Support convenient to store

By designing a detachable and easily stored bracket, and utilizing the deformation characteristics of the flexible part, the bracket can switch between support and storage states, solving the problem of bulky storage brackets. It provides flexible support and angle adjustment to adapt to the usage needs of different electronic devices.

CN223563940UActive Publication Date: 2025-11-18SHENZHEN BASEUS TECH CO LTD
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Patent Information

Application Number
CN202423321684.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-18
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing storage racks are bulky and take up a lot of space when not in use, making them inconvenient to store and carry.

Method used

Design a storage bracket, including a first connecting part, a flexible part and a second connecting part. The flexible part allows the position of the second connecting part to be changed by deformation. The bracket has a supporting state and a storage state. In the supporting state, the second connecting part extends out of the storage cavity to provide support, and in the storage state, it is partially or completely stored in the storage cavity.

Benefits of technology

The stand allows for easy storage, folding away compactly when not in use to save space, while also offering flexible support and angle adjustment to suit the needs of different electronic devices.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a support convenient to store. The support is suitable for being connected with electronic equipment in a separable mode. The support convenient to store comprises a first connecting part, the first connecting part is suitable for being connected with an external component, and the first connecting part is provided with a storage cavity. One end of the flexible part is connected to the first connecting part. The second connecting part is connected to the other end of the flexible part, and the flexible part is configured to change the relative position of the second connecting part and the first connecting part through deformation. Wherein the support convenient to store has a supporting state and a storage state, in the supporting state, the second connecting part is located outside the storage cavity, and the second connecting part is suitable for being connected with the electronic equipment; in the storage state, at least part of the second connecting part is stored in the storage cavity. According to the support convenient to store, the effect of supporting the electronic equipment can be achieved, and the requirement for portability is met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a support technical field, especially a support convenient to store. BACKGROUND

[0002] With the rapid development of mobile internet, electronic equipment has become an indispensable part in people's daily life. People enjoy the convenience and entertainment brought by electronic equipment, and also put forward higher requirements on the use experience. Among them, the support convenient to store as a kind of auxiliary tool that can free hands and provide convenient viewing angle is welcomed by the majority of users.

[0003] However, in the existing support convenient to store market, although the product variety is various, the design is different, but there are some difficult to overcome technical problems. Since the support convenient to store needs to ensure sufficient stability and larger angle adjustment range in the use process, many supports convenient to store adopt longer support arm and wider base design. This design indeed improves the stability and use flexibility of the support convenient to store to some extent, but also brings obvious disadvantages.

[0004] Specifically, the longer support arm and the wider base make the support convenient to store appear bulky when not in use, occupy more space, and are not convenient to store and carry. CONTENT OF THE UTILITY MODEL

[0005] The main purpose of the utility model is to provide a support convenient to store, which can not only realize the support effect of electronic equipment, but also consider the demand of portability.

[0006] In order to achieve the above purpose, the utility model provides a support convenient to store, which is suitable for separable connection with electronic equipment, and the support convenient to store comprises:

[0007] The first connecting part is suitable for connecting external components, and has a storage cavity.

[0008] The flexible part is connected to one end of the first connecting part.

[0009] The second connecting part is connected to the other end of the flexible part, and the flexible part is configured to change the relative position of the second connecting part and the first connecting part by deformation.

[0010] Among them, the support convenient to store has a support state and a storage state. In the support state, the second connecting part is located outside the storage cavity, and the second connecting part is suitable for connecting electronic equipment. In the storage state, the second connecting part is at least partially stored in the storage cavity.

[0011] In some embodiments, in the supporting state, the flexible part is at least partially located outside the receiving cavity, and in the receiving state, the flexible part is at least partially received in the receiving cavity.

[0012] In some embodiments, the first connecting part includes a first connecting member, a second connecting member, and a shell body, the shell body defines a receiving cavity for receiving the first connecting member and the second connecting member, the first connecting member and the second connecting member are both connected to the flexible part, and the first connecting member and the second connecting member are both adapted to connect to an external component.

[0013] In some embodiments, in the supporting state, the first connecting member is located outside the receiving cavity, and / or the second connecting member is located outside the receiving cavity;

[0014] In the receiving state, the first connecting member is at least partially located in the receiving cavity, and the second connecting member is at least partially located in the receiving cavity.

[0015] In some embodiments, the flexible part includes a curved rib, and along the extension direction of the curved rib, the first connecting member and the second connecting member are respectively connected to opposite ends of the curved rib.

[0016] In some embodiments, the first connecting member includes a first magnet, the second connecting member includes a second magnet, and the first magnet and the second magnet attract each other.

[0017] In some embodiments, the first connecting part includes a shell body and a first connecting member, the shell body defines a receiving cavity, the first connecting member is adapted to connect to an external component, the shell body is adapted to connect to an external component, the shell body and the first connecting member are both connected to the flexible part, in the supporting state, the first connecting member is located outside the receiving cavity, and in the receiving state, the first connecting member is at least partially located in the receiving cavity.

[0018] In some embodiments, the shell body is provided with an opening, and the opening communicates with the receiving cavity; or,

[0019] The outer wall of the shell body is recessed to form a receiving groove, and the receiving groove is configured as the receiving cavity.

[0020] In some embodiments, the convenient-to-receive support includes a locking structure, the locking structure is respectively connected to the second connecting part and the flexible part, the locking structure has a locked state and an unlocked state, in the locked state, the locking structure limits the movement of the second connecting part relative to the flexible part, and in the unlocked state, the second connecting part can move relative to the flexible part.

[0021] In some embodiments, the first connecting part includes a magnetic attraction structure, and the magnetic attraction structure magnetically attracts and adsorbs the external component; or,

[0022] The first connecting part includes a threaded structure, and the threaded structure is threadedly connected to the external component; or,

[0023] The first connecting part includes a binding structure, and the binding structure is bound to the external component; or,

[0024] The first connecting part comprises a suction disc structure, and the suction disc structure is adsorbed to the external component; or,

[0025] The first connecting part comprises a bonding structure, and the bonding structure is bonded to the external component; or,

[0026] The first connecting part comprises a nesting structure, and the nesting structure is interference-fitted with the external component; or,

[0027] The first connecting part comprises a clamping structure, and the clamping structure clamps the external component;

[0028] The first connecting part comprises a clamping structure, and the clamping structure clamps the external component;

[0029] The second connecting part comprises a magnetic suction structure, and the magnetic suction structure magnetically adsorbs the electronic device; or,

[0030] The first connecting part comprises a threaded structure, and the threaded structure is threadedly connected with the electronic device; or,

[0031] The first connecting part comprises a binding belt structure, and the binding belt structure is bound to the electronic device; or,

[0032] The first connecting part comprises a suction disc structure, and the suction disc structure is adsorbed to the electronic device; or,

[0033] The first connecting part comprises a bonding structure, and the bonding structure is bonded to the electronic device; or,

[0034] The first connecting part comprises a nesting structure, and the nesting structure is interference-fitted with the electronic device; or,

[0035] The first connecting part comprises a clamping structure, and the clamping structure clamps the electronic device;

[0036] The first connecting part comprises a clamping structure, and the clamping structure clamps the electronic device.

[0037] Compared with the prior art, the utility model has the advantages that:

[0038] The utility model discloses a support convenient to store, and the support convenient to store is suitable for separable connection electronic device. The support convenient to store includes a first connecting part, a flexible part and a second connecting part. The first connecting part has a storage cavity for storing other components, which makes the whole device compactly stored or folded together when not in use, saving space.

[0039] One end of the flexible part is connected to the first connecting part, and the other end is connected to the second connecting part. The flexible part allows the position of the second connecting part relative to the first connecting part to be changed by its own deformation. The flexible part can use a material with elastic and plastic deformation capability. When subjected to an external force, the flexible part can bend or stretch, thereby moving the second connecting part to the desired position. When the external force disappears, the flexible part can restore to its original state to some extent, or the flexible part can be restored to its original state by applying an external force again, ensuring that the second connecting part returns to the initial position or remains in the new set position. Such a structure realizes the support of different electronic devices by the conveniently stored support, and increases the flexibility and adaptability of use.

[0040] The conveniently stored support has two working modes: a supporting state and a storage state. In the supporting state, the second connecting part is located outside the storage cavity, so that the electronic device can be conveniently connected to the second connecting part to provide stable support. Specifically, when the second connecting part protrudes from the storage cavity, it provides sufficient space for the electronic device to remain upright or inclined, so that the user can watch the screen or operate the device. In the storage state, the second connecting part is at least partially stored in the storage cavity of the first connecting part, reducing the overall volume of the conveniently stored support, so that the conveniently stored support is convenient to carry and store. In this way, the conveniently stored support not only realizes functional diversification, but also takes into account the demand for portability. BRIEF DESCRIPTION OF DRAWINGS

[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from the structures shown in these drawings without creative labor.

[0042] Figure 1 It is a structural schematic diagram of the conveniently stored support in the first embodiment of the present application.

[0043] Figure 2 It is a structural schematic diagram of the conveniently stored support in the first embodiment of the present application. Figure 1

[0044] Figure 3 It is a structural schematic diagram of the conveniently stored support in the second embodiment of the present application.

[0045] Figure 4 It is a structural schematic diagram of the conveniently stored support in the second embodiment of the present application. Figure 3 It is an exploded structural schematic diagram of the conveniently stored support in the second embodiment of the present application.

[0046] Figure 5 It is a structural schematic diagram of the conveniently stored support in the third embodiment of the present application.​

[0047] Figure 6 Structure diagram of the bracket convenient to store in the fourth embodiment of the utility model;

[0048] Figure 7 Structure diagram of the bracket convenient to store in the fifth embodiment of the utility model;

[0049] Figure 8 Structure diagram of the bracket convenient to store in the sixth embodiment of the utility model;

[0050] Figure 9 Structure diagram of the locking structure in an embodiment of the utility model, wherein the locking structure is a bolt structure.

[0051] Explanation of the reference signs:

[0052] First connecting part 100;First connecting piece 110;Second connecting piece 120;Shell main body 130;Storage cavity 131;

[0053] Flexible part 200;

[0054] Second connecting part 300;

[0055] Locking structure 400;

[0056] Electronic device 500;

[0057] External component 600.

[0058] The realization, functional features and advantages of the utility model will be further described with reference to the accompanying drawings in combination with embodiments. DETAILED DESCRIPTION

[0059] The technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the accompanying drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0060] With reference to Figures 1 to 4 The utility model provides a kind of bracket convenient to store, and the bracket convenient to store is suitable for separable connection electronic device 500.In some embodiments, the bracket convenient to store includes first connecting part 100, flexible part 200 and second connecting part 300.First connecting part 100 has storage cavity 131, and storage cavity 131 is used to store other components, so that the entire device can be compactly stored or folded together when not in use, save space.

[0061] The flexible part 200 is connected to the first connecting part 100 at one end and to the second connecting part 300 at the other end. The flexible part 200 allows the position of the second connecting part 300 relative to the first connecting part 100 to be changed by deforming itself. The flexible part 200 can use a material that has elastic and plastic deformation capabilities. When an external force is applied, the flexible part 200 can bend or stretch, thereby moving the second connecting part 300 to a desired position. When the external force disappears, the flexible part 200 can recover to some extent, or the flexible part 200 can be restored to its original state by applying an external force again, ensuring that the second connecting part 300 returns to the initial position or remains in the new set position. Such a structure realizes the support of different electronic devices 500 by the conveniently-stored support, increasing the flexibility and adaptability of use.

[0062] The conveniently-stored support has two working modes: a supporting state and a storage state. In the supporting state, the second connecting part 300 is located outside the storage cavity 131, so that the electronic device 500 can be conveniently connected to the second connecting part 300, providing stable support. Specifically, when the second connecting part 300 extends out of the storage cavity 131, it provides sufficient space for the electronic device 500 to stand upright or tilt, so that the user can watch the screen or operate the device. In the storage state, the second connecting part 300 is at least partially stored in the storage cavity 131 of the first connecting part 100, reducing the overall volume of the conveniently-stored support, making the conveniently-stored support convenient to carry and store. In this way, the conveniently-stored support not only realizes functional diversification, but also takes into account the demand for portability.

[0063] Regarding the flexible part 200, the flexibility of the flexible part 200 in this application refers to its ability to change shape. Specifically, the flexible part 200 can be forced to change shape by an external force and return to its original state after the external force is removed. The flexible part 200 can also be forced to change shape by an external force and remain in the deformed state after the external force is removed. In some embodiments, the flexible part 200 can be loaded with a mechanical motor, an electric motor, or other driving structure to actively deform itself. In some embodiments, the flexible part 200 is a joint structure composed of multiple rigid segments (in this application, "flexible" is defined as the deformation that can be substantially recovered, and "rigid" is defined as having higher hardness than flexible and being difficult to recover after macroscopic deformation). The shape of the flexible part 200 is changed by adjusting this joint assembly, which also falls within the scope of the flexible part 200 in this application.

[0064] Regarding the definition of one end and the other end of the flexible part 200, it can be understood that the flexible part 200 can be a rod-shaped structure, and the rod-shaped structure has two opposite ends, which are one end and the other end as mentioned above; the flexible part 200 can also be a polygonal structure, and different two corners of the polygon are one end and the other end as mentioned above. The expression of two ends is intended to distinguish different positions of the flexible part 200, and the two connection positions do not interfere with each other.

[0065] Regarding the design of the receiving cavity 131, the receiving cavity 131 can be a closed cavity, that is, the cavity is sealed; the receiving cavity 131 can also be an open cavity, for example, a groove is arranged on the outside of the first connecting part 100, and the groove is used to receive the second connecting part 300, at this time, the groove is the receiving cavity 131 in the present application.

[0066] Regarding that the second connecting part 300 is at least partially received in the receiving cavity 131, specifically, in the receiving state, the second connecting part 300 can be entirely arranged in the receiving cavity 131, and the second connecting part 300 can also only partially extend into the receiving cavity 131, so that the space occupied by the support convenient for receiving can be saved.

[0067] It can be understood that in some embodiments, in addition to having the receiving cavity 131, the first connecting part 100 of the support convenient for receiving can also include additional functional modules, such as a charging interface or an audio output interface, etc., so as to enhance the functionality of the support convenient for receiving. These functional modules can be embedded in the wall surface of the receiving cavity 131 or arranged at a position that does not affect the receiving function, so as to provide more convenience for users.

[0068] In some embodiments, the flexible part 200 can be made of various materials, such as memory metal, elastic plastic or composite fiber, etc. Different materials can be selected to optimize the performance of the flexible part 200 according to the expected application scenario. For example, for occasions that require frequent adjustment of angles, materials with good resilience can be selected; and for applications that pursue high strength stability, materials with higher strength but still have certain flexibility should be considered. In addition, the cross-sectional shape of the flexible part 200 can also be designed according to actual needs, such as circular, flat or elliptical, etc., to adapt to different mechanical requirements.

[0069] In some embodiments, the connection between the second connection part 300 and the electronic device 500 can be achieved by direct physical contact, magnetic attraction, buckling, clamping or other connection mechanisms. For example, if the surface of the electronic device 500 has a metal part, a magnet can be built into the second connection part 300 to achieve quick and stable connection. This connection method is simple to operate and can automatically align within a certain range, improving the user experience. At the same time, in order to further strengthen the safety and stability of the connection, anti-slip textures or high-friction material coverings can be designed around the second connection part 300 to prevent the electronic device 500 from accidentally falling.

[0070] Referring to Figures 1 to 4 In some embodiments, in the supporting state, the flexible part 200 is at least partially outside the storage cavity 131; in the storage state, the flexible part 200 is at least partially stored in the storage cavity 131. This design allows the flexible part 200 to stretch or shrink according to the user's needs, thereby changing the position of the second connection part 300 relative to the first connection part 100. When in the supporting state, the flexible part 200 needs to have sufficient length and flexibility to support the electronic device 500 and ensure that the electronic device 500 can be stably placed at the desired angle and position. For this purpose, the outer part of the flexible part 200 is designed to be long enough to be freely bent and adjusted to the appropriate state. This not only makes it convenient for the user to connect the electronic device 500 to the second connection part 300, but also allows the user to adjust the shape of the flexible part 200 to meet the viewing or operating needs in different scenarios.

[0071] When switching to the storage state, the design of the flexible part 200 allows it to be compressed or folded into the storage cavity 131 of the first connection part 100. The material and structure of the flexible part 200 can have good flexibility and elasticity while ensuring a certain strength. For example, the flexible part 200 can be made of metal wire, plastic or other composite materials with memory function, so that it can not only maintain a certain shape under no force, but also quickly recover to its original shape after being subjected to external force. Therefore, when the portable bracket is not needed for use, the user can manually squeeze or with the help of some mechanical device to gradually reduce the volume of the flexible part 200 and finally completely or partially store it in the storage cavity 131, achieving the purpose of compact storage.

[0072] It can be understood that, in some embodiments, in order to further optimize the conversion efficiency of the flexible part 200 between different states and enhance the user experience, a spring or similar elastic element can be arranged inside the flexible part 200. Such an elastic element can store energy when the flexible part 200 is stretched and help it quickly reset when released, thereby speeding up the transition from the support state to the storage state. At the same time, it can also be considered to add a wear-resistant coating to the surface of the flexible part 200 or use a more durable material to reduce wear and tear problems caused by long-term use and improve the durability of the entire conveniently storable support.

[0073] In some embodiments, considering the movement trajectory of the flexible part 200 inside and outside the storage cavity 131, a guide groove or sliding rail or other auxiliary structure can be arranged inside the storage cavity 131. These structures can guide the flexible part 200 to enter and exit the storage cavity 131 according to a predetermined path, avoid jamming, and help maintain the correct position of the flexible part 200 after each use, preventing it from twisting or winding. For some special application scenarios, such as outdoor activities or use in a frequently moving environment, the flexible part 200 can also be waterproof and dustproof, making it more suitable for harsh working conditions and ensuring normal operation even in complex environments.

[0074] Referring to Figure 7 and Figure 8 In some embodiments, the first connecting part 100 includes a first connecting piece 110, a second connecting piece 120, and a shell body 130. The shell body 130 defines a storage cavity 131 for storing the first connecting piece 110 and the second connecting piece 120. The first connecting piece 110 and the second connecting piece 120 are both connected to the flexible part 200, and the first connecting piece 110 and the second connecting piece 120 are both adapted to connect to an external component 600. Specifically, the first connecting piece 110 and the second connecting piece 120 are connected to the flexible part 200 through a specific mechanical interface, and when the conveniently storable support is in the support state, the first connecting piece 110 and the second connecting piece 120 are located outside the storage cavity 131 for connecting to the external component 600. The shell body 130 not only serves as the boundary of the storage cavity 131, but also provides a stable foundation for the entire conveniently storable support, preventing unnecessary shaking or displacement during use.

[0075] The design of the storage cavity 131 of the shell body 130 allows the first connecting piece 110 and the second connecting piece 120 to be stored therein when not in use, thereby reducing the overall volume and facilitating portability and storage. In some embodiments, in order to achieve smooth storage, the first connecting piece 110 and the second connecting piece 120 may need to be made of a material with a certain elasticity, and the gap between them and the shell body 130 should be large enough to avoid friction.

[0076] In some embodiments, the shell body 130, the first connecting member 110 and the second connecting member 120 are independent of each other, and in the supporting state, they do not affect each other, i.e., the shell body 130 is independent of the first connecting member 110, the second connecting member 120, the flexible part 200 and the second connecting part 300. Of course, it can be understood that in some embodiments, in order to prevent the loss of the shell body 130 of the convenient-to-store support in the supporting state, the shell body 130 can also be connected with any one of the first connecting member 110, the second connecting member 120 and the flexible part 200 to form an integral whole.

[0077] In some embodiments, such as installation in a vehicle, the shell body 130 can also be equipped with a corresponding mounting base or a convenient-to-store support, so that the entire device can be more firmly fixed in a designated position and is not affected by vibration during driving. Of course, the flexible part 200 can also extend out of the shell body 130 and be directly connected to the external component 600 through the shell body 130, without the need to further extend the first connecting member 110 and / or the second connecting member 120 out of the shell body 130.

[0078] Referring to Figure 7 In some embodiments, in the supporting state, the first connecting member 110 is located outside the storage cavity 131 and / or the second connecting member 120 is located outside the storage cavity 131; in the storage state, the first connecting member 110 is at least partially located in the storage cavity 131 and the second connecting member 120 is at least partially located in the storage cavity 131. When the convenient-to-store support is in the supporting state, the first connecting member 110 and / or the second connecting member 120 extend out of the storage cavity 131, which increases the effective area of contact between the convenient-to-store support and the external component 600, and improves the stability and reliability of the connection. At this time, the flexible part 200 can be freely stretched, so that the second connecting part 300 reaches the optimal working position. In the storage state, the two connecting members can be partially or entirely stored in the storage cavity 131, which reduces the overall occupied space and also protects the connecting members from external factors.

[0079] In some embodiments, the first connecting member 110 and the second connecting member 120 can be combined with the shell body 130 through hinges, sliding blocks or other forms of movable connections, to ensure that the operation is simple and easy to implement when switching states.

[0080] In some embodiments, additional functional modules such as LED lights, microphones, etc. can be integrated on the first connector 110 and / or the second connector 120 to meet the needs of specific tasks, such as outdoor exploration or live sports events. At the same time, in order to ensure normal operation in complex environments, these connectors can also be waterproof and dustproof to ensure high performance even in harsh conditions. Finally, if frequent movement between different locations is required, a convenient handle or shoulder strap design can be added to the shell body 130 to further improve user convenience.

[0081] Referring to Figures 5 to 8 In some embodiments, the flexible part 200 includes a bending strip, along the extension direction of the bending strip, the first connector 110 and the second connector 120 are respectively connected to the opposite ends of the bending strip. This design allows the flexible part 200 to deform when subjected to external forces, thereby changing the position of the second connecting part 300 relative to the first connecting part 100. The bending strip, as the main component of the flexible part 200, has sufficient flexibility to allow itself to bend and deform, and has a certain memory performance that can restore to its original state after the external force is removed. One end of the bending strip is connected to the first connector 110, and the other end is connected to the second connector 120, forming a complete connection system. The first connector 110 and the second connector 120 are combined with the bending strip through a specific mechanical interface (such as a hinge, a buckle, etc.), ensuring stable connection under various operating conditions. When it is necessary to adjust the position of the second connecting part 300, the user can bend or stretch the bending strip by manually applying force, which will cause the second connecting part 300 to move. By introducing the bending strip, the conveniently stored support obtains more flexible and variable operating characteristics. It can easily adapt to changes in different angles and support requirements, and since the bending strip can reset, it also reduces the need for frequent adjustments by the user, improving user convenience. In addition, such a design also helps to disperse external impact forces and protect the electronic device 500 connected to the second connecting part 300 from damage.

[0082] It can be understood that in some embodiments, the bending strip can be optimally designed according to the actual application scenario. For example, when used in outdoor sports or industrial environments, the bending strip can be made of more durable and corrosion-resistant materials such as stainless steel wire or high-strength nylon fiber. For applications that require higher flexibility, a composite material woven from multiple thin wires can be used, which retains good bending ability while increasing overall strength.

[0083] In some embodiments, in order to improve user experience, a soft protective sleeve can be added to the surface of the bending strip, which can prevent scratches and also has a certain shock-absorbing effect.

[0084] In some embodiments, the connection between the first connector 110 and the second connector 120 and the curved rib can adopt an embedded structure, i.e., the two ends of the curved rib are directly fixed inside the first connector 110 and the second connector 120, which not only simplifies the assembly process, but also enhances the firmness of the connection part. In addition, considering portability and storage, a detachable connection mode can also be designed to facilitate users to replace curved ribs of different lengths or types at any time according to actual conditions to meet diversified use requirements.

[0085] Referring to Figure 7 and Figure 8 In some embodiments, the first connector 110 includes a first magnet, and the second connector 120 includes a second magnet, and the first magnet and the second magnet attract each other. Specifically, the first magnet is arranged inside the first connector 110, and the second magnet is located inside the second connector 120. The distance between the two is controlled and arranged in position to ensure that they will closely fit together due to magnetic force in the natural state. This magnetic connection not only provides additional security, but also facilitates quick assembly and disassembly, and can be completed without additional tools.

[0086] The use of magnetic connection simplifies the installation and disassembly process on the one hand. On the other hand, the self-correcting function of magnetic connection helps to reduce the possibility of misoperation, and accurate docking can be achieved even in a dark environment. Furthermore, since the magnetic force is uniformly distributed on the entire contact surface, compared with traditional screws or buckles, it can better disperse the pressure and reduce the risk of local stress concentration, prolonging the product life.

[0087] It can be understood that in some embodiments, the second connection part 300 can also use magnetic attraction to connect the electronic device 500 to achieve the purpose of quick disassembly.

[0088] It can be understood that in some embodiments, in order to avoid the problem of difficult disassembly caused by excessive magnetic force, a small gap or a disconnecting mechanism can be reserved on the first connector 110 and the second connector 120 to facilitate the user to manually separate the first connector 110 and the second connector 120.

[0089] Referring to Figure 7 and Figure 8In some embodiments, the first connecting part 100 comprises a shell body 130 and a first connecting member 110, the shell body 130 defines a receiving cavity 131, the first connecting member 110 is adapted to connect the external component 600, the shell body 130 is also adapted to connect the external component 600, and the shell body 130 and the first connecting member 110 are both connected to the flexible part 200. In the supporting state, the first connecting member 110 is located outside the receiving cavity 131; in the receiving state, the first connecting member 110 is at least partially located in the receiving cavity 131.

[0090] In the present embodiment, the structure of the easy-to-receive support for connecting the external component 600 is the first connecting member 110 and the shell body 130. For example, the first connecting member 110 can be magnetically attracted to the external component 600, the shell body 130 can be magnetically attracted to the external component 600, the two ends of the flexible part 200 are connected to the shell body 130 and the external component 600 respectively, and the first connecting member 110, the flexible part 200 and the second connecting member 120 can all be received in the shell body 130 in the receiving state. In the present embodiment, the shell body 130 serves as an element for directly connecting the external component 600. Of course, the first connecting member 110 can also not be provided, and the easy-to-receive support can only connect the external component 600 through the shell body 130.

[0091] Different from the above-mentioned embodiments, in some embodiments, the shell body 130 does not participate in connecting the external component 600. Specifically, the shell body 130 is only used for receiving other components in the easy-to-receive support. For example, in the supporting state, the easy-to-receive support connects the external component 600 through the first connecting member 110 and / or the second connecting member 120, the shell body 130 does not have a connection function such as magnetic attraction, and only plays a receiving role.

[0092] In some embodiments, the shell body 130 can also be designed to adopt a sliding rail cooperation locking mechanism, allowing the first connecting member 110 to smoothly slide into or out of the receiving cavity 131 along a predetermined path, while ensuring firm locking at any position.

[0093] Reference Figure 7 and Figure 8In some embodiments, the shell body 130 is provided with an opening which communicates with the receiving cavity 131. In some embodiments, the outer wall of the shell body 130 is recessed to form a receiving groove which is configured as the receiving cavity 131. When the opening design is adopted, the opening should be large enough to ensure that the first connecting member 110 can smoothly enter the receiving cavity 131, and as small as possible to maintain the overall structural strength of the shell body 130. The edge of the opening is usually rounded to avoid sharp edges scratching fingers or damaging the flexible part 200. When the recessed form is selected as the receiving groove, the depth and width of the recess should be reasonably designed to ensure that it can completely contain the target component, while leaving a certain margin for the movement or deformation required by the component. Whether the receiving design is in the form of an opening or a recess, it can significantly improve the practicality and user experience of the bracket for easy storage. The former provides an intuitive and simple operation method, which is suitable for scenarios where the component is frequently adjusted or replaced; the latter focuses more on hidden storage, making the entire device look more neat and beautiful, especially suitable for applications with high requirements for visual effects.

[0094] It can be understood that in some embodiments, a sealing strip or elastic stopper can be added to the edge of the opening or recess to enhance the dustproof and waterproof performance, which is particularly important when used in harsh environments. The sealing strip not only prevents dust and water vapor from entering, but also has a certain shock absorption effect to protect the internal components from external impact.

[0095] In some embodiments, for the recessed form of the receiving groove, a spring device can also be considered to be arranged at the bottom. When the first connecting member 110 is pressed in, the spring will automatically pop it out a part when released, which is convenient for the user to grab.

[0096] Referring to Figure 9In some embodiments, the storage-convenient support includes a locking structure 400 connected to the second connecting part 300 and the flexible part 200, respectively. The locking structure 400 has a locked state and an unlocked state. In the locked state, the locking structure 400 restricts the movement of the second connecting part 300 relative to the flexible part 200. In the unlocked state, the second connecting part 300 can move relative to the flexible part 200. The locking structure 400 is designed as an integrated component that is connected to both the second connecting part 300 and the flexible part 200. Inside the locking structure 400, there is a mechanical device that can switch between the locked state and the unlocked state. In the locked state, the locking structure 400 restricts any movement of the second connecting part 300 relative to the flexible part 200 through physical constraints. In the unlocked state, the physical constraints are removed, allowing the second connecting part 300 to rotate or slide freely around the flexible part 200 to adjust the orientation of the second connecting part 300. This design ensures that users can fix the position of the second connecting part 300 when needed to prevent accidental displacement due to external forces, while also allowing users to adjust the angle flexibly according to actual needs.

[0097] It can be understood that in some embodiments, the locking structure 400 can take various forms to achieve the above functions. For example, the locking structure 400 can be made of magnetic material, using the action of the magnetic field to control the locking and unlocking process. In this case, a part of the flexible part 200 may contain ferromagnetic material, and the locking structure 400 is built-in permanent magnet. When they are close, the magnetic force will make them tightly combined together, forming a locked state; conversely, by applying an external force to overcome the magnetic attraction, the locking structure 400 can be separated from the flexible part 200, entering the unlocked state. This magnetic-based locking scheme not only realizes a touchless operation experience, but also reduces the wear and tear problems that may occur in traditional mechanical locking structures 400. Of course, it can be understood that in some embodiments, the locking structure 400 can also be in the form of a pressing block, a clamping jaw, etc.

[0098] Referring to Figure 5 and Figure 6 , regarding the way the second connecting part 300 connects the electronic device 500 and / or the form the first connecting part 100 connects the external component 600, it can be achieved by magnetic attraction, suction cup, thread, buckle, strap, adhesion, etc. and the connection of the corresponding object.

[0099] Referring to Figure 5 and Figure 6, about the connection mode of the first connecting part 100, specifically, in some embodiments, the first connecting part 100 includes a magnetic attraction structure. The magnetic attraction structure firmly adsorbs the easy-to-store bracket on the metal external component 600, such as the metal frame of the car or the door panel of the refrigerator, through strong magnetic force. This connection method not only installs and dismounts conveniently and quickly, but also has low requirements for surface flatness, and is suitable for application scenarios that need to be frequently adjusted. In some embodiments, the first connecting part 100 includes a suction cup structure. The suction cup structure is suitable for smooth, non-porous surfaces such as glass windows or mirrors. The suction cup tightly adheres to the surface using the principle of atmospheric pressure, providing sufficient support force to fix the electronic device 500. When the easy-to-store bracket needs to be moved, it can be easily removed by gently pulling the release valve. In some embodiments, the first connecting part 100 includes a threaded structure. The threaded structure allows the easy-to-store bracket to be screwed directly into the external component 600 with matching internal threads, such as a bicycle handlebar or tripod top. This connection method is very stable, especially suitable for applications that need to withstand heavy weight or are in a vibrating environment. In some embodiments, the first connecting part 100 includes a buckle structure. The buckle structure can be quickly locked on a specific shaped external component 600, such as a car air conditioner outlet grille or a notebook computer edge. This connection method is simple to operate and does not require tool assistance, and is very suitable for temporary or emergency situations. In some embodiments, the first connecting part 100 includes a strap structure. The strap structure is suitable for cylindrical or other external components 600 that are difficult to fix in other ways, such as bicycle handlebars, pipes. The strap is usually made of nylon webbing, with quick release buckles at both ends to facilitate quick binding and untying by the user. In some embodiments, the first connecting part 100 includes an adhesive structure. The adhesive structure permanently or semi-permanently fixes the easy-to-store bracket to the external component through strong glue or double-sided tape. This method is particularly suitable for installation requirements that want to be fixed in place for a long time, such as walls or furniture surfaces.

[0100] About the connection mode of the second connecting part 300, specifically, in some embodiments, the electronic device 500 can be a tablet, a mobile phone, an e-paper, etc., and the second connecting part 300 connects the electronic device 500 through magnetic attraction, buckling, adhesion, clamping jaw, etc. At this time, the first side wall is the surface wall of the second connecting part 300 that abuts against the back of the tablet, the back of the mobile phone, or the back of the e-paper.

[0101] It can be understood that, in some embodiments, the first side wall of the second connecting part 300 can be provided with anti-slip texture or gasket to increase the friction between the electronic device 500 and prevent the electronic device 500 from accidentally falling.

[0102] It should be noted that if the embodiments of the utility model have the directional indication (such as up, down, left, right, front, back, etc.), the directional indication is only used to explain the relative position relationship, movement condition and the like between components in a certain specific posture, if the specific posture changes, then the directional indication also changes accordingly. When the direction reference is introduced in the specific embodiment, if the direction is not specially limited as one-way, the direction can be one-way or bidirectional (two parallel and opposite directions), and whether it is one-way or bidirectional is based on the realization of ordinary skilled in the art. When the direction reference is bidirectional, it is considered that two different embodiments in parallel are introduced.

[0103] In addition, if the embodiments of the utility model have the description of "first", "second" and the like, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one feature. In addition, if "and / or", "and / or" or "and / or" appears in the whole text, the meaning includes three parallel schemes, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope of the utility model.

[0104] The above is only the preferred embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made by the utility model specification and the drawings, or direct / indirect application in other related technical fields based on the utility model concept of the utility model is included in the patent protection scope of the utility model.

Claims

1. A stand for facilitating storage of an electronic device adapted to be detachably connected, characterized by, The storage-convenient support comprises: a first connecting part adapted to connect an external component, the first connecting part having a storage cavity; a flexible part connected to one end of the first connecting part; a second connecting part connected to the other end of the flexible part, the flexible part being configured to change the relative position of the second connecting part and the first connecting part by deformation; wherein the storage-convenient support has a supporting state and a storage state, in the supporting state, the second connecting part is located outside the storage cavity, and the second connecting part is adapted to connect an electronic device; in the storage state, the second connecting part is at least partially stored in the storage cavity.

2. The holder of easy storage according to claim 1, characterized in that, In the supporting state, the flexible part is at least partially located outside the storage cavity, and in the storage state, the flexible part is at least partially stored in the storage cavity.

3. The holder of claim 1, wherein, The first connecting part comprises a first connecting member, a second connecting member and a shell main body, the shell main body defines the storage cavity, the storage cavity is used for storing the first connecting member and the second connecting member, the first connecting member and the second connecting member are connected to the flexible part, and the first connecting member and the second connecting member are adapted to connect the external component.

4. The holder of claim 3, wherein, In the supporting state, the first connecting member is located outside the storage cavity, and / or the second connecting member is located outside the storage cavity; In the storage state, the first connecting member is at least partially located in the storage cavity, and the second connecting member is at least partially located in the storage cavity.

5. The holder of claim 3, wherein, The flexible part comprises a curved rib, and the first connecting member and the second connecting member are respectively connected to opposite ends of the curved rib along the extension direction of the curved rib.

6. The holder of claim 3, wherein, The first connecting member comprises a first magnet, the second connecting member comprises a second magnet, and the first magnet and the second magnet attract each other.

7. The stowable stand of claim 1, wherein, The first connecting part comprises a shell main body and a first connecting member, the shell main body defines the storage cavity, the first connecting member is adapted to connect the external component, the shell main body is adapted to connect the external component, the shell main body and the first connecting member are connected to the flexible part, in the supporting state, the first connecting member is located outside the storage cavity, and in the storage state, the first connecting member is at least partially located in the storage cavity.

8. The stand of any of claims 3 or 7, wherein, The shell main body is provided with an opening, and the opening communicates with the storage cavity; or The outer wall of the shell main body is recessed to form a storage groove, and the storage groove is configured as the storage cavity.

9. The stowable stand of claim 1, wherein, The storage-convenient support comprises a locking structure connected to the second connecting part and the flexible part respectively, the locking structure has a locked state and an unlocked state, in the locked state, the locking structure limits the movement of the second connecting part relative to the flexible part, and in the unlocked state, the second connecting part can move relative to the flexible part.

10. The storage-convenient support according to claim 1, wherein The first connecting part comprises a magnetic attraction structure, and the magnetic attraction structure magnetically attracts the external component; or The first connecting part comprises a threaded structure, and the threaded structure threadedly connects the external component; or The first connecting part comprises a binding structure which is bound to the external part; or, The first connecting part comprises a suction disc structure which is adsorbed to the external part; or, The first connecting part comprises a bonding structure which is bonded to the external part; or, The first connecting part comprises a nesting structure which is interference-fitted with the external part; Or, The first connecting part comprises a clamping structure which clamps the external part; The first connecting part comprises a clamping structure which clamps the external part; The second connecting part comprises a magnetic attraction structure which magnetically attracts the electronic device; or, The first connecting part comprises a threaded structure which is threadedly connected to the electronic device; or, The first connecting part comprises a binding structure which is bound to the electronic device; or, The first connecting part comprises a suction disc structure which is adsorbed to the electronic device; or, The first connecting part comprises a bonding structure which is bonded to the electronic device; or, The first connecting part comprises a nesting structure which is interference-fitted with the electronic device; Or, The first connecting part comprises a clamping structure which clamps the electronic device; The first connecting part comprises a clamping structure which clamps the electronic device.

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