thread of the screw 7. The movable member 8 is threadedly engaged with the screw 7 so that the movement of the screw 7 drives the movable member 8 to move. The movable member 8 forms the driving end of the second driving assembly 6. This configuration results in a simple structure and stable operation.

[0037] In the specific implementation process, the screw 7 is provided with a first threaded section and a second threaded section, the first threaded section and the second threaded section have opposite directions of rotation, and there are at least two moving parts 8. One of the at least two moving parts 8 has a first internal threaded hole that mates with the first threaded section, and the other moving part 8 has a second internal threaded hole that mates with the second threaded section, so that the screw 7 can drive one moving part 8 and the other moving part 8 to move closer or further apart.

[0038] In specific implementation, there are at least two first drive components 5, and each of the at least two first drive components 5 is correspondingly arranged with at least two moving parts 8. Each first drive component 5 is connected to its corresponding moving part 8. Each first drive component 5 is provided with a rolling element 4, which can be a roller structure.

[0039] In practical implementation, the placement frame 3 has a placement bottom surface opposite to the placement opening 301, and the screw 7 extends along the placement bottom surface to the placement opening 301. This structural arrangement facilitates optimization of the internal structural layout of the placement frame 3 and improves structural compactness.

[0040] In the specific implementation process, such as Figure 3 As shown, the second drive assembly 6 also includes a drive member 20, which is disposed on the placement bottom surface. The drive member 20 is driven to the screw 7 so as to drive the screw 7 to move.

[0041] In actual operation, the drive component 20 drives the screw 7 to rotate, thereby the screw 7 drives the two moving parts 8 to reciprocate along the extension direction of the screw 7.

[0042] Specifically, when a part to be leveled needs to be smoothed, it is placed in the placement frame 3. Each first drive component 5 drives the corresponding rolling element 4 to approach the part to be leveled, so that the two rolling elements 4 press against the part to be leveled. The drive component 20 drives the screw 7 to rotate, so that the screw 7 synchronously drives one moving element 8 and another moving element 8 to move back and forth in opposite directions, thereby driving one rolling element 4 and another rolling element 4 to roll back and forth in opposite directions within the surface to be leveled. This arrangement can improve the efficiency of leveling the part to be leveled and can roll the entire surface of the part to be leveled, thereby improving the leveling effect.

[0043] In this embodiment, the second drive assembly 6 further includes a first mounting frame 9, which is disposed on the placement frame 3. The first mounting frame has a mounting cavity and a mounting opening communicating with the mounting cavity. The mounting opening communicates with the placement cavity and extends along the extension direction of the screw 7. The screw 7 is installed in the mounting cavity, and at least a portion of the moving member 8 is disposed opposite to or extends out of the mounting opening.

[0044] In this design, one of the first mounting frame 9 and the movable component 8 is provided with a guide block 10, and the other of the first mounting frame 9 and the movable component 8 is provided with a guide channel 18 adapted to the guide block 10. The guide channel 18 extends along the extension direction of the screw 7, and the guide block 10 is movably disposed within the guide channel 18 along the extension direction of the guide channel 18. This structural arrangement can guide the movable component 8, so that the movable component 8 can move back and forth along the extension direction of the screw 7 and prevent the movable component 8 from deviating.

[0045] In actual operation, the guide blocks 10 are arranged in pairs. The pairs of guide blocks 10 are located at both ends of the moving part 8 and are connected to the moving part 8. On each side wall of the first mounting frame 9 near both ends of the moving part 8, there are matching guide channels 18. The pairs of guide blocks 10 are movably arranged on the corresponding guide channels 18. When the moving part 8 moves, it drives the pairs of guide blocks 10 to move along the extension direction of the guide channels 18.

[0046] In this embodiment, the specific structure of the first driving component 5 is as follows: Figures 4 to 6 As shown, the first driving assembly 5 includes a pusher 11, which forms the driving end of the first driving assembly 5. The pusher 11 is movably mounted on the moving member 8, and the pusher 11 is spaced apart from the screw 7. The rolling member 4 is movably disposed on the side of the moving member 8. This structural arrangement ensures that the pusher 11 and the screw 7 do not obstruct each other during movement. The pusher 11 brings the rolling member 4 into contact with the workpiece to be leveled, while the moving member 8 reciprocates, thereby driving the rolling member 4 to roll and flatten the workpiece.

[0047] Preferably, the pusher 11 is an electric push rod.

[0048] In this embodiment, as Figures 4 to 6 As shown, the second drive assembly also includes a guide rod 12, which is connected to the rolling element 4. The guide rod 12 is movably mounted on the moving element 8 and extends along the pushing direction of the pusher 11. The guide rod 12 and the pusher 11 are located on both sides of the screw 7, respectively.

[0049] In practice, the distance between the guide rod 12 and the screw 7 is greater than the distance between the pusher 11 and the screw 7. Since the weight of the guide rod 12 is less than the weight of the pusher 11, this arrangement ensures that the forces on both ends of the moving part 8 are balanced, thereby preventing the moving part 8 from getting stuck with the screw 7.

[0050] In this embodiment, the second drive assembly further includes a second mounting frame 13. The pusher 11 and the guide rod 12 are both connected to the second mounting frame 13, and the roller of the rolling element 4 is rotatably mounted on the second mounting frame 13. With this structural arrangement, the rolling element 4 can always be kept on the same axis.

[0051] In the specific implementation process, the pushing direction of the pushing component 11 and the moving direction of the moving component 8 are both set perpendicular to the extending direction of the roller of the rolling component 4.

[0052] In this embodiment, the counter body 1 is provided with an interaction groove 14, and both the user side 101 and the counter side 102 are connected to the interaction groove 14. The placement frame 3 is movably disposed in the interaction groove 14.

[0053] In its implementation, the interactive slot 14 has a first slot segment and a second slot segment that are interconnected. The first slot segment is located on the user side 101, and the second slot segment is located on the counter side 102. The bank counter also includes a blocking component 15, which is rotatably disposed within the interactive slot 14. A placement frame 3 is mounted on the blocking component 15. The blocking component 15 is adapted to the shape of the interactive slot 14 and has a first blocking position and a second blocking position. When the blocking component 15 is in the first blocking position, it blocks the connection between the first slot segment and the second slot segment, and the placement frame 3 is located within the first slot segment. When the blocking component 15 is in the second blocking position, it blocks the connection between the first slot segment and the second slot segment, and the placement frame 3 is located within the second slot segment. With this structural arrangement, when a user or staff member puts money into or takes money from the placement frame 3, the blocking component 15 can block the user side 101 and the counter side 102, thereby providing protection for the staff member.

[0054] In the specific implementation process, the bank counter also includes a third drive assembly 16, which is disposed within the interaction groove 14. The rotation shaft 17 of the third drive assembly 16 extends along the extension direction from the interaction groove 14 to the transparent plate 2. The sealing component 15 includes sealing plates 1501, with at least two sealing plates 1501 respectively disposed on opposite sides of the rotation shaft 17. When the sealing component 15 is in the first sealing position or the second sealing position, the two sealing plates 1501 seal the connection between the first groove segment and the second groove segment. With this structural arrangement, the sealing component 15 can be driven to the first sealing position or the second sealing position by the third drive assembly 16. By setting two sealing plates 1501, the movement mode can be changed according to the actual situation. That is, the two sealing plates 1501 can move synchronously in the same direction or move sequentially step by step. It also facilitates the installation of the sealing component 15 into the interaction groove 14.

[0055] In specific implementation, the third drive assembly 16 also includes a first turntable 21 and a second turntable 22. The two ends of the rotating shaft 17 are connected to the first turntable 21 and the second turntable 22 respectively. The second turntable 22 is located at the bottom of the transparent plate 2, and the first turntable 21 is rotatably mounted on the bottom of the interactive groove 14. The placement frame 3 is positioned above the first turntable 21. Both the placement frame 3 and the sealing member 15 are connected to the rotating shaft 17, and the sealing member 15 is located between the first turntable 21 and the second turntable 22. By rotating the second turntable 22, the rotating shaft 17 and the first turntable 21 are driven to rotate, thereby driving the placement frame 3 and the sealing member 15 to rotate. When the sealing member 15 moves to the first sealing position, it seals the connection between the first groove segment and the second groove segment, and the placement frame 3 is located within the first groove segment. When the sealing member 15 moves to the second sealing position, it seals the connection between the second groove segment and the second groove segment, and the placement frame 3 is located within the second groove segment. This setup facilitates the isolation of the user side 101 and the counter side 102.

[0056] In this embodiment, as Figure 1 As shown, a clearance notch 19 is provided between the counter body 1 and the transparent panel 2. The clearance notch 19 is a strip-shaped opening that extends along the length of the transparent panel 2, allowing the user side 101 and the counter side 102 to connect through the clearance notch 19. This arrangement facilitates the exchange of relevant documents required for handling business between users and staff, thereby preventing the omission of relevant documents and facilitating mutual transfer.

[0057] In the specific implementation process, the avoidance gap 19 is located on the side of the interaction groove 14.

[0058] In actual operation, the placement frame 3 is mainly used for transferring banknotes between users and staff. To flatten the banknotes and facilitate their placement into the banknote counter, the placement frame 3 is equipped with a first drive component 5, a second drive component 6, and a rolling element 4. The first drive component 5 and the second drive component 6 drive the rolling element 4 to roll and flatten the banknotes. The specific working process is as follows:

[0059] When a user needs to deposit money, the user first rotates the second turntable 22, causing the placement frame 3 to move into the first section of the interaction groove 14. At this time, the sealing component 15 moves to the first sealing position. The user then vertically places the banknote into the placement cavity through the placement opening 301 at the top of the placement frame 3. After placement, the staff can see this through the transparent plate 2, press the start button, and simultaneously rotate the second turntable 22 to move the placement frame 3 into the second section of the interaction groove 14. At this time, the sealing component 15 moves to the second sealing position. During the rotation of the placement frame 3, the pusher 11 drives the rolling component 4 to move towards the banknote, so that the roller of the rolling component 4 presses against the surface of the banknote to be flattened. Then, the moving component 8 moves along the extension direction of the screw 7, thereby driving the rolling component 4 to roll back and forth on the surface of the banknote to be flattened, thus smoothing the banknote completely. After smoothing is completed, the staff presses the stop button, the pusher 11 drives the rolling component 4 away from the banknote, and at the same time, the screw 7 stops rotating. Finally, staff members take the smoothed banknotes out of placement box 3 and put them into the banknote counting machine for counting.

[0060] As can be seen from the above description, the embodiments of the present invention achieve the following technical effects:

[0061] The bank counter provided by the present invention includes a counter body 1, a transparent plate 2 disposed above the counter body 1, a placement frame 3, a rolling element 4, a first driving assembly 5, and a second driving assembly 6; the transparent plate 2 divides the counter body 1 into a user side 101 and a counter side 102; the placement frame 3 is movably disposed on the counter body 1, and the placement frame 3 has a placement opening 301 and a placement cavity communicating with the placement opening 301, so that the placement opening can be moved to the user side 101 or the counter side 102 by the movement of the placement frame 3; the rolling element 4 is installed in the placement cavity, and the rolling element 4 is used to flatten the part to be flattened in the placement cavity; the first driving assembly 5 and the second driving assembly 6 are both connected to the rolling element 4, the first driving assembly 5 is used to drive the rolling element 4 to move closer to or away from the part to be flattened, and the second driving assembly 6 is used to drive the rolling element 4 to move within the flattened surface of the part to be flattened.

[0062] As can be seen, the bank counter provided by this invention sets a placement frame 3 on the counter body 1, and sets a rolling element 4, a first driving component 5, and a second driving component 6 inside the placement frame 3. The first driving component 5 and the second driving component 6 drive the rolling element 4 to roll and flatten the items to be flattened placed in the placement frame 3, thereby automatically flattening the items and facilitating subsequent processing steps. This bank counter is simple to operate, can effectively improve the work efficiency of staff, save processing time for users and staff, and solves the problem in the prior art where bank staff need to manually smooth and flatten banknotes before using a banknote counting machine.

[0063] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.

Claims

1. A bank counter, comprising a counter body (1) and a transparent panel (2) disposed above the counter body (1), the transparent panel (2) dividing the counter body (1) into a user side (101) and a counter side (102), characterized in that, The bank counter also includes: The placement frame (3) is movably disposed on the counter body (1). The placement frame (3) has a placement opening (301) and a placement cavity communicating with the placement opening (301) so that the placement opening can be moved to the user side (101) or the counter side (102) by the movement of the placement frame (3). A rolling element (4) is installed in the placement cavity, and the rolling element (4) is used to flatten the part to be flattened in the placement cavity; The first driving component (5) and the second driving component (6) are both connected to the rolling element (4). The first driving component (5) is used to drive the rolling element (4) to move closer to or away from the workpiece to be leveled. The second driving component (6) is used to drive the rolling element (4) to move within the leveling surface of the workpiece to be leveled. The first driving component (5) is connected to the driving end of the second driving component (6), the moving direction of the driving end of the first driving component (5) and the moving direction of the driving end of the second driving component (6) are set at a preset angle, and the driving end of the first driving component (5) is connected to the rolling element (4). The second drive assembly (6) includes a screw (7), a movable member (8), and a first mounting frame (9). The screw (7) is rotatably disposed in the placement cavity. The movable member (8) is provided with an internal thread hole that matches the external thread of the screw (7). The movable member (8) is threadedly engaged with the screw (7) so that the movement of the screw (7) drives the movable member (8) to move. The movable member (8) forms the drive end of the second drive assembly (6). The first mounting frame (9) is disposed on the placement frame (3). The first mounting frame (9) has a mounting cavity and a mounting opening communicating with the mounting cavity. The mounting opening communicates with the placement cavity and extends along the extension direction of the screw (7). The screw (7) is installed in the mounting cavity. At least a portion of the movable member (8) is disposed opposite to or extends out of the mounting opening. One of the first mounting frame (9) and the moving part (8) is provided with a guide block (10), and the other of the first mounting frame (9) and the moving part (8) is provided with a guide channel (18) adapted to the guide block (10). The guide channel (18) extends along the extension direction of the screw (7), and the guide block (10) is movably disposed in the guide channel (18) along the extension direction of the guide channel (18).

2. The bank counter according to claim 1, characterized in that, The screw (7) is provided with a first threaded section and a second threaded section, the first threaded section and the second threaded section having opposite directions of rotation. There are at least two moving parts (8), one of the at least two moving parts (8) has a first internal threaded hole that mates with the first threaded section, and the other of the at least two moving parts (8) has a second internal threaded hole that mates with the second threaded section, so that the screw (7) can drive one moving part (8) and the other moving part (8) to move closer to or further away from each other; and / or The placement frame (3) has a placement bottom surface that is disposed opposite to the placement opening (301), and the screw (7) extends along the placement bottom surface to the placement opening (301).

3. The bank counter according to claim 1, characterized in that, The first driving component (5) includes: The pusher (11) forms the drive end of the first drive assembly (5), the pusher (11) is movably mounted on the moving part (8), the pusher (11) is spaced apart from the screw (7), and the rolling part (4) is movably mounted on the side of the moving part (8).

4. The bank counter according to claim 3, characterized in that, The second driving component also includes: The guide rod (12) is connected to the rolling element (4). The guide rod (12) is movably mounted on the moving element (8). The guide rod (12) extends along the pushing direction of the pushing element (11). The guide rod (12) and the pushing element (11) are located on both sides of the screw (7).

5. The bank counter according to claim 4, characterized in that, The distance between the guide rod (12) and the screw (7) is greater than the distance between the pusher (11) and the screw (7).

6. The bank counter according to claim 4, characterized in that, The second driving component also includes: The second mounting frame (13) is connected to both the pusher (11) and the guide rod (12), and the roller of the rolling element (4) is rotatably mounted on the second mounting frame (13); and / or, The pushing direction of the rolling element (4), the pushing direction of the pushing element (11), and the moving direction of the moving element (8) are all perpendicular to the extension direction of the roller of the rolling element (4).

7. The bank counter according to claim 1, characterized in that, The counter body (1) is provided with an interaction slot (14), and the user side (101) and the counter side (102) are both connected to the interaction slot (14). The placement frame (3) is movably set in the interaction slot (14).

8. The bank counter according to claim 7, characterized in that, The interaction slot (14) has a first slot segment and a second slot segment that are interconnected, the first slot segment being located on the user side (101) and the second slot segment being located on the counter side (102). The bank counter also includes: A sealing element (15) is rotatably disposed within the interactive groove (14). A placement frame (3) is mounted on the sealing element (15). The sealing element (15) is adapted to the shape of the interactive groove (14). The sealing element (15) has a first sealing position and a second sealing position. When the sealing element (15) is in the first sealing position, the sealing element (15) seals the connection between the first groove segment and the second groove segment, and the placement frame (3) is located within the first groove segment. When the sealing element (15) is in the second sealing position, the sealing element (15) seals the connection between the first groove segment and the second groove segment, and the placement frame (3) is located within the second groove segment.

9. The bank counter according to claim 8, characterized in that, The bank counter also includes: The third drive assembly (16) is disposed in the interactive groove (14). The rotation shaft (17) of the third drive assembly (16) extends along the extension direction from the interactive groove (14) to the transparent plate (2). The sealing member (15) includes a sealing plate (1501). There are at least two sealing plates (1501). The two sealing plates (1501) are respectively disposed on opposite sides of the rotation shaft (17) so that when the sealing member (15) is in the first sealing position or the second sealing position, the connection between the first groove segment and the second groove segment is sealed by the two sealing plates (1501).

10. The bank counter according to claim 1, characterized in that, An avoidance gap (19) is provided between the counter body (1) and the transparent panel (2). The avoidance gap (19) is a strip-shaped opening that extends along the length of the transparent panel (2) so that the user side (101) and the counter side (102) can be connected through the avoidance gap (19).

Citation Information

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