Sheet type medium storage box and cash circulation processing equipment
By introducing the design of a driving part and an elastic part in the sheet medium storage box, the holding part is ensured to automatically reset under the action of external force, which solves the problem of the holding part deviating from the holding state and realizes stable holding of the sheet medium by the holding part.
Patent Information
- Application Number
- CN202422313705.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-23
AI Technical Summary
In existing sheet media storage boxes, the holding member is prone to deviate from the holding state during movement, resulting in an unstable holding effect.
A sheet medium storage box is designed, which is connected to a pressing part by a driving part. The driving part is configured to make the pressing part always have a movement tendency close to the bottom wall and automatically reset to the pressing state when it deviates from the pressing state. Combined with the elastic part and the limiting structure, the stability of the pressing part is ensured.
The reliability of the pressing member on the sheet medium is improved, and the pressing member is ensured to automatically reset under the action of external force, thereby maintaining a stable pressing state and improving the pressing effect of the sheet medium.
Smart Images

Figure CN223333381U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of financial equipment, in particular to a sheet medium storage box and cash circulation processing equipment. Background Art
[0002] Existing sheet media processing devices typically include a sheet media storage box for placing sheet media. The sheet media storage box provided in the related art includes a box body and a holding member. The box body includes a storage cavity for stacking sheet media. The holding member is movably connected to the box body. The holding member can move relative to the box body in the direction of stacking the sheet media and move toward or away from the bottom wall of the storage cavity. The holding member has a holding state for pressing the sheet media stacked on the bottom wall toward the bottom wall. However, during movement, the holding member is prone to rotating relative to the box body and deviating from the holding state, resulting in the holding member being unable to reliably contact the upper surface of the sheet media, thereby affecting the holding effect of the holding member on the sheet media. Utility Model Content
[0003] The purpose of the utility model is to provide a sheet medium storage box and a cash recycling processing device to improve the reliability of the pressing and holding member on the sheet medium.
[0004] In one aspect, the present invention provides a sheet medium storage box, the sheet medium storage box comprising:
[0005] A box body, wherein the box body is provided with a receiving cavity, and the receiving cavity has a bottom wall for stacking sheet media;
[0006] a holding member movably connected to the box body, and capable of moving closer to or farther from the bottom wall relative to the box body along the stacking direction of the sheet media, the holding member having a holding state for holding the sheet media;
[0007] A driving member is connected to the pressing member, and the driving member is configured to make the pressing member always have a movement tendency close to the bottom wall. The pressing member can also rotate relative to the box body, and when the pressing member deviates from the pressing state, the driving member is also configured to make the pressing member always have a tendency to rotate to the pressing state.
[0008] As a preferred technical solution of the sheet media storage box, the holding member includes a first connecting portion, the box body includes a second connecting portion, the first connecting portion is spaced apart from the rotation axis of the holding member, and the driving member includes an elastic member capable of stretching and retracting, the elastic member being connected to both the first connecting portion and the second connecting portion;
[0009] When the pressing member is in the pressing state, the extension line of the line between the action point of the elastic member and the first connecting part, and the action point of the elastic member and the second connecting part intersects with the rotation axis of the pressing member; when the pressing member deviates from the pressing state, the extension line of the line between the action point of the elastic member and the first connecting part, and the action point of the elastic member and the second connecting part are spaced apart from the rotation axis of the pressing member.
[0010] As an optimal technical solution for the sheet media storage box, the holding member further includes a pressure plate connected to the first connecting portion, and the pressure plate is used to hold the sheet media. When the holding member is in the holding state, the pressure plate is parallel to the bottom wall, and the line between the action point of the elastic member and the first connecting portion and the action point of the elastic member and the second connecting portion is parallel to the stacking direction of the sheet media.
[0011] As a preferred technical solution for the sheet medium storage box, the box body includes two side panels that are opposite to each other and spaced apart along the extension direction of the rotation axis of the holding member, the accommodating cavity is provided between the two side panels, each of the side panels is provided with a slide groove extending along the stacking direction of the sheet medium, the holding member further includes a pressing plate and an inserting portion, the pressing plate is located between the two side panels and is used to press the sheet medium, the inserting portion is connected to the pressing plate, the two ends of the inserting portion are respectively inserted into the two slide grooves, and the inserting portion can slide along the slide groove to allow the pressing plate to move closer to or away from the bottom wall;
[0012] The holding member rotates relative to the box body through the plug-in portion, the holding member includes two first connecting portions, the box body includes two second connecting portions, the driving member includes two elastic members, the two first connecting portions are respectively arranged at both ends of the plug-in portion, and the two first connecting portions respectively extend out of the two sliding grooves and are located on the outsides of the two side panels, the two elastic members correspond one-to-one to the two first connecting portions, and the two elastic members also correspond one-to-one to the two second connecting portions, and each elastic member is respectively connected to the corresponding first connecting portion and the corresponding second connecting portion.
[0013] As an optimal technical solution for a sheet media storage box, the slide groove includes a first side wall and a second side wall that are parallel and spaced apart, and the plug-in portion includes a first limiting surface and a second limiting surface that are set at an angle. When the pressing member rotates relative to the box body along a first direction, the first limiting surface can abut against the first side wall. When the pressing member rotates relative to the box body along a second direction, the second limiting surface can abut against the second side wall. The first direction and the second direction are opposite.
[0014] As an optimal technical solution for a sheet media storage box, the plug-in portion also includes a connecting surface, the connecting surface is set at an acute angle to the first limiting surface, and the connecting surface is set at an acute angle to the second limiting surface, the connecting surface and the first limiting surface intersect at a first intersection line, and the connecting surface and the second limiting surface intersect at a second intersection line, the rotation axis of the pressing member, the first intersection line and the second intersection line are parallel, and the distance between the first intersection line and the second intersection line is adapted to the distance between the first side wall and the second side wall, and the rotation axis of the pressing member is centrally located between the first intersection line and the second intersection line.
[0015] As a preferred technical solution of the sheet media storage box, each of the side panels is provided with a limiting groove connected to an end of the slide away from the bottom wall, and the plug-in portion can move along the slide to the limiting groove and plug into the limiting groove;
[0016] The limiting groove includes a first abutting surface and a second abutting surface connected at an angle. When the plug-in portion is plugged into the limiting groove, the pressing member can rotate to an avoidance state for placing a sheet medium into the accommodating cavity. When the pressing member is in the avoidance state, under the action of the elastic member, the first limiting surface abuts against the first abutting surface, and the connecting surface abuts against the second abutting surface.
[0017] As a preferred technical solution for the sheet media storage box, the box body is provided with a slide groove extending along the stacking direction of the sheet media, the holding member is inserted into the slide groove, and the holding member can slide along the slide groove so as to move closer to or away from the bottom wall; along the stacking direction of the sheet media, the second connecting portion is adjacent to an end of the slide groove close to the bottom wall;
[0018] The box body also includes a third connecting part, which is spaced apart from the second connecting part. The first end of the elastic member is connected to the first connecting part, and the second end of the elastic member bypasses the second connecting part and is connected to the third connecting part. The elastic member includes a first elastic section located between the first connecting part and the second connecting part and a second elastic section located between the second connecting part and the third connecting part. The second elastic section is arranged at an angle to the first elastic section.
[0019] As a preferred technical solution for the sheet media storage box, the angle between the second elastic section and the first elastic section is a right angle.
[0020] The sheet media storage box provided by the utility model has at least the following beneficial effects:
[0021] The sheet medium storage box includes a box body, a holding member, and a driving member. The box body is provided with a storage cavity having a bottom wall for stacking sheet media. The holding member is movably connected to the box body and can move closer to or further away from the bottom wall relative to the box body along the stacking direction of the sheet media. The holding member has a holding state for holding the sheet media. The driving member is connected to the holding member and is configured to always have a movement tendency toward the bottom wall. The holding member can also rotate relative to the box body. When the holding member deviates from the holding state, the driving member is further configured to always have a tendency to rotate to the holding state. The sheet medium storage box provided in this embodiment has a structure in which, when the holding member deviates from the holding state under the action of an external force, the holding member is driven by the driving member to rotate and automatically return to the holding state, thereby improving the reliability of the holding member in holding the sheet media.
[0022] On the other hand, the present invention provides a cash recycling processing device, which includes a frame and a sheet media storage box in any of the above solutions, wherein the sheet media storage box is detachably mounted on the frame, and the accommodating cavity is used to accommodate banknotes.
[0023] The cash recycling processing device provided by the utility model has at least the following beneficial effects:
[0024] The cash recycling processing device includes the above-mentioned sheet medium storage box, which can ensure that the pressing effect of the pressing member on the banknote is reliable. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 This is a schematic structural diagram of a sheet media storage box in an embodiment of the present invention;
[0026] Figure 2 This is a cross-sectional view of a partial structure of a sheet medium storage box according to an embodiment of the present invention. Figure 1 ;
[0027] Figure 3 This is a partial structural diagram of a sheet media storage box in an embodiment of the present invention. Figure 1 ;
[0028] Figure 4 This is a cross-sectional view of a partial structure of a sheet medium storage box according to an embodiment of the present invention. Figure 2 (The holding member is in the avoidance state);
[0029] Figure 5 This is a cross-sectional view of a partial structure of a sheet medium storage box according to an embodiment of the present invention. Figure 3 (the pressing member is in a pressing state);
[0030] Figure 6 A schematic diagram of the pressing member in the embodiment of the present utility model turning from a deviated pressing state to a pressing state;
[0031] Figure 7 This is a partial structural diagram of a sheet media storage box in an embodiment of the present invention. Figure 2 ;
[0032] Figure 8 This is a structural diagram of a pressing member in an embodiment of the present utility model;
[0033] Figure 9 This is a partial enlarged view of the sheet media storage box in the embodiment of the present utility model. Figure 1 ;
[0034] Figure 10 This is a partial enlarged view of the sheet media storage box in the embodiment of the present utility model. Figure 2 ;
[0035] Figure 11 It is a structural diagram of the cash recycling processing equipment in an embodiment of the present utility model.
[0036] In the picture:
[0037] 10. Sheet media storage box; 20. Coin input device; 30. Coin output device; 40. Coin identification device; 50. Counterfeit coin box; 60. Circulation box; 70. Storage box; 80. Filling box;
[0038] 1. Box body; 11. Accommodating chamber; 12. Bottom wall; 13. Exit; 14. Opening; 15. Second connecting portion; 16. Side panel; 161. Slide groove; 162. First side wall; 163. Second side wall; 164. Limiting groove; 165. First abutting surface; 166. Second abutting surface; 17. Third connecting portion; 18. Avoidance groove;
[0039] 2. Holding member; 21. First connecting portion; 22. Inserting portion; 221. First limiting surface; 222. Second limiting surface; 223. Connecting surface; 224. First intersection line; 225. Second intersection line; 23. Long groove; 24. Rotation axis; 25. Blocking portion; 26. Pressing plate;
[0040] 3. Elastic member; 31. First elastic section; 32. Second elastic section;
[0041] 4. Paper pickup roller; 5. Paper separation roller; 6. Paper blocking roller; 7. Cover. DETAILED DESCRIPTION
[0042] The following is a clear and complete description of the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.
[0043] In the description of the present invention, it should be noted that the terms "center", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and are not intended to indicate or imply that the devices or elements referred to must have a specific position, be constructed and operated in a specific position, and therefore should not be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance. Among them, the terms "first position" and "second position" are two different positions, and the first feature being "above", "above" and "above" the second feature includes the first feature being directly above and obliquely above the second feature, or simply means that the first feature is at a higher level than the second feature. The first feature being "below", "below" and "below" the second feature includes the first feature being directly below and obliquely below the second feature, or simply means that the first feature is at a lower level than the second feature.
[0044] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0045] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0046] Please refer to Figures 1 to 3 This embodiment provides a sheet medium storage box, which includes a box body 1, a holding member 2, and a driving member. The box body 1 is provided with a receiving cavity 11, and the receiving cavity 11 has a bottom wall 12 for stacking sheet media; the holding member 2 is movably connected to the box body 1, and the holding member 2 can move relative to the box body 1 along the stacking direction of the sheet media (such as Figure 2 and Figure 3The pressing member 2 is in a holding state for holding sheet media (in the direction indicated by arrows ab in the middle) toward or away from the bottom wall 12. The driving member is connected to the pressing member 2 and is configured to ensure that the pressing member 2 always has a tendency to move toward the bottom wall 12. The pressing member 2 can also rotate relative to the box body 1. When the pressing member 2 deviates from the holding state, the driving member is further configured to ensure that the pressing member 2 always has a tendency to rotate to the holding state. The sheet media storage box 10 provided in this embodiment has the following advantages: when the pressing member 2 deviates from the holding state due to an external force, the driving member drives the pressing member 2 to rotate and automatically return to the holding state, thereby improving the reliability of the pressing member 2 in holding the sheet media.
[0047] Alternatively, see Figure 1 and Figure 2 The box body 1 is also provided with an outlet 13 connected to the accommodating chamber 11. The sheet medium storage box 10 also includes a paper pickup roller 4, a paper separation roller 5 and a paper blocking roller 6. The paper pickup roller 4 and the paper separation roller 5 are both used to drive the sheet medium to be output through the outlet 13, and along the direction of the sheet medium output, the paper pickup roller 4 and the paper separation roller 5 are arranged in sequence. The paper pickup roller 4 is set on the bottom wall 12. When the pressing member 2 presses the sheet medium in the accommodating chamber 11 toward the bottom wall 12, the sheet medium is pressed on the paper pickup roller 4. When the paper pickup roller 4 rotates, the paper pickup roller 4 drives the sheet medium in contact with it to move toward the paper separation roller 5. The paper blocking roller 6 cooperates with the paper separation roller 5 to prevent overlapping sheet media from entering between the paper separation roller 5 and the paper blocking roller 6, so that the sheet media can be output through the outlet 13 one by one.
[0048] Alternatively, see Figure 3 The box body 1 is also provided with an opening 14 communicating with the accommodating cavity 11 , through which sheet media can be placed into the accommodating cavity 11 . The sheet media storage box 10 also includes a cover body 7 , which is movably connected to the box body 1 for opening or closing the opening 14 .
[0049] Alternatively, see Figures 4 to 7 The pressing member 2 includes a first connection part 21, and the box body 1 is provided with a second connection part 15. The first connection part 21 is spaced apart from the rotation axis 24 of the pressing member 2. The driving member includes an elastic member 3 that can stretch and retract. The elastic member 3 is connected to the first connection part 21 and the second connection part 15 at the same time. When the pressing member 2 is in a pressing state, the extension line of the line between the action point of the elastic member 3 and the first connection part 21 and the action point of the elastic member 3 and the second connection part 15 intersects with the rotation axis 24 of the pressing member 2. When the pressing member 2 deviates from the pressing state, the extension line of the line between the action point of the elastic member 3 and the first connection part 21 and the action point of the elastic member 3 and the second connection part 15 is spaced apart from the rotation axis 24 of the pressing member 2. Specifically, as Figure 6As shown, when the holding member 2 is in the holding state, the extension line of the line between the action point of the elastic member 3 and the first connecting part 21 and the action point of the elastic member 3 and the second connecting part 15 intersects with the rotation axis 24 of the holding member 2, that is, the force of the elastic member 3 on the holding member 2 passes through the rotation center of the holding member 2, so that the force of the elastic member 3 on the holding member 2 can only drive the holding member 2 to move in the direction close to the bottom wall 12, but cannot drive the holding member 2 to rotate, so that the holding member 2 can reliably maintain the holding state of pressing the sheet medium; when the holding member 2 deviates from the holding state, since the extension line of the line between the action point of the elastic member 3 and the first connecting part 21 and the action point of the elastic member 3 and the second connecting part 15 is spaced apart from the rotation axis 24 of the holding member 2, the tension of the elastic member 3 on the holding member 2 (see Figure 6 In FIG. 2 , the first force component (F) can be decomposed into a first force component (see F1 in the figure) and a second force component (see F2 in the figure). The direction of the first force component is along the line connecting the point of action of the elastic member 3 and the first connecting portion 21 and the rotation center of the holding member 2. Therefore, the first force component cannot drive the holding member 2 to rotate. The direction of the second force component is perpendicular to the direction of the first force component, and the second force component is spaced apart from the rotation axis 24 of the holding member 2. Therefore, the second force component can apply a rotational torque to the holding member 2 and drive the holding member 2 to gradually rotate toward the holding state, so that the holding member 2 is ultimately reliably maintained in the holding state of the sheet-like medium. It is understandable that during the process of the holding member 2 rotating from the deviating holding state to the holding state, the second force component gradually decreases, and when the holding member 2 is in the holding state, the second force component is zero, so that the position of the holding member 2 can be stably maintained in the holding state. Preferably, the elastic member 3 can be a tension spring, a tension rope, etc.
[0050] As one of the alternative solutions, the driving member includes a counterweight member, which is arranged on the holding member 2, and the center of gravity of the counterweight member and the center of gravity of the holding member 2 are spaced apart along the stacking direction of the thin-sheet medium. The gravity of the counterweight member on the holding member 2 makes the holding member 2 always have a tendency to move close to the bottom wall 12, and when the holding member 2 deviates from the holding state, the gravity force of the counterweight member on the holding member 2 is configured to make the holding member 2 always have a tendency to rotate to the holding state.
[0051] Alternatively, see Figure 4 、 Figure 5 and Figure 7In this embodiment, the holding member 2 further includes a pressure plate 26 connected to the first connecting portion 21. The pressure plate 26 is used to hold the sheet-like medium. When the holding member 2 is in the holding state, the pressure plate 26 is parallel to the bottom wall 12, and the lines connecting the points of action of the elastic member 3 with the first connecting portion 21 and the points of action of the elastic member 3 with the second connecting portion 15 are parallel to the stacking direction of the sheet-like medium. This arrangement enables the force exerted by the elastic member 3 on the holding member 2 to effectively drive the holding member 2 in the stacking direction of the sheet-like medium, further improving the reliability of the pressure plate 26 in pressing the sheet-like medium against the bottom wall 12 when the holding member 2 is in the holding state. In other embodiments, as needed, the lines connecting the points of action of the elastic member 3 with the first connecting portion 21 and the points of action of the elastic member 3 with the second connecting portion 15 can be arranged at an angle to the stacking direction of the sheet-like medium.
[0052] Alternatively, see Figure 7 and Figure 8 The box body 1 includes two side plates 16 that are opposite to each other and spaced apart along the extension direction of the rotation axis 24 of the pressing member 2. The accommodating chamber 11 is provided between the two side plates 16. Each side plate 16 is provided with a slide groove 161 extending along the stacking direction of the sheet-like medium. The pressing member 2 also includes a plug-in portion 22 connected to the pressing plate 26. The two ends of the plug-in portion 22 are respectively plugged into the two slide grooves 161, and the plug-in portion 22 can slide along the slide groove 161 so that the pressing plate 26 can move closer to or away from the bottom wall 12. The pressing member 2 rotates relative to the box body 1 through the plug-in portion 22. The holding member 2 includes two first connecting portions 21, the housing 1 is provided with two second connecting portions 15, and the driving member includes two elastic members 3. The two first connecting portions 21 are respectively provided at both ends of the plug-in portion 22, and the two first connecting portions 21 extend out of the two slide slots 161 and are located on the outside of the two side panels 16. The two elastic members 3 correspond one-to-one with the two first connecting portions 21, and the two elastic members 3 correspond one-to-one with the two second connecting portions 15. Each elastic member 3 is respectively connected to a corresponding first connecting portion 21 and a corresponding second connecting portion 15. This arrangement, with the two ends of the plug-in portion 22 plugged into the two slide slots 161, and the two elastic members 3 respectively connected to the two first connecting portions 21 at both ends of the plug-in portion 22, improves the stability of the movement of the pressing plate 2 relative to the housing 1. Furthermore, the first connecting portion 21 is provided outside the accommodating chamber 11, so it does not occupy space in the accommodating chamber 11, thereby increasing the amount of sheet media that can be accommodated in the accommodating chamber 11.
[0053] Optionally, refer again to Figure 7 and Figure 8The holding member 2 further includes a limiting assembly, which includes two blocking portions 25 spaced apart along the rotation axis 24 of the holding member 2. The blocking portions 25 are respectively connected to the ends of the plug-in portion 22 and are located on the outside of the two side plates 16. The blocking portions 25 have outer dimensions greater than the width of the chute 161, and are used to prevent the plug-in portion 22 from separating from the chute 161. The two first connecting portions 21 are respectively disposed on the outside of the blocking portions 25. This arrangement allows the two blocking portions 25 to limit the position of the plug-in portion 22 along the rotation axis 24 of the holding member 2, thereby limiting the position of the holding member 2 along the rotation axis 24 of the holding member 2. Furthermore, the two first connecting portions 21 are respectively disposed on the blocking portions 25, thereby improving the compactness of the structure. Preferably, the blocking portion 25 is provided with an elongated slot 23. When the holding member 2 is in the holding state, the elongated slot 23 extends in the same direction as the chute 161, and the bottom wall 12 of the elongated slot 23 forms the first connecting portion 21.
[0054] Alternatively, see Figure 4 and Figure 5 , along the stacking direction of the sheet media, the second connecting portion 15 is adjacent to the end of the slide groove 161 close to the bottom wall 12; the box body 1 also includes a third connecting portion 17, which is spaced apart from the second connecting portion 15. The first end of the elastic member 3 is connected to the first connecting portion 21, and the second end of the elastic member 3 bypasses the second connecting portion 15 and is connected to the third connecting portion 17. The elastic member 3 includes a first elastic section 31 located between the first connecting portion 21 and the second connecting portion 15 and a second elastic section 32 located between the second connecting portion 15 and the third connecting portion 17. The second elastic section 32 is arranged at an angle to the first elastic section 31. When the holding member 2 is in the holding state, the first connecting portion 21 moves along with the plug-in portion 22 between the two ends of the chute 161. Since the elastic member 3 is connected to the first connecting portion 21, the length of the elastic member 3 must meet the travel requirements of the first connecting portion 21. By providing the third connecting portion 17, the elastic member 3 is able to extend beyond the second connecting portion 15 before connecting to the third connecting portion 17, thereby increasing the length of the elastic member 3 that can be extended, meeting the greater travel requirements of the first connecting portion 21 and thereby increasing the amount of sheet media that can be accommodated in the accommodating chamber 11. The second connecting portion 15 also ensures that the direction of the force exerted by the first elastic segment 31 on the holding member 2 is always along the extension direction of the chute 161, thereby increasing the flexibility of the arrangement of the elastic member 3 and improving the structural compactness of the sheet media storage box 10. In other embodiments, the two ends of the elastic member 3 can also be directly connected to the first connecting portion 21 and the second connecting portion 15.
[0055] Alternatively, see Figure 7The box body 1 is provided with an avoidance groove 18, and the elastic member 3 passes through the avoidance groove 18. The avoidance groove 18 has an arc-shaped groove wall, and the arc-shaped groove wall forms a second connecting portion 15. Such a setting can ensure that the elastic member 3 can smoothly cooperate with the second connecting portion 15 during the extension and retraction process to avoid jamming.
[0056] Optionally, refer again to Figure 4 and Figure 5 The angle between the second elastic section 32 and the first elastic section 31 is a right angle. This arrangement ensures that the intersection of the first elastic section 31 and the second elastic section 32 can reliably abut against the second connecting portion 15, further ensuring the stability of the direction of the force exerted by the elastic member 3 on the holding member 2.
[0057] Alternatively, see Figure 5 、 Figure 7 and Figure 9 The slide groove 161 includes a first side wall 162 and a second side wall 163 that are parallel and spaced apart. The plug-in portion 22 includes a first limiting surface 221 and a second limiting surface 222 that are set at an angle. When the pressing member 2 rotates relative to the housing 1 in a first direction, the first limiting surface 221 can abut against the first side wall 162. When the pressing member 2 rotates relative to the housing 1 in a second direction, the second limiting surface 222 can abut against the second side wall 163. The first and second directions are in opposite directions. With this arrangement, the first limiting surface 221 and the second limiting surface 222 can respectively limit the rotation angle of the pressing member 2 in the first and second directions, thereby improving the positional stability of the pressing member 2 relative to the housing 1. Preferably, when the pressing member 2 is in the pressing state, the angle between the first limiting surface 221 and the first side wall 162 and the angle between the second limiting surface 222 and the second side wall 163 are equal and both are greater than or equal to 10 degrees and less than or equal to 30 degrees.
[0058] Alternatively, see Figure 9The plug-in portion 22 also includes a connecting surface 223, which is set at an acute angle to the first limiting surface 221, and the connecting surface 223 is set at an acute angle to the second limiting surface 222. The connecting surface 223 intersects with the first limiting surface 221 at a first intersection line 224, and the connecting surface 223 intersects with the second limiting surface 222 at a second intersection line 225. The rotation axis 24 of the holding member 2, the first intersection line 224 and the second intersection line 225 are parallel, and the distance between the first intersection line 224 and the second intersection line 225 is adapted to the distance between the first side wall 162 and the second side wall 163. The rotation axis 24 of the holding member 2 is centrally located between the first intersection line 224 and the second intersection line 225. With this arrangement, when the holding member 2 is in the holding position, the spacing between the first intersection line 224 and the second intersection line 225 matches the spacing between the first side wall 162 and the second side wall 163, ensuring the stability of the movement of the holding member 2 along the stacking direction of the sheet media, thereby improving the reliability of the holding member 2 in pressing the sheet media toward the bottom wall 12 when in the holding position. Preferably, the angle between the connecting surface 223 and the first limiting surface 221 is equal to the angle between the connecting surface 223 and the second limiting surface 222.
[0059] Alternatively, please refer to 5. Figures 7 to 9 The two ends of the plug-in portion 22 are respectively plugged into the two slide grooves 161 in a one-to-one correspondence. Both ends of the plug-in portion 22 include a first limiting surface 221 and a second limiting surface 222 set at an angle. When the holding member 2 rotates relative to the box body 1 along the first direction, the first limiting surfaces 221 at both ends of the plug-in portion 22 can simultaneously abut against the first side walls 162 of the corresponding slide grooves 161. When the holding member 2 rotates relative to the box body 1 along the second direction, the second limiting surfaces 222 at both ends of the plug-in portion 22 can simultaneously abut against the second side walls 163 of the corresponding slide grooves 161. Such an arrangement further improves the positional stability of the holding member 2 relative to the box body 1. In other embodiments, the first limiting surface 221 and the second limiting surface 222 set at an angle can be set only at one end of the plug-in portion 22, or the first limiting surface 221 and the second limiting surface 222 can be respectively set at both ends of the plug-in portion 22. Optionally, both ends of the plug-in portion 22 include a connecting surface 223 connected between the first limiting surface 221 and the second limiting surface 222 , and the rotation axis of the pressing member 2 passes through the two connecting surfaces 223 at the same time.
[0060] Alternatively, see Figure 10, each side plate 16 is provided with a limiting groove 164 that is connected to the end of the slide groove 161 away from the bottom wall 12, and the two ends of the plug-in portion 22 can move along the slide groove 161 to the two limiting grooves 164 and respectively plug into the two limiting grooves 164; each limiting groove 164 includes a first abutting surface 165 and a second abutting surface 166 connected at an angle. When the plug-in portion 22 is plugged into the limiting groove 164, the pressing member 2 can rotate to an avoidance state for placing a sheet medium into the accommodating chamber 11, and when the pressing member 2 is in the avoidance state, under the action of the elastic member 3, the first limiting surfaces 221 at both ends of the plug-in portion 22 abut against the first abutting surfaces 165 of the two limiting grooves 164 in a one-to-one manner, and the connecting surfaces 223 at both ends of the plug-in portion 22 abut against the second abutting surfaces 166 of the two limiting grooves 164 in a one-to-one manner. This arrangement ensures that the elastic member 3 can reliably maintain the holding member 2 in the retracted position, thereby improving the convenience of loading sheet media into the accommodating chamber 11. Preferably, when the holding member 2 is in the retracted position, the pressure plate 2 is perpendicular to the bottom wall 12. Furthermore, preferably, the first limiting surface 221, the second limiting surface 222, the connecting surface 223, the first abutting surface 165, and the second abutting surface 166 are all planar.
[0061] Alternatively, see Figure 11 This embodiment also provides a cash recycling device, comprising a frame and the aforementioned sheet media storage box 10. The sheet media storage box 10 is detachably mounted to the frame, and a receiving cavity 11 is configured to accommodate banknotes. The cash recycling device, including the aforementioned sheet media storage box 10, ensures that the pressure plate 2 reliably holds banknotes. In other embodiments, the receiving cavity 11 of the sheet media storage box 10 can also be used to accommodate sheet media such as debit cards, as needed.
[0062] Preferably, the cash recycling device further includes a coin input device 20, a coin output device 30, and a reader 40. The coin input device 20 is used to receive sheet media inserted by a user, the reader 40 is used to collect information about the sheet media, and the coin output device 30 is used to output the sheet media to the user. In this embodiment, the cash recycling device further includes a counterfeit coin box 50, a circulation box 60, a storage box 70, and a loading box 80. The counterfeit coin box 50 is used to receive counterfeit coins input by the coin input device 20 during deposits. The circulation box 60 is used to receive sheet media input by the coin input device 20 during deposits and to output sheet media during withdrawals. The storage box 70 is used to receive large-denomination sheet media during deposits, abnormal sheet media identified by the reader 40 during withdrawals and loading, and sheet media output by the circulation box 60 during machine clearing. The loading box 80 is used to load sheet media into the circulation box 60. The loading box 80 is the aforementioned sheet media storage box 10.
[0063] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention, and are not intended to limit the implementation methods of the present invention. Those skilled in the art will appreciate that other variations or modifications can be made based on the above description. It is not necessary and impossible to enumerate all implementation methods here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.
Claims
1. A sheet medium storage box, characterized in that: include: A box body (1), the box body (1) is provided with a receiving cavity (11), the receiving cavity (11) has a bottom wall (12) for stacking sheet media; A holding member (2) is movably connected to the box body (1), and the holding member (2) can move closer to or farther from the bottom wall (12) relative to the box body (1) along the stacking direction of the sheet-like medium, and the holding member (2) has a holding state for holding the sheet-like medium; A driving member is connected to the holding member (2), and the driving member is configured to make the holding member (2) always have a movement tendency close to the bottom wall (12), and the holding member (2) can also rotate relative to the box body (1), and when the holding member (2) deviates from the holding state, the driving member is also configured to make the holding member (2) always have a tendency to rotate to the holding state; the holding member (2) includes a first connecting portion (21), the box body (1) includes a second connecting portion (15), the first connecting portion (21) is spaced apart from the rotation axis (24) of the holding member (2), and the driving member includes an elastic member (3) capable of stretching and retracting, and the elastic member (3) is simultaneously connected to the first connecting portion (21) and the second connecting portion (15).
2. The sheet media storage box according to claim 1, wherein: When the holding member (2) is in the holding state, the extension line of the line between the action point of the elastic member (3) and the first connecting portion (21), and the action point of the elastic member (3) and the second connecting portion (15) intersects with the rotation axis (24) of the holding member (2); when the holding member (2) deviates from the holding state, the extension line of the line between the action point of the elastic member (3) and the first connecting portion (21), and the action point of the elastic member (3) and the second connecting portion (15) are spaced apart from the rotation axis (24) of the holding member (2).
3. The sheet media storage box according to claim 2, wherein: The holding member (2) further comprises a pressing plate (26) connected to the first connecting portion (21), the pressing plate (26) being used for pressing the sheet-like medium. When the holding member (2) is in the pressing state, the pressing plate (26) is parallel to the bottom wall (12), and the connecting line between the action point of the elastic member (3) and the first connecting portion (21) and the action point of the elastic member (3) and the second connecting portion (15) is parallel to the stacking direction of the sheet-like medium.
4. The sheet media storage box according to claim 2, wherein: The box body (1) includes two side plates (16) that are opposite to each other and spaced apart along the extension direction of the rotation axis (24) of the holding member (2); the accommodating cavity (11) is arranged between the two side plates (16); each side plate (16) is provided with a slide groove (161) extending along the stacking direction of the sheet-like medium; the holding member (2) further includes a pressing plate (26) and an inserting portion (22); the pressing plate (26) is located between the two side plates (16) and is used to press the sheet-like medium; the inserting portion (22) is connected to the pressing plate (26); both ends of the inserting portion (22) are respectively inserted into the two slide grooves (161), and the inserting portion (22) can slide along the slide groove (161) so that the pressing plate (26) can be close to or away from the bottom wall (12); The holding member (2) rotates relative to the box body (1) through the plug-in portion (22), the holding member (2) includes two first connecting portions (21), the box body (1) includes two second connecting portions (15), the driving member includes two elastic members (3), the two first connecting portions (21) are respectively arranged at both ends of the plug-in portion (22), and the two first connecting portions (21) respectively extend out of the two sliding grooves (161) and are located on the outside of the two side plates (16), the two elastic members (3) correspond one-to-one to the two first connecting portions (21), and the two elastic members (3) also correspond one-to-one to the two second connecting portions (15), and each elastic member (3) is respectively connected to the corresponding first connecting portion (21) and the corresponding second connecting portion (15).
5. The sheet media storage box according to claim 4, wherein: The slide groove (161) includes a first side wall (162) and a second side wall (163) that are parallel and spaced apart. The plug-in portion (22) includes a first limiting surface (221) and a second limiting surface (222) that are arranged at an angle. When the pressing member (2) rotates relative to the box body (1) along a first direction, the first limiting surface (221) can abut against the first side wall (162). When the pressing member (2) rotates relative to the box body (1) along a second direction, the second limiting surface (222) can abut against the second side wall (163). The first direction and the second direction are opposite.
6. The sheet media storage box according to claim 5, wherein: The plug-in portion (22) further comprises a connecting surface (223), wherein the connecting surface (223) and the first limiting surface (221) are arranged at an acute angle, and the connecting surface (223) and the second limiting surface (222) are arranged at an acute angle, wherein the connecting surface (223) and the first limiting surface (221) intersect at a first intersection line (224), and the connecting surface (223) and the second limiting surface (222) intersect at a second intersection line (225), wherein the pressing and holding The rotation axis (24) of the member (2), the first intersection line (224) and the second intersection line (225) are parallel, and the distance between the first intersection line (224) and the second intersection line (225) is adapted to the distance between the first side wall (162) and the second side wall (163), and the rotation axis (24) of the holding member (2) is centrally located between the first intersection line (224) and the second intersection line (225).
7. The sheet media storage box according to claim 6, wherein: Each of the side plates (16) is provided with a limiting groove (164) communicating with an end of the slide groove (161) away from the bottom wall (12), and the plug-in portion (22) can move along the slide groove (161) to the limiting groove (164) and be plugged into the limiting groove (164); The limiting groove (164) includes a first abutting surface (165) and a second abutting surface (166) connected at an angle. When the plug-in portion (22) is plugged into the limiting groove (164), the holding member (2) can be rotated to an evasive state for placing a sheet medium into the accommodating cavity (11). When the holding member (2) is in the evasive state, under the action of the elastic member (3), the first limiting surface (221) abuts against the first abutting surface (165), and the connecting surface (223) abuts against the second abutting surface (166).
8. The sheet media storage box according to claim 2, wherein: The box body (1) is provided with a slide groove (161) extending along the stacking direction of the sheet-like media, the pressing member (2) is inserted into the slide groove (161), and the pressing member (2) can slide along the slide groove (161) so that the pressing member (2) can approach or move away from the bottom wall (12); along the stacking direction of the sheet-like media, the second connecting portion (15) is adjacent to one end of the slide groove (161) close to the bottom wall (12); The box body (1) further includes a third connecting portion (17), the third connecting portion (17) and the second connecting portion (15) are spaced apart, the first end of the elastic member (3) is connected to the first connecting portion (21), the second end of the elastic member (3) bypasses the second connecting portion (15) and is connected to the third connecting portion (17), the elastic member (3) includes a first elastic section (31) located between the first connecting portion (21) and the second connecting portion (15) and a second elastic section (32) located between the second connecting portion (15) and the third connecting portion (17), and the second elastic section (32) is arranged at an angle to the first elastic section (31).
9. The sheet media storage box according to claim 8, wherein: The angle between the second elastic section (32) and the first elastic section (31) is a right angle.
10. A cash recycling processing device, characterized in that: The cash recycling processing device comprises a frame and a sheet medium storage box according to any one of claims 1 to 9, wherein the sheet medium storage box is detachably mounted on the frame, and the accommodating cavity (11) is used for accommodating banknotes.