Storage device and vehicle
By employing a sliding rail and support surface structure within the storage box, combined with soft sliding parts and limiting surface design, the problem of wobbling during movement of the storage box is solved, achieving stable sliding of the storage box and improving the user experience.
Patent Information
- Application Number
- CN202520257657.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-18
AI Technical Summary
The storage box is prone to wobbling left and right and/or up and down when moved, which affects the user experience.
The system employs a slide rail and support surface structure. The slide rail is connected to the frame and located above the support surface, which supports the bottom of the slide rail. Combined with the design of soft sliding parts and limiting surfaces, it ensures the stable sliding of the storage box.
It effectively reduces slide rail deformation, improves the stability and movement stability of the storage box, and enhances the user experience.
Smart Images

Figure CN223735945U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of vehicles, in particular to a storage device and a vehicle. BACKGROUND
[0002] In the related art, a storage box is slidably connected to a framework through a side wall or a bottom wall to realize drawer-type movement of the storage box. However, in actual application, the storage box is prone to left-right and / or up-down shaking, and it is difficult to keep the storage box stably sliding during movement, which affects the use experience. CONTENT OF THE UTILITY MODEL
[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application provides a storage device to improve the stability of a storage box. The present application also provides a vehicle having the storage device.
[0004] In a first aspect, the storage device according to the embodiments of the present application includes a storage box, a framework, and a slide rail. The storage box includes oppositely arranged side walls and a connecting portion connected to the outer side of the side walls. The framework is provided with a receiving cavity and an opening communicating with the receiving cavity. The storage box is adapted to enter and exit the receiving cavity through the opening. The framework is provided with a support surface toward the inner side of each side wall. The slide rail is connected to the framework and located above the support surface. The support surface is used to support the bottom of the slide rail. The slide rail is arranged in the moving direction of the storage box. The connecting portion on each side wall is slidably connected to the corresponding slide rail.
[0005] The storage device according to the embodiments of the present application has at least the following beneficial effects. In application, the slide rail is arranged between the storage box and the framework and connected to the framework. The storage box can slide with the slide rail through the connecting portion to enter and exit the receiving cavity, realizing the drawer-type storage box. The support surface on the framework can be used to support the bottom of the slide rail, effectively reducing the deformation of the slide rail, thereby ensuring the stability of the slide rail and further ensuring the stability of the storage box, improving the stability of the movement of the storage box.
[0006] According to some embodiments of the present application, the slide rail is provided with a sliding groove toward one side of the side wall. The sliding groove is arranged in the moving direction of the storage box. The connecting portion on each side wall is slidably arranged in the sliding groove of the corresponding slide rail.
[0007] According to some embodiments of the present application, the storage box further includes a soft sliding member. The soft sliding member is connected to the connecting portion and slidably arranged in the sliding groove. The groove wall surface of the sliding groove includes a bottom surface located below the soft sliding member, a top surface located above the soft sliding member, and a side surface located away from the side wall of the soft sliding member. The bottom of the soft sliding member is in abutting arrangement with the bottom surface.
[0008] According to some embodiments of the present application, the storage device further comprises a soft sliding member connected to the connecting portion and slidingly arranged in the sliding groove, a wall surface of the sliding groove comprises a bottom surface below the soft sliding member, a top surface above the soft sliding member, and a side surface away from the side wall, a top portion of the soft sliding member has a gap with the top surface, and / or a side portion of the soft sliding member away from the side wall has a gap with the side surface.
[0009] According to some embodiments of the present application, the storage device further comprises a soft sliding member connected to the connecting portion and slidingly arranged in the sliding groove, the soft sliding member comprises a body portion and a protruding portion, the body portion is connected to the connecting portion, at least one of an upper side, a lower side, and an outer side away from the side wall of the body portion is connected to the protruding portion, and the protruding portion is configured as a soft structure.
[0010] According to some embodiments of the present application, the skeleton is provided with a mounting groove towards an inner side of each side wall, the sliding rail portion is located in the mounting groove, the sliding rail portion is located above the mounting groove, and the mounting groove is arranged in an extending manner along a moving direction of the storage box; wherein a wall surface of the mounting groove comprises a limiting surface located on each side of the sliding rail and the supporting surface located below the sliding rail.
[0011] According to some embodiments of the present application, one of the limiting surfaces in the mounting groove is a first limiting surface, the first limiting surface is located between the side wall and the corresponding sliding rail, the sliding rail is provided with a sliding groove towards one side of the side wall, the sliding groove is arranged in an extending manner along the moving direction of the storage box, the connecting portion on each side wall is slidingly arranged in the sliding groove of the corresponding sliding rail, and a wall surface of the sliding groove comprises a bottom surface located below the connecting portion.
[0012] An upper end of the first limiting surface has a height H1 relative to the supporting surface, a height of the bottom surface relative to the supporting surface is H2, and H1>H2.
[0013] According to some embodiments of the present application, a gap is provided between the first limiting surface and the sliding rail.
[0014] According to some embodiments of the present application, the storage device further comprises a bottom wall connected to a lower portion of the side wall, the skeleton further comprises a base located below the bottom wall, a supporting portion is provided between the bottom wall and the base, the supporting portion comprises a connecting end and an abutting end, one of the bottom wall and the base is connected to the connecting end, and the other is abutted with the abutting end.
[0015] Secondly, the vehicle in this application embodiment includes the storage device described in the first aspect, which can provide storage space for the vehicle and improve the stability of the storage box, thereby enhancing the user experience.
[0016] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of a storage device according to an embodiment of this application;
[0018] Figure 2 This is a partially exploded structural diagram of a storage device according to an embodiment of the application.
[0019] Figure 3 This is a cross-sectional schematic diagram of a storage device according to an embodiment of this application.
[0020] Figure 4 for Figure 3 A magnified view of part A in the diagram;
[0021] Figure 5 for Figure 4 A magnified view of section B in the diagram;
[0022] Figure 6 This is a cross-sectional schematic diagram of the slide rail in one embodiment of this application;
[0023] Figure 7 This is a side view of a flexible slider in one embodiment of this application.
[0024] Figure label:
[0025] Storage box 100; side wall 110; bottom wall 120; connecting part 130; soft sliding part 140; bottom 141; top 142; side 143; main body 144; protrusion 145;
[0026] Frame 200; mounting groove 210; first limiting surface 211; second limiting surface 212; support surface 213; gap 124; upper frame 201; lower frame 202; first limiting wall 203; second limiting wall 204; support wall 205; accommodating cavity 206; first connecting wall 220; second connecting wall 230;
[0027] Slide rail 300; slide groove 310; bottom surface 311; top surface 312; side surface 313;
[0028] Base 400; support part 410; abutment end 411. Detailed Implementation
[0029] The concept and the technical effects of the present application will be described clearly and completely in combination with the embodiments, so that the purpose, features and effects of the present application can be fully understood. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0030] In the description of the embodiments of the present application, if the orientation description such as "upper", "lower", "front", "rear", "left", "right" and the like is described, the orientation or position relationship shown in the drawings is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or the apparatus must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.
[0031] In the description of the embodiments of the present application, if a feature is referred to as "set", "fixed", "connected", "mounted" on another feature, it can be directly set, fixed, connected or mounted on the other feature, or indirectly set, fixed, connected or mounted on the other feature. In the description of the embodiments of the present application, if "several" is referred to, it means more than one, if "multiple" is referred to, it means more than two, and if "greater than", "less than", "exceeds" is referred to, it should be understood as not including the number itself, if "and above", "and below", "and within" are referred to, it should be understood as including the number itself. If "first", "second" is referred to, it should be understood as being used to distinguish technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0032] Referring to Figures 1 to 4 The present application provides a storage device, which comprises a framework 200, a storage box 100 and a sliding rail 300. The framework 200 is used for mounting and supporting the storage box 100. The framework 200 is provided with a receiving cavity 206 and an opening communicating with the receiving cavity 206. The storage box 100 is movably arranged in the receiving cavity 206, so as to be able to enter and exit the receiving cavity 206 through the opening of the receiving cavity 206. The sliding rail 300 is connected to the framework 200 and arranged between the storage box 100 and the framework 200. The storage box 100 is movably connected with the sliding rail 300 to realize movement relative to the framework 200, thereby forming a drawer type structure. The drawer type structure is convenient for drawing out the storage box 100 to take and place articles when in use, and the storage box 100 can be pushed into the receiving cavity 206 to realize storage of the articles when not in use.
[0033] The storage device is suitable for being mounted on a vehicle to provide a storage space for the vehicle and meet the storage demand in the vehicle. One or more storage devices can be arranged on the vehicle, and the storage device can be arranged at a suitable position in the vehicle, for example, a position in front of a front passenger seat, a position between front and rear seats, a position below each seat, and the like. The framework 200 can be a part of a vehicle body structure or a separate part assembled on the vehicle body structure by a common connection method.
[0034] In the storage device, the storage box 100 includes opposite side walls 110 and a connecting portion 130 connected to one side of the side walls 110. The framework 200 is provided with a support surface 213 facing the inner side of each side wall 110. The framework 200 and each side wall 110 are respectively provided with a slide rail 300 connected to the framework 200 and located above the support surface 213. The support surface 213 is used to support the bottom of the slide rail 300. The connecting portion 130 on each side wall 110 is slidably connected to the corresponding slide rail 300. Thus, the storage box 100 is moved relative to the framework 200 by the sliding connection between the connecting portion 130 of the side wall 110 and the slide rail 300, so as to access the accommodating cavity 206.
[0035] In application, the support surface 213 on the framework 200 can be used to support the bottom of the slide rail 300, which can effectively reduce the deformation of the slide rail and ensure the stability of the slide rail. The support surface 213 can be kept abutting against the bottom of the slide rail 300 according to the need, so as to keep the support force on the slide rail 300. Alternatively, the support surface 213 has a gap with the bottom of the slide rail 300. When the slide rail 300 is deformed downward under pressure, the bottom of the slide rail 300 can abut against the support surface 213. The support surface 213 provides effective support for the slide rail 300, which can effectively reduce the deformation of the slide rail 300 and assist to improve the load bearing capacity of the slide rail 300, so as to ensure the stability of the slide rail 300 and further ensure the stability of the storage box and improve the stability of the movement of the storage box.
[0036] The slide rail 300 of the embodiment of the present application can be a metal slide rail 300, which can be fixedly connected with the framework 200 through screws, studs or other connectors. The metal slide rail 300 can have strong strength, improve the load-bearing capacity and reduce the deformation of the slide rail 300. Alternatively, the slide rail 300 can be a non-metal slide rail 300, for example, the slide rail 300 can be a POM (polyoxymethylene), PA (polyamide) or PC (polycarbonate) plastic material slide rail 300, which can be fixedly connected with the framework 200 through screws, studs, glue nails or other connectors. The non-metal slide rail 300 can effectively reduce the self-weight of the slide rail 300, which is conducive to the light weight of the storage device and the vehicle. It can be understood that the storage box 100 usually has a bottom wall 120 for carrying articles when in use. The side wall 110 of the storage box 100 is erected above the bottom wall 120 of the storage box 100 and is oppositely arranged in the horizontal direction. The side wall 110 and the bottom wall 120 cooperatively form a storage cavity which is open upward. Therefore, the articles can be conveniently taken out after the storage box 100 is removed from the accommodating cavity 206 of the framework 200.
[0037] As an example, when mounted on a vehicle, the side wall 110 of the storage box 100 can be arranged in the left-right direction, and the mounting groove 210 of the slide rail 300 and the framework 200 can be arranged in the front-rear direction, so that the storage box 100 can move in the front-rear direction; or the side wall 110 of the storage box 100 can be arranged in the front-rear direction, and the mounting groove 210 of the slide rail 300 and the framework 200 can be arranged in the left-right direction, so that the storage box 100 can move in the left-right direction.
[0038] Wherein, the up, down, front, back, left and right directions can refer to the directions of the vehicle body in the vehicle O-XYZ coordinate system, the origin O coincides with the center of mass of the vehicle, the front end means that the X direction is parallel to the ground and points forward, the rear end means that the X direction is parallel to the ground and points backward, the left side means that the Y direction is parallel to the ground and points to the left side of the driver, the right side means that the Y direction is parallel to the ground and points to the right side of the driver, the upper end means that the Z direction points upward through the O point, and the lower end means that the Z direction points downward through the O point.
[0039] In some embodiments, referring to Figures 4 to 6The slide rail 300 is provided with a slide groove 310 on one side of the side wall 110, the slide groove 310 extends along the moving direction of the storage box 100, and the connecting part 130 on each side wall 110 is slidingly arranged in the slide groove 310 of the corresponding slide rail 300. The groove wall surface of the slide groove 310 can include a bottom surface 311, a top surface 312 and a side surface 313, the bottom surface 311 is located below the connecting part 130, the top surface 312 is located above the connecting part 130, and the side surface 313 is located on the side of the connecting part 130 away from the side wall 110. The bottom surface 311 of the slide groove 310 supports the connecting part 130, the top surface 312 of the slide groove 310 can limit the upward movement range of the connecting part 130, and the side surface 313 of the slide groove 310 can limit the movement range of the connecting part 130 away from the side wall 110. Therefore, the slide groove 310 of the slide rail 300 plays a guiding role in the sliding direction of the connecting part 130, and the groove wall surface of the slide groove 310 can also limit the connecting part 130.
[0040] The connecting part 130 of the storage box 100 can extend into the slide groove 310 and abut against the bottom surface 311 of the slide groove 310. The connecting part 130 can slide on the bottom surface 311 of the slide groove 310, or the storage box 100 can further include a sliding piece. The connecting part 130 can be connected with the sliding piece, the sliding piece is arranged in the slide groove 310 and slidingly abuts against the bottom surface 311 of the slide groove 310, or the sliding piece is rotatably connected to the connecting part 130 and rollingly abuts against the bottom surface 311 of the slide groove 310. The groove wall surface of the slide groove 310 can also limit the sliding piece.
[0041] In some embodiments, referring to Figures 4 to 6 The sliding piece can be a soft sliding piece 140, the soft sliding piece 140 is connected to the connecting part 130 and slidingly arranged in the slide groove 310. The bottom surface 311 of the slide groove 310 is located below the soft sliding piece 140, the top surface 312 of the slide groove 310 is located above the soft sliding piece 140, the side surface 313 of the slide groove 310 is located on the side of the soft sliding piece 140 away from the side wall 110 of the storage box 100, and the bottom 141 of the soft sliding piece 140 abuts against the bottom surface 311 of the slide groove 310. The bottom 141 or the whole of the soft sliding piece 140 is configured as a soft structure, for example, the bottom 141 or the whole of the soft sliding piece 140 is made of soft material, or the surface of the bottom 141 or the whole outer surface of the soft sliding piece 140 is coated with a soft structure layer made of soft material. The soft material can be silica gel, rubber or TPU (thermoplastic polyurethane elastomer), etc. By abutting the bottom 141 of the soft sliding piece 140 against the bottom surface 311 of the slide groove 310, interference fit is achieved, a certain damping feeling can be achieved when the storage box 100 slides, the operation experience of pulling the storage box 100 is improved, and the storage box 100 is also beneficial to keep the position when being opened or half-opened, which is convenient for taking and placing articles.
[0042] In some embodiments, the top portion 142 of the soft slide 140 can also abut against the top surface 312 of the slide groove 310 or have a gap with the top surface 312 as needed. For example, when it is needed to strengthen the damping feeling, the top portion 142 of the soft slide 140 abuts against the top surface 312 of the slide groove 310 to increase the friction, while avoiding the up-and-down shaking of the soft slide 140 and the slide groove 310, thereby avoiding the up-and-down shaking of the storage box relative to the slide rail 300. When it is needed to weaken the damping feeling, the top portion 142 of the soft slide 140 has a gap with the top surface 312 of the slide groove 310, which can reduce the friction, and when the load of the storage box 100 increases, the smooth sliding of the storage box 100 can be ensured.
[0043] The gap width D1 between the top surface 312 of the slide groove 310 and the soft slide 140 can be in the range of 0.2mm to 0.4mm, for example, can be 0.2mm, 0.3mm, 0.4mm or any other value in the range of 0.2mm to 0.4mm. Thus, the top surface 312 of the slide groove 310 can limit the movement of the soft slide 140 within this range, which can ensure the smooth sliding of the storage box 100 and effectively reduce the shaking amplitude.
[0044] In some embodiments, the side portion 143 of the soft slide 140 away from the side wall 110 can also abut against the side surface 313 of the slide groove 310 or have a gap with the side surface 313 of the slide groove 310 as needed. For example, when it is needed to strengthen the damping feeling, the side portion 143 of the soft slide 140 abuts against the side surface 313 of the slide groove 310 to increase the friction, while avoiding the shaking of the soft slide 140 and the slide groove 310 in the direction away from the storage box 100, thereby avoiding the shaking of the storage box 100 in the arrangement direction (for example, the left-right direction) of the side wall 110 by the soft slides 140 on both sides of the storage box 100. When it is needed to weaken the damping feeling, the side portion 143 of the soft slide 140 has a gap with the side surface 313 of the slide groove 310, which can reduce the friction, and when the load of the storage box 100 increases, the smooth sliding of the storage box 100 can be ensured.
[0045] The gap width D2 between the side surface 313 of the slide groove 310 and the side portion 143 of the soft slide 140 can be in the range of 0.8mm to 1.2mm, for example, can be 0.8mm, 0.9mm, 1mm, 1.1mm, 1.2mm or any other value in the range of 0.8mm to 1.2mm. Thus, the top surface 312 of the slide groove 310 can limit the movement of the soft slide 140 within this range, which can ensure the smooth sliding of the storage box 100 and effectively reduce the shaking amplitude.
[0046] In some embodiments, the bottom 141 of the soft sliding piece 140 can be a planar structure, abutting against the bottom surface 311 of the sliding groove 310 to achieve surface contact, having a large contact area, which can improve the stability of the abutment between the soft sliding piece 140 and the sliding groove 310.
[0047] In some embodiments, referring to Figures 5 to 7 , the soft sliding piece 140 can include a body portion 144 and a protruding portion 145, the body portion 144 being connected to the connecting portion 130, and the protruding portion 145 being connected to at least one of the upper side, the lower side, and the outer side away from the side wall 110 of the body portion 144, the protruding portion 145 being a circular, cylindrical, or square protruding structure, and when at least one of the upper side, the lower side, and the outer side away from the side wall 110 of the body portion 144 abuts against the groove wall surface of the sliding groove 310 through the protruding portion 145, there is a gap between the body portion 144 and the groove wall surface of the sliding groove 310, which can reduce the contact area between the soft sliding piece 140 and the groove wall surface of the sliding groove 310, and avoid excessive friction affecting the smoothness of sliding.
[0048] The protruding portion 145 is configured as a soft structure, and the body portion 144 can be a rigid structure, the protruding portion 145 being connected to the body portion 144 by gluing, bonding, or the like, or the body portion 144 can also be configured as a soft structure, and the protruding portion 145 being connected to the body portion 144 by gluing, bonding, or the like, or being formed as an integral structure with the body portion 144. The protruding portion 145 can reduce the contact area between the soft sliding piece 140 and the groove wall surface of the sliding groove 310, and avoid the mobile jam caused by excessive friction when the storage box 100 bears an increased load. For example, in the scheme in which the protruding portion 145 abuts against the bottom surface 311 of the sliding groove 310, the protruding portion 145 abutting against the bottom surface 311 can achieve a certain damping feel, and when the storage box 100 bears an increased load, the protruding portion 145 can be further compressed, the gap between the body portion 144 and the bottom surface 311 being maintained, so that the friction is not excessively increased, the smoothness of sliding is ensured, and the use scenario in which the storage box 100 bears a large load is particularly suitable.
[0049] In some embodiments, referring to Figure 2 , at least three soft sliding pieces 140 are arranged in each sliding groove 310, and the soft sliding pieces 140 are arranged at intervals along the extension direction of the sliding groove 310. During the process of the storage box 100 entering and exiting the accommodating cavity 206 through the opening, at least two soft sliding pieces 140 are arranged in each sliding groove 310. For example, when the storage box 100 moves to the maximum stroke from the opening of the framework 200 to the outside of the accommodating cavity 206, the rear end of the storage box 100 is still located in the accommodating cavity 206, and the side wall 110 at the rear end of the storage box 100 is still connected to two spaced soft sliding pieces 140 through the connecting portion 130, which can ensure the connection stability of the rear end of the storage box 100 and the sliding rail 300, thereby effectively supporting the storage box 100 and ensuring the stability of the storage box 100.
[0050] In some embodiments, the skeleton 200 is provided with a mounting groove 210 on the inner side of each side wall 110, the slide rail 300 and the mounting groove 210 extend along the moving direction of the storage box 100, the slide rail 300 is partially located in the mounting groove 210 and partially located above the mounting groove 210, and is in sliding connection with the connecting part 130 on the side wall 110 of the corresponding storage box 100. For example, the slide rail 300 has an upper part and a lower part in the up-down direction, the lower part of the slide rail 300 is located in the mounting groove 210, and the upper part of the slide rail 300 is located above the mounting groove 210 and thus exposed outside the mounting groove 210, and the upper part of the slide rail 300 can be provided with the aforementioned slide groove 310 toward one side of the side wall 110, and the connecting part 130 on the side wall 110 is in sliding connection with the slide groove 310. Among them, the groove wall surface of the mounting groove 210 includes a limiting surface located on both sides of the slide rail 300 and a supporting surface 213 located below the slide rail 300, the supporting surface 213 supports the bottom of the slide rail 300, and in application, the storage box 100 can be in sliding connection with the slide rail 300 through the connecting part 130, so as to be able to enter and exit the containing cavity 206, the limiting surface of the mounting groove 210 can limit the position of the slide rail 300 on both sides of the slide rail 300, thereby reducing the shaking, and the supporting surface 213 of the mounting groove 210 can effectively support the bottom of the slide rail 300, thereby ensuring the supporting force and position stability of the slide rail 300, and further ensuring the stability of the storage box 100 and improving the stability of the movement of the storage box 100.
[0051] Referring to Figure 5 , among the groove wall surface of the mounting groove 210, the limiting surfaces located on both sides of the slide rail 300 can be defined as a first limiting surface 211 and a second limiting surface 212, respectively, wherein the first limiting surface 211 is located between the side wall 110 and the lower part of the corresponding slide rail 300, and the second limiting surface 212 is located on the side of the slide rail 300 away from the first limiting surface 211. The height of the upper end edge of the first limiting surface 211 relative to the supporting surface 213 is H1, the height of the bottom surface 311 of the slide groove 310 of the upper part of the slide rail 300 relative to the supporting surface 213 is H2, and H1>H2, that is, the upper end edge of the first limiting surface 211 is higher than the bottom surface 311 of the slide groove 310, and can shield the bottom surface 311 on the side of the slide groove 310 toward the side wall 110 of the storage box 100, and in the case that there is grease on the bottom surface 311 of the slide groove 310, the first limiting surface 211 can shield the grease, effectively preventing the grease in the slide groove 310 from flowing to the containing cavity 206.
[0052] In an example, the difference between H1 and H2 is in the range of 0.8mm to 1.2mm, that is, the upper end edge of the first limiting surface 211 is higher than the bottom surface 311 of the sliding groove 310 by 0.8mm to 1.2mm, for example, can be 0.8mm, 0.9mm, 1mm, 1.1mm, 1.2mm or any other value in the range of 0.8mm to 1.2mm, which can ensure that the first limiting surface 211 can effectively block the grease, and at the same time ensure that there is enough space between the upper end edge of the first limiting surface 211 and the connecting part 130 of the storage box 100 to avoid interference.
[0053] The gap 124 between the first limiting surface 211 and the sliding rail 300 can be provided, so that the grease blocked by the first limiting surface 211 can flow into the mounting groove 210 through the gap 124, realizing the collection of the grease and avoiding the problem of the grease in the sliding groove 310 flowing to the accommodation cavity 206 to cause the leakage of the grease. Therefore, when the sliding rail 300 is smeared with lubricating grease, the excess grease can flow into the mounting groove 210 below from the gap 124 between the first limiting surface 211 and the sliding rail 300 during sliding, so that the excess lubricating grease is collected in the mounting groove 210 without leakage, which helps to keep the storage device clean and avoid the problem of appearance caused by the grease flowing to the external surface of the framework 200.
[0054] In some embodiments, referring to Figure 3 The storage box 100 further includes a bottom wall 120 connected to the lower part of the side wall 110, and the framework 200 further includes a base 400 located below the bottom wall 120, and a support part 410 is provided between the bottom wall 120 and the base 400, which can provide support for the storage box 100 below, effectively reducing the pressure on the sliding rail 300 and effectively ensuring smooth sliding of the storage box 100. Especially after the increase of the items inside the storage box 100, the load bearing of the storage box 100 increases, and the support of the support part 410 to the bottom wall 120 of the storage box 100 can effectively prevent the problem of jam caused by the increase of the pressure on the sliding rail 300.
[0055] The bottom wall 120 of the storage box 100 is effectively supported by the support part 410, which meets the support force of the storage box 100, so that the strength requirement of the sliding rail 300 can be reduced, thereby the non-metallic sliding rail 300 can effectively meet the strength requirement, effectively solving the problem of the storage box 100 shaking and the storage box 100 sliding unstably caused by the insufficient load bearing of the non-metallic guide rail and the deformation of the guide rail in related other technologies.
[0056] The support part 410 can be arranged between the bottom wall 120 and the base 400, or at least two support parts 410 can be arranged at intervals along the arrangement direction of the side wall 110. Increasing the number of support parts 410 can improve the support force on the bottom wall 120. Arranging the support parts 410 at intervals along the arrangement direction (e.g., left and right square) of the side wall 110 can improve the stability of the support part supporting the bottom wall 120.
[0057] Specifically, the support part 410 can include a connecting end and an abutting end 411. One of the bottom wall 120 and the base 400 is connected to the connecting end, and the other is abutted against the abutting end 411. For example, the connecting end is connected to the bottom wall 120, and the abutting end 411 is abutted against the base 400. During movement of the storage box 100, the support part 410 moves with the storage box 100, and the abutting end 411 slides on the surface of the base 400 while maintaining abutment support. Alternatively, the connecting end is connected to the base 400, and the abutting end 411 is abutted against the bottom wall 120. During movement of the storage box 100, the bottom wall 120 of the storage box 100 moves relative to the support part 410, and the abutting end 411 slides on the surface of the bottom wall 120 while maintaining abutment support.
[0058] In some embodiments, the abutting end 411 has an arc-shaped abutting surface. The arc-shaped abutting surface can reduce the abutting area, thereby reducing the friction force and facilitating stable sliding of the storage box 100. The outer surface of the abutting end 411 can be attached with a wear-resistant layer, which can reduce wear of the abutting end 411.
[0059] Referring to Figure 3 and Figure 4 In some examples, the framework 200 can include an upper framework 201 and a lower framework 202. The upper framework 201 has oppositely arranged first connecting walls 220. The lower framework 202 is located inside the two first connecting walls 220 and includes two oppositely arranged second connecting walls 230 and a base 400 connected between the second connecting walls 230. The first connecting walls 220 and the second connecting walls 230 jointly form a receiving cavity 206. The upper part of the slide rail 300 is fixedly connected or detachably connected to the first connecting walls 220. The second connecting walls 230 include first limiting walls 203 and second limiting walls 204 arranged at intervals along the arrangement direction of the side wall 110 of the storage box 100, and a support wall 205 connected to the first limiting walls 203 and the second limiting walls 204. The first limiting walls 203, the second limiting walls 204, and the support wall 205 jointly form a mounting groove 210. The surfaces of the first limiting walls 203 and the second limiting walls 204 facing each other are limiting surfaces respectively located on both sides of the slide rail 300. The upper surface of the support wall 205 is a support surface 213 abutting against the bottom of the slide rail 300.
[0060] The vehicle of the embodiments of the present application comprises the storage device of the first aspect, and the vehicle can be a private car, such as a sedan, an SUV, an MPV or a pickup truck, etc. The vehicle can also be an operating vehicle, such as a van, a bus, a small truck or a large trailer, etc. The vehicle can be a gasoline vehicle or a new energy vehicle. When the vehicle is a new energy vehicle, it can be a hybrid vehicle or a pure electric vehicle. The storage device can provide a storage space for the vehicle and improve the stability of the storage box 100, which is conducive to improving the use experience.
[0061] The embodiments of the present application are described in detail above in combination with the drawings, but the present application is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present application. In addition, the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
Claims
1. A storage device, characterized by The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box.
2. The storage device of claim 1, wherein, The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box.
3. The storage device of claim 2, wherein, The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box.
4. The storage device of claim 2, wherein, The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box.
5. The storage device of claim 2, wherein, The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box.
6. The storage device of claim 1, wherein, The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box.
7. The storage device of claim 6, wherein, The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility model relates to a storage box and a skeleton thereof, and belongs to the field of storage box. The utility 8. The storage device of claim 7, wherein, The first limiting surface and the slide rail have a gap therebetween.
9. The storage device of claim 1, wherein, The storage box further comprises a bottom wall connected to a lower portion of the side wall, and the framework further comprises a base located below the bottom wall, and a support portion is provided between the bottom wall and the base, the support portion comprising a connecting end and an abutting end, one of the bottom wall and the base being connected to the connecting end, and the other being in abutment with the abutting end.
10. Vehicle, characterized in that A storage device comprising any one of claims 1 to 9.