Storage device and vehicle

By incorporating locking devices and limiting platforms within the storage unit, the problem of the storage unit automatically sliding out during vehicle movement is solved, enabling controllable movement and convenient operation of the unit, thus enhancing the user experience.

CN224130978UActive Publication Date: 2026-04-17GUANGZHOU AUTOMOBILE GROUP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU AUTOMOBILE GROUP CO LTD
Filing Date
2025-04-30
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Storage compartments can easily slide out or close automatically while the car is in motion, affecting the user experience.

Method used

A locking device and a limiting platform are installed between the main body of the storage device and the box. The position of the box is restricted by the cooperation of the slot and the limiting platform, and the restriction is released by the deformation of the locking device, so as to realize the controllable movement of the box.

Benefits of technology

It improves the ease of use and operation of the storage device, prevents the box from moving accidentally during opening or closing, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a storage device and a vehicle. The storage device comprises a storage device body, a box body and a locking piece. The storage device body is provided with a containing cavity, and the box body is movably connected to the containing cavity. The locking piece is arranged on the box body, a clamping groove is formed in the locking piece, and a limiting table is arranged in the storage device body. According to the storage device, the locking piece with the clamping groove is arranged on the box body, the limiting table is arranged in the storage device body, when the storage device needs to be in the open state, the box body is moved to the preset position in the opening direction, at the moment, the limiting table is connected with the clamping groove in a clamped mode, and the relative position of the storage device body and the box body is limited; the storage device is prevented from moving to influence use; when the storage device needs to be in the storage state, the box body is moved in the closing direction at the preset position, at least part of the locking piece deforms to enable the clamping groove to be separated from the limiting table, the limiting effect of the box body and the storage device body is relieved, the box body is stored in the containing cavity, and the storage device is simple in structure and convenient to operate.
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Description

Technical Field

[0001] This application relates to the field of storage device technology, and more particularly to a storage device and a vehicle. Background Technology

[0002] With the development of the automotive industry, there are more and more accessories inside cars, and storage devices are a common accessory inside cars. Users have increasingly higher requirements for the use of storage devices.

[0003] The storage device in the related technology consists of a storage device body and a box. The box can move relative to the storage device body so that the user can pull out or close the box.

[0004] However, during vehicle operation, the storage compartments in these technologies can easily slide out or close automatically, causing inconvenience for users. Utility Model Content

[0005] This application provides a storage device and a vehicle, aiming to improve the problem that the storage device's box can easily slide out or close automatically in related technologies.

[0006] In a first aspect, embodiments of this application provide a storage device, comprising: a storage device body, a housing, and a locking element;

[0007] The storage device body has a receiving cavity, and the box body is movably connected to the receiving cavity; the locking member is provided on the box body, the locking member has a slot, and the storage device body has a limiting platform;

[0008] The box body can move relative to the storage device body in an opening or closing direction to put the storage device in an open or closed state. When the box body moves to a preset position in the opening direction, the limiting platform engages in the slot to restrict the relative position of the storage device body and the box body. When the box body moves in the closing direction at the preset position, at least a portion of the locking member can deform to disengage the slot from the limiting platform.

[0009] By incorporating a locking mechanism with a slot on the box and a limiting platform within the storage unit, the box can move relative to the storage unit in either an opening or closing direction. When the user needs to open the storage unit, they simply move the box to a preset position in the opening direction. At this point, the limiting platform engages with the slot, restricting the relative position between the storage unit and the box. This prevents the storage unit from continuing to move in either direction and affecting the user's use, providing convenience and improving the user experience. When the user needs to close the storage unit, they simply move the box in the closing direction from the preset position. At this point, at least a portion of the locking mechanism deforms, causing the slot to disengage from the limiting platform, thus releasing the restriction between the box and the storage unit. This allows the box to be stored within the storage unit's cavity. This design is not only simple but also easy for the user to operate.

[0010] Optionally, when an external force is applied to the locking member at the preset position to deform it and disengage it from the limiting platform, the box body can continue to move along the opening direction to separate the box body from the storage device body.

[0011] When it is necessary to detach the box from the storage device, the deformation of the locking element causes the limiting platform to disengage from the locking element's slot, thereby releasing the restriction between the slot and the limiting platform. The box can then continue to move in the opening direction, allowing the user to pull the box out of the receiving cavity and separate it from the storage device. This provides convenience for the user to disassemble the box.

[0012] Optionally, the storage device further includes a first guide rail and a second guide rail, the first guide rail being connected to the storage device body and the second guide rail being connected to the box body, the first guide rail being slidably connected to the second guide rail; the locking member is provided on the side of the second guide rail facing the first guide rail, the locking member being fixedly connected to the second guide rail, and the limiting platform is provided on the side of the first guide rail facing the second guide rail.

[0013] By setting a first guide rail and a second guide rail, the first guide rail is connected to the main body of the storage device, and the second guide rail is connected to the box. The first guide rail and the second guide rail are slidably connected. In this way, when the box is opened or closed, the box can move along the fixed path of the first guide rail and the second guide rail, avoiding the box from shifting or getting stuck during the movement, thereby improving the user experience.

[0014] Optionally, the locking member includes a connecting section, a deformable section, and a limiting section. The connecting section is connected to the housing, the deformable section is connected between the connecting section and the limiting section, the slot is provided in the limiting section, and at least one outer wall of the deformable section has an opening so that the locking member can deform at the deformable section.

[0015] By setting an opening at the deformable section of the locking component, the strength at the opening is low. When the locking component is subjected to a pushing force, the opening of the deformable section is prone to deformation, which in turn causes the slot of the limiting section to disengage from the limiting platform, thereby allowing the box to continue to move in the opening or closing direction.

[0016] Optionally, the locking member further includes an extension section, one end of which is connected to the limiting section, and the other end of which extends along the opening direction toward the end away from the limiting section.

[0017] By setting an extension section and connecting it to the limiting section, the user can push the extension section to deform the deformable section, thereby disengaging the slot of the limiting section from the limiting platform and releasing the limiting effect of the locking element and the limiting platform. The extension section facilitates user operation.

[0018] Optionally, the opening is recessed from the edge of the locking member toward the interior of the locking member to form a bottom wall, the bottom wall being an arc surface.

[0019] By setting the bottom wall of the opening in the locking component as an arc surface, when the locking component is pushed with a large force to deform the opening of the deformable section, the arc surface can reduce stress concentration at the opening of the locking component, thereby reducing the risk of tearing of the opening and thus helping to extend the service life of the locking component.

[0020] Optionally, the slot includes a slot wall and a slot bottom, with one side of the slot wall connected to the slot bottom;

[0021] The plane containing the tank wall is set at an obtuse angle to the plane containing the tank bottom;

[0022] And / or, the extension segment has a first end face at one end facing the limiting segment, one side of the first end face is connected to the side of the groove wall away from the bottom of the groove, the other side of the first end face extends in a direction away from the groove wall, and the plane where the first end face is located is set at a V-shaped angle with the plane where the groove wall is located.

[0023] By setting the plane where the groove wall is located at an obtuse angle to the plane where the groove bottom is located, the groove wall can act as a guide when the box is pushed in the closing direction. The user can use less force to release the limiting platform from the slot, thereby storing the box in the receiving cavity, which is convenient for the user to operate.

[0024] By setting the plane where the first end face is located at a V-shaped angle with the plane where the groove wall is located, the first end face can act as a guide when the box is pulled in the opening direction, making it easier for the limiting platform to be inserted into the slot.

[0025] Optionally, the storage device further includes a third guide rail and a ball bearing. The third guide rail is disposed between the first guide rail and the second guide rail. The third guide rail has a fixing part with a through hole. The ball bearing is disposed in the through hole and can roll relative to the fixing part.

[0026] The first guide rail is provided with a first sliding part, and the second guide rail is provided with a second sliding part. The first sliding part and the second sliding part are slidably connected, and the first sliding part and the second sliding part form a receiving cavity. The fixed part extends into the receiving cavity, and the ball is at least partially exposed outside the through hole and contacts the first sliding part and the second sliding part respectively.

[0027] By setting a third guide rail and a ball bearing between the first and second guide rails, and setting a fixing part with a through hole on the third guide rail, and placing the ball bearing in the through hole so that it can roll relative to the fixing part, the sliding friction between the first and second guide rails can be converted into rolling friction, thereby significantly reducing frictional resistance and making the pulling process of the box more effortless and smooth, thus improving the user experience.

[0028] Optionally, the storage device further includes a buffer layer, which at least partially covers the outer peripheral surface of the limiting platform.

[0029] By covering the outer periphery of the limiting platform with a buffer layer, when the box is pushed or pulled to move it in the opening or closing direction, not only can a rigid collision between the locking mechanism's slot and the limiting platform be avoided, thus preventing damage to the locking mechanism or the limiting platform and extending the service life of the storage device, but the noise generated when the slot collides with the limiting platform can also be reduced, thereby improving the user experience.

[0030] Secondly, embodiments of this application provide a vehicle including a vehicle body and a storage device as described in any of the above claims, the storage device being disposed on the vehicle body. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the structure of a storage device according to an embodiment of this application;

[0032] Figure 2 This is a partial exploded view of a storage device according to an embodiment of this application;

[0033] Figure 3This is a schematic diagram of the assembled structure of the first guide rail, the second guide rail, and the third guide rail according to an embodiment of this application.

[0034] Figure 4 This is a cross-sectional view of the first guide rail, the second guide rail, and the third guide rail assembled according to an embodiment of this application;

[0035] Figure 5 This is a partial enlarged view of a storage device according to an embodiment of this application.

[0036] Explanation of reference numerals in the attached figures:

[0037] 10: Storage device body; 11: Receiving cavity; 12: Limiting platform; 20: Box body; 30: Locking element; 31: Connecting section; 32: Deformation section; 321: Opening; 3211: Bottom wall; 33: Limiting section; 331: Slot; 3311: Slot wall; 3312: Slot bottom; 34: Extension section; 341: First end face; 40: First guide rail; 41: First sliding part; 50: Second guide rail; 51: Second sliding part; 52: Receiving cavity; 60: Third guide rail; 61: Fixing part; 611: Through hole; 70: Ball bearing; 80: Buffer layer; 90: Connecting element; X: Opening direction; Y: Closing direction. Detailed Implementation

[0038] To make the technical problems, technical solutions, and beneficial effects solved by this application clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.

[0039] Storage devices are among the most common functional components in vehicle interiors. With the rapid development of the automotive industry, users have increasingly higher demands for storage devices. A storage device consists of the main body and a compartment. The compartment can move relative to the main body, allowing users to pull it out or push it into the main body. However, when the vehicle is in motion, if the user pulls the compartment out to retrieve or place items, the compartment may automatically close or continue to slide out, causing inconvenience and affecting the user experience.

[0040] like Figure 1 , Figure 2 and Figure 5As shown in the embodiment of this application, a storage device includes: a storage device body 10, a box 20, and a locking member 30; the storage device body 10 has a receiving cavity 11, and the box 20 is movably connected to the receiving cavity 11; the locking member 30 is disposed on the box 20, and the locking member 30 has a slot 331; the storage device body 10 has a limiting platform 12; the box 20 can move relative to the storage device body 10 along the opening direction X or the closing direction Y, so that the storage device is in an open state or a stored state; when the box 20 moves along the opening direction X to a preset position, the limiting platform 12 engages in the slot 331 to limit the relative position of the storage device body 10 and the box 20; when the box 20 moves along the closing direction Y at the preset position, at least a portion of the locking member 30 can deform to disengage the slot 331 from the limiting platform 12.

[0041] In the embodiments of this application, by providing a locking member 30 with a slot 331 on the box body 20 and a limiting platform 12 in the storage device body 10, the box body 20 can move relative to the storage device body 10 in the opening direction X or the closing direction Y. When the user needs to open the storage device, they only need to move the box body 20 to a preset position in the opening direction X. At this time, the limiting platform 12 can engage with the slot 331 to restrict the relative position of the storage device body 10 and the box body 20, thereby preventing the storage device from moving in the opening direction X. The X or closing direction Y movement does not affect the user's use, which provides convenience and improves the user experience. When the user needs to put the storage device in the storage state, he / she only needs to move the box 20 in the closing direction Y at the preset position. At this time, at least part of the locking member 30 can deform to disengage the slot 331 from the limiting platform 12, thereby releasing the restriction between the box 20 and the storage device body 10, so that the box 20 is stored in the storage cavity 11 of the storage device. This is not only simple in structure, but also easy for the user to operate.

[0042] It should be noted that the preset position is the position where the box 20 can be opened to its maximum relative to the storage device body 10. The specific position of the preset position can be flexibly set according to the user's actual needs.

[0043] In some embodiments, when an external force is applied to the locking member 30 at a preset position to deform it and disengage it from the limiting platform 12, the box body 20 can continue to move along the opening direction X to separate the box body 20 from the storage device body 10.

[0044] In this embodiment, when it is necessary to detach the box 20 from the storage device body 10, the user can apply external force to the locking member 30 to deform the locking member 30. The deformation of the locking member 30 causes the limiting platform 12 to disengage from the slot 331 of the locking member 30, thereby releasing the restriction between the slot 331 and the limiting platform 12. Then the box 20 can continue to move in the opening direction X. In this way, the user can pull the box 20 out of the receiving cavity 11, thereby separating the box 20 from the storage device body 10. This provides convenience for the user to disassemble the box 20.

[0045] In some embodiments, such as Figure 2 As shown, the storage device also includes a first guide rail 40 and a second guide rail 50. The first guide rail 40 is connected to the storage device body 10, and the second guide rail 50 is connected to the box body 20. The first guide rail 40 is slidably connected to the second guide rail 50. A locking member 30 is provided on the side of the second guide rail 50 facing the first guide rail 40. The locking member 30 is fixedly connected to the second guide rail 50. A limiting platform 12 is provided on the side of the first guide rail 40 facing the second guide rail 50.

[0046] In this embodiment, by setting a first guide rail 40 and a second guide rail 50, the first guide rail 40 is connected to the storage device body 10, and the second guide rail 50 is connected to the box body 20. The first guide rail 40 and the second guide rail 50 are slidably connected. In this way, when the box body 20 is opened or closed, the box body 20 can move along the fixed path where the first guide rail 40 and the second guide rail 50 are located, avoiding the box body 20 from shifting or getting stuck during the movement, thereby improving the user experience.

[0047] In some embodiments, the connection between the first guide rail 40 and the storage device body 10, and between the second guide rail 50 and the box body 20, can be detachable. When a detachable connection is selected, the storage device further includes multiple connectors 90. A first mounting hole is provided on the first guide rail 40, through which the connectors 90 pass to connect with the storage device body 10; simultaneously, a second mounting hole is provided on the second guide rail 50, through which the connectors 90 pass to connect with the box body 20. The second guide rail 50 is slidably connected to the first guide rail 40. The detachable connection facilitates subsequent disassembly and maintenance. For example, the connectors 90 can be screws, bolts, etc., and the specific type of connector 90 can be flexibly selected according to actual needs; this application embodiment does not limit its application.

[0048] In some embodiments, the connection between the first guide rail 40 and the storage device body 10, and between the second guide rail 50 and the box body 20, can be a fixed connection. When choosing a fixed connection method, adhesive can be applied to the first guide rail 40 or the storage device body 10, and the second guide rail 50 or the box body 20. The adhesive is used to connect and fix the first guide rail 40 to the storage device body 10, the second guide rail 50, and the box body 20. Connecting with adhesive is simple and easy to operate.

[0049] Of course, the connection method between the first guide rail 40 and the storage device body 10, and between the second guide rail 50 and the box 20, can be flexibly selected according to actual process requirements, and the embodiments of this application do not limit it.

[0050] Optionally, such as Figure 5 As shown, the locking member 30 includes a connecting section 31, a deformable section 32, and a limiting section 33. The connecting section 31 is connected to the housing 20. The deformable section 32 is connected between the connecting section 31 and the limiting section 33. A slot 331 is provided on the limiting section 33. At least one outer wall of the deformable section 32 is provided with an opening 321 so that the locking member 30 can deform at the deformable section 32.

[0051] In this embodiment, by providing an opening 321 at the deformable section 32 of the locking member 30, the strength at the opening 321 is low. When the locking member 30 is subjected to a pushing force, the opening 321 of the deformable section 32 is prone to deformation, thereby causing the slot 331 of the limiting section 33 to disengage from the limiting platform 12, so that the box body 20 can continue to move along the opening direction X or the closing direction Y.

[0052] In some embodiments, the first guide rail 40 and the second guide rail 50 have length, width, and thickness, with the length being greater than the width and thickness. The direction of the length's extension is either the opening direction X or the closing direction Y. Along the width direction of the first guide rail 40, an opening 321 can be provided on each side of the deformable section 32, with the two openings 321 spaced apart along the opening direction X. This allows the deformable section 32 to deform under a relatively small thrust, making operation easier. Of course, the number of openings 321 can be flexibly set according to actual needs, and this application embodiment does not limit it.

[0053] It should be noted that the connecting section 31 of the locking member 30 is provided with a third mounting hole, through which the connecting member 90 passes and is detachably connected to the second guide rail 50. For example, the connecting member 90 can be a rivet, screw, etc., and the specific type of the connecting member 90 can be flexibly selected according to actual needs. This application embodiment does not limit it.

[0054] In some embodiments, the deformable segment 32 can also be configured such that the width of the segment from the connecting segment 31 to the limiting segment 33 along the width direction of the first guide rail 40 first decreases and then increases. That is, the deformable segment 32 is composed of C-shaped arc surfaces that are opposite to each other along the width direction of the first guide rail 40. This can make the strength of the deformable segment 32 lower than that of the connecting segment 31 and the limiting segment 33, so that when the user pushes the locking member 30 with a small force, the deformable segment 32 can deform and disengage the slot 331 from the limiting platform 12.

[0055] Optionally, such as Figure 5 As shown, the locking member 30 also includes an extension section 34, one end of which is connected to the limiting section 33, and the other end of which extends in the opening direction X toward the end away from the limiting section 33.

[0056] In this embodiment, by setting an extension section 34 and connecting the extension section 34 to the limiting section 33, the user can push the extension section 34 to deform the deformable section 32, thereby causing the slot 331 of the limiting section 33 to disengage from the limiting platform 12, releasing the limiting platform 12 from restricting the locking member 30. The setting of the extension section 34 facilitates the user's operation.

[0057] Specifically, when the user pulls the box 20 along the opening direction X into the slot 331 on the locking member 30 where the limiting platform 12 engages, the cooperation between the limiting platform 12 and the locking member 30 restricts the relative position between the storage device body 10 and the box 20, thus preventing the box 20 from continuing to move along the opening direction X or the closing direction Y. If it is necessary to continue moving the box 20 along the opening direction X, the user can push the extension section 34 to deform the deformation section 32 of the locking member 30. At this time, the restriction effect of the slot 331 on the limiting platform 12 is released, so that the box 20 can continue to be pulled out along the opening direction X until it separates from the storage device body 10. If it is necessary to close the box 20 and store it in the receiving cavity 11, the user can push the extension section 34 and the deformation section 32 to deform so that the slot 331 releases the restriction effect on the limiting platform 12. At this time, the box 20 can move along the closing direction Y until the box 20 is stored in the receiving cavity 11 in the storage device body 10.

[0058] Optionally, such as Figure 5 As shown, the opening 321 is recessed from the edge of the locking member 30 into the interior of the locking member 30 to form a bottom wall 3211, which has an arc surface.

[0059] In this embodiment of the application, by setting the bottom wall 3211 of the opening 321 in the locking member 30 as an arc surface, when the locking member 30 is pushed with a large force to deform the opening 321 of the deformable section 32, the setting of the arc surface can reduce the stress concentration at the opening 321 of the locking member 30, thereby reducing the risk of tearing of the opening 321, which is beneficial to extending the service life of the locking member 30.

[0060] Specifically, the opening 321 is recessed from the edge of the locking member 30 into the interior of the locking member 30 along one side of the width direction of the first guide rail 40 to form a bottom wall 3211. The bottom wall 3211 is an arc surface. The opening 321 includes a first opening and a second opening. The first opening and the second opening are connected. The first opening has a circular structure and a diameter of D1. The second opening has a quadrilateral structure. The second opening has a first side and a second side that are arranged opposite to each other along the opening direction X. The distance between the first side and the second side along the opening direction X is D2. Setting D1 to be greater than D2 can further reduce the risk of tearing of the opening 321.

[0061] In some embodiments, such as Figure 5 As shown, the slot 331 includes a slot wall 3311 and a slot bottom 3312. One side of the slot wall 3311 is connected to the slot bottom 3312, and the plane where the slot wall 3311 is located is set at an obtuse angle to the plane where the slot bottom 3312 is located.

[0062] In this embodiment, by setting the plane where the groove wall 3311 is located at an obtuse angle to the plane where the groove bottom 3312 is located, the groove wall 3311 can act as a guide when the box 20 is pushed along the closing direction Y. This allows the user to move the groove wall 3311 of the card slot 331 along the outer surface of the limiting platform 12 with a small force, thereby releasing the limiting platform 12 from restricting the card slot 331 and storing the box 20 in the receiving cavity 11, which is convenient for the user to operate.

[0063] It should be noted that the slot opening of the card slot 331 faces the limiting platform 12, and the slot bottom 3312 is set directly opposite the slot opening, so as to cooperate with the limiting platform 12 to achieve the function of limiting the relative position between the box body 20 and the storage device body 10.

[0064] In some embodiments, such as Figure 5 As shown, the extension section 34 has a first end face 341 at one end facing the limiting section 33. One side of the first end face 341 is connected to the side of the groove wall 3311 away from the bottom of the groove 3312. The other side of the first end face 341 extends in a direction away from the groove wall 3311. The plane where the first end face 341 is located is set at a V-shaped angle with the plane where the groove wall 3311 is located.

[0065] In this embodiment, by setting the plane where the first end face 341 is located and the plane where the groove wall 3311 is located at a V-shaped angle, the first end face 341 can play a guiding role when the box body 20 is pulled along the opening direction X, making it easier for the limiting platform 12 to be inserted into the slot 331.

[0066] Optionally, such as Figure 2 , Figure 3 and Figure 4 As shown, the storage device also includes a third guide rail 60 and a ball bearing 70. The third guide rail 60 is disposed between the first guide rail 40 and the second guide rail 50. The third guide rail 60 is provided with a fixing part 61, and a through hole 611 is provided in the fixing part 61. The ball bearing 70 is disposed in the through hole 611 and can roll relative to the fixing part 61. The first guide rail 40 is provided with a first sliding part 41, and the second guide rail 50 is provided with a second sliding part 51. The first sliding part 41 and the second sliding part 51 are slidably connected, and the first sliding part 41 and the second sliding part 51 enclose a receiving cavity 52. ​​The fixing part 61 extends into the receiving cavity 52, and the ball bearing 70 is at least partially exposed in the through hole 611 and contacts the first sliding part 41 and the second sliding part 51 respectively.

[0067] In this embodiment, by setting a third guide rail 60 and a ball bearing 70 between the first guide rail 40 and the second guide rail 50, and by setting a fixing part 61 with a through hole 611 on the third guide rail 60, the ball bearing 70 is placed in the through hole 611 and can roll relative to the fixing part 61. This can convert the sliding friction between the first guide rail 40 and the second guide rail 50 into rolling friction, thereby significantly reducing frictional resistance and making the pulling process of the box 20 more effortless and smooth, thus improving the user experience.

[0068] Specifically, fixing parts 61 are provided on both sides of the third guide rail 60 along the width direction of the first guide rail 40, and multiple fixing parts 61 are provided at intervals along the opening direction X. Each fixing part 61 is provided with a through hole 611, and a ball bearing 70 is placed in one through hole 611. At the same time, first sliding parts 41 are provided on both sides of the first guide rail 40 along its width direction, and second sliding parts 51 are provided on both sides of the second guide rail 50 along the width direction of the first guide rail 40. The first sliding parts 41 and the second sliding parts 51 are slidably connected so that the first sliding parts 41 and the second sliding parts 51 form a receiving cavity 52. ​​The fixing parts 61 are inserted into the receiving cavity 52, and at least a portion of the ball bearing 70 is exposed outside the through hole 611 and contacts the first sliding part 41 and the second sliding part 51 respectively. In this way, during the process of pushing and pulling the box body 20, the noise caused by the collision between multiple balls bearing 70 can be avoided, thereby improving the user experience.

[0069] Optionally, such as Figure 5As shown, the storage device also includes a buffer layer 80, which at least partially covers the outer peripheral surface of the limiting platform 12.

[0070] In this embodiment, by covering the outer peripheral surface of the limiting platform 12 with a buffer layer 80, when the box 20 is pushed or pulled to move along the opening direction X or the closing direction Y, not only can a rigid collision between the slot 331 on the locking member 30 and the limiting platform 12 be avoided, thus preventing damage to the locking member 30 or the limiting platform 12 and extending the service life of the storage device, but also the noise generated when the slot 331 collides with the limiting platform 12 can be reduced, thereby improving the user experience.

[0071] It is understood that the buffer layer 80 can be made of elastic materials, such as resin or rubber. The material and thickness of the buffer layer 80 can be flexibly adjusted according to actual needs, and this embodiment does not impose any restrictions on them.

[0072] Optionally, this application provides a vehicle including a vehicle body and a storage device as described in the above embodiments, wherein the storage device is disposed on the vehicle body.

[0073] In the embodiments of this application, by providing a locking member 30 with a slot 331 on the box body 20 and a limiting platform 12 in the storage device body 10, the box body 20 can move relative to the storage device body 10 in the opening direction X or the closing direction Y. When the user needs to open the storage device, they only need to move the box body 20 to a preset position in the opening direction X. At this time, the limiting platform 12 can engage with the slot 331 to restrict the relative position of the storage device body 10 and the box body 20, thereby preventing the storage device from moving in the opening direction X. The X or closing direction Y movement does not affect the user's use, which provides convenience and improves the user experience. When the user needs to put the storage device in the storage state, he / she only needs to move the box 20 in the closing direction Y at the preset position. At this time, at least part of the locking member 30 can deform to disengage the slot 331 from the limiting platform 12, thereby releasing the restriction between the box 20 and the storage device body 10, so that the box 20 is stored in the storage cavity 11 of the storage device. This is not only simple in structure, but also easy for the user to operate.

[0074] In this application, "multiple" refers to two or more.

[0075] In this application, unless otherwise expressly defined, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0076] The terms “first,” “second,” “third,” “fourth,” etc., in this application (if present) are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.

[0077] In this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, in this application, the character " / " generally indicates that the preceding and following related objects have an "or" relationship.

[0078] Unless otherwise specified, all steps in this application may be performed sequentially or randomly. For example, if the method includes steps A and B, it means that the method may include steps A and B performed sequentially, or it may include steps B and A performed sequentially. For example, if the method may also include step C, it means that step C may be added to the method in any order. For example, the method may include steps A, B, and C, or it may include steps A, C, and B, or it may include steps C, A, and B, etc.

[0079] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A storage device, characterized in that, include: Storage device body (10), box (20) and locking element (30); The storage device body (10) is provided with a receiving cavity (11), and the box body (20) is movably connected to the receiving cavity (11); the locking member (30) is provided on the box body (20), the locking member (30) is provided with a slot (331), and the storage device body (10) is provided with a limiting platform (12). The box (20) can move relative to the storage device body (10) in the opening direction (X) or closing direction (Y) to put the storage device in an open state or a closed state. When the box (20) moves to a preset position in the opening direction, the limiting platform (12) engages in the slot (331) to limit the relative position of the storage device body (10) and the box (20). When the box (20) moves in the closing direction (Y) at the preset position, at least a portion of the locking member (30) can deform to disengage the slot (331) from the limiting platform (12).

2. The storage device of claim 1, wherein When an external force is applied to the locking member (30) at the preset position to deform it and disengage it from the limiting platform (12), the box body (20) can continue to move along the opening direction (X) to separate the box body (20) from the storage device body (10).

3. The storage device of claim 1, wherein, The storage device further includes a first guide rail (40) and a second guide rail (50). The first guide rail (40) is connected to the storage device body (10), and the second guide rail (50) is connected to the box body (20). The first guide rail (40) is slidably connected to the second guide rail (50). The locking member (30) is provided on the side of the second guide rail (50) facing the first guide rail (40). The locking member (30) is fixedly connected to the second guide rail (50). The limiting platform (12) is provided on the side of the first guide rail (40) facing the second guide rail (50).

4. The storage device of any one of claims 1-3, wherein, The locking member (30) includes a connecting section (31), a deformable section (32), and a limiting section (33). The connecting section (31) is connected to the box body (20). The deformable section (32) is connected between the connecting section (31) and the limiting section (33). The slot (331) is provided on the limiting section (33). At least one outer wall of the deformable section (32) is provided with an opening (321) so that the locking member (30) can deform at the deformable section (32).

5. The storage device of claim 4, wherein, The locking member (30) further includes an extension section (34), one end of which is connected to the limiting section (33), and the other end of which extends in the opening direction (X) toward the end away from the limiting section (33).

6. The storage device of claim 4, wherein, The opening (321) is recessed from the edge of the locking member (30) toward the interior of the locking member (30) to form a bottom wall (3211), the bottom wall (3211) being an arc surface.

7. The storage device of claim 5, wherein, The slot (331) includes a slot wall (3311) and a slot bottom (3312), with one side of the slot wall (3311) connected to the slot bottom (3312); The plane containing the tank wall (3311) is set at an obtuse angle to the plane containing the tank bottom (3312); And / or, the extension segment (34) has a first end face (341) at one end facing the limiting segment (33), one side of the first end face (341) is connected to the side of the groove wall (3311) away from the groove bottom (3312), the other side of the first end face (341) extends in a direction away from the groove wall (3311), and the plane where the first end face (341) is located is set at a V-shaped angle with the plane where the groove wall (3311) is located.

8. The storage device of claim 3, wherein, The storage device further includes a third guide rail (60) and a ball bearing (70). The third guide rail (60) is located between the first guide rail (40) and the second guide rail (50). The third guide rail (60) has a fixing part (61) and a through hole (611) in the fixing part (61). The ball bearing (70) is located in the through hole (611) and can roll relative to the fixing part (61). The first guide rail (40) is provided with a first sliding part (41), and the second guide rail (50) is provided with a second sliding part (51). The first sliding part (41) and the second sliding part (51) are slidably connected. The first sliding part (41) and the second sliding part (51) form a receiving cavity (52). The fixing part (61) extends into the receiving cavity (52). The ball (70) is at least partially exposed in the through hole (611) and contacts the first sliding part (41) and the second sliding part (51) respectively.

9. The storage device of claim 1, wherein, The storage device further includes a buffer layer (80), which at least partially covers the outer peripheral surface of the limiting platform (12).

10. A vehicle characterized by comprising: It includes a vehicle body and a storage device as described in any one of claims 1-9, the storage device being disposed on the vehicle body.