Storage box and vehicle
By designing an elastic part in the storage box and abutting structure between the inner bucket and the storage box frame, the problem of unstable storage box due to vibration when open is solved, the stability of the inner bucket in the open and closed positions is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202410350318.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-25
- Publication Date
- 2025-09-26
AI Technical Summary
When the car flip storage box is in the open state, the limit block is separated from the elastic piece, and it is easy to rotate unstably due to vehicle vibration, affecting the user experience.
A storage box structure is designed, in which one end of an elastic member abuts against the storage box frame and the other end abuts against the inner bucket. The elastic member changes position during the rotation of the inner bucket, providing a stable elastic force to keep the inner bucket stable when in the open and closed positions.
Through the design of elastic parts, the inner bucket remains stable in the open and closed positions, avoiding rotational instability caused by vehicle vibration and improving the user experience.
Smart Images

Figure CN120697669A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of vehicle storage devices, and in particular to a storage box and a vehicle. Background Art
[0002] A car flip storage box is a common storage structure in vehicles. Usually, the storage box is rotated and set on a frame inside the vehicle. When the storage box is rotated to the inside of the frame, the storage box is in a closed state, and the items are stored inside the storage box. When the storage box is rotated relative to the frame to the outside of the frame and the internal space of the storage box is fully exposed, the storage box is in an open state, allowing the user to take items out of the storage box.
[0003] When the storage box needs to be closed, the user pushes the storage box toward the frame, and when the limiting piece of the storage box abuts against the elastic piece, the user needs to continue to increase the external force applied to the storage box to deform the elastic piece and move the storage box to the inside of the frame, so that the storage box is in the closed state. However, when the storage box is in the open state, the limit block is separated from the elastic sheet, and the storage box can rotate freely. At this time, the vibration during driving of the vehicle is transmitted to the storage box, and the storage box is easy to rotate relative to the frame, which makes the storage box less stable when opened. It is difficult for the storage box to maintain the open state with the internal space completely exposed, which affects the user's taking and placing of items from the storage box, thereby affecting the user experience of the storage box. Summary of the Invention
[0004] In order to solve the above technical problems or at least partially solve the above technical problems, the present disclosure provides a storage box and a vehicle.
[0005] A first aspect of the present disclosure provides a storage box, comprising a storage box frame and an inner bucket rotatably connected to the storage box frame;
[0006] A mounting window is provided on one side of the storage box frame, and the inner bucket can be rotated from the mounting window to a closed position inside the storage box frame or to an open position outside the storage box frame;
[0007] An elastic member is provided between the storage box frame and the inner bucket, one end of the elastic member is abutted and connected to the side wall of the storage box frame facing the installation window, and the other end of the elastic member is abutted and connected to the bottom side of the inner bucket, the elastic member is in a compressed state, and when the inner bucket is in the closed position, the connection point between the elastic member and the storage box frame and the extension line of the connection point between the elastic member and the inner bucket are located below the rotation connection point between the inner bucket and the storage box frame; when the inner bucket is in the open position, the connection point between the elastic member and the storage box frame and the extension line of the connection point between the elastic member and the inner bucket are located above the rotation connection point between the inner bucket and the storage box frame.
[0008] Optionally, the elastic member includes two elastic arms arranged at an angle;
[0009] One ends of the two elastic arms are connected, the other end of one of the elastic arms is rotatably connected to the storage box frame, and the other end of the other elastic arm is rotatably connected to the inner bucket.
[0010] Optionally, the other ends of the two elastic arms are bent to form bending parts, a first mounting hole is provided on the storage box frame, and a second mounting hole is provided on the inner bucket, and the two bending parts are movably connected to the first mounting hole and the second mounting hole respectively.
[0011] Optionally, the number of the elastic members is two, and the two elastic members are arranged at intervals along the direction of the rotation axis of the inner bucket.
[0012] Optionally, a first mounting ear and a mounting through-hole are provided on the side wall of the storage box frame facing the mounting window away from the inner bucket, and a second mounting ear is provided on the bottom side of the inner bucket, one end of the elastic member abuts against the second mounting ear, and the other end of the elastic member passes through the mounting through-hole and abuts against the first mounting ear.
[0013] Optionally, the inner bucket includes an inner bucket body and an outer door, the inner bucket body is rotatably connected to the storage box frame, and the outer door is arranged on the side of the inner bucket body facing away from the interior of the storage box frame. When the inner bucket is in the closed position, a hand-clasping space is formed between the top of the outer door and the storage box frame.
[0014] Optionally, the top edge of the outer door extends upward to form a handle portion, and a avoidance groove is provided on a surface of the storage box frame close to the outer door. The avoidance groove is arranged opposite to the handle portion, so that when the inner bucket is in a closed position, the hand space is formed between the handle portion and the avoidance groove.
[0015] Optionally, a first clamping portion is provided on the inner bucket body, and a second clamping portion is provided on the outer door, which matches and engages with the first clamping portion; and / or a first crimping portion is provided on the inner bucket body, and a second crimping portion is provided on the outer door, which matches and engages with the first crimping portion.
[0016] Optionally, a damping structure is provided on the storage box frame, the storage box frame is rotatably connected to the inner bucket via a rotating shaft, and the damping structure is connected to the rotating shaft.
[0017] A second aspect of the present disclosure provides a vehicle, comprising the storage box as described in any one of the above items.
[0018] The technical solution provided by the present disclosure has the following advantages compared with the existing technology:
[0019] The storage box provided by the present disclosure has one end of the elastic member abutting against the side wall of the storage box frame facing the installation window, and the other end of the elastic member abutting against the bottom side of the inner bucket. The elastic member is in a compressed state, so that the elastic member continuously applies an elastic force to the inner bucket along the storage box frame toward the inner bucket. When the inner bucket is in the closed position, the extension line of the connection point between the elastic member and the storage box frame and the connection point between the elastic member and the inner bucket is located below the rotation connection point between the inner bucket and the storage box frame, so that the elastic force applied by the elastic member to the inner bucket drives the inner bucket to rotate from the open position to the closed position, so that the inner bucket can be maintained in the closed position. When the inner bucket is in the open position, the elastic member The extension line of the connection point between the elastic member and the storage box frame and the connection point between the elastic member and the inner bucket is located above the rotation connection point between the inner bucket and the storage box frame, so that the elastic force applied by the elastic member to the inner bucket drives the inner bucket to rotate from the closed position toward the open position, so that the inner bucket can be stably maintained in the open position, avoiding the vibration during vehicle driving that causes the inner bucket to rotate relative to the storage box frame; the position of the elastic force applied by the elastic member to the inner bucket changes with the rotation of the inner bucket, so that the elastic force of the elastic member can keep the inner bucket stable in the open position and the closed position, thereby improving the stability of the inner bucket in the open and closed states, and improving the user experience of the storage box. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the present disclosure.
[0021] In order to more clearly illustrate the embodiments of the present disclosure or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0022] Figure 1This is one of the structural schematic diagrams of the storage box according to the embodiment of the present disclosure when the inner compartment is in the open position;
[0023] Figure 2 This is a second structural diagram of the storage box according to the embodiment of the present disclosure when the inner compartment is in the open position;
[0024] Figure 3 This is a structural diagram of the inner bucket according to the embodiment of the present disclosure without the outer door;
[0025] Figure 4 This is a schematic structural diagram of the outer door according to an embodiment of the present disclosure;
[0026] Figure 5 This is one of the structural diagrams of the inner bucket according to the embodiment of the present disclosure;
[0027] Figure 6 for Figure 5 Middle AA section view;
[0028] Figure 7 for Figure 5 Middle BB section view;
[0029] Figure 8 This is an exploded view of the damping structure of the storage box according to an embodiment of the present disclosure;
[0030] Figure 9 This is an assembly diagram of the storage box and the damping structure according to an embodiment of the present disclosure;
[0031] Figure 10 A side view of the storage box according to an embodiment of the present disclosure when the inner compartment is in an open position;
[0032] Figure 11 for Figure 10 Middle CC section view;
[0033] Figure 12 This is a schematic structural diagram of the storage box frame according to an embodiment of the present disclosure;
[0034] Figure 13 This is the second structural diagram of the inner bucket according to the embodiment of the present disclosure;
[0035] Figure 14 Schematic diagram of the connection between the elastic member and the first mounting portion according to an embodiment of the present disclosure, wherein the direction indicated by the arrow in the figure is the deformation direction of the elastic member;
[0036] Figure 15 This is a structural schematic diagram of the storage box according to an embodiment of the present disclosure installed in a vehicle;
[0037] Figure 16 for Figure 15 Middle DD section view;
[0038] Figure 17 This is a side cross-sectional view of the inner compartment of the storage box according to the embodiment of the present disclosure when it is in a closed position, and the direction indicated by the arrow in the figure is the direction of application of the elastic force;
[0039] Figure 18 This is a side cross-sectional view of the inner compartment of the storage box according to the embodiment of the present disclosure when it is in a critical position, and the direction indicated by the arrow in the figure is the direction of application of the elastic force;
[0040] Figure 19 This is a side cross-sectional view of the inner compartment of the storage box according to the embodiment of the present disclosure when it is in the open position, and the direction indicated by the arrow in the figure is the direction of application of the elastic force;
[0041] Figure 20 Schematic diagram of the structure of the elastic member described in the embodiment of the present disclosure.
[0042] Reference numerals:
[0043] 1. Storage box frame; 11. First mounting ear; 111. First mounting hole; 12. Mounting through-hole; 13. Avoidance groove; 14. Buffer pad; 2. Inner bucket; 21. Inner bucket body; 211. First clamping part; 22. Outer door; 221. Hand-locking part; 222. Second clamping part; 23. Second mounting ear; 231. Second mounting hole; 3. Elastic part; 31. Elastic arm; 32. Bending part; 33. First point; 34. Second point; 4. Damping structure; 41. Turntable; 42. Damping gear; 5. Rotation connection point; 6. Hand-locking space. DETAILED DESCRIPTION
[0044] In order to more clearly understand the above-mentioned objectives, features and advantages of the present disclosure, the scheme of the present disclosure will be further described below. It should be noted that the embodiments of the present disclosure and the features therein can be combined with each other in the absence of conflict.
[0045] In the following description, many specific details are set forth to facilitate a full understanding of the present disclosure, but the present disclosure may also be implemented in other ways different from those described herein; it is obvious that the embodiments in the specification are only part of the embodiments of the present disclosure, rather than all of the embodiments.
[0046] Reference Figures 1 to 20As shown, the first aspect of the embodiment of the present disclosure provides a storage box, including a storage box frame 1 and an inner bucket 2 rotatably connected to the storage box frame 1; an installation window is provided on one side of the storage box frame 1, and the inner bucket 2 can be rotated from the installation window to a closed position inside the storage box frame 1 or to an open position outside the storage box frame 1; an elastic member 3 is provided between the storage box frame 1 and the inner bucket 2, one end of the elastic member 3 is abutted and connected to the side wall of the storage box frame 1 facing the installation window, and the other end of the elastic member 3 is abutted and connected to the bottom side of the inner bucket 2, the elastic member 3 is in a compressed state, and when the inner bucket 2 is in the closed position, the extension line of the connection point between the elastic member 3 and the storage box frame 1 and the connection point between the elastic member 3 and the inner bucket 2 is located below the rotation connection point 5 between the inner bucket 2 and the storage box frame 1; when the inner bucket 2 is in the open position, the extension line of the connection point between the elastic member and the storage box frame 1 and the connection point between the elastic member 3 and the inner bucket 2 is located above the rotation connection point 5 between the inner bucket 2 and the storage box frame 1.
[0047] Specifically, for example Figures 17 to 19 As shown, the connection point between the elastic member 3 and the storage box frame 1 is a first point 33, the connection point between the elastic member 3 and the inner bucket 2 is a second point 34, and the rotational connection point 5 between the inner bucket 2 and the storage box frame 1 is the point through which the rotation axis of the inner bucket 2 passes when the inner bucket 2 rotates relative to the storage box frame 1. In the following content, the first point 33 represents the connection point between the elastic member 3 and the storage box frame 1, and the second point 34 represents the connection point between the elastic member 3 and the inner bucket 2.
[0048] The above-mentioned storage box frame 1 can be selected as a box body structure or a frame body structure. The space inside the storage box frame 1 serves as an active cavity. A through hole is set on the surface of the storage box frame 1 as an installation window. The installation window is connected to the active cavity. The installation window can be selected to be located on one side of the storage box frame 1 in the horizontal direction, so that the inner bucket 2 can pass through the installation window and enter the active cavity in the storage box frame 1. The inner bucket 2 is rotatably connected to the storage box frame 1 in the active cavity, so that when the inner bucket 2 rotates in the direction away from the active cavity, at least part of the inner bucket 2 can be rotated to the outside of the active cavity through the installation window. When the inner bucket 2 is outside the active cavity and rotates in the direction of the active cavity, the inner bucket 2 can enter the active cavity through the installation window.
[0049] When the above-mentioned storage box is set in a vehicle for use, the side close to the ground when the inner bucket 2 is in the closed position is the bottom side of the inner bucket 2, the vertical direction is the up and down direction, and the bottom side of the inner bucket 2 is located below the rotation connection point 5, so that the elastic member 3 and the bottom side of the inner bucket 2 are abutted to form a second point 34. When the inner bucket 2 is in the closed position, the second point 34 is located below the rotation connection point 5, and when the inner bucket 2 is in the open position, the second point 34 is located above the rotation connection point 5.
[0050] The spatial position of the first point 33 mentioned above in the storage box is relatively stable, and the relative position of the second point 34 in the storage box will change as the inner bucket 2 rotates; when the inner bucket 2 is in the open position and the closed position, the elastic member 3 is in a compressed state, so the elastic force of the elastic member 3 is applied to the inner bucket 2 along the direction of the storage box frame 1 toward the inner bucket 2; one end of the elastic member 3 can be connected to the side wall of the storage box frame 1 opposite to the installation window, and the other end can be connected to the surface of the bottom side of the inner bucket 2, for example Figure 17 and Figure 19 As shown, the clockwise direction is the direction in which the inner bucket 2 rotates from the closed position to the open position; when the inner bucket 2 is in the closed position, as shown in FIG. Figure 17 As shown, the extension line of the line connecting the first point 33 and the second point 34 is located below the rotation connection point 5. At this time, the elastic force applied by the elastic member 3 is F1, and the elastic force F1 drives the inner bucket 2 to rotate counterclockwise, that is, the elastic force F1 drives the inner bucket 2 to rotate toward the closed position; when the inner bucket 2 is in the open position, as shown in FIG. Figure 19 As shown, the extension line of the line connecting the first point 33 and the second point 34 moves to above the rotating connection point 5 as the inner bucket 2 rotates. At this time, the elastic force exerted by the elastic member 3 is F3, and the elastic force F3 drives the inner bucket 2 to rotate clockwise, that is, the elastic force F3 drives the inner bucket 2 to move toward the open position.
[0051] The storage box frame 1 and the inner bucket 2 can be rotatably connected via a rotation axis, with the location of the rotation axis serving as a rotation connection point 5. The rotation axis is arranged horizontally, and the inner bucket 2 is connected to the rotation axis, thereby allowing the inner bucket 2 to rotate about the rotation axis in the vertical direction. Alternatively, rotation holes can be provided on both sides of the storage box frame 1 adjacent to the side with the installation window in the horizontal direction, and the rotation axis is passed through the rotation holes. The end of the rotation axis located inside the storage box frame 1 is fixedly connected to the horizontal outer side of the inner bucket 2, so that the inner bucket 2 is rotatably connected to the storage box frame 1 via the rotation axis, with the rotation axis serving as the rotation connection point 5.
[0052] Of course, it is also possible to set rotation axes on the inner walls of the storage box frame 1 corresponding to the two adjacent side surfaces with the installation windows, and the inner bucket 2 is provided with mounting holes on both horizontal surfaces. When the inner bucket 2 is placed inside the storage box frame 1, the two rotation axes are respectively passed through the two mounting holes, so that the inner bucket 2 is rotatably connected to the storage box frame 1 via the rotation axes. The rotation axis between the inner bucket 2 and the storage box frame 1 serves as the rotation connection point 5, and the inner bucket 2 can rotate relative to the storage box frame 1 around the rotation connection point 5.
[0053] The inner bucket 2 can be selected as a box body structure, and the horizontal side of the storage box frame 1 is provided with an installation window. When the storage box is installed on the vehicle for normal use, the inner bucket 2 is in the closed position, and the side of the inner bucket 2 away from the ground is the top surface, and the side of the storage box frame 1 away from the ground is the top surface. The top surface of the inner bucket 2 can be optionally provided with an opening, and the inner bucket 2 can be selected to be installed in the storage box frame 1 and rotatably connected to the inner wall of the storage box frame 1; when the inner bucket 2 is rotated to be located inside the storage box frame 1 and the opening of the inner bucket 2 is blocked by the top surface of the storage box frame 1, the inner bucket 2 is in the closed position, and when the inner bucket 2 rotates around the rotation connection point 5 toward the direction away from the inside of the storage box frame 1, so that the inner bucket 2 is rotated to the outside of the storage box frame 1, so that the opening of the inner bucket 2 is completely exposed to the outside of the storage box frame 1, the inner bucket 2 is in the open position.
[0054] The above-mentioned elastic member 3 can be selected as a torsion spring, one end of which abuts the inner bucket 2, and the other end abuts the storage box frame 1. When the inner bucket 2 rotates, the torsion spring moves together with the inner bucket 2; of course, the elastic member 3 can also be selected as a spring, one end of which abuts the inner bucket 2, and the other end abuts the storage box frame 1. When the inner bucket 2 moves, the spring moves together with the inner bucket 2.
[0055] It is possible to choose to set a mounting hole on the bottom side of the inner bucket 2, and set a mounting hole on the side of the storage box frame 1 facing away from the mounting window. Both ends of the torsion spring are bent to form a plug-in portion, and the two mounting portions of the torsion spring are respectively plugged into the mounting hole of the inner bucket 2 and the mounting hole of the storage box frame 1, so that one end of the elastic member 3 abuts against the inner wall of the mounting hole of the storage box frame 1, and the other end abuts against the inner wall of the mounting hole of the inner bucket 2, and the two ends of the elastic member 3 can respectively rotate in the mounting hole of the storage box frame 1 and the mounting hole of the inner bucket 2, so that when the inner bucket 2 rotates, the torsion spring moves together with the inner bucket 2, and the elastic member 3 continuously presses against the inner bucket. 2 applies an elastic force along the storage box frame 1 toward the inner bucket 2; of course, you can also choose to set a mounting post on the side of the inner bucket 2, set a mounting post on the side of the storage box frame 1, and set rings at both ends of the spring. The rings at both ends of the spring are respectively socketed with the mounting posts of the inner bucket 2 and the mounting posts of the storage box frame 1, so that the rings at both ends of the elastic member 3 are respectively in contact with the side faces of the mounting posts of the inner bucket 2 and the side faces of the mounting posts of the storage box frame 1, and the rings at both ends of the elastic member 3 can be rotated relative to the mounting posts of the storage box frame 1 and the mounting posts of the inner bucket 2, so that when the inner bucket 2 moves, the spring moves together with the inner bucket 2.
[0056] When the storage box provided by the embodiment of the present disclosure is used, the inner bucket 2 is first in the closed position. At this time, the extension line of the line connecting the first point 33 and the second point 34 is located below the rotation connection point 5. The elastic force applied by the elastic member 3 to the inner bucket 2 causes the inner bucket 2 to rotate toward the closed position. Therefore, the inner bucket 2 can remain in the closed position when there is no external force.
[0057] When the storage box needs to be opened, the user pulls the inner bucket 2 by hand, so that the inner bucket 2 overcomes the elastic force of the elastic member 3 and rotates from the closed position to the open position. When the inner bucket 2 rotates to the open position, the extension line of the line connecting the first point 33 and the second point 34 moves to the other side of the rotation connection point 5 as the inner bucket 2 rotates. The elastic force of the elastic member 3 on the inner bucket 2 drives the inner bucket 2 to rotate toward the open position. Due to the elastic force of the elastic member 3, the inner bucket 2 can be maintained in the open position.
[0058] That is, when the user needs to open or close the storage box, the user needs to continuously overcome the elastic force of the elastic part 3 to drive the inner bucket 2 to rotate, so that the inner bucket 2 moves between the open position and the closed position, thereby realizing the lock-free structure of the storage box, and being able to avoid accidentally touching the inner bucket 2 and causing the inner bucket 2 to open or close; when the inner bucket 2 is in the open position, the elastic force of the elastic part 3 can make the inner bucket 2 stably maintain in the open position, thereby improving the stability of the inner bucket 2 when it is opened, and avoiding the vibration of the vehicle or external force collision that makes the inner bucket 2 unable to maintain in the open position, resulting in the internal space of the inner bucket 2 unable to be fully exposed and affecting the user's taking and placing items from the inner bucket 2.
[0059] The storage box provided by the embodiment of the present disclosure has one end of the elastic member 3 abutting against the side wall of the storage box frame 1 facing the installation window, and the other end of the elastic member 3 abutting against the bottom side of the inner bucket 2. The elastic member 3 is in a compressed state, so that the elastic member 3 continuously applies an elastic force to the inner bucket 2 along the storage box frame 1 toward the inner bucket 2. When the inner bucket 2 is in the closed position, the extension line of the connection point between the elastic member 3 and the storage box frame 1 and the connection point between the elastic member 3 and the inner bucket 2 is located below the rotation connection point 5 between the inner bucket 2 and the storage box frame 1, so that the elastic force applied by the elastic member 3 to the inner bucket 2 drives the inner bucket 2 to rotate from the open position to the closed position, so that the inner bucket 2 can be maintained in the closed position. When the inner bucket 2 is in the open position When the vehicle is in the open position, the extension line of the line between the connection point of the elastic member 3 and the storage box frame 1 and the connection point of the elastic member 3 and the inner bucket 2 is located above the rotation connection point 5 between the inner bucket 2 and the storage box frame 1, so that the elastic force applied by the elastic member 3 to the inner bucket 2 drives the inner bucket 2 to rotate from the closed position to the open position, so that the inner bucket 2 can be stably maintained in the open position, avoiding the vibration during vehicle driving that causes the inner bucket 2 to rotate relative to the storage box frame; the position of the elastic force applied by the elastic member 3 to the inner bucket changes with the rotation of the inner bucket 2, so that the elastic force of the elastic member 3 can keep the inner bucket 2 stable in the open position and the closed position, thereby improving the stability of the inner bucket 2 in the open and closed states, and improving the user experience of the storage box.
[0060] Reference Figure 1 、 Figure 2 and Figures 17 to 19As shown, in some embodiments, there is a critical position between the open position and the closed position. When the inner bucket 2 is at the critical position, the connection point between the elastic member 3 and the storage box frame 1, the line connecting the connection points of the elastic member 3 and the inner bucket 2, and the rotation connection point 5 between the inner bucket 2 and the storage box frame 1 are collinear. This arrangement allows the inner bucket 2 to rotate. When the inner bucket 2 is between the closed position and the critical position, the elastic member 3 always drives the inner bucket 2 toward the closed position. When the inner bucket 2 is between the open position and the critical position, the elastic member 3 continuously drives the inner bucket 2 toward the open position. This allows the elastic member 3 to assist in the opening and closing of the inner bucket 2, making it easier for the user to operate the inner bucket 2 to move between the open and closed positions relative to the storage box frame 1.
[0061] Specifically, when the inner bucket 2 is in the critical position, the extension line of the line connecting the first point 33 and the second point 34 is collinear with the rotation connection point 5, as shown in FIG. Figure 18 As shown, at this time, the elastic force applied by the elastic member 3 to the inner bucket 2 is F2, and the elastic force F2 is collinear with the rotation connection point 5, that is, the force arm between the elastic force F2 and the rotation connection point 5 is zero, and the elastic force F2 has no driving effect on the rotation of the inner bucket 2. At this time, the relative position of the inner bucket 2 and the storage box frame 1 is the critical position.
[0062] When the inner bucket 2 moves between the closed position and the critical position, the elastic member 3 constantly applies an elastic force to the inner bucket 2. Specifically, when the inner bucket 2 is between the closed position and the critical position, the extension of the line connecting the first point 33 and the second point 34 is located below the rotation axis, causing the inner bucket 2 to rotate toward the closed position under the action of the elastic member 3. The user needs to continuously overcome the elastic force of the elastic member 3 to move the inner bucket 2 toward the open position. When the inner bucket 2 is between the closed position and the critical position, the user ceases applying the force to the inner bucket 2, and the inner bucket 2 rotates to the closed position under the action of the elastic member 3, achieving automatic closure of the inner bucket 2.
[0063] When the above-mentioned inner bucket 2 is between the open position and the critical position, the elastic force of the elastic part 3 drives the inner bucket 2 to rotate toward the open position, and the user needs to overcome the elastic force of the elastic part 3 to move the inner bucket 2 toward the closed position; when the inner bucket 2 is between the open position and the critical position, the inner bucket 2 will rotate to the open position under the action of the elastic part 3, so that the inner bucket 2 remains in the open state, making it convenient for the user to take and put items from the inner bucket 2.
[0064] Reference Figure 2 、 Figure 14 、 Figures 17 to 20As shown, in some embodiments, the elastic member 3 includes two elastic arms 31 arranged at an angle; one end of the two elastic arms 31 is connected, the other end of one elastic arm 31 is rotatably connected to the storage box frame 1, and the other end of the other elastic arm 31 is rotatably connected to the inner bucket 2. With this arrangement, the change in the relative position of the two elastic arms 31 can cause the elastic arms 31 to deform and apply elastic force to the inner bucket 2. The elastic force applied by the two elastic arms 31 on the inner bucket 2 can continuously be directed along the storage box frame 1 toward the inner bucket 2. In other words, the elastic force applied by the two elastic arms 31 on the inner bucket 2 has good directionality, which is beneficial to the stability of the inner bucket 2 in the closed and open positions.
[0065] Specifically, when the elastic member 3 is a torsion spring or a spring, the two ends of the elastic member 3 can be extended to form elastic arms 31. Of course, the elastic member 3 can also be selected to include a main body, and the ends of the two elastic arms 31 are respectively connected to the main body to form the elastic member 3. Of course, the end of one elastic arm 31 can also be selected to be connected to the end of another elastic arm 31 to form the elastic member 3, as long as the two elastic arms 31 are arranged at an angle to each other and the two elastic arms 31 can be elastically deformed to apply elastic force to the inner bucket 2.
[0066] Reference Figure 2 、 Figure 9 、 Figure 12 、 Figure 13 、 Figure 14 、 Figures 17 to 20 As shown, in some embodiments, the other ends of the two elastic arms are bent to form bending portions 32, a first mounting hole 111 is provided on the storage box frame 1, and a second mounting hole 231 is provided on the inner bucket 2, and the two bending portions 32 are movably connected to the first mounting hole 111 and the second mounting hole 231 respectively.
[0067] The ends of the two elastic arms 31 above-mentioned are bent away from each other to form a bent portion 32, and the bent portion 32 and the elastic arm 31 can be selected to be perpendicular to each other. Of course, the bent portion 32 and the elastic arm 31 can also be selected to have an angle of other angles, and the extension direction of the bent portion 32 can be selected to be consistent with the direction of the rotation axis when the inner bucket 2 rotates; a raised structure can be selected on the storage box frame 1, and a first mounting hole 111 is set on the raised structure. Of course, the first mounting hole 111 can also be selected to be set on the side of the storage box frame 1, and the axis line of the first mounting hole 111 is consistent with the direction of the rotation axis when the inner bucket rotates; a raised structure can be selected to be set on the inner bucket 2, and a second mounting hole 231 is set on the raised structure. Of course, the second mounting hole 231 can also be selected to be set on the side of the inner bucket 2, and the axial line of the second mounting hole 231 is consistent with the direction of the rotation axis when the inner bucket 2 rotates.
[0068] The two bent portions 32 on the above-mentioned two elastic arms 31 are respectively inserted into the first mounting hole 111 and the second mounting hole 231, so that one bent portion 32 can abut against the inner wall of the first mounting hole 111 and can rotate in the first mounting hole 111, and the other bent portion 32 can abut against the inner wall of the second mounting hole 231 and can rotate in the second mounting hole 231, so that when the inner bucket 2 rotates, the elastic member 3 can rotate together with the inner bucket 2.
[0069] By connecting the two bent portions 32 on the two elastic arms 31 with the first mounting hole 111 and the second mounting hole 231 respectively, the elastic member 3 is rotatably connected to the storage box frame 1 and the inner bucket 2 while abutting against the storage box frame 1 and the inner bucket 2. Therefore, when the inner bucket 2 moves between the closed position and the open position, the elastic member 3 can rotate with the inner bucket 2 while continuously applying an elastic force to the inner bucket 2 along the storage box frame 1 toward the inner bucket 2 through the second point 34.
[0070] Reference Figure 2 and Figure 14 As shown, in some embodiments, there are two elastic members 3, which are spaced apart along the rotation axis of the inner bucket 2. This arrangement allows the two elastic members 3 to simultaneously apply elastic force to the inner bucket 2. The inner bucket 2 can receive the elastic force of the elastic members 3 at two locations along the extension direction of the rotation axis of the inner bucket 2 relative to the storage box frame 1, thereby improving the stability of the inner bucket 2 when receiving the elastic force of the elastic members 3 and ensuring that the movement trajectory of the inner bucket 2 when receiving the elastic force during rotation is stable.
[0071] Specifically, two protruding structures can be optionally provided on the storage box frame 1, and the protruding structures are spaced apart along the extension direction of the rotation axis of the inner bucket 2 relative to the storage box frame 1. Two protruding structures can be provided on the inner bucket 2, and the two protruding structures of the inner bucket 2 are spaced apart along the extension direction of the rotation axis of the inner bucket 2 relative to the storage box frame 1. The two elastic members 3 are respectively abutted and connected with the two protruding structures on the storage box frame 1 and the two protruding structures on the inner bucket 2, so that the two elastic members 3 are spaced apart between the storage box frame 1 and the inner bucket 2.
[0072] Reference Figure 2 、 Figure 8 、 Figure 9 、 Figure 10 、 Figure 12 、 Figure 13 and Figure 14As shown, in some embodiments, a first mounting ear 11 and a mounting hole 12 are provided on the side of the storage box frame 1 facing the mounting window and away from the inner bucket 2, and a second mounting ear 23 is provided on the bottom side of the inner bucket 2. One end of the elastic member 3 abuts against the second mounting ear 23, and the other end of the elastic member 3 passes through the mounting hole 12 and abuts against the first mounting ear 11. This arrangement allows the first mounting ear 11 and the second mounting ear 23 to serve as the basic structure for the rotational connection between the elastic member 3, the storage box frame 1 and the inner bucket 2, thereby improving the stability of the rotational connection between the elastic member 3, the storage box frame 1 and the inner bucket 2, and preventing the first mounting ear 11 from encroaching on the space inside the storage box frame 1, thereby increasing the space inside the storage box that can be used for storage.
[0073] Specifically, the first mounting ear 11 can be selected as a raised structure arranged on a side of the side wall of the storage box frame 1 facing the installation window and away from the inner bucket 2, and a first mounting hole 111 is provided on the raised structure, one end of the elastic member 3 is inserted into the first mounting hole 111 to abut against the inner wall of the first mounting hole 111, and one end of the elastic member 3 can rotate in the first mounting hole 111, so that the bent portion 32 can be passed through the first mounting hole 111; the mounting through hole 12 can be optionally arranged below the first mounting ear 11 to facilitate the end of the elastic member 3 to pass through the mounting through hole 12 from the inside of the storage box frame 1 and be rotatably connected to the first mounting ear 11.
[0074] A protruding structure can be optionally provided on the bottom side of the inner bucket 2 as a second mounting ear 23, and a second mounting hole 231 is provided on the second mounting ear 23. The other end of the elastic member 3 can be inserted into the second mounting hole 231 to abut against the inner wall of the second mounting hole 231, so that the bent portion 32 of the elastic member 3 can be passed through the second mounting hole 231, so that the elastic member 3 is rotatably connected to the second mounting ear 23.
[0075] Of course, you can also choose to set a groove on the first mounting ear 11 and a groove on the second mounting ear 23, and the two ends of the elastic member 3 extend into the grooves of the first mounting ear 11 and the second mounting ear 23 respectively, so that the two ends of the elastic member 3 respectively abut against the inner wall of the groove of the first mounting ear 11, so that the two ends of the elastic member 3 respectively abut against the storage box frame 1 and the inner bucket 2, and when the inner bucket 2 rotates, the elastic member 3 will not be separated from the abutment with the storage box frame 1 and the inner bucket 2, so that the elastic member 3 can always apply elastic force to the inner bucket 2.
[0076] The above-mentioned storage box frame 1 is provided with an installation window, and the first mounting ear 11 is arranged on the side of the side wall of the storage box frame 1 facing the installation window, away from the inner bucket 2, so that the first mounting ear 11 will not occupy the space inside the storage box frame 1, thereby increasing the size of the inner bucket 2 that can be accommodated in the storage box frame 1. The mounting hole 12 can be optionally arranged below the first mounting ear 11 to facilitate the end of the elastic member 3 to pass through the mounting hole 12 from the inside of the storage box frame 1 and be rotatably connected to the first mounting ear 11.
[0077] Reference Figure 2 、 Figures 3 to 7 、 Figures 15 to 19 As shown, in some embodiments, the inner bucket 2 includes an inner bucket body 21 and an outer door 22. The inner bucket body 21 is rotatably connected to the storage box frame 1. The outer door 22 is disposed on the side of the inner bucket body 21 facing away from the interior of the storage box frame 1. A hand-engaging space 6 is formed between the top of the outer door 22 and the storage box frame 1. This arrangement enables the inner bucket body 21 to serve as a storage structure, the outer door 22 to shield the installation window of the storage box frame 1, and the hand-engaging space 6 is formed between the outer door 22 and the storage box frame 1, making it convenient for the user to engage the outer door 22 to apply driving force to the inner bucket 2, thereby improving the user's convenience in driving the inner bucket 2 from a closed position to an open position.
[0078] Specifically, the side of the inner bucket body 21 close to the user when the storage box is in use can be selected as the outer side of the inner bucket body 21, the outer door 22 is installed on the outer side of the inner bucket body 21, and the side of the outer door 22 away from the ground is the top; when the inner bucket 2 is in the closed position, the top edge of the outer door 22 is spaced apart from the storage box frame 1, so that a hand-holding space 6 can be formed between the top of the outer door 22 and the storage box frame 1; the user can insert his fingers into the hand-holding space 6, and then hold the upper edge of the inner bucket 2 with his fingers, so that the user can apply driving force to the inner bucket 2 to move the inner bucket 2 from the closed position to the open position.
[0079] The above-mentioned outer door 22 is arranged on the side of the inner bucket body 21 facing away from the interior of the storage box frame 1, so that when the inner bucket 2 is in the closed position, the inner bucket body 21 is located inside the storage box frame 1, and the inner bucket body 21 is rotatably connected to the storage box frame 1, and the outer door 22 is shielded at the installation window of the storage box frame 1; the upper edge of the outer door 22 is spaced apart from the edge of the storage box frame 1, so that the outer door 22 can form a hand-clasping space 6 with the surface of the storage box frame 1.
[0080] Reference Figure 1 、 Figures 3 to 7 and Figure 15 、 Figure 16 As shown, in some embodiments, the top edge of the outer door 22 extends upward to form a handle portion 221. A relief groove 13 is provided on the side of the storage box frame 1 adjacent to the outer door 22. The relief groove 13 is arranged opposite to the handle portion 221, so that when the inner bucket 2 is in the closed position, a hand-catching space 6 is formed between the handle portion 221 and the relief groove 13. This arrangement makes it convenient for the user to insert a finger into the hand-catching space 6 and engage with the handle portion 221, thereby making it convenient for the user to apply a driving force to the inner bucket 2 through the handle portion 221 to rotate the inner bucket 2 from the closed position to the open position.
[0081] Specifically, the storage box can be installed in the vehicle for normal use. When the inner bucket 2 is in the closed position, the side edge of the outer door 22 away from the ground is the top edge of the outer door 22. The top edge of the outer door 22 can be selected to bulge upward to form a latch portion 221. The latch portion 221 can be selected as a rectangular plate structure. The latch portion 221 is located at a position where the top edge of the outer door 22 is horizontally away from the storage box frame 1, so that the latch portion 221 and the surface of the storage box frame 1 are spaced apart in the horizontal direction; the avoidance groove 13 can be selected as a groove provided on the side of the storage box frame 1 close to the outer door 22. The avoidance groove 13 is recessed in the horizontal direction away from the outer door 22. When the inner bucket 2 is in the closed state, the avoidance groove 13 and the latch portion 221 are arranged relative to each other in the horizontal direction, so that the avoidance groove 13 and the latch portion 221 form a latch space 6.
[0082] Reference Figure 2 、 Figures 3 to 7 、 Figures 15 to 19 As shown, in some embodiments, a first engaging portion 211 is provided on the inner bucket body 21, and a second engaging portion 222 is provided on the outer door 22 to engage with the first engaging portion 211. This arrangement improves the ease of mounting the outer door 22 on the inner bucket body 21 through the coordinated connection between the first engaging portion 211 and the second engaging portion 222. Furthermore, when a user applies a driving force to the outer door 22, the inner bucket body 21 can be driven to rotate by the first engaging portion 211 and the second engaging portion 222.
[0083] Specifically, the inner bucket body 21 can be selected as a box body structure, and the outer door 22 can be selected as a rectangular plate structure. The inner bucket body 21 is provided with a first clamping portion 211 on a side surface away from the interior of the storage box frame 1 in the horizontal direction, and the outer door 22 is provided with a second clamping portion 222 on a side facing the inner bucket body 21.
[0084] A first clamping portion 211 can be selected to be provided on a side of the inner bucket body 21 facing the outer door 22, and a second clamping portion 222 can be provided on a side of the outer door 22 facing the inner bucket body 21. The first clamping portion 211 can be selected to be a protruding structure, and the second clamping portion 222 can be selected to be a slot, and the protruding structure is inserted into the slot to enable the first clamping portion 211 and the second clamping portion 222 to be clamped and connected.
[0085] When the above-mentioned inner bucket 2 is in the closed position, a buffer pad 14 can be optionally provided on the side of the storage box frame 1 facing the outer door 22. The buffer pad 14 is located between the storage box frame 1 and the outer door 22. The side of the outer door 22 close to the storage box frame 1 in the horizontal direction contacts the buffer pad 14 to reduce the impact of the inner bucket 2 on the storage box frame 1 when the inner bucket 2 is rotated from the open position to the closed position.
[0086] Reference Figure 2 、 Figures 3 to 7 、 Figures 15 to 19 As shown, in some embodiments, a first pressing portion is provided on the inner bucket body 21, and a second pressing portion is provided on the outer door 22 to mate with the first pressing portion. This arrangement facilitates the installation of the outer door 22 on the inner bucket body 21 through the mating connection of the first and second pressing portions. When a user applies a driving force to the outer door 22, the driving force is transmitted to the inner bucket body 21 via the first and second pressing portions, causing the inner bucket body 21 to rotate.
[0087] Specifically, the inner bucket body 21 can be selected as a box body structure, an opening is set on the upper side of the box body structure, and the inner bucket body 21 is provided with a first pressing part on the side surface close to the outer door 22 in the horizontal direction. The outer door 22 is provided with a second crimping part on the side facing the inner bucket body 21. The first crimping part can be selected as a hook structure, and the second crimping part can be selected as a groove structure. A hook plate is set on the inner wall of the groove structure. The outer door 22 moves toward the inner bucket body 21 so that the hook structure on the inner bucket body 21 is inserted into the groove on the outer door 22, so that the hook structure is connected with the hook plate in the groove after deformation, thereby completing the press-fit connection between the inner bucket body 21 and the outer door 22.
[0088] Reference Figure 1 ,picture, Figures 8 to 11 As shown, in some embodiments, a damping structure 4 is provided on the storage box frame 1. The storage box frame 1 is rotatably connected to the inner bucket 2 via a rotating shaft, and the damping structure 4 is connected to the rotating shaft. This arrangement reduces the speed of the inner bucket 2 during rotation by the damping structure 4, allowing the inner bucket 2 to rotate smoothly, preventing the inner bucket 2 from rotating too quickly and colliding with the storage box frame 1. It also improves the user's feel when pulling or pushing the storage box, thereby enhancing the user experience of the storage box.
[0089] Specifically, the rotation axis can be a cylindrical structure, and a rotation hole can be provided on the storage box frame 1, and the rotation axis passes through the rotation hole of the storage box frame 1 and is fixedly connected to the inner bucket 2. Of course, a rotation hole can also be provided on the inner bucket 2, and the rotation axis is fixedly connected to the storage box frame 1 and passes through the rotation hole of the inner bucket 2, so that the inner bucket 2 and the storage box frame 1 are rotatably connected via the rotation axis. Through holes can be provided on the sides of the storage box frame 1 and the inner bucket 2, and the inner wall of the through hole of the inner bucket 2 is provided with a thread. A bolt is used to pass through the through hole of the storage box frame 1 and is threadedly connected to the through hole on the side of the inner bucket 2, so that the bolt serves as the rotation axis of the inner bucket 2 and the storage box frame 1, and the position of the bolt is the rotation connection point 5.
[0090] The damping structure 4 can be selected to include a damping gear 42 and a turntable 41. The damping gear 42 is arranged on the side of the storage box frame 1 where the rotating shaft is provided. The turntable 41 is fixedly connected to the rotating shaft, and the edge of the turntable 41 is meshed with the damping gear 42.
[0091] The damping structures 4 can be provided in two numbers, with rotation shafts provided on opposite sides of the storage box frame 1, and the two damping structures 4 connected to the two rotation shafts, respectively. The damping structures 4 can be provided on the inner wall of the storage box frame 1, or the rotation shaft can be provided through the side of the storage box frame 1. The damping structures 4 can be provided on the outer surface of the storage box frame 1 and connected to the rotation shaft, so that the damping structures 4 form a certain resistance to the rotation of the inner bucket 2, thereby providing damping when the inner bucket 2 rotates.
[0092] A second aspect of the embodiments of the present disclosure provides a vehicle, comprising a storage box as described in any one of the above items.
[0093] By using the storage box as described above, a lock-free structure of the storage box is achieved by setting the elastic member 3, and the setting of the elastic member 3 can avoid accidental touching of the inner compartment 2 and causing the storage box to be opened and closed, thereby improving the user experience of the storage box.
[0094] When the storage box provided by the embodiment of the present disclosure is used, when the user stores items in the storage box, the inner bucket 2 is in the closed position. At this time, the extension line of the line connecting the first point 33 and the second point 34 of the elastic member 3 is located below the rotation connection point 5. The elastic force F1 applied by the elastic member 3 to the inner bucket 2 causes the inner bucket 2 to rotate toward the closed position. Therefore, when there is no external force, the inner bucket 2 can be maintained in the closed position, so that items can be stably stored in the inner bucket 2.
[0095] When the user needs to take out or put items from the inner bucket 2, the user pulls the inner bucket 2 by hand to rotate the inner bucket 2 from the closed position to the open position. When the inner bucket 2 is between the closed position and the critical position, the extension line of the line connecting the first point 33 and the second point 34 is located on the lower side of the rotation connection point 5, and the elastic force F1 applied by the elastic member to the inner bucket 2 causes the inner bucket 2 to rotate toward the closed position, that is, the user needs to overcome the elastic force of the elastic member 3 to rotate the inner bucket 2 toward the open position; when the inner bucket 2 passes the critical position and rotates to between the open position and the critical position, the extension line of the line connecting the first point 33 and the second point 34 is located on the upper side of the rotation connection point 5, and the elastic force F3 of the elastic member 3 on the inner bucket 2 drives the inner bucket 2 to rotate toward the open position. At this time, the user can stop applying driving force to the inner bucket 2, and the inner bucket 2 will rotate to the open position under the drive of the elastic force F3. Due to the action of the elastic force F3 of the elastic member 3, the inner bucket 2 can be maintained in the open position.
[0096] When the user needs to close the storage box, the user pushes the inner bucket 2, and the inner bucket 2 moves from the open position to the closed position. When the inner bucket 2 is between the open position and the critical position, the extension line of the line connecting the first point 33 and the second point 34 is located on the upper side of the rotation connection point 5, and the elastic force applied by the elastic member 3 to the inner bucket 2 causes the inner bucket 2 to rotate toward the open position. The user needs to overcome the elastic force of the elastic member 3 to rotate the inner bucket 2 toward the closed position; when the inner bucket 2 crosses the critical position and rotates to between the critical position and the closed position, the extension line of the line connecting the first point 33 and the second point 34 is located on the lower side of the rotation connection point 5, and the elastic force applied by the elastic member 3 to the inner bucket 2 drives the inner bucket 2 to move toward the closed position. At this time, the user can stop applying driving force to the inner bucket 2, and the inner bucket 2 will rotate to the closed position under the drive of the elastic force.
[0097] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprises" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a..." do not exclude the presence of other identical elements in the process, method, article or device that includes the elements.
[0098] The foregoing description is intended only to provide specific embodiments of the present disclosure, intended to enable those skilled in the art to understand and implement the present disclosure. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present disclosure. Therefore, the present disclosure is not intended to be limited to the embodiments described herein, but rather to be construed in the broadest manner consistent with the principles and novel features disclosed herein.
Claims
1. A storage box, characterized in that: It includes a storage box frame and an inner bucket rotatably connected to the storage box frame; A mounting window is provided on one side of the storage box frame, and the inner bucket can be rotated from the mounting window to a closed position inside the storage box frame or to an open position outside the storage box frame; An elastic member is provided between the storage box frame and the inner bucket, one end of the elastic member is abutted and connected to the side wall of the storage box frame facing the installation window, and the other end of the elastic member is abutted and connected to the bottom side of the inner bucket, the elastic member is in a compressed state, and when the inner bucket is in the closed position, the connection point between the elastic member and the storage box frame and the extension line of the connection point between the elastic member and the inner bucket are located below the rotation connection point between the inner bucket and the storage box frame; when the inner bucket is in the open position, the connection point between the elastic member and the storage box frame and the extension line of the connection point between the elastic member and the inner bucket are located above the rotation connection point between the inner bucket and the storage box frame.
2. The storage box according to claim 1, characterized in that: The elastic member comprises two elastic arms arranged at an angle; One ends of the two elastic arms are connected, the other end of one of the elastic arms is rotatably connected to the storage box frame, and the other end of the other elastic arm is rotatably connected to the inner bucket.
3. The storage box according to claim 2, characterized in that: The other ends of the two elastic arms are bent to form bent parts, a first mounting hole is provided on the storage box frame, and a second mounting hole is provided on the inner bucket, and the two bent parts are movably connected to the first mounting hole and the second mounting hole respectively.
4. The storage box according to claim 1, characterized in that: There are two elastic members, and the two elastic members are spaced apart along the direction of the rotation axis of the inner bucket.
5. The storage box according to claim 1, characterized in that: A first mounting ear and a mounting through-hole are provided on the side wall of the storage box frame facing the mounting window away from the inner bucket, and a second mounting ear is provided on the bottom side of the inner bucket. One end of the elastic member abuts against the second mounting ear, and the other end of the elastic member passes through the mounting through-hole and abuts against the first mounting ear.
6. The storage box according to any one of claims 1 to 5, characterized in that: The inner bucket includes an inner bucket body and an outer door. The inner bucket body is rotatably connected to the storage box frame. The outer door is arranged on the side of the inner bucket body facing away from the interior of the storage box frame. When the inner bucket is in the closed position, a hand-locking space is formed between the top of the outer door and the storage box frame.
7. The storage box according to claim 6, characterized in that: The top edge of the outer door extends upward to form a handle portion, and a avoidance groove is provided on a surface of the storage box frame close to the outer door. The avoidance groove is arranged opposite to the handle portion so that when the inner bucket is in a closed position, the hand space is formed between the handle portion and the avoidance groove.
8. The storage box according to claim 6, characterized in that: A first clamping portion is provided on the inner bucket body, and a second clamping portion that matches and engages with the first clamping portion is provided on the outer door; and / or a first crimping portion is provided on the inner bucket body, and a second crimping portion that matches and engages with the first crimping portion is provided on the outer door.
9. The storage box according to any one of claims 1 to 5, characterized in that: The storage box frame is provided with a damping structure, the storage box frame is rotatably connected to the inner bucket via a rotating shaft, and the damping structure is connected to the rotating shaft.
10. A vehicle, characterized in that: The invention comprises a storage box according to any one of claims 1 to 9.