Storage box assembly and carrier
By placing the bracket at the bottom of the storage box assembly and tilting the sliding component, the problem of storage boxes being unable to be applied to small spaces is solved, achieving smaller size and more efficient space utilization, and is suitable for a variety of push-pull solutions.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG GEELY HLDG GRP CO LTD
- Filing Date
- 2025-06-06
- Publication Date
- 2026-04-17
AI Technical Summary
Storage box components cannot be effectively used in small spaces, and existing designs result in an increase in the width dimension.
The storage box component is designed with a support frame located at the bottom of the box. The slide rail and slide groove are set at an angle. The sliding component does not exceed the box size in the width direction and is limited by the side wall of the slide groove, eliminating the need for additional fixing structures.
It enables the application of storage box components in small spaces, reduces the number of parts, lowers costs, improves production efficiency and space utilization, and is suitable for both electric and manual push-pull solutions.
Smart Images

Figure CN224131589U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of storage equipment technology, specifically to a storage box assembly and carrier. Background Technology
[0002] Storage box assemblies in related technologies typically include a storage box and a box body. One of the storage box and the box body is provided with a slide rail, and the other is provided with a slide groove. The slide rail is slidably disposed within the slide groove to achieve a fit between the storage box and the box body. However, in practice, the slide rail is usually located on the side wall in the width direction of the storage box, which increases the width dimension of the storage box and is not conducive to its application in small spaces.
[0003] Some storage box components have slide rails located at the bottom of the storage box. The slide rails are used to limit the width of the storage box, and the box body is used to limit the height of the storage box, so as to achieve positioning between the box body and the storage box. Utility Model Content
[0004] In view of this, the present invention provides a storage box assembly and a carrier to solve the problem that the storage box assembly cannot be applied to small-volume spaces.
[0005] In a first aspect, this utility model provides a storage box assembly, comprising: a storage box, including a box body and a first sliding component, the box body having a storage space, the first sliding component being connected to the bottom surface of the box body; a bracket, having a second sliding component, the second sliding component and the first sliding component being slidably connected, the bracket being located between opposite side walls in the width direction of the box body; wherein, one of the first sliding component and the second sliding component includes a first slide rail plate and a second slide rail plate, and the other includes a first slide groove and a second slide groove, the first slide rail plate and the second slide rail plate extending in the same direction, the first surface of the first slide rail plate having a first preset angle with the bottom surface of the box body, the second surface of the second slide rail plate having a second preset angle with the bottom surface of the box body, both the first preset angle and the second preset angle being greater than or equal to 0° and less than 90°, the first slide rail plate being slidably inserted into the first slide groove, and the second slide rail plate being slidably inserted into the second slide groove.
[0006] Beneficial effects: In the storage box assembly of this utility model, by placing the bracket at the bottom of the box body and between the two opposite side walls in the width direction of the box body, that is, the bracket does not extend beyond the box body in the width direction of the box body, the overall size of the storage box and the bracket in the width direction of the storage box is equal to the width of the storage box. The size of the storage box assembly in the width direction of the box body will not increase due to the setting of the bracket, which is beneficial to applying the storage box assembly in a small volume space. Furthermore, the first surface of the first slide rail plate has a first preset angle A1 with the bottom surface of the box body, and the second surface of the second slide rail plate has a second preset angle A2 with the bottom surface of the box body. The first preset angle A1 and the second preset angle A2 are within the range of 0° and less than 90°. That is to say, the first slide rail plate and the second slide rail plate are inclined relative to the bottom surface of the box body. After the first slide rail plate and the second slide rail plate are engaged with the first slide groove and the second slide groove, the side wall of the first slide groove can limit the position of the first slide rail plate in the height direction and the width direction of the box body, and the side wall of the second slide groove can limit the position of the second slide rail plate in the height direction and the width direction of the box body. Thus, the storage box can be fixed in the height direction and the width direction of the box body by means of the bracket, without the need for additional fixing structures. Compared with the storage box assembly in the related technology, the box body can be omitted. Therefore, the storage box assembly of this utility model is smaller in size and has fewer parts, which is beneficial for applying the storage box assembly in a small space.
[0007] In one optional embodiment, the first sliding assembly includes a first slide rail plate and a second slide rail plate, and the housing, the first slide rail plate and the second slide rail plate are integrally formed.
[0008] Beneficial effects: The storage box is easy to process, which can reduce assembly steps. It has high structural strength and production efficiency. When used in small spaces, it is conducive to the arrangement of storage box components and improves assembly convenience.
[0009] In one alternative implementation, the opening directions of the first groove and the second groove are opposite.
[0010] Beneficial effects: The more compact structure of the bracket helps reduce the volume of the storage box components, making it easier to apply the storage box components to small spaces.
[0011] In one optional embodiment, the storage box assembly further includes: a first connecting arm connected to the bottom surface of the box body and the first slide rail plate, and perpendicular to the bottom surface of the box body; and a second connecting arm connected to the bottom surface of the box body and the second slide rail plate, and perpendicular to the bottom surface of the box body.
[0012] Beneficial effects: It increases the distance between the first and second slide rails and the bottom surface of the box, avoiding interference between the bracket and the box, and improving the smoothness of the storage box's movement.
[0013] In one alternative embodiment, the first connecting arm, the second connecting arm, the first slide rail, the second slide rail, and the bracket of the housing form an accommodating space.
[0014] Beneficial effects: The storage box assembly can be applied to both manual and electric push-pull systems, improving its applicability.
[0015] In one alternative embodiment, the box further includes a first ring edge located at one end of the bracket, and the projection of the accommodating space and the bracket is located within the projection of the first ring edge on a plane perpendicular to the length direction of the box.
[0016] Beneficial effects: Avoids exposed storage space and support, improves cleanliness, ensures smooth movement of the storage box, and enhances safety.
[0017] In one optional embodiment, the bracket is provided with a stop portion located in the first slide groove to limit the sliding position of the first slide rail plate within the first slide groove, and / or the stop portion is located in the second slide groove to limit the sliding position of the second slide rail plate within the second slide groove; and / or, the storage box assembly further includes a lid located at the top of the box body and covering the storage space, a limiting post located on the side of the lid facing the box body, the limiting post located on at least one side in the width direction of the storage box, a second ring edge and a first ring edge located on the outer peripheral surface of the box body, the first ring edge and the second ring edge located at opposite ends of the box body, and the limiting post located between the second ring edge and the first ring edge.
[0018] Beneficial effects: It limits the movement of the storage box during the pushing and pulling process, preventing the storage box from being pulled out too much and detaching from the support, or from being pushed in too much and affecting the smoothness of the movement of the storage box.
[0019] In one optional embodiment, a first elastic element is provided between the first slide rail plate and the stop portion, and a second elastic element is provided between the second slide rail plate and the stop portion; and / or, a third elastic element is provided between the second ring edge and the limiting post; and / or, a fourth elastic element is provided between the first ring edge and the limiting post.
[0020] Beneficial effects: The elastic element can deform elastically to absorb some of the impact force and reduce noise.
[0021] In one optional embodiment, the bracket includes a first frame and a second frame, which are separately disposed from each other. The first frame is provided with a first sliding groove, and the second frame is provided with a second sliding groove; and / or, the bracket is a single piece; and / or, the side wall of the first sliding groove is provided with a first ball bearing, and the first slide rail plate contacts the first ball bearing. The side wall of the second sliding groove is provided with a second ball bearing, and the second slide rail plate contacts the second ball bearing.
[0022] Beneficial effects: The separate design of the first and second frames reduces cost and weight when the storage box assembly is used in a large space. The integrated support structure reduces the number of parts, facilitating the application of the storage box assembly in smaller spaces. The inclusion of first and second ball bearings on the support structure improves the smoothness of the storage box's movement without requiring additional fixing structures.
[0023] Secondly, this utility model also provides a carrier, including the storage box assembly described in the first aspect.
[0024] Beneficial effects: The carrier according to the embodiments of the present invention, by utilizing the storage box assembly described in the first aspect, can improve space utilization. Attached Figure Description
[0025] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of the structure of the storage box assembly according to an embodiment of the present utility model;
[0027] Figure 2 This is a schematic diagram of the storage box assembly of the present utility model when the storage box is closed;
[0028] Figure 3 This is a schematic diagram of the storage box assembly of the present utility model when the storage box is pulled out.
[0029] Figure 4 for Figure 2 A sectional view along line AA.
[0030] Figure 5 A cross-sectional view of the storage box assembly when the support in this embodiment of the present utility model is a first frame and a second frame that are separately configured;
[0031] Figure 6This is one of the structural schematic diagrams of the storage box according to an embodiment of the present utility model;
[0032] Figure 7 This is a second schematic diagram of the structure of the storage box according to an embodiment of the present utility model;
[0033] Figure 8 This is the third structural schematic diagram of the storage box according to an embodiment of the present utility model;
[0034] Figure 9 This is one of the structural schematic diagrams of the bracket according to an embodiment of the present utility model;
[0035] Figure 10 This is a second schematic diagram of the structure of the bracket according to an embodiment of the present utility model;
[0036] Figure 11 This is a schematic diagram of the structure of the box lid according to an embodiment of the present utility model.
[0037] Explanation of reference numerals in the attached figures:
[0038] 1. Storage box assembly;
[0039] 100. Storage box; 110. Box body; 111. Storage space; 120. First slide rail; 121. First panel; A1. First preset angle; 130. Second slide rail; 131. Second panel; A2. Second preset angle; 140. First connecting arm; 150. Second connecting arm; 160. Accommodation space; 170. First ring edge; 180. Second ring edge; L. Central axis;
[0040] 200, bracket; 210, first slide groove; 220, second slide groove; 230, stop; 240, first frame; 250, second frame; 260, first ball bearing; 270, second ball bearing;
[0041] 300. Box lid; 310. Limiting post;
[0042] 400. Fourth elastic element. Detailed Implementation
[0043] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0044] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0045] In the description of this utility model, "a plurality of" means two or more. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0046] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0047] The following is combined Figures 1 to 11 The following describes embodiments of the present invention.
[0048] According to an embodiment of the present invention, a storage box assembly 1 is provided, which includes a storage box 100 and a support 200.
[0049] The storage box 100 includes a box body 110 and a first sliding assembly. The box body 110 has a storage space 111, and the first sliding assembly is connected to the bottom surface of the box body 110. The bracket 200 has a second sliding assembly, which is slidably connected to the first sliding assembly. The bracket 200 is located between the two opposite side walls in the width direction of the box body 110.
[0050] The first sliding component and the second sliding component include a first slide rail plate 120 and a second slide rail plate 130, and the other includes a first slide groove 210 and a second slide groove 220. The first slide rail plate 120 and the second slide rail plate 130 extend in the same direction. The first surface 121 of the first slide rail plate 120 has a first preset angle A1 with the bottom surface of the box 110, and the second surface 131 of the second slide rail plate 130 has a second preset angle A2 with the bottom surface of the box 110. The first preset angle A1 and the second preset angle A2 are both greater than or equal to 0° and less than 90°. The first slide rail plate 120 is slidably inserted into the first slide groove 210, and the second slide rail plate 130 is slidably inserted into the second slide groove 220.
[0051] Wherein, A1 can be 0°, 10°, 20°, 30°, 40°, 50°, 60°, 70°, 80° or 85°; A2 can be 0°, 10°, 20°, 30°, 40°, 50°, 60°, 70°, 80° or 85°, and the first slide rail plate 120 and the second slide rail plate 130 are inclined or parallel to the bottom surface of the box body 110.
[0052] Specifically, the first sliding component includes a first slide rail plate 120 and a second slide rail plate 130, and the second sliding component includes a first slide groove 210 and a second slide groove 220. That is, the bottom surface of the box 110 is provided with the first slide rail plate 120 and the second slide rail plate 130, and the bracket 200 is provided with the first slide groove 210 and the second slide groove 220.
[0053] Alternatively, the first sliding component includes a first sliding groove 210 and a second sliding groove 220, and the second sliding component includes a first sliding rail plate 120 and a second sliding rail plate 130. That is, the bottom surface of the box 110 is provided with the first sliding groove 210 and the second sliding groove 220, and the bracket 200 is provided with the first sliding rail plate 120 and the second sliding rail plate 130.
[0054] For example, the storage box component 1 can be applied to vehicles (vehicles, low-altitude aircraft, and other vehicles in use), furniture, or other small-volume spaces. When applied to vehicles, the storage box component 1 can be placed in areas such as seat armrests, door panels, B-pillars, C-pillars, or luggage compartment side panels. Furthermore, to meet different aesthetic and functional needs, the storage box component 1 can be a concealed or exposed design. A concealed design maintains a clean and integrated appearance, suitable for users who prefer a minimalist style, while an exposed design facilitates quick access, suitable for situations requiring frequent use of the storage space 111. This increases the flexibility of the storage box component 1's placement, thereby enhancing the product's market adaptability.
[0055] In the storage box assembly 1 of this utility model, by placing the bracket 200 at the bottom of the box body 110 and between the two opposite side walls of the box body 110 in the width direction, that is, by placing the bracket 200 at the bottom of the box body 110 and between the two opposite side walls of the box body 110 in the width direction, the bracket 200 does not extend beyond the box body 110 in the width direction. Therefore, the overall size of the storage box 100 and the bracket 200 in the width direction of the storage box 100 is equal to the width of the storage box 100. The size of the storage box assembly 1 in the width direction of the box body 110 will not increase due to the setting of the bracket 200, which is beneficial to applying the storage box assembly 1 to a small volume space.
[0056] Furthermore, the first surface 121 of the first slide rail plate 120 and the bottom surface of the box body 110 have a first preset angle A1, and the second surface 131 of the second slide rail plate 130 and the bottom surface of the box body 110 have a second preset angle A2. The first preset angle A1 and the second preset angle A2 are within the range of greater than or equal to 0° and less than 90°. That is to say, the first slide rail plate 120 and the second slide rail plate 130 are inclined relative to the bottom surface of the box body 110. After the first slide rail plate 120 and the second slide rail plate 130 are engaged with the first slide groove 210 and the second slide groove 220, the side wall of the first slide groove 210 can limit The first slide rail 120 is positioned in the height and width directions of the box body 110. The side wall of the second slide groove 220 can limit the position of the second slide rail 130 in the height and width directions of the box body 110. Then, the storage box 100 can be fixed in the height and width directions of the box body 110 by the bracket 200. No additional fixing structure is required. Compared with the storage box assembly in the related technology, the box body can be omitted. Therefore, the storage box assembly 1 of this utility model is smaller in size and has fewer parts, which is conducive to the application of the storage box assembly 1 in a small space.
[0057] Therefore, the storage box assembly 1 of this utility model reduces the number of parts and optimizes the matching relationship between the bracket 200 and the storage box 100. While ensuring functionality, it simplifies the structure, which not only helps to reduce costs, but also improves production efficiency and reliability, reduces the failure rate, extends service life, and facilitates the application of the storage box assembly 1 in small spaces, thereby improving space utilization.
[0058] Because the storage box assembly 1 has fewer parts and a smaller size, the maximum load required by the bracket 200 is correspondingly reduced, and the material selection for the bracket 200 is more diverse. For example, it can be made of plastic instead of traditional metal, further reducing costs and increasing efficiency. At the same time, to prevent the storage box 100 from vibrating and falling off during movement, magnetic devices can be added to the bottom surface of the box body 110 and the bracket 200 to fix the relative position between the storage box 100 and the bracket 200.
[0059] Specifically, when the first sliding component includes a first slide rail plate 120 and a second slide rail plate 130, the box body 110, the first slide rail plate 120, and the second slide rail plate 130 are integrally formed. In this way, the storage box 100 is easy to process, reduces assembly steps, has high structural strength and production efficiency, and is beneficial for the arrangement of the storage box component 1 when used in small spaces, thus improving assembly convenience.
[0060] like Figure 4 and Figure 8 As shown, in some embodiments, the first preset angle A1 and the second preset angle A2 are the same, the first slide rail plate 120 and the second slide rail plate 130 are symmetrically arranged along the central axis L of the width direction of the box body 110, and the opening directions of the first slide groove 210 and the second slide groove 220 are arranged opposite to each other.
[0061] In this way, the first slide rail plate 120 and the second slide rail plate 130 have the same shape, which is convenient for processing, and the structure of the bracket 200 is more compact, which is conducive to reducing the volume of the storage box assembly 1 and improving space utilization.
[0062] Furthermore, the storage box 100 also includes a first connecting arm 140 and a second connecting arm 150. The first connecting arm 140 is connected to the bottom surface of the box body 110 and the first slide rail plate 120, and the second connecting arm 150 is connected to the bottom surface of the box body 110 and the second slide rail plate 130. Both the first connecting arm 140 and the second connecting arm 150 are perpendicular to the bottom surface of the box body 110.
[0063] The first slide rail plate 120 is bent relative to the first connecting arm 140 toward the second connecting arm 150, and the second slide rail plate 130 is bent relative to the second connecting arm 150 toward the first connecting arm 140. Furthermore, the box body 110, the first connecting arm 140, the second connecting arm 150, the first slide rail plate 120, and the second slide rail plate 130 are an integral structure.
[0064] This increases the distance between the bottom surfaces of the first slide rail 120 and the box 110, and also increases the distance between the bottom surfaces of the second slide rail 130 and the box 110. This makes it easier for the side wall of the first slide groove 210 to be located between the bottom surfaces of the first slide rail 120 and the box 110, and for the side wall of the second slide groove 220 to be located between the bottom surfaces of the second slide rail 130 and the box 110. This reduces the probability of contact friction between the bracket 200 and the bottom surface of the box 110, and improves the smoothness of pushing and pulling the storage box 100.
[0065] Furthermore, the box body 110, the first connecting arm 140, the second connecting arm 150, the first slide rail plate 120, the second slide rail plate 130 and the bracket 200 form a receiving space 160.
[0066] Sensors and motors can be installed within the accommodating space 160. The motor is connected to the storage box 100 and is used to control the sliding of the storage box 100 relative to the bracket 200. The sensor can detect the position of the storage box 100 and determine whether the storage box 100 has moved into place. When the storage box 100 has moved into place, the motor can be locked to fix the storage box 100 in the current position. The user can control the motor to drive the storage box 100 to automatically extend or retract through the controller. The controller can be a button, mobile phone, remote control, or vehicle control screen, etc., to realize the electric push-pull scheme of the storage box assembly 1, improve the intelligence of the storage box assembly 1, and enhance the user's comfort.
[0067] The storage box assembly 100 can be without electrical components such as sensors and motors within the storage space 160. In this case, the storage box assembly 1 is a manual push-pull solution, which can reduce the cost and weight of the storage box 100.
[0068] Therefore, the storage box assembly 1 of this utility model can be applied to both electric push-pull and manual push-pull schemes. There is no need to design a separate storage box assembly 1 structure for the electric push-pull and manual push-pull schemes. The storage box assembly 1 of the two schemes is consistent in appearance and function, which can improve the versatility of the storage box assembly 1, thereby reducing the number of molds, achieving cost reduction and efficiency improvement, and facilitating production and maintenance.
[0069] like Figures 1-3 , Figures 6-8 As shown, in some embodiments, the outer peripheral surface of the box 110 is provided with a first ring edge 170, which is located at one end of the support 200. On a plane perpendicular to the length direction of the box 110, the projections of the accommodating space 160 and the support 200 are located within the projection of the first ring edge 170. The first ring edge 170 is located at the end of the box 110 that can be observed by the user.
[0070] By setting the first ring edge 170, on the one hand, the storage space 160 can be prevented from being exposed, reducing the probability of dust and other impurities entering the storage space 160, improving the cleanliness of the storage box assembly 1. When electrical components are installed in the storage space 160, the electrical components can be prevented from being observed and touched by the user, improving the neatness of the appearance and the safety of using the storage box assembly 1, and also reducing the probability of damage to the electrical components. On the other hand, the bracket 200 can be prevented from being exposed, reducing the probability of dust and other impurities entering the first slide groove 210 and the second slide groove 220, improving the cleanliness of the first slide groove 210 and the second slide groove 220, which is conducive to ensuring the smoothness of pushing and pulling the storage box 100, and preventing the bracket 200 from being observed and touched by the user, improving the neatness of the appearance, and preventing the user's fingers, clothing or other items from being pinched during the pushing and pulling of the storage box 100, thus improving safety.
[0071] like Figures 2-3 , Figures 9-10 As shown, in some embodiments, the bracket 200 is provided with a stop portion 230, which is disposed in the first slide groove 210 to limit the sliding position of the first slide rail plate 120 in the first slide groove 210. Alternatively, the stop portion 230 is disposed in the second slide groove 220 to limit the sliding position of the second slide rail plate 130 in the second slide groove 220. Or, there are multiple stop portions 230, with one stop portion 230 disposed in the first slide groove 210 to limit the sliding position of the first slide rail plate 120 in the first slide groove 210, and another stop portion 230 disposed in the second slide groove 220 to limit the sliding position of the second slide rail plate 130 in the second slide groove 220.
[0072] By setting the stop part 230, the deepest position of the first slide rail plate 120 in the first slide groove 210 and the deepest position of the second slide rail plate 130 in the second slide groove 220 can be limited. This prevents the storage box 100 from being pushed in too much, causing the first slide rail plate 120 to extend beyond the first slide groove 210 or the second slide rail plate 130 to extend beyond the second slide groove 220. This reduces the probability of damage to the storage box assembly 1 and ensures the smoothness of pushing and pulling the storage box 100, making it easy to reuse the storage box assembly 1.
[0073] like Figures 1-5 , Figure 11 As shown, in some embodiments, the storage box 100 further includes a lid 300, which is located on the top of the box body 110 and covers the storage space 111. A limiting post 310 is provided on the side of the lid 300 facing the box body 110. The limiting post 310 is located on at least one side of the width direction of the storage box 100 and is located outside the storage space 111. The outer peripheral surface of the box body 110 is provided with a second ring edge 180 and a first ring edge 170. The second ring edge 180 and the first ring edge 170 are located at opposite ends of the box body 110. The limiting post 310 is located between the first ring edge 170 and the second ring edge 180. Both the second ring edge 180 and the first ring edge 170 cooperate with the limiting post 310.
[0074] For example, the cover 300 can be snapped into the structure on the vehicle, or the cover 300 can be installed on the seat armrest of the vehicle, or even the cover 300 can be used directly as the seat armrest of the vehicle.
[0075] When the storage box 100 is not pulled out, the lid 300 covers the storage space 111, preventing objects inside the storage space 111 from falling out of the storage box 100. By setting the second ring edge 180 to cooperate with the limiting post 310, the storage box 100 can be prevented from being pulled out excessively and falling off the bracket 200. By setting the first ring edge 170 to cooperate with the limiting post 310, the storage box 100 can be prevented from being pushed in excessively, improving the ease of use of the storage box assembly 1.
[0076] In some embodiments, a first elastic member is provided between the first slide rail plate 120 and the stop portion 230, or a second elastic member is provided between the second slide rail plate 130 and the stop portion 230, or a first elastic member is provided between the first slide rail plate 120 and the stop portion 230, and a second elastic member is provided between the second slide rail plate 130 and the stop portion 230.
[0077] For example, the first elastic element and the second elastic element can be made of rubber or silicone. The stop portion 230 may have a groove, within which the first and second elastic elements are located, and both the first and second elastic elements are connected to the stop portion 230 by adhesive bonding.
[0078] The first and second elastic members can undergo elastic deformation to absorb the collision force between the first slide rail plate 120 and the second slide rail plate 130 and the stop portion 230, thereby avoiding rigid contact between the first slide rail plate 120 and the second slide rail plate 130 and the stop portion 230. This reduces the probability of collision damage to the first slide rail plate 120, the second slide rail plate 130, and the stop portion 230, and also compensates for the gap between the bracket 200 and the storage box 100, reducing the probability of the storage box 100 shaking and decreasing collision noise and noise generated by shaking.
[0079] In some embodiments, a third elastic element is provided between the second annular edge 180 and the limiting post 310.
[0080] For example, the third elastic element can be made of rubber or silicone. The limiting post 310 may have a groove, the third elastic element is located within the groove, and the third elastic element and the limiting post 310 can be connected by adhesive bonding.
[0081] The third elastic element can undergo elastic deformation to absorb the collision force between the second ring edge 180 and the limiting post 310, avoid rigid contact between the second ring edge 180 and the limiting post 310, reduce the probability of collision damage between the second ring edge 180 and the limiting post 310, and compensate for the gap between the lid 300 and the storage box 100, reduce the probability of the storage box 100 shaking, and reduce collision noise and noise caused by shaking.
[0082] like Figure 2 , Figure 3 and Figure 11 As shown, in some embodiments, a fourth elastic element 400 is provided between the first ring edge 170 and the limiting post 310.
[0083] For example, the fourth elastic element 400 can be made of rubber or silicone. The limiting post 310 may have a groove, the fourth elastic element 400 is located in the groove, and the fourth elastic element 400 and the limiting post 310 can be connected by adhesive.
[0084] The fourth elastic element 400 can undergo elastic deformation to absorb the collision force between the first ring edge 170 and the limiting post 310, avoid rigid contact between the first ring edge 170 and the limiting post 310, reduce the probability of collision damage between the first ring edge 170 and the limiting post 310, and compensate for the gap between the lid 300 and the storage box 100, reduce the probability of the storage box 100 shaking, and reduce collision noise and noise caused by shaking.
[0085] like Figure 5 As shown, in some embodiments, the bracket 200 includes a first frame 240 and a second frame 250, which are separately arranged. The first frame 240 and the second frame 250 are spaced apart along the width direction of the box 110. The first frame 240 is provided with a first slide groove 210, and the second frame 250 is provided with a second slide groove 220.
[0086] In this way, the distance between the first frame 240 and the second frame 250 can be adjusted according to the distance between the first slide rail 120 and the second slide rail 130. Therefore, when the width of the storage box 100 is increased, it will not affect the sliding fit between the bracket 200, the first slide rail 120 and the second slide rail 130. This makes it easy to adjust the size of the storage box assembly 1 so that the storage box assembly 1 can be applied to a large volume space. Furthermore, there is no connecting part between the first frame 240 and the second frame 250, which can save materials and reduce costs and weight.
[0087] like Figure 4 , Figure 9 and Figure 10 As shown, in some other embodiments, the bracket 200 is a single piece. Compared to setting the bracket 200 as a separate piece, making the bracket 200 a single piece reduces the number of parts in the bracket 200, thereby reducing the number of installation steps and increasing the installation efficiency of the bracket 200. This is beneficial for fitting the storage box assembly 1 into a small volume space.
[0088] like Figure 4 and Figure 5As shown, in some embodiments, the sidewall of the first slide groove 210 is provided with a first ball bearing 260, and the first slide rail contacts the first ball bearing 260; or the sidewall of the second slide groove 220 is provided with a second ball bearing 270, and the second slide rail contacts the second ball bearing 270; or, the sidewall of the first slide groove 210 is provided with a first ball bearing 260, and the first slide rail contacts the first ball bearing 260, and the sidewall of the second slide groove 220 is provided with a second ball bearing 270, and the second slide rail contacts the second ball bearing 270.
[0089] For example, the first slide groove 210 has first balls 260 on both opposite side walls in the thickness direction of the first slide rail plate 120, and there are multiple first balls 260 on each side wall of the first slide groove 210, which are spaced apart along the length direction of the first slide rail plate 120. The second slide groove 220 has second balls 270 on both opposite side walls in the thickness direction of the second slide rail plate 130, and there are multiple second balls 270 on each side wall of the second slide groove 220, which are spaced apart along the length direction of the second slide rail plate 130.
[0090] By setting the first ball bearing 260 and the second ball bearing 270, the friction between the first slide rail plate 120 and the second slide rail plate 130 and the bracket 200 can be reduced, improving the smoothness of the movement of the storage box 100 and facilitating the pushing and pulling of the storage box 100. Furthermore, by directly fixing the positions of the first ball bearing 260 and the second ball bearing 270 by the bracket 200, there is no need for an additional structure to fix the first ball bearing 260 and the second ball bearing 270, which reduces the number of parts, saves materials, lowers costs and weight, reduces the volume of the storage box assembly 1, and reduces the assembly steps of the storage box assembly 1, making it easier to apply the storage box assembly 1 to a small space.
[0091] According to an embodiment of the present invention, another aspect provides a vehicle including the aforementioned storage box assembly 1. The vehicle can be a vehicle, a low-altitude aircraft, or other means of transportation.
[0092] According to the embodiments of the present invention, the space utilization rate can be improved by utilizing the above-described storage box assembly 1.
[0093] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.
Claims
1. A storage box assembly, characterized by, include: A storage box (100) includes a box body (110) and a first sliding component. The box body (110) has a storage space (111), and the first sliding component is connected to the bottom surface of the box body (110). The bracket (200) is provided with a second sliding component, the second sliding component and the first sliding component are slidably connected, and the bracket (200) is located between the opposite side walls in the width direction of the box body (110); The first sliding component and the second sliding component include a first slide rail plate (120) and a second slide rail plate (130), and the other includes a first slide groove (210) and a second slide groove (220). The first slide rail plate (120) and the second slide rail plate (130) extend in the same direction. The first surface (121) of the first slide rail plate (120) has a first preset angle (A1) with the bottom surface of the box body (110), and the second surface (131) of the second slide rail plate (130) has a second preset angle (A2) with the bottom surface of the box body (110). The first preset angle (A1) and the second preset angle (A2) are both greater than or equal to 0° and less than 90°. The first slide rail plate (120) is slidably inserted into the first slide groove (210), and the second slide rail plate (130) is slidably inserted into the second slide groove (220).
2. The cartridge assembly of claim 1, wherein, The first sliding assembly includes a first slide rail plate (120) and a second slide rail plate (130), and the box body (110), the first slide rail plate (120) and the second slide rail plate (130) are integrally formed.
3. The cartridge assembly of claim 1, wherein, The opening directions of the first groove (210) and the second groove (220) are opposite.
4. The cartridge assembly of claim 1, wherein, The storage box (100) also includes: The first connecting arm (140) is connected to the bottom surface of the box body (110) and the first slide rail plate (120), and is perpendicular to the bottom surface of the box body (110); The second connecting arm (150) is connected to the bottom surface of the box body (110) and the second slide rail plate (130), and is perpendicular to the bottom surface of the box body (110).
5. The cartridge assembly of claim 4, wherein, The box body (110), the first connecting arm (140), the second connecting arm (150), the first slide rail plate (120), the second slide rail plate (130) and the bracket (200) form an accommodating space (160).
6. The cartridge assembly of claim 5, wherein, The outer periphery of the box (110) is provided with a first ring edge (170), which is located at one end of the bracket (200). On a plane perpendicular to the length direction of the box (110), the projections of the accommodating space (160) and the bracket (200) are located within the projection of the first ring edge (170).
7. The storage box assembly of any one of claims 1-6, wherein, The bracket (200) is provided with a stop (230), which is located in the first slide groove (210) to limit the sliding position of the first slide rail plate (120) in the first slide groove (210), and / or the stop (230) is located in the second slide groove (220) to limit the sliding position of the second slide rail plate (130) in the second slide groove (220); And / or, the storage box assembly (1) further includes a lid (300) located on the top of the box body (110) and covering the storage space (111). The lid (300) has a limiting post (310) on one side facing the box body (110). The limiting post (310) is located on at least one side of the storage box (100) in the width direction. The outer peripheral surface of the box body (110) has a first ring edge (170) and a second ring edge (180). The first ring edge (170) and the second ring edge (180) are located at opposite ends of the box body (110). The limiting post (310) is located between the first ring edge (170) and the second ring edge (180).
8. The cartridge assembly of claim 7, wherein, A first elastic element is provided between the first slide rail plate (120) and the stop part (230), and a second elastic element is provided between the second slide rail plate (130) and the stop part (230); And / or, a third elastic element is provided between the second ring edge (180) and the limiting post (310); And / or, a fourth elastic element (400) is provided between the first ring edge (170) and the limiting post (310).
9. The storage box assembly of any one of claims 1-6, wherein, The bracket (200) includes a first frame (240) and a second frame (250), which are separately disposed from each other. The first frame (240) is provided with the first slide groove (210), and the second frame (250) is provided with the second slide groove (220). And / or, the bracket (200) is a single piece; And / or, the sidewall of the first slide groove (210) is provided with a first ball (260), the first slide rail plate (120) is in contact with the first ball (260), the sidewall of the second slide groove (220) is provided with a second ball (270), and the second slide rail plate (130) is in contact with the second ball (270).
10. A carrier, characterized by Includes the storage box assembly (1) according to any one of claims 1-9.