Storage box and storage kit

By setting a support member and a support portion between the inner shell and the outer shell of the storage box, combined with the winding limit structure, the problem of wearable devices shaking in the storage box is solved, and the stable storage and protection of the equipment is achieved.

CN112849674BActive Publication Date: 2025-07-18MATRIXED REALITY TECH CO LTD
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Patent Information

Application Number
CN202110201748.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-02-23
Publication Date
2025-07-18
Estimated Expiration
2041-02-23

AI Technical Summary

Technical Problem

The wearable devices in the existing storage box are easy to shake, affecting the storage effect.

Method used

A storage box is designed, including a support member between the inner shell and the outer shell, and a support part is provided on the inner shell, and the support member is fitted with the inner shell, and the shape of the head-mounted display device, combined with the winding part and the limiting structure of the second box body assembly to prevent the equipment from shaking.

Benefits of technology

Effectively prevent the head-mounted display device from shaking in the storage box, protect the equipment from damage, the cable does not move, and the overall structure is stable and compact.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a storage box, which relates to the technical field of storage appliances. A storage box disclosed in the present application includes a first box body assembly, and the first box body assembly includes an outer shell, an inner shell and a support member; the outer shell forms a cavity, and the inner shell is disposed in the cavity of the outer shell; the support member is disposed between the outer shell and the inner shell, and the support member is at least partially attached to the outer shell and the inner shell respectively; the inner shell forms a storage space, and at least part of the storage space is adapted to the shape of the head-mounted display device; the inner shell forms a support portion, and at least part of the support portion extends towards the inner side of the storage space; a second box body assembly, and the second box body assembly is arranged to open or close relative to the first box body assembly.
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Description

Technical Field

[0001] The present application belongs to the technical field of storage devices, and specifically relates to a storage box and a storage kit. Background Art

[0002] "Wearable devices" is a general term for wearable devices that are designed and developed using wearable technology to be intelligent for daily wear, such as smart glasses and smart watches. In order to facilitate the storage of wearable devices, wearable device storage boxes have emerged. However, in the use of storage boxes in related technologies, wearable devices are prone to shaking in the storage boxes, affecting the storage of wearable devices. Summary of the invention

[0003] An embodiment of the present application provides a storage box, including a first box body assembly, the first box body assembly including an outer shell, an inner shell and a support member, the outer shell forms a cavity, the inner shell is arranged in the cavity of the outer shell, the support member is arranged between the outer shell and the inner shell, and the support member is at least partially fitted with the outer shell and the inner shell respectively, the inner shell forms a storage space, the storage space at least partially matches the shape of a head-mounted display device, the inner shell forms a support portion, the support portion at least partially extends toward the inner side of the storage space, the storage box also includes a second box body assembly, the second box body assembly is configured to be opened or closed relative to the first box body assembly.

[0004] An embodiment of the present application also provides a storage kit, comprising items to be stored and the storage box described in the above embodiment, wherein the items to be stored include a head-mounted display device, and the head-mounted display device is stored in the storage box. BRIEF DESCRIPTION OF THE DRAWINGS

[0005] Figure 1 This is a schematic diagram of the disassembly of the storage box disclosed in the embodiment of the present application;

[0006] Figure 2 This is a disassembled schematic diagram of the first box assembly disclosed in the embodiment of the present application;

[0007] Figure 3 This is a schematic diagram of the structure of the inner shell disclosed in the embodiment of the present application;

[0008] Figure 4 A top view of the inner shell disclosed in the embodiment of the present application;

[0009] Figure 5 This is a disassembly diagram of the inner shell and the support member disclosed in the embodiment of the present application;

[0010] Figure 6 It is a disassembly schematic diagram of the housing, the shaft assembly, the magnet and the first decorative component disclosed in the embodiment of the present application;

[0011] Figure 7Partial disassembly schematic diagram of the outer shell, inner shell, support member and rotating shaft assembly disclosed in the embodiments of the present application;

[0012] Figure 8 Assembly schematic diagram of the outer shell, inner shell, support member and rotating shaft assembly disclosed in the embodiments of the present application;

[0013] Figure 9 Disassembly schematic diagram of the second box body assembly disclosed in the embodiments of the present application;

[0014] Figure 10 Schematic diagram of the relative opening of the first box body assembly and the second box body assembly (with the inner cover and winding part removed) disclosed in the embodiments of the present application;

[0015] Figure 11 Schematic diagram of the relative opening of the first box body assembly and the second box body assembly disclosed in the embodiments of the present application;

[0016] Figure 12 Schematic diagram of the structure of the head-mounted display device accommodated in the storage box disclosed in the embodiments of the present application;

[0017] Figure 13 First cross-sectional view of the head-mounted display device disposed in the second box body assembly disclosed in the embodiments of the present application;

[0018] Figure 14 Second cross-sectional view of the head-mounted display device disposed in the second box body assembly disclosed in the embodiments of the present application.

[0019] Explanation of reference numerals:

[0020] 100 - First box body assembly; 110 - Outer shell; 111 - Hot melt post; 120 - Inner shell; 121 - Storage space; 122 - Support part; 1221 - First support part; 1222 - Second support part; 1223 - First groove; 1224 - Second groove; 1225 - First accommodation space; 1226 - Second accommodation space; 130 - Support member; 131 - First support member; 132 - Second support member; 140 - First decorative member;

[0021] 200 - Second box body assembly; 210 - Outer cover; 211 - Positioning post; 220 - Inner cover; 221 - Avoidance hole; 222 - Clamping part; 2221 - Clamping arm; 230 - Winding part; 240 - Elastic member; 250 - Limiting part; 260 - Second decorative member;

[0022] 300 - Rotating shaft assembly; 310 - First fixing member; 311 - Through hole; 320 - Second fixing member; 330 - Shaft member;

[0023] 400 - Magnet;

[0024] 500 - Head - mounted display device; 510 - Cable. Detailed implementation manners

[0025] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0026] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally of the same category, and the number of objects is not limited. For example, the first object can be one or multiple. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / " generally represents an "or" relationship between the associated objects before and after.

[0027] Next, the wearable device provided by the embodiments of the present application will be described in detail in conjunction with the accompanying drawings, through specific embodiments and their application scenarios.

[0028] As Figures 1 to 14 shown, an embodiment of the present application discloses a storage box, which includes a first box body component 100 and a second box body component 200. The first box body component 100 and the second box body component 200 can be opened or closed relative to each other to facilitate the storage of the head - mounted display device 500. In the embodiments of the present application, the head - mounted display device 500 may include an augmented reality glasses, a virtual reality glasses, etc.

[0029] The first box body component 100 is the main storage part of the storage box. The first box body component 100 may include a housing 110, an inner housing 120, and a support member 130. The housing 110 may form a cavity, and each side and bottom of the cavity are respectively closed, and the top is open. Optionally, the housing 110 may be in the shape of a long strip housing.

[0030] In one example, the first box body component 100 may further include a first decorative member 140. The first decorative member 140 is snap - connected to the outside of both ends of the housing 110 along the first direction to improve the appearance performance of the housing 110.

[0031] The inner shell 120 is disposed in the cavity of the outer shell 110. A part of the outer wall of the inner shell 120 can be correspondingly attached to the inner wall of the cavity of the outer shell 110 to achieve the mutual assembly between the inner shell 120 and the outer shell 110. Optionally, the inner shell 120 can also be a strip-shaped shell. A storage space 121 is formed inside the inner shell 120. The head-mounted display device 500 can be placed in the storage space 121, and at least part of the storage space 121 is adapted to the shape of the head-mounted display device 500. The above at least part in the storage space 121 can support and position the head-mounted display device 500 to alleviate the shaking of the head-mounted display device 500 in the storage space 121.

[0032] In the embodiment of the present application, in order to further alleviate the problem of the shaking of the head-mounted display device 500 in the storage space 121, a support portion 122 is provided on the inner shell 120. At least part of the support portion 122 extends towards the inside of the storage space 121. Thus, the support portion 122 can support and position the head-mounted display device 500 placed in the storage space 121. Optionally, the side wall of a part of the inner shell 120 bulges towards the inside of the storage space 121 to form the support portion 122. That is, the support portion 122 can be some protruding structures, but the specific shape and setting form of the support portion 122 are not limited.

[0033] The support member 130 is a reinforcing structure of the storage box. The support member 130 is disposed between the outer shell 110 and the inner shell 120, and the support member 130 is respectively attached to a part of the outer shell 110 and a part of the inner shell 120. Optionally, the support member 130 can be a sheet structure or a block structure, etc. The support member 130 can be respectively attached to the inner wall of a part of the outer shell 110 and the outer wall of a part of the inner shell 120. Thus, the support member 130 can support and position the inner shell 120 to prevent the bearing effect of the inner shell 120 from being weakened due to the gap between the inner shell 120 and the outer shell 110. Based on the above settings, when the head-mounted display device 500 in the storage space 121 shakes and collides with and squeezes the various wall surfaces of the inner shell 120, the support member 130 can play a certain role in supporting and positioning the inner shell 120 to prevent the inner shell 120 from being greatly deformed or damaged when being collided or squeezed. Optionally, the support member 130 can be made of foaming materials such as EVA or EPS. Generally, the density of the support member 130 is at 0.02 g / cm 3 Below.

[0034] It should be noted here that the inner shell 120 can be made of a hard material, such as hard plastic, etc., or can also be made of a soft material, such as silica gel, soft plastic, etc. In one embodiment, the inner shell 120 is made of TPE (thermoplastic elastomer), and its hardness is selected from 50A - 90A. Optionally, the hardness is selected as 65A, 70A, or 75A to meet actual requirements. When the inner shell 120 is made of a hard material, the head-mounted display device 500 shakes in the storage space 121 and collides with and is squeezed by the inner shell 120, which is likely to cause damage to the head-mounted display device 500 or the inner shell 120. Based on this, it is necessary to comprehensively support and limit the head-mounted display device 500 through the support portion 122 and the inner wall of the inner shell 120 to prevent the head-mounted display device 500 from shaking in the storage space 121 to the greatest extent, so as to ensure that the storage box and the head-mounted display device 500 are not damaged. When the inner shell 120 is made of a soft material, the head-mounted display device 500 shakes in the storage space 121 and collides with or is squeezed by the inner shell 120. At this time, the inner shell 120 can play a certain buffering role and can relieve the damage caused by the collision or extrusion between the head-mounted display device 500 and the inner shell 120. Of course, considering that the inner shell 120 deforms after being collided and squeezed by the head-mounted display device 500 and cannot support and limit the shaking of the head-mounted display device 500, in the embodiment of the present application, the support member 130 is used to limit the inner shell 120 from deforming greatly. Thus, both the problem of damage caused by the collision and extrusion between the head-mounted display device 500 and the inner shell 120 is avoided, and the support and limiting effect on the head-mounted display device 500 is not lost due to the large deformation of the inner shell 120.

[0035] Please refer to Figure 3, in some alternative embodiments, the supporting portion 122 may include a first supporting portion 1221 and a second supporting portion 1222, and the shapes and installation positions of the first supporting portion 1221 and the second supporting portion 1222 are different. Optionally, the first supporting portion 1221 is disposed on at least one side of the accommodating space 121 along a first direction, the second supporting portion 1222 is disposed on at least one side of the accommodating space 121 along a second direction, and the first direction is perpendicular to the second direction. Optionally, the entire storage box may be a strip-shaped structure, the first direction is the length direction of the storage box, and the second direction is the width direction of the storage box. Based on this, the first supporting portion 1221 is disposed on one or both sides of the accommodating space 121 in the length direction, and the second supporting portion 1222 is disposed on one or both sides of the accommodating space 121 in the width direction. When the head-mounted display device 500 is an augmented reality glasses or a virtual reality glasses, considering the specific shape of the augmented reality glasses or the virtual reality glasses, in this embodiment, the first supporting portions 1221 are disposed on both sides of the accommodating space 121 in the length direction, and the second supporting portion 1222 is disposed on one side of the accommodating space 121 in the width direction. In this way, the two ends of the length direction of the frame of the augmented reality glasses or the virtual reality glasses can be respectively supported by the first supporting portions 1221 on both sides, or the ends of the two temple arms away from the frame can be supported. In addition, one side of the frame of the augmented reality glasses or the virtual reality glasses in the width direction is supported by the second supporting portion 1222 on one side, and the other side of the frame in the width direction is supported and limited by the inner wall of the accommodating space 121. For details, please refer to Figure 13 and Figure 14 . Based on the above settings, the two first supporting portions 1221, one second supporting portion 1222, and a part of the inner wall of the accommodating space 121 jointly achieve the supporting and limiting functions for the head-mounted display device 500 to prevent the head-mounted display device 500 from shaking in the accommodating space 121.

[0036] Please refer to Figure 3 、 Figure 4 、 Figure 13 and Figure 14, in some alternative embodiments, the inner shell 120 has a first side extending in a first direction, and a first support portion 1221 and a first accommodation space 1225 are formed on the first side of the inner shell 120, and a first groove 1223 is formed on the back side of the inner shell 120. The first groove 1223 is disposed corresponding to the first support portion 1221. Optionally, the side walls on both sides in the length direction of the inner shell 120 protrude from the outside of the accommodation space 121 to the inside of the accommodation space 121, so that the first support portions 1221 on both sides are formed inside the accommodation space 121. At the same time, the first groove 1223 is formed outside the accommodation space 121, and the first groove 1223 is disposed corresponding to the first support portion 1221, that is, the first support portion 1221 is inside the accommodation space 121, and the first groove 1223 is outside the accommodation space 121, and the relative positions of the first support portion 1221 and the first groove 1223 on the inner shell 120 are the same. Further considering the specific shape of the head-mounted display device 500, in the embodiment of the present application, while forming the first support portion 1221, a part of the first support portion 1221 protrudes from the inside of the accommodation space 121 to the outside, so that a part of the surface of the first support portion 1221 is recessed to form the first accommodation space 1225. When the head-mounted display device 500 is placed in the accommodation space 121, both ends of the head-mounted display device 500 are respectively embedded in the first accommodation spaces 1225 on both sides in the length direction of the accommodation space 121. Based on the above settings, the first support portion 1221 can support and limit part of the structure of the head-mounted display device 500, and the first accommodation space 1225 can provide an avoidance function for part of the structure of the head-mounted display device 500, so that both the accommodation of the head-mounted display device 500 and the support and limiting functions of the head-mounted display device 500 are realized, ensuring that it will not shake randomly in the accommodation space 121.

[0037] The inner shell 120 has a second side extending in the second direction. A second support portion 1222, a second accommodation space 1226 are formed on the second side of the inner shell 120, and a second groove 1224 is formed on the back side of the second side. The second groove 1224 is disposed corresponding to the second support portion 1222. Optionally, the side wall on one side in the width direction of the inner shell 120 protrudes from the outside of the accommodation space 121 towards the inside of the accommodation space 121, so that the second support portion 1222 is formed inside the accommodation space 121. At the same time, the second groove 1224 is formed outside the accommodation space 121, and the second groove 1224 is disposed corresponding to the second support portion 1222. That is, the second support portion 1222 is inside the accommodation space 121, while the second groove 1224 is outside the accommodation space 121, and the second support portion 1222 and the second groove 1224 are in the same relative position on the inner shell 120. Further considering the specific shape of the head-mounted display device 500, in an alternative embodiment of the present application, while forming the second support portion 1222, a part of the second support portion 1222 protrudes from the inside of the accommodation space 121 towards the outside, so that a local surface of the second support portion 1222 is recessed to form the second accommodation space 1226. When the head-mounted display device 500 is placed in the accommodation space 121, a part of the head-mounted display device 500 is embedded in the second accommodation space 1226 on one side in the width direction of the accommodation space 121. Based on the above settings, the second support portion 1222 can support and limit a part of the structure of the head-mounted display device 500, and the second accommodation space 1226 can provide an avoidance function for a part of the structure of the head-mounted display device 500, so that both the accommodation of the head-mounted display device 500 and the support and limiting functions for the head-mounted display device 500 are realized, ensuring that it does not shake randomly in the accommodation space 121.

[0038] Please refer to Figure 5 and Figure 7, in some optional embodiments, the support member 130 includes a first support member 131 and a second support member 132. Among them, the first support member 131 is at least partially fitted with the first groove 1223, and the second support member 132 is at least partially fitted with the second groove 1224. Optionally, the first support member 131 is buckled at the first groove 1223, and a part of the first support member 131 is embedded in the first groove 1223. And an adhesive, such as double-sided tape or glue, is provided between the first support member 131 and the groove surface of the first groove 1223. The first support member 131 is bonded to the first groove 1223 through the adhesive. Thus, the first support member 131 can strengthen the first groove 1223 and the first support portion 1221 of the inner shell 120 to prevent the head-mounted display device 500 in the storage space 121 from colliding with and squeezing the first support portion 1221, causing the inner shell 120 to be greatly deformed and losing the support and limiting functions for the head-mounted display device 500. It should be noted here that the surface profiles of the first support member 131 and the first groove 1223 that are in contact with each other are basically the same, so as to facilitate the close fitting of the first support member 131 and the first groove 1223.

[0039] In the embodiments of the present application, the second groove 1224 includes two wide groove portions and a narrow groove portion connected in the middle of the two wide groove portions. Correspondingly, the widths of both ends of the second support member 132 are larger, and the middle dimension is smaller. During installation, the portions with larger widths at both ends of the second support member 132 are embedded in the two wide groove portions of the second groove 1224, and the portion with a smaller middle dimension of the second support member 132 is embedded in the narrow groove portion of the second groove 1224. And an adhesive is provided between the second support member 132 and the second groove 1224. The second support member 132 is bonded to the second groove 1224 through the adhesive. Thus, the second support member 132 can strengthen the second groove 1224 and the second support portion 1222 inside to prevent the head-mounted display device 500 in the storage space 121 from colliding with and squeezing the second support portion 1222, causing the inner shell 120 to be greatly deformed and losing the support and limiting functions for the head-mounted enhanced device. It should be noted here that the surface profiles of the second support member 132 and the second groove 1224 that are in contact with each other are basically the same, so as to facilitate the close fitting of the second support member 132 and the second groove 1224.

[0040] Based on the above settings, when the inner shell 120 is inserted into the cavity of the inner shell 120, the portion of the first support member 131 outside the first groove 1223 and the portion of the second support member 132 outside the second groove 1224 can both be in contact with the inner wall of the outer shell 110. Thus, the first support member 131 and the second support member 132 support and limit the inner shell 120 from different parts to prevent the inner shell 120 from being greatly deformed and losing the support and limiting functions for the head-mounted display device 500.

[0041] In some alternative embodiments, the inner shell 120 is made of a flexible material such as silicone, rubber, flexible plastic, etc., and the support member 130 is made of a rigid material such as rigid plastic, etc. In this way, the hardness of the support member 130 is greater than that of the inner shell 120 to ensure the supporting and limiting effects on the inner shell 120.

[0042] In some alternative embodiments, the inner shell 120 and the support member 130 can be an integral structure and can be integrally injection-molded. Specifically, when manufacturing the inner shell 120, additional material can be added to a part of the inner shell 120 so that this part can bear greater forces from the head-mounted display device 500.

[0043] Of course, in some other embodiments, it can also be that the inner shell 120 has an integral structure, the support member 130 has an integral structure, and later the support member 130 is assembled onto the inner shell 120 to play a supporting and limiting role on the inner shell 120.

[0044] Please refer to Figures 9 to 12 , in some alternative embodiments, the second box body assembly 200 defines a cavity and includes a wire winding portion 230 disposed in the cavity. The wire winding portion 230 is configured to wind the cable 510 of the head-mounted display device 500. The wire winding portion 230 is disposed in the cavity on one side of the second box body assembly 200 and extends away from the second box body assembly 200. Based on the setting of the wire winding portion 230, when the head-mounted display device 500 is placed in the storage space 121, the cable 510 of the head-mounted display device 500 can be wound around the wire winding portion 230, thereby effectively preventing the cable 510 from moving around in the storage box.

[0045] Optionally, the second box body assembly 200 includes an outer cover 210 and an inner cover 220 disposed on one side of the outer cover 210. A positioning post 211 is provided on one side surface of the outer cover 210. The outer cover 210 has a shallow groove, and the inner cover 220 is located on the inner side of the outer cover 210 and embedded in the shallow groove of the outer cover 210. Further, a positioning post 211 is provided on the groove surface of the shallow groove of the outer cover 210, and one end of the winding part 230 is connected with the positioning post 211. In order to avoid the winding part 230, an avoidance hole 221 is opened on the inner cover 220. When installing the winding part 230, the winding part 230 is partially passed through the avoidance hole 221, and then the winding part 230 is installed on the positioning post 211 to achieve fixed installation of the winding part 230. The winding portion 230 has a first end passing through the avoidance hole 221 and connected to the positioning column 211, and a second end opposite to the first end, wherein the second end extends in a direction away from the second housing assembly. In addition, the second box assembly 200 further includes a second decorative member 260, which is mounted on the outer sides of both ends of the outer cover 210 along the first direction by snap fasteners to improve the appearance performance of the second box assembly 200.

[0046] See also Figure 9 In some optional embodiments, the second end of the winding portion 230 (which may be the end away from the positioning column 211) is provided with a limiting portion 250, the limiting portion 250 extends along the first direction, and the limiting portion 250 is arranged toward the first end (which may be the outer end) of the second box body assembly 200. Further, a winding space is formed between the winding portion 230 and the limiting portion 250. Optionally, an arc surface is formed between the winding portion 230 and the limiting portion 250, and the arc surface is used to contact the cable 510. When the cable 510 is wound on the winding portion 230, the cable 510 is located in the winding space in circles, so that the cable 510 is not easy to be separated from the winding portion 230 and move around in the storage box.

[0047] Please continue to see Figure 9 In some optional embodiments, an elastic member 240 is provided on the end surface of the limiting portion 250 that is away from the winding portion 230. The elastic member 240 may be foam, a rubber pad, etc. Optionally, the elastic member 240 may be a layered structure, and the elastic member 240 is attached to the surface of the limiting portion 250. When the second box body assembly 200 and the first box body assembly 100 are relatively covered, the elastic member 240 is pressed against the head-mounted display device 500. In this way, the winding portion 230 presses the head-mounted display device 500 through the limiting portion 250 and the elastic member 240, which can limit the shaking of the head-mounted display device 500 in the storage box to a certain extent. At the same time, the elastic member 240 plays a buffering role to prevent the limiting portion 250 from directly colliding with the head-mounted display device 500 and causing damage.

[0048] See also Figure 12In some optional embodiments, there are two groups of winding parts 230, and the two groups of winding parts 230 are arranged at intervals (can be symmetrical) along the first direction. Correspondingly, a limiting part 250 is respectively arranged on each group of winding parts 230. At this time, the winding space formed by each group of winding parts 230 and the corresponding limiting part 250 is arranged outward. That is, the two groups of winding spaces are arranged opposite to each other along the first direction, so that the cable 510 can be restricted by the two groups of winding spaces arranged opposite to each other after winding, so as to prevent the cable 510 from escaping from the winding space and moving in the storage box.

[0049] See also Figure 9 , Figure 11 and Figure 12 In order to prevent the end of the cable 510 from moving around randomly after the cable 510 is wound around the winding part 230, a clamping part 222 is provided on the inner side surface of the inner cover 220 in the embodiment of the present application, and the clamping part 222 is located between the two groups of winding parts 230. In one embodiment, the clamping part 222 includes two clamping arms 2221 arranged opposite to each other, and the clamping arms 2221 can specifically be a plate body or a block body, and the two clamping arms 2221 are arranged according to a preset arrangement. Optionally, the two clamping arms 2221 are arranged at a certain distance from each other, so as to facilitate embedding the end of the cable 510 between the two clamping arms 2221. Furthermore, the two clamping arms 2221 are arranged in parallel, and the distance between the two clamping arms 2221 is smaller than the diameter of the cable 510 of the head-mounted enhancement device or the size of the connector. When the cable 510 or the connector is embedded between the two clamping arms 2221, the two clamping arms 2221 can clamp the cable 510 or the connector to prevent the cable 510 or the connector from being separated from the clamping portion 222. Based on the above configuration, the clamping portion 222 can limit the cable 510 or the connector to prevent the cable 510 or the connector from moving in the storage box.

[0050] See also Figure 1 , Figure 6 , Figure 7 , Figure 10 , Figure 11 and Figure 12 In some optional embodiments, one side of the first box body assembly 100 and one side of the second box body assembly 200 are hinged to achieve opening or closing between the other side of the first box body assembly 100 and the other side of the second box body assembly 200.

[0051] Optionally, the storage box includes a rotating shaft assembly 300. Through the rotating shaft assembly 300, the second box body assembly 200 can be flipped relative to the first box body assembly 100 by different angles, such as 120°, 180°, etc. The rotating shaft assembly 300 may include a first fixing member 310, a second fixing member 320, and a shaft member 330. The first fixing member 310 and the second fixing member 320 are rotatably connected by the shaft member 330. To fix the first fixing member 310 to one side of the first box body assembly 100 and the second fixing member 320 to one side of the second box body assembly 200. Optionally, through holes 311 are respectively provided on the first fixing member 310 and the second fixing member 320. Correspondingly, hot melt posts 111 are respectively provided on one side of the first box body assembly 100 and one side of the second box body assembly 200. The hot melt posts 111 are inserted into the through holes 311. By heating the hot melt posts 111 and hot pressing the ends of the hot melt posts 111, the hot melt posts 111 will not break away from the through holes 311. Based on the above settings, through the cooperation of the hot melt posts 111 and the through holes 311, the first fixing member 310 can be fixed to one side of the first box body assembly 100, and the second fixing member 320 can be fixed to one side of the second box body assembly 200. Thus, the other side of the first box body assembly 100 and the other side of the second box body can be opened or closed.

[0052] Please continue to refer to Figure 6 , in order to prevent the other side of the first box body assembly 100 from being randomly opened relative to the other side of the second box body assembly 200. In the embodiment of the present application, magnetic members 400, such as magnets, are respectively provided on the other side of the first box body assembly 100 and the other side of the second box body assembly 200. When the first box body assembly 100 and the second box body assembly 200 are closed to each other, the first box body assembly 100 and the second box body assembly 200 are not easily opened relative to each other by the mutual adsorption of the magnets 400. Optionally, grooves can be respectively opened on the other side of the first box body assembly 100 and the other side of the second box body assembly 200, and the magnets 400 are embedded into the grooves and bonded to achieve the fixation of the magnets 400.

[0053] In summary, by providing the support portion 122 in the storage space 121 of the inner shell 120, the head mounted display device 500 can be supported and limited to prevent the head mounted display device 500 from shaking in the storage box; by providing the support member 130 between the inner shell 120 and the outer shell 110, a part of the gap between the inner shell 120 and the outer shell 110 can be filled, so as to support the inner shell 120 and ensure that the inner shell 120 has sufficient mechanical strength to prevent the inner shell 120 from being greatly deformed after being hit or squeezed by the head mounted display device 500; The cable 510 of the head mounted display device 500 can be limited to prevent the cable 510 from moving in the storage box, and the overall structure of the head mounted display device 500 can be stable and compact; the end or connector of the cable 510 can be clamped by the clamping portion 222, so as to prevent the end or connector of the cable 510 from moving and causing the cable 510 to be separated from the winding portion 230; the elastic member 240 can play a buffering role, so as to prevent the winding portion 230, the limiting portion 250 and the head mounted display device 500 from colliding and being damaged while squeezing the head mounted display device 500.

[0054] The present application also discloses a storage kit, including items to be stored and the storage box in the above embodiment, wherein the items to be stored may include a head-mounted display device 500, and the head-mounted display device 500 may be stored in the storage box, thereby effectively alleviating the problem of the head-mounted display device 500 shaking randomly in the storage box. Of course, the items to be stored may also include other devices, and the present application does not limit the specific type of the items to be stored.

[0055] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of the present application, ordinary technicians in this field can also make many forms without departing from the scope disclosed in the present application, all of which are within the protection of the present application.

Claims

1. A storage box, comprising: A first box body component, the first box body component includes an outer shell, an inner shell, and a support member disposed between the inner shell and the outer shell; The support member is a strengthening structure of the storage box; the outer shell forms a cavity, and the inner shell is disposed in the cavity of the outer shell; the support member is disposed between the outer shell and the inner shell, and the support member is at least partially attached to the outer shell and the inner shell respectively; the inner shell forms a storage space, and at least part of the storage space is matched with the shape of the head-mounted display device; the inner shell forms a support portion, and at least part of the support portion extends convexly toward the inside of the storage space, and a groove is correspondingly recessed on the outer side of the inner shell where the support portion is formed; at least part of the support member is attached to the groove formed by the support portion; the support member is respectively attached to the local inner wall of the outer shell and the local outer wall of the inner shell, so as to support and limit the support portion of the inner shell through the support member, so as to prevent a gap between the inner shell and the outer shell from weakening the bearing effect of the inner shell; A second box body component, the second box body component is arranged to be opened or closed relative to the first box body component; The support portion includes a first support portion and a second support portion. The first support portions are respectively disposed on both sides in the length direction of the storage space, and are respectively used to support both ends in the length direction of the head-mounted display device. The second support portion is disposed on one side in the width direction of the storage space and is used to support one side in the width direction of the head-mounted display device. The two first support portions, one second support portion, and part of the inner wall of the storage space are jointly used to support and limit the head-mounted display device.

2. The storage box according to claim 1, wherein, A part of the first support portion protrudes outward from the inside of the storage space, so that a part of the surface of the first support portion is recessed to form a first accommodation space; The inner shell forms a first groove on the outer side of the storage space, and the first groove is correspondingly arranged with the first support portion; A part of the second support portion protrudes outward from the inside of the storage space, so that a part of the surface of the second support portion is recessed to form a second accommodation space; The inner shell forms a second groove on the outer side of the storage space, and the second groove is correspondingly arranged with the second support portion.

3. The storage box according to claim 2, wherein, The support member includes a first support member and a second support member; At least part of the first support member is attached to the first groove; At least part of the second support member is attached to the second groove.

4. The storage box according to claim 1, wherein, The inner shell is made of a soft material; the support member is made of a hard material; the hardness of the hard material is greater than the hardness of the soft material.

5. The storage box according to claim 1, wherein, The inner shell and the support member are of an integral structure.

6. The storage box according to any one of claims 1 to 5, wherein The second box body component defines a cavity and includes a wire winding portion disposed in the cavity, and the wire winding portion is configured to wind the cable of the head-mounted display device.

7. The storage box according to claim 6, wherein, The second box body assembly includes an outer cover and an inner cover disposed on one side of the outer cover. A positioning post is provided on one side surface of the outer cover, and an avoidance hole is formed in the inner cover. The winding portion has a first end passing through the avoidance hole and cooperatively connected with the positioning post and a second end opposite to the first end, and the second end extends in a direction away from the second box body assembly.

8. The storage box according to claim 7, wherein, A limiting portion is provided at the second end of the winding portion. The limiting portion extends along the length direction of the storage space, and a winding space is formed between the first end of the winding portion and the limiting portion.

9. The storage box according to claim 8, wherein, An elastic member is provided on the end surface of the limiting portion facing away from the winding portion.

10. The storage box according to claim 9, wherein, There are two winding portions, and the two winding portions are arranged at intervals along the length direction of the storage space.

11. The storage box according to claim 10, wherein, A clamping portion is provided on one side surface of the inner cover, and the clamping portion is disposed between the two winding portions.

12. The storage box according to claim 11, wherein, The clamping portion includes two oppositely arranged clamping arms, and the two clamping arms are arranged in a preset arrangement manner.

13. The storage box according to claim 12, wherein, The preset arrangement manner includes that the two clamping arms are arranged in parallel, and the distance between the two clamping arms is less than the diameter of the cable of the head-mounted display device or the size of the connector.

14. The storage box according to any one of claims 1 to 5, wherein, One side of the first box body assembly is hinged to one side of the second box body assembly, and the other side of the first box body assembly and the other side of the second box body assembly can be opened or closed.

15. The storage box according to claim 14, wherein, The storage box further includes a rotating shaft assembly. The rotating shaft assembly includes a first fixing member, a second fixing member, and a shaft member rotatably connecting the first fixing member and the second fixing member. Through holes are respectively provided on the first fixing member and the second fixing member. Heat melting columns are respectively provided on one side of the first box body assembly and one side of the second box body assembly. The heat melting columns pass through the through holes. The first fixing member is fixed to the first box body assembly, and the second fixing member is fixed to the second box body assembly.

16. The storage box according to claim 15, wherein, Magnets for magnetic attraction cooperation are respectively provided on the other side of the first box body assembly and the other side of the second box body assembly.

17. A storage kit, comprising: An article to be stored and the storage box according to any one of claims 1 to 13; The article to be stored includes the head-mounted display device, and the head-mounted display device is stored in the storage box.

Citation Information

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