A storage cabinet and cash handling apparatus
By designing a rotatable loading box and a blocking door system in the storage cabinet, and using limiters to control the position switching of the blocking door, the problem of low security in the storage cabinet is solved, and the security of items during storage is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WEIHAI XINBEIYANG RONGXIN SCI & TECH
- Filing Date
- 2025-09-16
- Publication Date
- 2026-08-04
AI Technical Summary
The existing storage cabinets have slots that are connected to the storage space, posing a security risk of items being illegally retrieved.
Design a storage cabinet including a cabinet body, an input box, and a blocking door. The input box is pivotally connected to the cabinet body via a pivot and has an unloading position and an receiving position. The blocking door switches between different positions under the control of a limiting component to ensure that the input port and the output port are opened selectively, avoiding simultaneous connection.
This improves the security of the storage cabinet, prevents items from being illegally removed from the storage space, and ensures the safety of items during the storage process.
Smart Images

Figure CN224592000U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of financial equipment technology, and in particular to a storage cabinet and cash handling equipment. Background Technology
[0002] Supermarkets, shopping malls, banks, and other business establishments typically have storage lockers for storing valuables. The storage lockers provided by related technologies include an input port and a storage space connected to the input port. The storage space is used to store items inserted through the input port. However, since the input port is connected to the storage cavity, there is a risk that items in the storage space can be illegally retrieved through the input port. Therefore, the security of the storage lockers provided by related technologies is relatively low. Utility Model Content
[0003] The purpose of this utility model is to provide a storage cabinet and cash handling equipment to improve the security of items stored in the storage cabinet.
[0004] On the one hand, this utility model provides a storage cabinet, which includes:
[0005] The cabinet has an opening;
[0006] A loading box, disposed within the cabinet, comprises a box body and a concealed door. The box body is pivotally connected to the cabinet via a first pivot. When the box body rotates relative to the cabinet around the axis of the first pivot, it has an unloading position and a receiving position. The box body has an loading port and an output port. The loading port is used to allow items to enter the box body, and the output port is used to allow items to exit the box body. When the box body rotates to the receiving position, the loading port is exposed through the opening, and the box body is used to receive and store items loaded through the loading port. When the box body rotates to the unloading position, the loading port is hidden within the cabinet body, and the items stored in the box body can move towards the output port under the action of gravity. The concealed door is movably connected to the box body and has an open position and a closed position relative to the box body. When the concealed door is in the closed position, the concealed door closes the output port; when the concealed door is in the open position, the concealed door opens the output port.
[0007] A limiting component is provided in the cabinet and located inside the cabinet. When the cabinet rotates to the receiving position, the blocking door moves to the closed position, and the limiting component locks the blocking door in the closed position; when the cabinet rotates to the unloading position, the limiting component releases the position locking of the blocking door, and the blocking door moves to the open position.
[0008] A storage space is provided inside the cabinet, located below the output port, and is used to store items output from the output port.
[0009] As a preferred technical solution for the storage cabinet, the obstruction door is pivotally connected to the cabinet body via a second pivot, the second pivot being parallel to the first pivot, and the obstruction door being able to rotate relative to the cabinet body around the axis of the second pivot to the open position or the closed position;
[0010] When the container rotates from the receiving position to the unloading position, the limiting member separates from the blocking door. The blocking door rotates to the open position under its own weight or elastic force. When the container rotates from the unloading position to the receiving position, the limiting member abuts against the blocking door and prevents the blocking door from rotating, thereby locking the blocking door in the closed position.
[0011] As a preferred technical solution for the storage cabinet, during the process of the cabinet rotating from the unloading position to the receiving position, the limiting member can abut against the blocking door and drive the blocking door to rotate to the closed position.
[0012] As a preferred technical solution for the storage cabinet, the limiting component includes a roller, which can rotate relative to the cabinet body around its own axis. The blocking door includes a driving surface, which is an arc surface centered on the axis of the first rotating shaft when the blocking door is in the closed position.
[0013] During the process of the container rotating from the unloading position to the receiving position, the roller is used to roll with the driving surface to drive the shield door to rotate to the closed position, and when the container is in the receiving position, the roller is tangentially engaged with the driving surface to lock the shield door in the closed position.
[0014] As a preferred technical solution for the storage cabinet, the loading box includes an operating part connected to the box body. The operating part is exposed through the opening and is used by the operator to hold and drive the box body to rotate to the receiving position. The box body always has a tendency to rotate towards the unloading position under its own weight or elastic force.
[0015] As a preferred technical solution for the storage cabinet, the top of the shielding door is pivotally connected to the cabinet body via a second pivot, the second pivot being parallel to the first pivot, and the bottom of the shielding door is provided with a first comb tooth portion, the first comb tooth portion being located above the storage space, the first comb tooth portion being used to prevent items in the storage space from entering the cabinet body through the outlet.
[0016] As a preferred technical solution for the storage cabinet, the cabinet body includes a top wall and two side walls. The two side walls are arranged opposite to each other and spaced apart along the axial direction of the first rotating shaft. The top wall is connected between the two side walls, and the top wall and the two side walls together form the opening.
[0017] The box includes a limiting plate. When the box rotates from the receiving position to the unloading position, the limiting plate is located in front of the inlet and abuts against the top wall to limit the rotation angle of the box relative to the cabinet.
[0018] As a preferred technical solution for the storage cabinet, the cabinet body includes two side walls that are opposite to each other and spaced apart along the axial direction of the first rotating shaft; the cabinet body includes a first side plate, a second side plate and two third side plates, the first side plate and the second side plate are opposite to each other and spaced apart, the two third side plates are opposite to each other and spaced apart along the axial direction of the first rotating shaft, and both third side plates are connected between the first side plate and the second side plate. The two third side plates are arranged in a one-to-one correspondence with the two side walls, and each third side plate is pivotally connected to the corresponding side wall through the first rotating shaft. The first side plate, the second side plate and the two third side plates together form the opposite and spaced inlet and outlet.
[0019] As a preferred technical solution for the storage cabinet, the cabinet body also includes a shielding wall and a top wall that are arranged opposite to each other and spaced apart in the vertical direction. The shielding wall is located below the top wall, and the front part of the shielding wall, the front part of the top wall, and the front parts of the two side walls together form the opening.
[0020] The input box further includes a first baffle, a first end of which is fixedly connected to the outer surface of the first side plate, a second end of which is suspended, and a second comb tooth portion at the second end of which, when the input box is located at the receiving position, is used to block the first gap between the outer surface of the first side plate and the blocking wall and prevent items in the storage space from passing through the first gap; and / or, the input box further includes a second baffle, a first end of which is fixedly connected to the outer surface of the second side plate, a second end of which is suspended, and a third comb tooth portion at the second end of which, when the input box is located at the receiving position, is used to block the second gap between the outer surface of the second side plate and the top wall and prevent items in the storage space from passing through the second gap.
[0021] The storage cabinet provided by this utility model has at least the following beneficial effects:
[0022] The storage cabinet includes a cabinet body, an input box, a limiting component, and a storage space. The cabinet body has an opening. The input box, limiting component, and storage space are all located inside the cabinet body. The input box includes a box body and a cover door. The box body is pivotally connected to the cabinet body via a first rotating shaft. When the box body rotates relative to the cabinet body around the axis of the first rotating shaft, it has an unloading position and a receiving position. The box body has an input port and an output port. The input port is used to allow items to enter the box body, and the output port is used to allow items to exit the box body. When the box body rotates to the receiving position, the input port is exposed through the opening, and the box body is used to receive and store items inserted through the input port. When the box body rotates to the unloading position, the input port is hidden inside the cabinet body. The stored items can move towards the output port under the influence of gravity; the blocking door is movably connected to the cabinet body, and the blocking door has an open position and a closed position relative to the cabinet body. When the blocking door is in the closed position, the blocking door closes the output port, and when the blocking door is in the open position, the blocking door opens the output port; a limiting component is set in the cabinet body. When the cabinet body rotates to the receiving position, the blocking door moves to the closed position, and the limiting component locks the blocking door in the closed position; when the cabinet body rotates to the unloading position, the limiting component releases the position lock of the blocking door, and the blocking door moves to the open position; the storage space is located below the output port, and the storage space is used to store the items output from the output port. In this storage cabinet, when the cabinet rotates to the receiving position, the input port is exposed through the opening, and the blocking door is locked in the closed position by the limiting component, thus sealing the output port. The cabinet is used to temporarily store items inserted by the user through the input port. When the cabinet rotates to the unloading position, the input port is hidden inside the cabinet, and the output port can be opened by the blocking door, allowing items inside the cabinet to enter the storage space through the output port. Therefore, when the cabinet is in the unloading or receiving position, the input port and the output port can only be opened one at a time, and not both at the same time, to prevent the input port, output port, and storage space from being connected simultaneously. This prevents items in the storage space from being taken out through the output port and input port, improving the security of the storage cabinet.
[0023] On the other hand, this utility model provides a cash handling device, including a storage cabinet as described in any of the above solutions, wherein the storage space is used to store cash.
[0024] The cash processing device provided by this utility model has at least the following beneficial effects:
[0025] The cash handling equipment includes the aforementioned storage cabinet, which ensures the safety of the items stored within. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the first structure of the storage cabinet in an embodiment of this utility model;
[0027] Figure 2 This is a schematic diagram of the second structure of the storage cabinet in an embodiment of this utility model;
[0028] Figure 3 This is a cross-sectional view of the storage cabinet in an embodiment of this utility model;
[0029] Figure 4 for Figure 3 Enlarged view of point A in the middle;
[0030] Figure 5 This is an enlarged view of a portion of the structure of the storage cabinet in an embodiment of this utility model;
[0031] Figure 6 This is a schematic diagram of the structure of the input box in an embodiment of this utility model;
[0032] Figure 7 This is a partial structural diagram of the storage cabinet in an embodiment of the present utility model.
[0033] In the picture:
[0034] 100. Storage cabinet;
[0035] 1. Cabinet body; 11. Opening; 12. Opening; 13. Top wall; 14. Side wall; 15. Concealing wall; 151. Limiting surface; 16. Third baffle; 161. Fourth comb tooth section;
[0036] 2. Input box; 21. Box body; 211. Input port; 212. Output port; 213. Limiting plate; 214. First side plate; 215. Second side plate; 216. Third side plate; 22. Blocking door; 221. Drive surface; 23. First rotating shaft; 24. Second rotating shaft; 25. Operating part; 26. First comb tooth part; 27. First baffle; 271. Second comb tooth part; 28. Second baffle; 281. Third comb tooth part;
[0037] 3. Limiting component; 31. Roller; 32. Third rotating shaft;
[0038] 4. Storage box; 41. Storage space;
[0039] 5. Cabinet doors. Detailed Implementation
[0040] 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.
[0041] 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.
[0042] 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.
[0043] 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.
[0044] Please refer to Figures 1 to 3 This embodiment provides a cash processing device, which includes a storage cabinet 100, the storage space 41 of which is used to store cash. In this embodiment, the cash processing device can be applied to places such as banks that need to process financial transactions. In other embodiments, the storage space 41 of the storage cabinet 100 can also be used to store luggage and other items, and can be used in places such as shopping malls and supermarkets.
[0045] Optionally, the cash processing equipment also includes a banknote processing device (not shown in the accompanying drawings) and a coin processing device (not shown in the accompanying drawings). The banknote processing device is used to identify, store, and output banknotes; the coin processing device is used to identify, store, and output coins.
[0046] Please refer to Figures 1 to 5 The storage cabinet 100 includes a cabinet body 1, an input box 2, a limiting member 3, and a storage space 41. The cabinet body 1 has an opening 11. The input box 2, limiting member 3, and storage space 41 are all located within the cabinet body 1. The input box 2 includes a box body 21 and a cover door 22. The box body 21 is pivotally connected to the cabinet body 1 via a first rotating shaft 23. When the box body 21 rotates relative to the cabinet body 1 around the axis of the first rotating shaft 23, it has an unloading position and a receiving position. The box body 21 has an input port 211 and an output port 212. The input port 211 is used to allow items to enter the box body 21, and the output port 212 is used to allow items to exit the box body 21. When the box body 21 rotates to the receiving position, the input port 211 is exposed through the opening 11, and the box body 21 is used to receive and store items inserted through the input port 211. When the box body 21 rotates to the unloading position, the input port 211 is hidden inside the cabinet body 1, and the items stored inside the box body 21 are stored there. The product can move towards the output port 212 under the action of gravity; the blocking door 22 is movably connected to the cabinet 21, and the blocking door 22 has an open position and a closed position relative to the cabinet 21. When the blocking door 22 is in the closed position, the blocking door 22 closes the output port 212, and when the blocking door 22 is in the open position, the blocking door 22 opens the output port 212; the limiting member 3 is provided on the cabinet 1. When the cabinet 21 rotates to the receiving position, the blocking door 22 moves to the closed position, and the limiting member 3 locks the blocking door 22 in the closed position; when the cabinet 21 rotates to the unloading position, the limiting member 3 releases the position lock of the blocking door 22, and the blocking door 22 moves to the open position; the storage space 41 is located below the output port 212, and the storage space 41 is used to store the items output from the output port 212.
[0047] In this embodiment, the storage cabinet 100, when the cabinet body 21 is rotated to the receiving position, the input port 211 is exposed through the opening 11, and the blocking door 22 is locked in the closed position by the limiting member 3, so that the output port 212 is closed by the blocking door 22. The cabinet body 21 is used to temporarily store items put in by the user through the input port 211. When the cabinet body 21 is rotated to the unloading position, the input port 211 is hidden inside the cabinet body 1, and the output port 212 can be opened by the blocking door 22, so that the items in the cabinet body 21 can enter the storage space 41 through the output port 212. Thus, when the cabinet body 21 is in the unloading or receiving position, the input port 211 and the output port 212 can only be opened one of them, and will not be opened at the same time, so as to avoid the input port 211, the output port 212 and the storage space 41 being connected at the same time, thereby preventing the items in the storage space 41 from being taken out through the output port 212 and the input port 211, and improving the security of the storage cabinet 100.
[0048] Alternatively, please refer to Figure 1 and Figure 2Along the axial direction of the first rotating shaft 23, the size of the opening 11 is adapted to the size of the box 21. This arrangement not only improves the structural compactness of the storage cabinet 100, but also prevents the box 21 from contacting the loading port 211 from both sides along the axial direction of the first rotating shaft 23 when the box 21 is rotated to the unloading position, thus further improving the safety of the storage cabinet 100.
[0049] Alternatively, please continue to refer to Figure 1 and Figure 2 The cabinet 1 also has an opening 12 located below the opening 11. The storage cabinet 100 also includes a storage box 4 and a cabinet door 5. The storage box 4 is movably connected to the cabinet 1. The storage box 4 has a working position inside the cabinet 1 and a maintenance position that can be at least partially pulled out of the cabinet 1 through the opening 12. The storage space 41 is disposed in the storage box 4. When the storage box 4 is in the working position, the storage space 41 is located below the output port 212. The cabinet door 5 is movably connected to the cabinet 1 and is used to open or close the opening 12. This arrangement facilitates the retrieval of items in the storage space 41 through the opening 12.
[0050] Alternatively, please refer to Figures 4 to 7 In this embodiment, the shielding door 22 is pivotally connected to the box body 21 via a second rotating shaft 24. The second rotating shaft 24 is parallel to the first rotating shaft 23. The shielding door 22 can rotate relative to the box body 21 around the axis of the second rotating shaft 24 to either an open or closed position. When the box body 21 rotates from the receiving position to the unloading position, the limiting member 3 separates from the shielding door 22, and the shielding door 22 rotates to the open position under its own weight or elastic force. When the box body 21 rotates from the unloading position to the receiving position, the limiting member 3 abuts against the shielding door 22 and prevents the shielding door 22 from rotating, thereby locking the shielding door 22 in the closed position. This configuration improves the reliability of the shielding door 22 when it rotates to the open position and when it is locked in the closed position. This embodiment exemplarily provides a scheme where the shielding door 22 rotates to the open position under its own weight when the box body 21 rotates from the receiving position to the unloading position. In other embodiments, when the container 21 rotates from the receiving position to the unloading position, the barrier door 22 can also rotate to the open position under the action of an elastic force. Specifically, the elastic element connected between the barrier door 22 and the container 21 ensures that the barrier door 22 always has a tendency to rotate towards the open position. When the container 21 rotates from the receiving position to the unloading position, since the limiting member 3 separates from the barrier door 22, the elastic element can drive the barrier door 22 to move to the open position. The elastic element can be a tension spring, compression spring, or torsion spring, etc. In other embodiments, when the container 21 rotates from the receiving position to the unloading position, the barrier door 22 can also rotate to the open position under the combined action of its own weight and the elastic force.
[0051] As one alternative, the shield door 22 is pivotally connected to the box body 21 via a second pivot 24. The second pivot 24 is parallel to the first pivot 23. The shield door 22 can rotate relative to the box body 21 around the axis of the second pivot 24 to either the open or closed position. When the box body 21 rotates from the unloading position to the receiving position, the shield door 22 rotates relative to the box body 21 to the closed position under its own weight. When the box body 21 rotates from the receiving position to the unloading position, the shield door 22 rotates relative to the box body 21 to the open position under its own weight. Understandably, the shielding door 22 hangs freely under its own weight. When the container 21 is in the receiving position, the container 21 is in contact with the shielding door 22, and the shielding door 22 closes the outlet 212, so that the shielding door 22 is in the closed position. When the container 21 moves from the receiving position to the unloading position, the container 21 rotates relative to the cabinet 1 and also rotates relative to the shielding door 22, so that the outlet 212 is gradually opened, and the shielding door 22 rotates relative to the container 21 to the open position.
[0052] Alternatively, please refer to Figure 4 and Figure 5 During the process of the container 21 rotating from the unloading position to the receiving position, the limiting member 3 can abut against the shielding door 22 and drive the shielding door 22 to rotate to the closed position. This setting improves the reliability of the shielding door 22 rotating to the closed position.
[0053] Alternatively, please refer to Figures 4 to 7 The limiting component 3 includes a roller 31, which can rotate relative to the cabinet 1 around its own axis. The blocking door 22 includes a driving surface 221. When the blocking door 22 is in the closed position, the driving surface 221 is an arc surface with the axis of the first rotating shaft 23 as the center line. During the process of the cabinet 21 rotating from the unloading position to the receiving position, the roller 31 is used to roll and cooperate with the driving surface 221 to drive the blocking door 22 to rotate to the closed position. When the cabinet 21 is in the receiving position, the roller 31 is tangentially engaged with the driving surface 221 to lock the blocking door 22 in the closed position. This configuration, through the rolling engagement of the roller 31 and the drive surface 221, reduces the frictional resistance between the roller 31 and the blocking door 22, improving the smoothness of the cabinet 21 rotating from the unloading position to the receiving position. On the other hand, since the drive surface 221 is an arc surface centered on the axis of the first rotating shaft 23 when the blocking door 22 is in the closed position, the blocking door 22 can be locked in the closed position as long as the outer circumferential surface of the roller 31 is tangentially engaged with the drive surface 221, thus improving the safety of the storage cabinet 100.
[0054] As one alternative, the limiting member 3 includes a drive block that is fixed in position relative to the cabinet 1. During the process of the cabinet 21 rotating from the unloading position to the receiving position, the drive block is used to slide and cooperate with the blocking door 22 and drive the blocking door 22 to rotate to the closed position. When the cabinet 21 is in the receiving position, the drive block locks the blocking door 22 in the closed position.
[0055] As an alternative, the limiting member 3 includes a drive rod, with its first end hinged to the cabinet 1 and its second end hinged to the shielding door 22. When the cabinet 21 rotates to the receiving position, the drive rod drives the shielding door 22 to rotate to the closed position; when the cabinet 21 rotates to the unloading position, the drive rod drives the shielding door 22 to rotate to the open position. In other embodiments, the limiting member 3 includes a motor, which is connected to the shielding door 22 for driving the shielding door 22 to rotate to the open or closed position.
[0056] Alternatively, please refer to Figure 4 and Figure 5 The input container 2 includes an operating part 25 connected to the container body 21. The operating part 25 is exposed through the opening 11. The operating part 25 is used by the operator to hold and drive the container body 21 to rotate to the receiving position. Under the action of its own weight or elastic force, the container body 21 always has a tendency to rotate towards the unloading position. With this configuration, the operator can easily rotate the container body 21 to the receiving position through the operating part 25, which facilitates the operation of the input container 2. Furthermore, when the user releases the operating part 25, the container body 21 can automatically return to the unloading position under the action of its own weight or elastic force, ensuring the safety of the items inside the container body 21.
[0057] Alternatively, please refer to Figure 4 and Figure 5 The cabinet 1 includes a top wall 13 and two side walls 14. The two side walls 14 are arranged opposite each other and spaced apart along the axial direction of the first rotating shaft 23. The top wall 13 is connected between the two side walls 14, and the top wall 13 and the two side walls 14 together form an opening 11. The box 21 includes a limiting plate 213. When the box 21 rotates from the receiving position to the unloading position, the limiting plate 213 is located in front of the inlet 211 and abuts against the top wall 13 to limit the rotation angle of the box 21 relative to the cabinet 1. This arrangement improves the reliability of the box 21 rotating to the unloading position. In addition, the limiting plate 213 not only limits the rotation angle of the box 21 from the receiving position to the unloading position, but also blocks the inlet 211 when the box 21 is in the unloading position, preventing the user from contacting the inlet 211 through the gap between the box 21 and the top wall 13 without rotating the box 21, further improving the safety of the storage box 4.
[0058] Alternatively, please refer to Figure 6 and Figure 7The limiting member 3 also includes a third rotating shaft 32 and two rollers 31. The two ends of the third rotating shaft 32 are supported by two side walls 14 respectively. The two rollers 31 are rotatably sleeved on the rotating shaft. The blocking door 22 includes two driving surfaces 221, which correspond one-to-one with the two rollers 31. This configuration improves the reliability of the limiting member 3 in driving the blocking door 22 to the closed position and locking the blocking door 22 in the closed position.
[0059] Alternatively, please refer to Figure 6 and Figure 7 The bottom end of the blocking door 22 is provided with a first comb tooth 26, which is located above the storage space 41. The first comb tooth 26 is used to prevent items in the storage space 41 from entering the cabinet 21 through the outlet 212. With this configuration, when the outlet 212 is not completely closed and the operator uses fishing gear to fish out items from the storage cavity through the outlet 212, the fishing gear will enter between two adjacent teeth of the first comb tooth 26, blocking the items fished out from the storage space 41. This prevents items in the storage space 41 from entering the cabinet 21 through the outlet 212 and being output through the inlet 211, further improving the security of the storage cabinet 100.
[0060] Alternatively, please refer to Figure 7 The housing 21 includes a first side plate 214, a second side plate 215, and two third side plates 216. The first side plate 214 and the second side plate 215 are arranged opposite to each other and spaced apart. The two third side plates 216 are arranged opposite to each other and spaced apart along the axial direction of the first rotating shaft 23, and both third side plates 216 are connected between the first side plate 214 and the second side plate 215. The two third side plates 216 are arranged one-to-one with the two side walls 14. Each third side plate 216 is pivotally connected to the corresponding side wall 14 through the first rotating shaft 23. The first side plate 214, the second side plate 215, and the two third side plates 216 together form an opposite and spaced inlet 211 and an outlet 212. This arrangement, by making the outlet 212 opposite to the inlet 211, improves the reliability of the movement of items inside the housing 21 from the inlet 211 to the outlet 212 when the housing 21 is in the unloading position. Preferably, when the container 21 is in the unloading position, the first side panel 214 is located in front of the second side panel 215; when the container 21 is in the receiving position, the first side panel 214 is located below the second side panel 215. In other embodiments, the first side panel 214, the second side panel 215, and the two third side panels 216 can be arranged together to form an inlet 211, and an outlet 212 is opened on the first side panel 214.
[0061] Alternatively, please refer to Figures 5 to 7The cabinet 1 also includes a shielding wall 15, which is vertically opposite to and spaced apart from the top wall 13. The shielding wall 15 is located below the top wall 13. The front of the shielding wall 15, the front of the top wall 13, and the front of the two side walls 14 together form an opening 11. The storage box 2 also includes a first baffle 27. The first end of the first baffle 27 is fixedly connected to the outer surface of the first side plate 214, and the second end of the first baffle 27 is suspended. The second end of the first baffle 27 is provided with a second comb tooth 271. When the storage box 2 is in the receiving position, the second comb tooth 271 is used to block the first gap between the outer surface of the first side plate 214 and the shielding wall 15 and prevent items in the storage space 41 from passing through the first gap. This arrangement can prevent items in the storage space 41 from being fished out through the first gap between the outer surface of the first side plate 214 and the shielding wall 15, further improving the security of the storage box 4.
[0062] Alternatively, please continue to refer to Figures 5 to 7 The storage box 2 also includes a second baffle 28. The first end of the second baffle 28 is fixedly connected to the outer surface of the second side plate 215, and the second end of the second baffle 28 is suspended. The second end of the second baffle 28 is provided with a third comb tooth 281. When the storage box 2 is in the receiving position, the third comb tooth 281 is used to block the second gap between the outer surface of the second side plate 215 and the top wall 13, preventing items in the storage space 41 from passing through the second gap. This arrangement prevents items in the storage space 41 from being retrieved through the second gap between the outer surface of the second side plate 215 and the top wall 13, further improving the security of the storage box 4.
[0063] Alternatively, please continue to refer to Figures 3 to 5 ,as well as Figure 7 The cabinet 1 also includes a third baffle 16. The top of the third baffle 16 is fixedly connected to the top wall 13, and the bottom of the third baffle 16 is suspended. The bottom of the third baffle 16 is provided with a fourth comb tooth 161. The fourth comb tooth 161 is used to cover the third gap between the outer surface of the second side plate 215 and the top wall 13 and prevent items in the storage space 41 from being pulled out from the third gap, thereby further improving the security of the storage box 4.
[0064] Alternatively, please continue to refer to Figure 4 and Figure 5 When the input box 2 is in the unloading position, the first baffle 27 abuts against the lower surface of the shielding wall 15 to close the gap between the outer surface of the first side plate 214 and the shielding wall 15. When the input box 2 is in the receiving position, the first baffle 27 separates from the shielding wall 15. With this configuration, when the input box 2 is in the unloading position, by having the first baffle 27 abut against the lower surface of the shielding wall 15, the fishing tackle is prevented from passing between the first baffle 27 and the shielding wall 15, thus further improving the safety of the storage box 4.
[0065] Alternatively, please continue to refer to Figure 4 and Figure 5 The shielding wall 15 is provided with a limiting surface 151. When the box 21 rotates from the unloading position to the receiving position, the first side plate 214 abuts against the limiting surface 151 to limit the rotation angle of the box 21 relative to the cabinet 1. This arrangement improves the reliability of the box 21 rotating to the receiving position.
[0066] 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 storage cabinet, characterized in that, include: Cabinet (1), wherein the cabinet (1) is provided with an opening (11); A loading box (2) is installed inside the cabinet (1). The loading box (2) includes a box body (21) and a cover door (22). The box body (21) is pivotally connected to the cabinet (1) via a first pivot (23). When the box body (21) rotates relative to the cabinet (1) around the axis of the first pivot (23), it has an unloading position and a receiving position. The box body (21) is provided with an loading port (211) and an output port (212). The loading port (211) is used to allow items to enter the box body (21), and the output port (212) is used to allow items to exit the box body (21). When the box body (21) rotates to the receiving position, the loading port (211) is exposed through the opening (11). The box (21) is used to receive and store items put in through the inlet (211). When the box (21) is rotated to the unloading position, the inlet (211) is hidden inside the cabinet (1), and the items stored in the box (21) can move towards the outlet (212) under the action of gravity. The cover door (22) is movably connected to the box (21). The cover door (22) has an open position and a closed position relative to the box (21). When the cover door (22) is in the closed position, the cover door (22) closes the outlet (212). When the cover door (22) is in the open position, the cover door (22) opens the outlet (212). A limiting member (3) is provided in the cabinet (1) and located inside the cabinet (1). When the box (21) rotates to the receiving position, the blocking door (22) moves to the closed position, and the limiting member (3) locks the blocking door (22) in the closed position; when the box (21) rotates to the unloading position, the limiting member (3) releases the position lock of the blocking door (22), and the blocking door (22) moves to the open position. Storage space (41) is provided inside the cabinet (1). The storage space (41) is located below the output port (212). The storage space (41) is used to store items output from the output port (212).
2. The storage cabinet of claim 1, wherein, The shielding door (22) is pivotally connected to the housing (21) via a second pivot (24). The second pivot (24) is parallel to the first pivot (23). The shielding door (22) can rotate relative to the housing (21) around the axis of the second pivot (24) to the open position or the closed position. When the box (21) rotates from the receiving position to the unloading position, the limiting member (3) separates from the blocking door (22), and the blocking door (22) rotates to the open position under its own weight or elastic force. When the box (21) rotates from the unloading position to the receiving position, the limiting member (3) abuts against the blocking door (22) and prevents the blocking door (22) from rotating, so as to lock the blocking door (22) in the closed position.
3. The storage cabinet of claim 2, wherein, During the process of the container (21) rotating from the unloading position to the receiving position, the limiting member (3) can abut against the blocking door (22) and drive the blocking door (22) to rotate to the closed position.
4. The storage cabinet of claim 3, wherein, The limiting member (3) includes a roller (31), which can rotate relative to the cabinet (1) around its own axis. The blocking door (22) includes a driving surface (221). When the blocking door (22) is in the closed position, the driving surface (221) is an arc surface with the axis of the first rotating shaft (23) as the center line. During the process of the container (21) rotating from the unloading position to the receiving position, the roller (31) is used to roll and cooperate with the driving surface (221) to drive the shield door (22) to rotate to the closed position, and when the container (21) is in the receiving position, the roller (31) is tangentially engaged with the driving surface (221) to lock the shield door (22) in the closed position.
5. The storage cabinet of claim 1, wherein, The input box (2) includes an operating part (25) connected to the box body (21). The operating part (25) is exposed through the opening (11). The operating part (25) is used by the operator to hold and drive the box body (21) to rotate to the receiving position. The box body (21) always has a tendency to rotate towards the unloading position under its own weight or elastic force.
6. The storage cabinet of claim 1, wherein, The top of the shielding door (22) is pivotally connected to the box body (21) via a second pivot (24). The second pivot (24) is parallel to the first pivot (23). The bottom of the shielding door (22) is provided with a first comb tooth (26). The first comb tooth (26) is located above the storage space (41). The first comb tooth (26) is used to prevent items in the storage space (41) from entering the box body (21) through the output port (212).
7. The storage cabinet of claim 1, wherein, The cabinet (1) includes a top wall (13) and two side walls (14). The two side walls (14) are arranged opposite to each other and spaced apart along the axial direction of the first pivot (23). The top wall (13) is connected between the two side walls (14). The top wall (13) and the two side walls (14) together form the opening (11). The box (21) includes a limiting plate (213). When the box (21) rotates from the receiving position to the unloading position, the limiting plate (213) is located in front of the inlet (211) and abuts against the top wall (13) to limit the rotation angle of the box (21) relative to the cabinet (1).
8. The storage cabinet of claim 1, wherein, The cabinet (1) includes two side walls (14) that are axially opposite and spaced apart along the first pivot (23); the box (21) includes a first side panel (214), a second side panel (215), and two third side panels (216). The first side panel (214) and the second side panel (215) are axially opposite and spaced apart, and the two third side panels (216) are axially opposite and spaced apart along the first pivot (23), and both third side panels (216) are connected to... Between the first side plate (214) and the second side plate (215), two third side plates (216) are arranged in a one-to-one correspondence with two side walls (14). Each third side plate (216) is pivotally connected to the corresponding side wall (14) through the first pivot (23). The first side plate (214), the second side plate (215) and the two third side plates (216) together form the opposite and spaced inlet (211) and outlet (212).
9. The storage cabinet of claim 8, wherein, The cabinet (1) also includes a shielding wall (15) and a top wall (13) that are arranged opposite to each other and spaced apart in the vertical direction. The shielding wall (15) is located below the top wall (13). The front part of the shielding wall (15), the front part of the top wall (13) and the front parts of the two side walls (14) together form the opening (11). The input box (2) further includes a first baffle (27), the first end of which is fixedly connected to the outer surface of the first side plate (214), the second end of which is suspended, and the second end of which is provided with a second comb tooth (271). When the input box (2) is located at the receiving position, the second comb tooth (271) is used to cover the first gap between the outer surface of the first side plate (214) and the cover wall (15) and prevent items in the storage space (41) from passing through the first gap; and / Or, the input box (2) further includes a second baffle (28), the first end of the second baffle (28) is fixedly connected to the outer surface of the second side plate (215), the second end of the second baffle (28) is suspended, and the second end of the second baffle (28) is provided with a third comb tooth (281). When the input box (2) is located in the receiving position, the third comb tooth (281) is used to block the second gap between the outer surface of the second side plate (215) and the top wall (13) and prevent the items in the storage space (41) from passing through the second gap.
10. A cash handling device characterized by Includes the storage cabinet (100) according to any one of claims 1-9, wherein the storage space (41) is used for storing cash.