Cash circulation processing equipment
By introducing a blocking mechanism into the cash recycling equipment, the movement of the processing device is controlled by locking and unlocking the cabinet door, which solves the problem of needing to unlock the locks separately in the prior art. This enables simultaneous maintenance of the processing device and the safe, improving maintenance efficiency and security.
Patent Information
- Application Number
- CN202520386093.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-06
AI Technical Summary
The existing cash recycling equipment requires unlocking and locking the locks of the processing unit and the safe separately during maintenance, which is inconvenient and affects maintenance efficiency.
A blocking mechanism is designed, including a blocking component and a movable frame. The movement of the blocking component is controlled by the change in the position of the cabinet door, so as to achieve simultaneous maintenance of the processing device and the safe. When the cabinet door is locked, the blocking component prevents the processing device from moving to the maintenance position, and when the cabinet door is unlocked, the processing device is allowed to move to the maintenance position.
It simplifies the maintenance process for processing units and safes, improves maintenance efficiency, and enhances the safety and reliability of the equipment.
Smart Images

Figure CN223796973U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of financial equipment technology, and in particular to a cash circulation processing device. Background Technology
[0002] Cash circulation processing equipment is a type of financial self-service equipment that combines multiple functions such as cash circulation, deposit, withdrawal, temporary storage, sorting, counting, counterfeit detection, serial number recording, continuous cash input, end-of-day cash storage, and inquiry, and can realize the circulation of banknotes of various denominations circulating in China.
[0003] The cash recycling equipment provided by the related technology includes a safe and a processing device located above the safe. The processing device is used to process banknotes. The safe includes a cabinet body, a door, and multiple cash boxes installed inside the cabinet body. The cabinet body has an opening, and the door is movably connected to the cabinet body. The door can move relative to the cabinet body to have an open position (open opening) and a closed position (closed opening). The cash boxes are used to receive banknotes input into the processing device or output banknotes to the processing device. When the door is in the open position, the cash boxes inside the cabinet body can be maintained. The processing device is movably connected to the cabinet body and can move relative to the cabinet body to have a maintenance position and a working position. When the processing device is in the maintenance position, the processing device can be maintained.
[0004] The cash recycling equipment provided by the relevant technology typically locks the processing device in the working position with a first lock, and the safe door is typically locked in the closed position with a second lock. When maintenance is required on both the processing device and the safe at the same time, maintenance personnel need to unlock the first and second locks separately. After completing the maintenance on both the processing device and the safe, maintenance personnel also need to lock the first and second locks separately. This operation is inconvenient and does not improve the maintenance efficiency of the cash recycling equipment. Utility Model Content
[0005] The purpose of this invention is to provide a cash recycling processing device that allows for simultaneous maintenance of the processing unit and the safe, thereby improving the maintenance efficiency of the cash recycling processing device.
[0006] This utility model provides a cash recycling processing device, which includes:
[0007] A safe includes a cabinet body and a cabinet door. The cabinet body has an opening, and the cabinet door is movably connected to the cabinet body. The cabinet door can move relative to the cabinet body and has an open position for opening the opening and a closed position for closing the opening.
[0008] Locks are used to lock the cabinet door in the closed position;
[0009] A processing device is located above the safe and is movably connected to the safe body. The processing device has a working position and a maintenance position when it moves relative to the safe body.
[0010] A blocking mechanism includes a blocking member disposed on the cabinet door or the cabinet body. The blocking member is movable relative to the cabinet body and has a blocking position and a yielding position. When the processing device is in the working position and the blocking member is in the blocking position, the blocking member extends into the movement path of the processing device from the working position to the maintenance position to prevent the processing device from moving to the maintenance position. When the blocking member is in the yielding position, the blocking member exits the movement path, allowing the processing device to move to the maintenance position. The connection relationship between the blocking member and the cabinet door is configured such that when the cabinet door is in the closed position, the blocking member is in the blocking position, and when the cabinet door is in the open position, the blocking member is in the yielding position.
[0011] As a preferred technical solution for the cash recycling equipment, when the blocking member is disposed on the cabinet door:
[0012] The blocking mechanism is disposed inside the cabinet. The top wall of the cabinet is provided with a socket. The blocking member is inserted into the socket. When the blocking member is in the blocking position, the blocking member extends into the movement path through the socket.
[0013] When the cabinet door is in the closed position, the cabinet door directly or indirectly cooperates with the blocking member to prevent the blocking member from moving from the blocking position to the avoidance position. When the cabinet door is in the open position, the cabinet door releases the blocking member so that the blocking member can move to the avoidance position.
[0014] As a preferred technical solution for cash recycling equipment, in the case where the cabinet door indirectly cooperates with the blocking member to prevent the blocking member from moving from the blocking position to the avoidance position:
[0015] The blocking mechanism also includes a movable frame, which is pivotally connected to the cabinet via a pivot, and the blocking members are connected to the movable frame and arranged at intervals with the pivot.
[0016] The connection between the blocking member and the movable frame is configured such that when the movable frame rotates about the axis of the rotating shaft in a first direction, the blocking member moves from the avoidance position to the blocking position; when the movable frame rotates about the axis of the rotating shaft in a second direction, the blocking member moves from the blocking position to the avoidance position, wherein the first direction is opposite to the second direction.
[0017] When the cabinet door is in the closed position, the cabinet door is located on the path of the movable frame rotating in the second direction, so as to prevent the blocking member from moving from the blocking position to the avoidance position. When the cabinet door is in the open position, the cabinet door exits the rotation path of the movable frame, so as to release the obstruction of the blocking member.
[0018] As a preferred technical solution for cash recycling equipment, the movable frame includes a frame body and a buffer pad, the blocking member is connected to a first end of the frame body, the buffer pad is connected to a second end of the frame body, and the rotating shaft is located between the buffer pad and the blocking member and is inserted into the frame body;
[0019] When the cabinet door is in the closed position, the buffer pad elastically abuts against the cabinet door to prevent the blocking member from moving from the blocking position to the avoidance position.
[0020] As a preferred technical solution for a cash recycling device, the blocking member is configured to always have a tendency to move toward the avoidance position. When the cabinet door is in the closed position, the cabinet door abuts against the movable frame and drives the movable frame to rotate around the axis of the rotating shaft in the first direction so that the movable frame drives the blocking member to move to the blocking position. When the cabinet door is in the open position, the cabinet door separates from the movable frame so that the blocking member moves to the avoidance position and the movable frame rotates around the axis of the rotating shaft in the second direction.
[0021] As a preferred technical solution for cash recycling equipment, the blocking mechanism further includes an elastic element connected to the blocking element, and the elastic force of the elastic element causes the blocking element to always have a tendency to move toward the blocking position.
[0022] The blocking member is provided with a guide surface, which is set at an angle to the movement direction of the blocking member. When the cabinet door is in the open position, during the process of the processing device moving from the working position to the maintenance position, the processing device abuts against the guide surface and overcomes the elastic force of the elastic member to drive the blocking member to the avoidance position.
[0023] As a preferred technical solution for cash recycling equipment, the cabinet includes a mounting plate, which includes a first plate, a second plate, and a third plate connected at an angle in sequence. The second plate is fixedly connected to the top wall of the cabinet. The first plate and the third plate are arranged opposite to each other and spaced apart along the axial direction of the rotating shaft. The movable frame is located between the first plate and the third plate. The rotating shaft is simultaneously inserted into the first plate, the movable frame, and the third plate.
[0024] As a preferred technical solution for a cash recycling device, the blocking member is cylindrical, and the outer diameter of the blocking member is adapted to the diameter of the insertion hole. The blocking member can translate along the axial direction of the insertion hole between the blocking position and the avoidance position. The movable frame is provided with an elongated hole, and the extension direction of the elongated hole forms an angle with both the axial direction of the insertion hole and the axial direction of the rotating shaft. The blocking member is slidably connected to the elongated hole and can slide relative to the elongated hole.
[0025] As a preferred technical solution for a cash recycling device, when the processing device is in the working position, the insertion hole is located between the processing device and the opening; or, the processing device is provided with a limiting groove, and when the processing device is in the working position and the blocking member is in the blocking position, the blocking member passes through the insertion hole and is inserted into the limiting groove.
[0026] As a preferred technical solution for the cash recycling equipment, when the blocking member is disposed on the cabinet door:
[0027] The blocking member is fixedly installed at the top of the cabinet door. When the cabinet door moves to the closed position, the blocking member moves with the cabinet door to the blocking position. When the cabinet door moves to the open position, the blocking member moves with the cabinet door to the avoidance position.
[0028] The cash recycling device provided by this utility model has at least the following beneficial effects:
[0029] The cash recycling processing equipment includes a safe, a lock, a processing device, and a blocking mechanism. The safe includes a cabinet body and a door. The cabinet body has an opening, and the door is movably connected to the cabinet body. When the door moves relative to the cabinet body, it has an open position (opening the opening) and a closed position (closing the opening). The lock is used to lock the door in the closed position. The processing device is located above the safe and is movably connected to the cabinet body. The processing device can move relative to the cabinet body and has a working position and a maintenance position. The blocking mechanism includes a blocking member, which is disposed on the door or the cabinet body. The blocking member can move relative to the cabinet body and has a blocking position and a clearance position. When the processing device is in the working position and the blocking member is in the blocking position, the blocking member extends into the movement path of the processing device from the working position to the maintenance position to prevent the processing device from moving to the maintenance position. When the blocking member is in the clearance position, the blocking member exits the movement path, allowing the processing device to move to the maintenance position. The connection relationship between the blocking member and the cabinet door is configured such that when the cabinet door is in the closed position, the blocking member is in the blocking position, and when the cabinet door is in the open position, the blocking member is in the clearance position. With this configuration, when the cabinet door is locked in the closed position, the blocking component is in the blocking position, preventing the processing device from moving from the working position to the maintenance position. When the lock is unlocked and the cabinet door is in the open position, the blocking component can move to the clearance position, and when the blocking component moves to the clearance position, the processing device can move to the maintenance position. Therefore, locking the cabinet door in the closed position with the lock can prevent the processing device from moving from the working position to the maintenance position; unlocking the lock and moving the cabinet door to the open position can remove the obstruction to the processing device. Maintenance personnel can maintain the safe while also pulling the processing device to the maintenance position for maintenance, thus improving the maintenance efficiency of the cash circulation processing equipment. Attached Figure Description
[0030] Figure 1 This is a cross-sectional view of the cash recycling processing device in an embodiment of this utility model;
[0031] Figure 2 This is a schematic diagram of a first partial structure of the cash recycling processing device in an embodiment of this utility model;
[0032] Figure 3 This is a schematic diagram of a second partial structure of the cash recycling processing device in an embodiment of this utility model;
[0033] Figure 4 This is a schematic diagram of the third partial structure of the cash recycling device in this embodiment of the present invention;
[0034] Figure 5 This is an exploded view of a partial structure of the cash recycling equipment in an embodiment of this utility model;
[0035] Figure 6 for Figure 2 A magnified view of point A in the middle.
[0036] In the picture:
[0037] 1. Safe; 11. Safe body; 111. Opening; 112. Mounting plate; 113. First plate; 114. Second plate; 115. Third plate; 116. Limiting plate; 117. Top wall; 118. Opening; 119. Socket; 12. Safe door; 13. Cash box; 14. Fasteners;
[0038] 2. Locks;
[0039] 3. Processing device; 31. Conveying channel; 32. Coin insertion mechanism; 33. Coin dispensing mechanism; 34. Authentication mechanism;
[0040] 4. Blocking mechanism; 41. Blocking component; 42. Movable frame; 421. Frame body; 422. Support plate; 423. Buffer pad; 424. Long hole; 43. Rotating shaft; 44. Spring; 45. Pin. Detailed Implementation
[0041] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0042] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The terms "first position" and "second position" refer to two different positions. Moreover, "above," "on top of," and "over" the first feature in relation to the second feature includes the first feature directly above and diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "under," and "below" the first feature in relation to the second feature includes the first feature directly below and diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0043] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0044] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0045] Please refer to Figures 1 to 3 This embodiment provides a cash recycling processing device, which includes a safe 1, a lock 2, a processing device 3, and a blocking mechanism 4. The safe 1 includes a cabinet body 11 and a door 12. The cabinet body 11 has an opening 111, and the door 12 is movably connected to the cabinet body 11. The door 12 can move relative to the cabinet body 11 to have an open position (opening the opening 111) and a closed position (closing the opening 111). The lock 2 is used to lock the door 12 in the closed position. The processing device 3 is located above the safe 1 and is movably connected to the cabinet body 11. The processing device 3 has a working position and a maintenance position when moving relative to the cabinet body 11. The blocking mechanism 4 includes a blocking member 41, which is disposed on the door 12 or the cabinet body 11. The blocking member 41 can move relative to the door 11. The device has a blocking position and a yielding position. When the processing device 3 is in the working position and the blocking member 41 is in the blocking position, the blocking member 41 extends into the movement path of the processing device 3 from the working position to the maintenance position to prevent the processing device 3 from moving to the maintenance position. When the blocking member 41 is in the yielding position, the blocking member 41 exits the movement path, allowing the processing device 3 to move to the maintenance position. The connection relationship between the blocking member 41 and the cabinet door 12 is configured such that when the cabinet door 12 is in the closed position, the blocking member 41 is in the blocking position, and when the cabinet door 12 is in the open position, the blocking member 41 is in the yielding position.
[0046] In the cash recycling equipment provided in this embodiment, when the cabinet door 12 is locked in the closed position by the lock 2, the blocking member 41 is in the blocking position, preventing the processing device 3 from moving from the working position to the maintenance position. When the lock 2 unlocks the cabinet door 12 and the cabinet door 12 is in the open position, the blocking member 41 can move to the avoidance position, and when the blocking member 41 moves to the avoidance position, the processing device 3 can move to the maintenance position. Therefore, as long as the cabinet door 12 is locked in the closed position by the lock 2, the processing device 3 can be prevented from moving from the working position to the maintenance position, thus protecting both the safe 1 and the processing device 3. As long as the lock 2 is unlocked and the cabinet door 12 is moved to the open position, the obstruction to the processing device 3 can be released, allowing maintenance personnel to maintain the safe 1 while also pulling the processing device 3 to the maintenance position for maintenance, thereby improving the maintenance efficiency of the cash recycling equipment.
[0047] Alternatively, please refer to Figure 1 The processing device 3 is used to process banknotes. The processing device 3 includes a conveying channel 31, and a coin-infeeding mechanism 32, an authentication mechanism 34, and a coin-dispensing mechanism 33, all connected to the conveying channel 31. The coin-infeeding mechanism 32 receives banknotes inserted by the user, the authentication mechanism 34 authenticates the banknote information (e.g., denomination, currency type, and authenticity), and the coin-dispensing mechanism 33 allows the user to retrieve the banknotes. The safe 1 also includes multiple banknote boxes 13 housed within the safe body 11. The top wall 117 of the safe body 11 has multiple openings 118 corresponding to and connected to the banknote boxes 13. When the processing device 3 is in the working position, each banknote box 13 is connected to the conveying channel 31 through its corresponding opening 118 to receive banknotes input by the coin-infeeding mechanism 32 or output banknotes to the coin-dispensing mechanism 33. When the processing device 3 is in the maintenance position, the bottom of the processing device 3 and the openings 118 are exposed for easy maintenance.
[0048] Alternatively, please refer to Figure 2 , Figures 4 to 6When the blocking member 41 is installed on the cabinet door 12: the blocking mechanism 4 is installed inside the cabinet body 11, and the top wall 117 of the cabinet body 11 is provided with a socket 119. The blocking member 41 is inserted into the socket 119. When the blocking member 41 is in the blocking position, the blocking member 41 extends through the socket 119 into the movement path of the processing device 3 from the working position to the maintenance position. When the cabinet door 12 is in the closed position, the cabinet door 12 directly or indirectly cooperates with the blocking member 41 to prevent the blocking member 41 from moving from the blocking position to the avoidance position. When the cabinet door 12 is in the open position, the cabinet door 12 releases the obstruction of the blocking member 41 so that the blocking member 41 can move to the avoidance position. With this configuration, when the lock 2 locks the cabinet door 12 in the closed position, only a part of the blocking member 41 extends out of the cabinet body 11 through the socket 119, thereby effectively preventing the blocking mechanism 4 from being maliciously damaged and improving the security of the processing device 3.
[0049] Alternatively, please refer to Figure 2 and Figure 3 The cash box 13 is slidably connected to the cabinet 11, and the cash box 13 can be moved relative to the cabinet 11 in the front-back direction (e.g., ...). Figure 2 The blocking mechanism 4 is pulled out of the cabinet 11 or pushed back into the cabinet 11 in the direction indicated by the middle arrow ab. The blocking mechanism 4 and the cash box 13 move in the left and right directions (such as...). Figure 2 (In the direction indicated by the middle arrow cd) the intervals are set. This setting ensures that the position of the blocking mechanism 4 inside the cabinet 11 will not interfere with the pulling out or pushing back of the cash box 13.
[0050] Alternatively, please refer to Figure 2 In this embodiment, when the processing device 3 is in the working position, the socket 119 is located between the processing device 3 and the opening 111. This arrangement ensures that when the processing device 3 moves from the working position to the maintenance position, the processing device 3 will abut against the blocking member 41 located in the blocking position, thereby restricting the movement of the processing device 3 to the maintenance position.
[0051] As an alternative, the processing device 3 is provided with a limiting groove (not shown in the attached drawings). When the processing device 3 is in the working position and the blocking member 41 is in the blocking position, the blocking member 41 is inserted into the limiting groove through the insertion hole 119. Specifically, the limiting groove has two limiting walls spaced apart and arranged opposite to each other in the front-back direction. When the blocking member 41 is in the blocking position and the processing device 3 is in the working position, if the processing device 3 moves in the front-back direction, the two limiting walls will abut against the blocking member 41 to stably restrict the processing device 3 in the working position. Furthermore, the blocking member 41 is shielded by the limiting groove, further improving the safety of the processing device 3.
[0052] Alternatively, please refer to Figures 4 to 6In this embodiment, when the cabinet door 12 indirectly cooperates with the blocking member 41 to prevent the blocking member 41 from moving from the blocking position to the avoidance position: the blocking mechanism 4 also includes a movable frame 42, which is pivotally connected to the cabinet body 11 via a rotating shaft 43. The blocking member 41 is connected to the movable frame 42 and arranged at intervals with the rotating shaft 43. The connection relationship between the blocking member 41 and the movable frame 42 is configured such that when the movable frame 42 rotates around the axis of the rotating shaft 43 in a first direction, the blocking member 41 moves from the avoidance position to the blocking position; when the movable frame 42 rotates around the axis of the rotating shaft 43 in a second direction, the blocking member 41 moves from the blocking position to the avoidance position. The first direction is opposite to the second direction. When the cabinet door 12 is in the closed position, the cabinet door 12 is located on the path of the movable frame 42 rotating in the second direction to prevent the blocking member 41 from moving from the blocking position to the avoidance position. When the cabinet door 12 is in the open position, the cabinet door 12 exits the rotation path of the movable frame 42 to release the obstruction of the blocking member 41. With this configuration, the cabinet door 12 indirectly cooperates with the blocking member 41 through the movable frame 42. When the lock 2 locks the cabinet door 12 in the closed position, the cabinet door 12 indirectly prevents the blocking member 41 from moving to the avoidance position by abutting against the movable frame 42. When the cabinet door 12 is in the open position, the cabinet door 12 exits the rotation path of the movable frame 42, that is, the obstruction of the blocking member 41 is released, allowing the blocking member 41 to move to the avoidance position. This improves the reliability of the blocking processing device 3 moving from the working position to the maintenance position and the maintenance efficiency of the cash circulation processing equipment.
[0053] Alternatively, please refer to Figure 2 and Figure 3 In this embodiment, the cabinet door 12 is pivotally connected to the cabinet body 11 via a pivot shaft (not shown in the attached drawings), and the axis of the pivot shaft is along the vertical direction (e.g., ...). Figure 2 (Extends in the direction indicated by the middle arrow ef).
[0054] As an alternative, the cabinet door 12 can also be slidably connected to the cabinet body 11. The cabinet door 12 can slide relative to the cabinet body 11 in the left and right directions between the open and closed positions. The movable frame 42 is provided with a guide surface. When the cabinet door 12 slides to the closed position, the cabinet door 12 cooperates with the guide surface and drives the movable frame 42 to rotate around the axis of the rotating shaft 43 in the first direction.
[0055] When the cabinet door 12 directly engages with the blocking member 41 to prevent the blocking member 41 from moving from the blocking position to the avoidance position: the blocking member 41 is pivotally connected to the cabinet body 11 and can rotate relative to the cabinet body 11 to move between the blocking position and the avoidance position. When the cabinet door 12 moves to the closed position, the cabinet door 12 abuts against the first end of the blocking member 41 and drives the blocking member 41 to move to the blocking position, so that the second end of the blocking member 41 passes through the socket 119 and extends into the movement path of the processing device 3 from the working position to the maintenance position, thereby restricting the processing device 3 to the working position. When the cabinet door moves to the open position, the cabinet door 12 separates from the first end of the blocking member 41, the blocking member 41 can rotate relative to the cabinet body 11 to the avoidance position, and the second end of the blocking member 41 retracts into the socket 119 to release the restriction on the processing device 3, allowing the processing device 3 to move from the working position to the maintenance position.
[0056] Alternatively, please refer to Figures 4 to 6 The cabinet 11 includes a mounting plate 112, which comprises a first plate 113, a second plate 114, and a third plate 115 connected at an angle in sequence. The second plate 114 is fixedly connected to the top wall 117 of the cabinet 11. The first plate 113 and the third plate 115 are arranged opposite each other and spaced apart along the axial direction of the pivot 43. The movable frame 42 is located between the first plate 113 and the third plate 115. The pivot 43 is simultaneously inserted into the first plate 113, the movable frame 42, and the third plate 115. This arrangement improves the stability of the movable frame 42 rotating around the axis of the pivot 43, thereby improving the stability of the movable frame 42 driving the blocking member 41 to move between the blocking position and the avoidance position. Preferably, the second plate 114 is connected to the top wall 117 of the cabinet 11 by a plurality of fasteners 14. The fasteners 14 can be rivets, screws, etc. More preferably, the first plate 113 and the third plate 115 are both perpendicular to the second plate 114.
[0057] Alternatively, please refer to Figures 4 to 6 The blocking member 41 is configured to always tend to move towards the avoidance position. When the cabinet door 12 is in the closed position, the cabinet door 12 abuts against the movable frame 42 and drives the movable frame 42 to rotate around the axis of the rotating shaft 43 in a first direction, causing the movable frame 42 to drive the blocking member 41 to move to the blocking position. When the cabinet door 12 is in the open position, the cabinet door 12 separates from the movable frame 42, causing the blocking member 41 to move to the avoidance position and the movable frame 42 to rotate around the axis of the rotating shaft 43 in a second direction. This arrangement ensures that when the cabinet door 12 is in the closed position, the cabinet door 12 abuts against the movable frame 42, causing the movable frame 42 to drive the blocking member 41 from the avoidance position to the blocking position, thereby preventing the processing device 3 from moving from the working position to the maintenance position. When the cabinet door 12 is in the open position, the blocking member 41 automatically releases its obstruction of the processing device 3, allowing the processing device 3 to move to the maintenance position, further improving the maintenance efficiency of the cash recycling processing equipment.
[0058] Optionally, in this embodiment, under the combined action of the gravity of both the blocking member 41 and the movable frame 42, the movable frame 42 always tends to rotate in the second direction around the axis of the rotating shaft 43, and the blocking member 41 always tends to move towards the avoidance position. Thus, when the cabinet door 12 is in the open position, the blocking member 41 can automatically move to the avoidance position to release the obstruction of the processing device 3; and / or, the blocking mechanism 4 further includes a spring 44, which is configured to make the movable frame 42 always tend to rotate in the second direction and the blocking member 41 always tend to move towards the avoidance position. When the cabinet door 12 moves to the open position, the movable frame 42 rotates in the second direction under the action of the spring 44, and the blocking member 41 automatically moves to the avoidance position to release the obstruction of the processing device 3. The spring 44 is connected between the movable frame 42 and the cabinet 11. When the cabinet door 12 moves to the open position, the movable frame 42 rotates in the second direction under the action of the spring 44, driving the blocking member 41 to automatically move to the avoidance position. Alternatively, the spring 44 is connected between the blocking member 41 and the cabinet 11. When the cabinet door 12 moves to the open position, the blocking member 41 moves to the avoidance position under the action of the spring 44, driving the movable frame 42 to rotate in the second direction. Preferably, the spring 44 can be a compression spring, a torsion spring, or a tension spring.
[0059] As an alternative, the safe 1 also includes a drive unit (not shown in the figure) connected to the door 12. When the door 12 is in the open position, the drive unit abuts against the movable frame 42 and drives the movable frame 42 to rotate in the second direction, so that the movable frame 42 drives the blocking member 41 to move to the avoidance position, thereby releasing the obstruction to the processing device 3. When the door 12 is in the closed position, the drive unit separates from the movable frame 42, and the movable frame 42 rotates in the first direction under the drive of the door 12 and the blocking member 41 moves to the blocking position.
[0060] Alternatively, please refer to Figure 4 and Figure 5 The mounting plate 112 also includes a limiting plate 116 connected to the second plate 114. When the blocking member 41 is in the avoidance position, the movable frame 42 abuts against the limiting plate 116 to ensure that the blocking member 41 can be stably stopped in the avoidance position.
[0061] Alternatively, please refer to Figures 4 to 6In this embodiment, the movable frame 42 includes a frame body 421 and a buffer pad 423. A blocking member 41 is connected to the first end of the frame body 421, and the buffer pad 423 is connected to the second end of the frame body 421. A rotating shaft 43 is located between the buffer pad 423 and the blocking member 41 and is inserted into the frame body 421. When the cabinet door 12 is in the closed position, the buffer pad 423 elastically abuts against the cabinet door 12 to prevent the blocking member 41 from moving from the blocking position to the avoidance position. By providing the buffer pad 423, when the cabinet door 12 rotates to the closed position, the cabinet door 12 collides with the buffer pad 423. The buffer pad 423 absorbs the impact force generated during the collision, preventing damage to the cabinet door 12 or the movable frame 42 due to rigid collision, thus improving the service life of the cabinet door 12 and the blocking mechanism 4. Preferably, the buffer pad 423 is made of an elastic material such as rubber or urethane. In other embodiments, the blocking member 41 and the buffer pad 423 can also be provided on the same side of the rotating shaft 43 as needed.
[0062] Optionally, the blocking mechanism 4 also includes an elastic element (not shown in the figure), which is connected to the blocking element 41. The elastic force of the elastic element causes the blocking element 41 to always tend to move towards the blocking position. The blocking element 41 is provided with a guide surface (not shown in the figure), which is set at an angle to the movement direction of the blocking element 41. When the cabinet door 12 is in the open position, during the process of the processing device 3 moving from the working position to the maintenance position, the processing device 3 abuts against the guide surface and overcomes the elastic force of the elastic element to drive the blocking element 41 to move to the avoidance position. This configuration ensures that when the cabinet door 12 is in the closed position, it abuts against the movable frame 42, and the movable frame 42 drives the blocking member 41 to move from the avoidance position to the blocking position. Since the relative position of the cabinet door 12 and the cabinet body 11 is locked by the lock 2, the blocking member 41 can be stably maintained in the blocking position, thereby allowing the processing device 3 to be stably maintained in the working position. When the cabinet door 12 is in the open position, the processing device 3 can only drive the blocking member 41 to move to the avoidance position if the external force acting on the processing device 3 can overcome the elastic force of the elastic member. When the external force acting on the processing device 3 cannot overcome the elastic force of the elastic member, the blocking member 41 can still restrict the processing device 3 to the working position, preventing the processing device 3 from accidentally moving to the maintenance position when no maintenance is required.
[0063] Alternatively, please refer to Figure 4 and Figure 5The blocking member 41 is cylindrical, and its outer diameter is adapted to the diameter of the insertion hole 119. The blocking member 41 can translate between a blocking position and a clearance position along the axial direction of the insertion hole 119. The movable frame 42 is provided with an elongated hole 424, the extension direction of which forms an angle with both the axial direction of the insertion hole 119 and the axial direction of the rotating shaft 43. The blocking member 41 is slidably connected to the elongated hole 424 and can slide relative to the elongated hole 424. With this configuration, when the movable frame 42 rotates around the axis of the rotating shaft 43, the blocking member 41 can slide relative to the elongated hole 424 and translate along the axial direction of the insertion hole 119 to either a blocking position or a clearance position, thus improving the stability of the blocking member 41's movement between the blocking position and the clearance position. Preferably, the movable frame 42 includes two support plates 422 that are opposite to each other and spaced apart. Both support plates 422 have elongated holes 424. The first end of the blocking member 41 is located between the two support plates 422 and has a through hole. The blocking member 41 also includes a pin 45, which is inserted into both the through hole and the elongated holes 424 on the two support plates 422. The blocking member 41 is slidably connected to the elongated holes 424 via the pin 45. The second end of the blocking member 41 is inserted into the insertion hole 119. In other embodiments, the blocking member 41 can also be directly inserted into the elongated holes 424.
[0064] As one alternative, the blocking member 41 is cylindrical and fixedly connected to the movable frame 42. The insertion hole 119 is elongated and its width is adapted to the outer diameter of the blocking member 41. The insertion hole 119 extends in the front-back direction. The blocking member 41 rotates with the movable frame 42 around the axis of the rotating shaft 43 between the blocking position and the avoidance position, and the blocking member 41 can slide relative to the insertion hole 119 in the front-back direction; or the diameter of the insertion hole 119 is larger than the outer diameter of the blocking member 41. The blocking member 41 rotates with the movable frame 42 around the axis of the rotating shaft 43 between the blocking position and the avoidance position, and the blocking member 41 can move in the front-back direction within the insertion hole 119.
[0065] As one alternative, the blocking member 41 is cylindrical and rotatably connected to the movable frame 42. The axis of rotation of the blocking member 41 relative to the movable frame 42 is parallel to the axis of the rotating shaft 43. The insertion hole 119 is elongated and its width is adapted to the outer diameter of the blocking member 41. The insertion hole 119 extends in the front-back direction. When the movable frame 42 rotates around the axis of the rotating shaft 43, the blocking member 41 rotates relative to the movable frame 42 and can slide relative to the insertion hole 119 in the front-back direction, so that the blocking member can move between the blocking position and the avoidance position. Alternatively, the diameter of the insertion hole 119 is larger than the outer diameter of the blocking member 41. When the movable frame 42 rotates around the axis of the rotating shaft 43, the blocking member 41 rotates relative to the movable frame 42 and can move within the insertion hole 119 in the front-back direction, so that the blocking member 41 can move between the blocking position and the avoidance position.
[0066] As one alternative, the blocking member 41 includes a connecting rod and a blocking rod. The connecting rod and the movable frame 42 are rotatably connected, and the blocking rod is rotatably connected to the connecting rod. The blocking rod is inserted into the insertion hole 119. The axis of rotation of the connecting rod relative to the movable frame 42 and the axis of rotation of the blocking rod relative to the connecting rod are both parallel to the axis of the rotating shaft 43. The outer diameter of the blocking rod is adapted to the diameter of the insertion hole 119. When the movable frame 42 rotates around the axis of the rotating shaft 43, the connecting rod rotates simultaneously relative to the movable frame 42 and the blocking rod. The connecting rod pushes the blocking rod to move axially along the insertion hole 119, thereby causing the blocking member 41 to translate between the blocking position and the avoidance position.
[0067] Optionally, when the blocking member 41 is provided on the cabinet door 12: the blocking member 41 is fixedly provided on the top of the cabinet door 12. When the cabinet door 12 moves to the closed position, the blocking member 41 moves with the cabinet door 12 to the blocking position. When the cabinet door 12 moves to the open position, the blocking member 41 moves with the cabinet door 12 to the clearance position. Specifically, the blocking member 41 can be a push rod. When the cabinet door 12 is in the closed position, the push rod abuts against the processing device 3, or the push rod is spaced apart from the processing device 3, and the push rod is located on the movement path of the processing device 3 from the working position to the maintenance position, so as to prevent the processing device 3 from moving to the maintenance position. When the cabinet door 12 is in the open position, the push rod separates from the processing device 3 and exits the movement path of the processing device 3 from the working position to the maintenance position, so as to allow the processing device 3 to move to the maintenance position.
[0068] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A cash cycle processing apparatus, characterized by, The safe (1) comprises a cabinet body (11) provided with an opening (111) and a cabinet door (12) movably connected with the cabinet body (11) and capable of moving relative to the cabinet body (11) to have an open position for opening the opening (111) and a closed position for closing the opening (111); a lock (2) for locking the cabinet door (12) in the closed position; a processing device (3) located above the safe (1) and movably connected with the cabinet body (11) and having a working position and a maintenance position when moving relative to the cabinet body (11); and a blocking mechanism (4) comprising a blocking piece (41) arranged on the cabinet door (12) or the cabinet body (11) and capable of moving relative to the cabinet body (11) to have a blocking position and an avoiding position, wherein when the processing device (3) is located at the working position and the blocking piece (41) is located at the blocking position, the blocking piece (41) extends into a moving path of the processing device (3) from the working position to the maintenance position to prevent the processing device (3) from moving to the maintenance position, and when the blocking piece (41) is located at the avoiding position, the blocking piece (41) exits the moving path to enable the processing device (3) to move to the maintenance position; and the connection relationship between the blocking piece (41) and the cabinet door (12) is configured such that when the cabinet door (12) is located at the closed position, the blocking piece (41) is located at the blocking position, and when the cabinet door (12) is located at the open position, the blocking piece (41) is located at the avoiding position. In the case where the blocking piece (41) is arranged on the cabinet door (12): the blocking mechanism (4) is arranged in the cabinet body (11), a top wall (117) of the cabinet body (11) is provided with a insertion hole (119), the blocking piece (41) is inserted into the insertion hole (119), and when the blocking piece (41) is located at the blocking position, the blocking piece (41) extends into the moving path through the insertion hole (119); when the cabinet door (12) is located at the closed position, the cabinet door (12) directly or indirectly cooperates with the blocking piece (41) to prevent the blocking piece (41) from moving from the blocking position to the avoiding position, and when the cabinet door (12) is located at the open position, the cabinet door (12) releases the blocking of the blocking piece (41) to enable the blocking piece (41) to move to the avoiding position. In the case where the cabinet door (12) indirectly cooperates with the blocking piece (41) to prevent the blocking piece (41) from moving from the blocking position to the avoiding position:
2. The cash recycling apparatus according to claim 1, characterized by the blocking mechanism (4) further comprises a movable frame (42) pivotally connected with the cabinet body (11) through a pivot shaft (43), the blocking piece (41) is connected with the movable frame (42) and arranged apart from the pivot shaft (43); and 3. The cash recycling apparatus according to claim 2, characterized by The connecting relationship between the blocking piece (41) and the movable frame (42) is configured such that when the movable frame (42) rotates around the axis of the rotating shaft (43) in a first direction, the blocking piece (41) moves from the avoiding position to the blocking position, and when the movable frame (42) rotates around the axis of the rotating shaft (43) in a second direction, the blocking piece (41) moves from the blocking position to the avoiding position, the first direction being opposite to the second direction; When the cabinet door (12) is in the closed position, the cabinet door (12) is located on the rotating path of the movable frame (42) in the second direction to prevent the blocking piece (41) from moving from the blocking position to the avoiding position, and when the cabinet door (12) is in the open position, the cabinet door (12) exits the rotating path of the movable frame (42) to release the prevention of the blocking piece (41).
4. The cash cycle processing apparatus according to claim 3, characterized by, The movable frame (42) comprises a frame body (421) and a buffer pad (423), the blocking piece (41) is connected to the first end of the frame body (421), the buffer pad (423) is connected to the second end of the frame body (421), and the rotating shaft (43) is located between the buffer pad (423) and the blocking piece (41) and is inserted into the frame body (421); When the cabinet door (12) is in the closed position, the buffer pad (423) elastically abuts against the cabinet door (12) to prevent the blocking piece (41) from moving from the blocking position to the avoiding position.
5. The cash cycle processing apparatus according to claim 3, characterized by, The blocking piece (41) is configured to always have a tendency to move to the avoiding position, when the cabinet door (12) is in the closed position, the cabinet door (12) abuts against the movable frame (42) and drives the movable frame (42) to rotate around the axis of the rotating shaft (43) in the first direction to drive the movable frame (42) to move the blocking piece (41) to the blocking position, and when the cabinet door (12) is in the open position, the cabinet door (12) is separated from the movable frame (42) to move the blocking piece (41) to the avoiding position and rotate the movable frame (42) around the axis of the rotating shaft (43) in the second direction.
6. The cash cycle processing apparatus according to claim 3, characterized by, The blocking mechanism (4) further comprises a resilient member connected to the blocking piece (41), and the elastic force of the resilient member causes the blocking piece (41) to always have a tendency to move to the blocking position; The blocking piece (41) is provided with a guide surface, the guide surface is arranged at an angle with the movement direction of the blocking piece (41), and when the cabinet door (12) is in the open position, during the movement of the processing device (3) from the working position to the maintenance position, the processing device (3) abuts against the guide surface and drives the blocking piece (41) to move to the avoiding position against the elastic force of the resilient member.
7. The cash recycling apparatus according to claim 3, wherein The cabinet body (11) comprises a mounting plate (112), the mounting plate (112) comprises a first plate (113), a second plate (114) and a third plate (115) connected in sequence at an included angle, the second plate (114) is fixedly connected with the top wall (117) of the cabinet body (11), the first plate (113) and the third plate (115) are oppositely and spacedly arranged along the axial direction of the rotating shaft (43), the movable frame (42) is located between the first plate (113) and the third plate (115), and the rotating shaft (43) is inserted into the first plate (113), the movable frame (42) and the third plate (115) simultaneously.
8. The cash recycling apparatus according to any one of claims 3 to 7, characterized in that, The blocking piece (41) is in a cylindrical shape, the outer diameter of the blocking piece (41) is matched with the hole diameter of the insertion hole (119), the blocking piece (41) can be translated in the axial direction of the insertion hole (119) between the blocking position and the avoiding position, the movable frame (42) is provided with a long hole (424), the extension direction of the long hole (424) is at an included angle with the axial direction of the insertion hole (119) and the axial direction of the rotating shaft (43), the blocking piece (41) is slidably connected with the long hole (424) and can slide relative to the long hole (424).
9. The cash recycling apparatus according to any one of claims 2 to 7, characterized by When the processing device (3) is located at the working position, the insertion hole (119) is located between the processing device (3) and the opening (111); or, the processing device (3) is provided with a limiting groove, when the processing device (3) is located at the working position and the blocking piece (41) is located at the blocking position, the blocking piece (41) passes through the insertion hole (119) and is inserted into the limiting groove.
10. The cash recycling apparatus according to claim 1, characterized by In the case that the blocking piece (41) is arranged on the cabinet door (12): The blocking piece (41) is fixedly arranged at the top end of the cabinet door (12), when the cabinet door (12) moves to the closed position, the blocking piece (41) moves to the blocking position with the cabinet door (12), when the cabinet door (12) moves to the open position, the blocking piece (41) moves to the avoiding position with the cabinet door (12).