Deformation structure, deformation assembly and wearable device

By providing symmetrically distributed deformation structural parts on both sides of the support part of the wearable device, the problem of stress concentration during deformation is solved, and the reliability and comfort of the structure are improved.

CN223142278UActive Publication Date: 2025-07-22LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202422137290.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-22
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

Existing wearable devices are prone to stress concentration during deformation, resulting in structural damage and affecting the reliability and comfort of use.

Method used

A deformation structure is designed, including a support part and a first structural member formed with a body. The first structural member is symmetrically distributed on both sides of the support part, and can deform as the support part deforms, release stress evenly, and avoid stress concentration.

Benefits of technology

By uniformly releasing stress, the reliability and use comfort of the deformed structure are improved, structural damage is avoided, and user needs are met.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a deformation structure, a deformation assembly and wearable equipment, and relates to the technical field of wearable equipment. The deformation structure comprises a supporting part and a first structural part; the supporting part is in a symmetrical arc-shaped strip shape; the first structural parts are integrally formed with the supporting part and symmetrically distributed on the two sides of the supporting part relative to the middle of the supporting part. Wherein the first structural part can deform along with deformation of the supporting part, so that stress generated when the supporting part deforms is released in the deformation process.
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Description

Technical Field

[0001] The present application relates to a deformation structure, a deformation component and a wearable device. Background Art

[0002] With the development of society, users' requirements for wearable devices are gradually increasing. Wearable devices not only need a reliable structure to meet users' daily use, but also need to provide users with a comfortable use experience. Utility Model Content

[0003] The purpose of the embodiments of the present application is to provide a deformation structure, a deformation component and a wearable device. The technical solutions are as follows:

[0004] The first aspect of the present application provides a deformation structure, including:

[0005] A support part, the support part is in a symmetric arc strip shape;

[0006] A first structural member, the first structural member is integrally formed with the support part and is symmetrically distributed on both sides of the support part relative to the middle of the support part;

[0007] Wherein, the first structural member can deform with the deformation of the support part to release the stress generated during the deformation of the support part during the deformation process.

[0008] In some embodiments, for the aforementioned deformation structure, there are two first structural members, and the two first structural members are symmetrically distributed on both sides of the support part relative to the middle of the support part, so as to divide the support part into a first segment, a second segment and a third segment in sequence along its length direction; the first structural member includes a connecting body and four connecting arms, and the connecting body is provided with two connecting arms at intervals along the length direction on both sides in the width direction of the support part to connect the first segment and the second segment, or the second segment and the third segment respectively, and form openings between the first segment and the second segment, and between the second segment and the third segment.

[0009] In some embodiments, for the aforementioned deformation structure, there are four first structural members, and two spaced first structural members are symmetrically arranged on both sides of the support part relative to its middle respectively, so as to divide the support part into a first segment, a fourth segment, a second segment, a fifth segment and a third segment in sequence along the length direction; the four connecting arms of the first structural member are respectively connected to the first segment and the fourth segment, or the fourth segment and the second segment, or the second segment and the fifth segment, or the fifth segment and the third segment, and form openings between the first segment and the fourth segment, between the fourth segment and the second segment, between the second segment and the fifth segment, and between the fifth segment and the third segment.

[0010] In some embodiments, for the aforementioned deformation structure, one end of the first segment, the fourth segment, the second segment, the fifth segment, and the third segment that are close to each other are provided with openings to enclose four accommodation spaces, and the first structural member is disposed in the accommodation spaces, and the connecting body and the connecting arms are spaced apart from the side walls of the accommodation spaces in the length direction.

[0011] In some embodiments, for the aforementioned deformation structure, a plurality of spaced bar-shaped holes are provided along the length direction within the first segment, the fourth segment, the second segment, the fifth segment, and the third segment. The bar-shaped holes extend in the width direction, and buckle grooves are integrally formed at both ends of the bar-shaped holes.

[0012] In some embodiments, for the aforementioned deformation structure, it further includes: a second structural member, which is integrally formed with the support portion and is located in the middle of the support portion. The second structural member can deform along with the deformation of the support portion to release the stress generated during the deformation of the support portion during the deformation process.

[0013] In some embodiments, for the aforementioned deformation structure, the second structural body includes an elastic telescopic member and an arc-shaped protrusion. Both ends of the elastic telescopic member are integrally connected to the middle of the support portion, and the arc-shaped protrusions are provided on both sides of the support portion in its width direction and protrude from the inner arc side of the support portion.

[0014] In some embodiments, for the aforementioned deformation structure, it further includes: third structural members, there are two third structural members and they are respectively disposed at both ends of the support portion. The third structural members are spaced apart from the first structural members symmetrically distributed on both sides of the support portion.

[0015] The second aspect of the present application provides a deformation assembly, including: a support portion, the support portion is in a symmetric arc shape; a first structural member, the first structural member is integrally formed with the support portion and is symmetrically distributed on both sides of the support portion relative to the middle of the support portion; a housing, which forms an accommodation space, and the support portion and the first structure are disposed in the accommodation space; wherein, the first structural member can deform along with the deformation of the support portion to release the stress generated during the deformation of the support portion during the deformation process.

[0016] The third aspect of the present application provides a wearable device assembly, including: a support portion, the support portion is in a symmetric arc shape; a first structural member, the first structural member is integrally formed with the support portion and is symmetrically distributed on both sides of the support portion relative to the middle of the support portion; an interaction portion, connected to the support portion for outputting information or obtaining input information; wherein, the first structural member can deform along with the deformation of the support portion to release the stress generated during the deformation of the support portion during the deformation process.

[0017] The above description is only an overview of the technical solution of the present application. In order to understand the technical means of the present application more clearly and be able to implement it in accordance with the content of the specification, the following will describe in detail with reference to the preferred embodiments of the present application and the accompanying drawings. Brief Description of the Drawings

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present disclosure. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 Schematically shows an isometric structural view of the first deformation structure of the embodiment of the present application;

[0020] Figure 2 Schematically shows a side view structural view of the second deformation structure of the embodiment of the present application;

[0021] Figure 3 Schematically shows a side view structural view of the first deformation structure of the embodiment of the present application;

[0022] Figure 4 Schematically shows a partial isometric structural view of the third deformation structure of the embodiment of the present application;

[0023] Figure 5 Schematically shows an isometric structural view of the fourth deformation structure of the embodiment of the present application;

[0024] Figure 6 Schematically shows an exploded structural view of a deformation component of the embodiment of the present application;

[0025] Figure 7 Schematically shows an exploded structural view of a wearable device of the embodiment of the present application.

[0026] Description of the Reference Numerals:

[0027] 1. Deformation structure; 11. Support part; 12. First structural member; 13. Second structural member; 14. Third structural member; 111. First segment; 112. Second segment; 113. Third segment; 114. Fourth segment; 115. Fifth segment; 116. Accommodation space; 117. Strip-shaped hole; 121. Connecting body; 122. Connecting arm; 123. Opening; 131. Elastic telescopic member; 132. Arc protrusion; 1161. Side wall; 1171. Buckling groove;

[0028] A. Length direction; B. Width direction. Detailed Description of the Embodiments

[0029] The following further describes in detail the embodiments of the present disclosure in conjunction with the accompanying drawings and examples. The detailed descriptions and drawings of the following examples are used to exemplarily illustrate the principles of the present disclosure, but cannot be used to limit the scope of the present disclosure. The present disclosure can be implemented in many different forms, not limited to the specific embodiments disclosed herein, but including all technical solutions falling within the scope of the claims.

[0030] These embodiments of the present disclosure are provided to make the present disclosure thorough and complete, and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that: unless otherwise specifically stated, the relative arrangements of components and steps, the components of materials, numerical expressions and values described in these embodiments should be construed as merely exemplary, rather than as limitations.

[0031] It should be noted that in the description of the present disclosure, unless otherwise specified, the meaning of "a plurality" is greater than or equal to two; the orientation or positional relationships indicated by terms such as "upper", "lower", "left", "right", "inner", "outer", etc. are only for the convenience of describing the present disclosure and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation of the present disclosure. When the absolute position of the object being described changes, the relative positional relationship may also change accordingly.

[0032] In addition, the "first", "second" and similar terms used in the present disclosure do not denote any order, quantity or importance, but are only used to distinguish different parts. "Vertical" is not strictly vertical, but within the allowable error range. "Parallel" is not strictly parallel, but within the allowable error range. Words such as "including" or "comprising" mean that the elements before this word are covered by the elements listed after this word, and do not exclude the possibility of also covering other elements.

[0033] It should also be noted that in the description of the present disclosure, unless otherwise clearly specified and limited, the terms "installed", "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present disclosure can be understood according to specific circumstances. When it is described that a specific device is located between a first device and a second device, there may or may not be an intermediate device between the specific device and the first device or the second device.

[0034] All terms used in this disclosure have the same meanings as those understood by those of ordinary skill in the art to which this disclosure pertains, unless otherwise specifically defined. It should also be understood that terms defined in common dictionaries should be interpreted as having meanings consistent with their meanings in the context of the relevant art, and should not be interpreted in an idealized or overly formal sense, unless specifically defined as such herein.

[0035] Technologies, methods, and devices known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the technologies, methods, and devices should be regarded as part of the specification.

[0036] Embodiment 1

[0037] As Figure 1 shown, a deformation structure 1 is provided in the first aspect of the present application, including a support portion 11 and a first structural member 12; the support portion 11 is in a symmetric arc shape strip; the first structural member 12 is integrally formed with the support portion 11 and is symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11; wherein, the first structural member 12 can deform with the deformation of the support portion 11 to release the stress generated during the deformation of the support portion 11 during the deformation process.

[0038] Specifically, the symmetric arc-shaped strip support portion 11 is provided in the present application, which is convenient for the user to apply force to the deformation structure 1 with both hands to cause it to deform when using the wearable device. During the user's use process, each hand holds one end of the support portion 11 and exerts force to both sides, and the expansion deformation of the symmetric arc-shaped strip support portion 11 can be achieved. When the wearable device is not needed, it is removed, and the support portion 11 in the expanded state shrinks and reduces the volume, which is convenient for storage and placement. Moreover, the symmetric arc-shaped strip support portion 11 is also convenient for the user to hang it on the wall or bracket to meet the user's daily storage needs. The support portion 11 can be made of composite plastics such as fiberglass plastic and carbon fiber plastic, or can be made of materials such as photosensitive resin, polyamide, and polyethylene, etc., without specific limitation, as long as it can play a supporting role and can deform.

[0039] In order to release the stress generated during the deformation of the support portion 11 and reduce the stress concentration during the deformation of the support portion 11, a first structural member 12 is provided. The first structural member 12 is integrally formed with the support portion 11 and can be achieved by means such as die injection molding and welding, so as to improve the overall structural strength of the deformation structure 1 and facilitate production and manufacturing. The first structural members 12 are symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11 and can deform with the deformation of the support portion 11, so as to uniformly release the stress generated during the deformation of the support portion 11 through the deformation of the symmetrically arranged first structural members 12. Moreover, the deformation of the first structural member 12 will cause the stress generated by the support portion 11 to be redistributed, thereby reducing the stress concentration during the deformation of the support portion 11, so as to improve the structural reliability of the support portion 11 during deformation and avoid damage. The first structural member 12 can be in a structural form with an opening feature, or can enclose an opening with the support portion 11 during the process of being integrally formed with the support portion 11, so as to interrupt the concentrated distribution area of the stress generated during the deformation of the support portion 11 through the opening, resulting in the redistribution of the stress generated by the support portion 11, thereby avoiding the stress concentration of the support portion 11 and improving the reliability of the support portion 11 during deformation; it can also be set with a curved structure to have better deformation ability than the support portion 11, etc. There is no specific limitation, as long as the first structural member 12 can deform with the deformation of the support portion 11, cause the stress generated by the support portion 11 to be redistributed, and thereby reduce the stress concentration during the deformation of the support portion 11 to achieve the purpose of stress release.

[0040] In the first aspect of the present application, a deformation structure 1 is provided, including a support portion 11 and a first structural member 12; the support portion 11 is in a symmetric arc strip shape; the first structural member 12 is integrally formed with the support portion 11 and is symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11; wherein, the first structural member 12 can deform with the deformation of the support portion 11 to release the stress generated during the deformation of the support portion 11 during the deformation process. By adding the first structural member 12 to the support portion 11 of the deformation structure 1 in the form of a symmetric arc strip in the present application, the first structural member 12 can also deform with the deformation of the support portion 11. At the same time, the first structural members 12 are symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11, so as to uniformly release the stress generated during the deformation of the support portion 11 through the deformation of the symmetrically arranged first structural members 12. Moreover, the deformation of the first structural member 12 will cause the stress generated by the support portion 11 to be redistributed, thereby reducing the stress concentration during the deformation of the support portion 11, so as to improve the structural reliability of the support portion 11 during deformation and avoid damage. Through the application of the present application, the deformation of the deformation structure 1 can adapt to the usage needs of different users, providing a comfortable usage experience, and effectively avoiding structural damage caused by stress during daily use through stress release, improving the reliability of the deformation structure 1.

[0041] As Figure 2As shown, in some embodiments, there are two first structural members 12. The two first structural members 12 are symmetrically distributed on both sides of the middle of the support portion 11 relative to the middle of the support portion 11, so as to divide the support portion 11 into a first segment 111, a second segment 112, and a third segment 113 in sequence along its length direction A; the first structural member 12 includes a connecting body 121 and four connecting arms 122. The connecting body 121 is provided with two connecting arms 122 at intervals along the length direction A on both sides in the width direction B of the support portion 11 to connect the first segment 111 and the second segment 112 respectively, or the second segment 112 and the third segment 113 respectively, and form openings 123 between the first segment 111 and the second segment 112, and between the second segment 112 and the third segment 113.

[0042] Specifically, in some embodiments of the present application, two first structural members 12 are provided for the support portion 11. The two first structural members 12 are symmetrically distributed on both sides of the middle of the support portion 11 relative to the middle of the support portion 11 to provide two stress release points to uniformly release the stress generated when the support portion 11 deforms.

[0043] Both of the two first structural members 12 are integrally formed with the support portion 11, and the support portion 11 is divided into a first segment 111, a second segment 112, and a third segment 113 in sequence along its length direction A. For the convenience of production and manufacturing, the first structural member 12 of the present application includes a connecting body 121 and four connecting arms 122. The connecting body 121 plays a role in connecting and supporting the four connecting arms 122. The connecting body 121 is provided with two connecting arms 122 at intervals along the length direction A on both sides in the width direction B of the support portion 11 to connect the first segment 111 and the second segment 112 respectively, or the second segment 112 and the third segment 113 respectively, so as to realize the integral connection of each segment of the support portion 11 through the connecting arms 122, thus facilitating the production requirements of module injection molding, or clarifying the welding points for welding and improving the precision and quality of production and manufacturing. The two first structural members 12 can form four openings 123 through the spaced arrangement between the connecting arms 122 between the first segment 111 and the second segment 112, and between the second segment 112 and the third segment 113. All four openings 123 provide space to enable the adjacent connecting arms 122 to generate greater deformation, and the openings 123 can interrupt the concentrated distribution area of the stress generated when the support portion 11 deforms during the deformation process of the connecting arms 122, resulting in the redistribution of the stress generated by the support portion 11, thereby avoiding the stress concentration of the support portion 11 and improving the reliability of the support portion 11 during the deformation process.

[0044] Such as Figure 3As shown, in some embodiments, there are four first structural members 12. Two spaced-apart first structural members 12 are symmetrically arranged on each of the two sides of the support portion 11 relative to its middle portion, so as to divide the support portion 11 into a first segment 111, a fourth segment 114, a second segment 112, a fifth segment 115, and a third segment 113 in sequence along the length direction A; the four connecting arms 122 of the first structural member 12 are respectively connected to the first segment 111 and the fourth segment 114, or, the fourth segment 114 and the second segment 112, or, the second segment 112 and the fifth segment 115, or, the fifth segment 115 and the third segment 113, and openings 123 are formed between the first segment 111 and the fourth segment 114, between the fourth segment 114 and the second segment 112, between the second segment 112 and the fifth segment 115, and between the fifth segment 115 and the third segment 113.

[0045] Specifically, in some embodiments of the present application, four first structural members 12 are provided for the support portion 11. Two first structural members 12 are symmetrically arranged on each of the two sides of the support portion 11 relative to its middle portion, and the two first structural members 12 on one side are spaced apart, so as to provide four stress release points to evenly release the stress generated when the support portion 11 deforms.

[0046] The four first structural members 12 are integrally formed with the support portion 11, and the support portion 11 is divided into a first segment 111, a fourth segment 114, a second segment 112, a fifth segment 115, and a third segment 113 in sequence along its length direction A. For the convenience of production and manufacturing, the first structural member 12 of the present application includes a connecting body 121 and four connecting arms 122. The four connecting arms 122 of the first structural member 12 are respectively connected to the first segment 111 and the fourth segment 114, or, the fourth segment 114 and the second segment 112, or, the second segment 112 and the fifth segment 115, or, the fifth segment 115 and the third segment 113, and eight openings 123 are formed between the first segment 111 and the fourth segment 114, between the fourth segment 114 and the second segment 112, between the second segment 112 and the fifth segment 115, and between the fifth segment 115 and the third segment 113. Each of the eight openings 123 provides a space that enables the adjacent connecting arm 122 to have a greater amount of deformation, and the opening 123 can interrupt the concentrated distribution area of the stress generated when the support portion 11 deforms during the deformation process of the connecting arm 122, resulting in the redistribution of the stress generated by the support portion 11, thereby avoiding the stress concentration of the support portion 11 and improving the reliability of the support portion 11 during the deformation process.

[0047] As Figure 3As shown, in some embodiments, openings are formed at one ends of the first segment 111, the fourth segment 114, the second segment 112, the fifth segment 115, and the third segment 113 that are close to each other to enclose four accommodation spaces 116. The first structural member 12 is disposed in the accommodation space 116, and the connecting body 121 and the connecting arm 122 are spaced apart from the side wall 1161 of the accommodation space 116 in the length direction A.

[0048] Specifically, in the present application, openings are formed at one ends of the first segment 111, the fourth segment 114, the second segment 112, the fifth segment 115, and the third segment 113 that are close to each other to enclose four accommodation spaces 116 respectively for accommodating the four first structural members 12. The connecting body 121 and the connecting arm 122 are spaced apart from the side wall 1161 of the accommodation space 116 in the length direction A, so that the gap generated by the interval between the side wall 1161 and the connecting body 121 and the connecting arm 122 provides space for the overall deformation of the first structural member 12. Furthermore, during the deformation process of the first structural member 12, the stress generated by the support portion 11 is redistributed, thereby reducing the stress concentration during the deformation process of the support portion 11 and achieving the purpose of stress release.

[0049] As Figure 3 shown, in some embodiments, a plurality of spaced bar-shaped holes 117 are provided in the first segment 111, the fourth segment 114, the second segment 112, the fifth segment 115, and the third segment 113 along the length direction A. The bar-shaped holes 117 extend along the width direction B, and buckle grooves 1171 are integrally formed at both ends of the bar-shaped holes 117.

[0050] Specifically, in order to improve the deformation ability of the deformation structure 1 of the present application, a plurality of spaced bar-shaped holes 117 are provided in the first segment 111, the fourth segment 114, the second segment 112, the fifth segment 115, and the third segment 113 along the length direction A. The provision of the bar-shaped holes 117 makes it easier for the user to apply force to the deformation structure 1 through both hands when using the wearable device, making the deformation more labor-saving and the deformation structure 1 more likely to deform and bend. In order to protect the deformation structure 1 and facilitate installation, a housing, which is a part of the wearable device, is usually provided outside the deformation structure 1. In order to facilitate the installation of the deformation structure 1 in the above housing, buckle grooves 1171 are integrally formed at both ends of the bar-shaped holes 117, and the buckle grooves 1171 can be connected in cooperation with structures such as snap protrusions or buckle arms provided on the housing to realize the installation and fixation of the deformation structure 1.

[0051] As Figure 4 shown, in some embodiments, it further includes: a second structural member 13, which is integrally formed with the support portion 11 and is located in the middle of the support portion 11. The second structural member 13 can deform along with the deformation of the support portion 11 to release the stress generated during the deformation of the support portion 11 during the deformation process.

[0052] Specifically, the deformation structure 1 of the present application further includes a second structural member 13. The second structural member 13 is integrally formed with the support portion 11, which can be achieved by means such as die casting and welding, so as to improve the overall structural strength of the deformation structure 1 and facilitate production and manufacturing at the same time. The second structural member 13 is located in the middle of the support portion 11. While connecting the support portions 11 on both sides of it, it can deform with the deformation of the support portion 11, so as to release the stress generated by the support portions 11 on both sides with the expansion of the support portion 11, reduce the stress concentration during the deformation of the support portion 11, improve the structural reliability of the support portion 11 during the deformation process, and avoid damage. The second structural member 13 can be in a continuous U-shaped or continuous V-shaped structure, which can provide a stable deformation ability during the deformation of the support portion 11. And the second structural body is arranged in the middle of the support portion 11. While connecting the support portions 11 on both sides of it, it can release the stress generated by the support portions 11 on both sides with the expansion of the support portion 11.

[0053] As Figure 4 shown, in some embodiments, the second structural body includes an elastic telescopic member 131 and an arc protrusion 132. Both ends of the elastic telescopic member 131 are integrally connected to the middle of the support portion 11, and the arc protrusion 132 is arranged on both sides of the support portion 11 in its width direction B and protrudes from the inner arc side of the support portion 11.

[0054] Specifically, in order to enable the second structural body to provide a better ability to release the stress generated by the support portion 11, the second structural body of the present application includes an elastic telescopic member 131 and an arc protrusion 132. Both ends of the elastic telescopic member 131 can be integrally connected to the middle of the support portion 11 by means such as melting and welding. The elastic telescopic member 131 can be made of a material with stronger deformation ability than the material of the support portion 11 melted in the middle of the support portion 11, or can be a spring body welded to the middle of the support portion 11, which is not specifically limited. While connecting the support portions 11 on both sides of it, the elastic telescopic member 131 can deform with the deformation of the support portion 11, so as to release the stress generated by the support portions 11 on both sides with the expansion of the support portion 11, and reduce the stress concentration during the deformation of the support portion 11.

[0055] The arc protrusion 132 is arranged on both sides of the support portion 11 in its width direction B and protrudes from the inner arc side of the support portion 11. The arc protrusion 132 can provide support for the middle position of the support portion 11 during the process of the elastic telescopic member 131 deforming to release the stress generated by the support portion 11, so as to avoid obvious bending in the middle of the support portion 11 when applying force to the deformation structure 1 with both hands when using the wearable device, which affects the aesthetics of the wearable device and the user experience.

[0056] As Figure 5As shown, in some embodiments, it further includes: a third structural member 14. There are two third structural members 14, which are respectively arranged at both ends of the support portion 11. The third structural member 14 is arranged at an interval from the first structural members 12 symmetrically distributed on both sides of the support portion 11.

[0057] Specifically, this application further includes a third structural member 14. There are two third structural members, which are respectively arranged at both ends of the support portion 11. The third structural member 14 can be in the form of a pressing block or a buckle, and can be detachably arranged at both ends of the support portion 11 by means of pin connection, screw connection, etc. The third structural member 14 can enhance the structural strength at both ends of the support portion 11 and can play a limiting role, so that during the deformation process of the support portion 11 of the deformation structure 1, smaller deformations occur at both ends, improving the stability of the installation position after the deformation structure 1 is installed on the deformation component, and avoiding gaps or openings with other structures arranged at both ends of the support portion 11 in the deformation component, which may affect the aesthetics and consistency of the structure. The third structural member 14 is arranged at an interval from the first structural members 12 symmetrically distributed on both sides of the support portion 11 to provide space for the deformation of the first structural members 12.

[0058] Embodiment Two

[0059] As Figure 6 shown, in the second aspect of this application, a deformation component is provided, including the above-mentioned deformation structure 1 and a housing capable of providing an accommodation space. The deformation structure 1 can be arranged in the accommodation space formed by the housing.

[0060] Specifically, for the specific embodiments of the deformation structure 1, please refer to Embodiment One, which will not be elaborated here.

[0061] Specifically, in one embodiment, the deformation component can be a headband for wearing on a user's head in a headphone. The deformation structure 1 is a headpad bracket in the headband. The deformation component can further include an arm connecting the headpad bracket, a housing for wrapping the headpad bracket, a steel sheet or a spring rod for assisting in expansion, etc. By means of the first structural member 12 added in this application, the stress generated during the deformation of the support portion 11 of the headpad bracket is evenly released, reducing the stress concentration during the deformation process of the support portion 11 of the headpad bracket when the user expands the headband for use, so as to improve the reliability of the headpad bracket and avoid damage. Through the application of this application, the use requirement of the user for expanding the headband of the headphone and wearing it on the head is met.

[0062] In another embodiment, the deformation component can be a watchband for wearing on a user's wrist. The deformation structure 1 is arranged inside the watchband. By means of the first structural member 12 added in this application, the stress generated after the watchband expands during wearing is evenly released, reducing the stress concentration, so as to improve the reliability of the watchband and meet the use requirement of the user for expanding and wearing the watchband of the watch.

[0063] In another embodiment, the deformation component may be the belt body that wraps around the user's waist in the belt, and the deformation structure 1 is arranged in the belt body to be able to adjust the length of the belt body through deformation. Through the first structural member 12 added in this application, the stress generated during the length adjustment of the belt body is evenly released, reducing stress concentration, so as to improve the reliability of the belt and meet the user's usage requirements for wearing the belt.

[0064] The deformation component provided by this application is not limited to the above three embodiments. It can reduce stress concentration through the first structural member 12 added in the deformation structure 1, release stress, improve the reliability of the wearable device, and improve the usage experience.

[0065] The second aspect of this application provides a deformation component, including the above-mentioned deformation structure 1. The deformation structure 1 includes a support portion 11 and a first structural member 12; the support portion 11 is in a symmetric arc shape; the first structural member 12 is integrally formed with the support portion 11 and is symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11; wherein, the first structural member 12 can deform with the deformation of the support portion 11 to release the stress generated when the support portion 11 deforms during the deformation process. In this application, by adding the first structural member 12 to the support portion 11 of the symmetric arc-shaped deformation structure 1, the first structural member 12 can also deform with the deformation of the support portion 11. At the same time, the first structural member 12 is symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11, so as to evenly release the stress generated when the support portion 11 deforms through the deformation of the symmetrically arranged first structural member 12. And the deformation of the first structural member 12 will cause the stress generated by the support portion 11 to redistribute, thereby reducing the stress concentration during the deformation process of the support portion 11, so as to improve the reliability of the structure of the support portion 11 during the deformation process and avoid damage. Through the application of this application, the deformation of the deformation structure 1 can adapt to the usage requirements of different users, provide a comfortable usage experience, and effectively avoid structural damage caused by stress during daily use through stress release, improving the reliability of the deformation structure 1.

[0066] Embodiment III

[0067] As Figure 7 shown, the third aspect of this application provides a wearable device, including the above-mentioned deformation component and an interaction portion that can be connected to the support portion. The interaction portion can be used to output information or obtain input information.

[0068] Specifically, for the specific structure of the deformation component, please refer to Embodiment II, which will not be elaborated here.

[0069] Specifically, in one embodiment, the wearable device provided by the present application can be a headphone, and the deformation component can be the headband of the headphone for wearing on the user's head. The wearable device can also include two symmetrically arranged speaker components as output ends connected to the headband, where the speaker components are the interaction parts capable of outputting sound information, and the deformation structure 1 is the headpad bracket in the headband. By means of the first structural member 12 added in the present application, the stress generated during the deformation of the supporting part 11 of the headpad bracket is evenly released, reducing the stress concentration during the deformation of the supporting part 11 of the headpad bracket when the user expands the headband for use, so as to improve the reliability of the headpad bracket and avoid damage. Through the application of the present application, the use requirement of the user for expanding the headband of the headphone and wearing it on the head is met.

[0070] In another embodiment, the wearable device provided by the present application can be a watch, and the deformation component can be the watch band for wearing on the user's wrist. The watch can also include a watch face connected to the watch band, and the deformation structure 1 is arranged inside the watch band. Among them, the watch face is the interaction part capable of outputting time information. By means of the first structural member 12 added in the present application, the stress generated after the watch band expands during wearing is evenly released, reducing the stress concentration, so as to improve the reliability of the watch band and meet the use requirement of the user for expanding and wearing the watch band of the watch.

[0071] In another embodiment, the wearable device provided by the present application can be a belt. The belt generally includes a belt body and its buckle structure that can be used for decoration and play a limiting role. The deformation component is the belt body wound around the user's waist, and the deformation structure 1 is arranged inside the belt body to adjust the length of the belt body through deformation. By means of the first structural member 12 added in the present application, the stress generated during the length adjustment of the belt body is evenly released, reducing the stress concentration, so as to improve the reliability of the belt and meet the use requirement of the user for wearing the belt.

[0072] The wearable device provided by the present application is not limited to the above three embodiments. It is only necessary to reduce the stress concentration, release the stress, improve the reliability of the wearable device, and improve the use experience through the first structural member 12 added in the deformation structure 1.

[0073] A third aspect of the present application provides a wearable device, including the above-mentioned deformation component. The deformation component includes a deformation structure 1, and the deformation structure 1 includes a support portion 11 and a first structural member 12; the support portion 11 is in a symmetric arc shape; the first structural member 12 is integrally formed with the support portion 11 and is symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11; wherein, the first structural member 12 can deform along with the deformation of the support portion 11 to release the stress generated during the deformation of the support portion 11 during the deformation process. By adding the first structural member 12 to the support portion 11 of the symmetric arc-shaped deformation structure 1 in the present application, the first structural member 12 can also deform along with the deformation of the support portion 11. At the same time, the first structural member 12 is symmetrically distributed on both sides of the support portion 11 relative to the middle of the support portion 11, so as to evenly release the stress generated during the deformation of the support portion 11 through the deformation of the symmetrically arranged first structural members 12. And the deformation of the first structural member 12 will cause the stress generated by the support portion 11 to redistribute, thereby reducing the stress concentration during the deformation process of the support portion 11, so as to improve the structural reliability of the support portion 11 during the deformation process and avoid damage. Through the application of the present application, the deformation of the deformation structure 1 can adapt to the usage requirements of different users, providing a comfortable usage experience, and effectively avoiding structural damage caused by stress during daily use through stress release, improving the reliability of the deformation structure 1.

[0074] So far, the embodiments of the present disclosure have been described in detail. To avoid obscuring the concept of the present disclosure, some details well known in the art have not been described. Those skilled in the art can fully understand how to implement the technical solutions disclosed herein based on the above description.

[0075] Although some specific embodiments of the present disclosure have been described in detail by way of examples, those skilled in the art should understand that the above examples are only for illustration and not for limiting the scope of the present disclosure. Those skilled in the art should understand that the above embodiments can be modified or partial technical features can be equivalently replaced without departing from the scope and spirit of the present disclosure. In particular, as long as there is no structural conflict, the technical features mentioned in each of the embodiments can be combined in any way.

Claims

1. A deformation structure, characterized in that, Comprising: A support part, the support part being in a symmetric arc shape strip; A first structural member, the first structural member being integrally formed with the support part and symmetrically distributed on both sides of the support part relative to the middle of the support part; Wherein, the first structural member can deform along with the deformation of the support part to release the stress generated during the deformation of the support part during the deformation process.

2. The deformation structure according to claim 1, wherein There are two first structural members, and the two first structural members are symmetrically distributed on both sides of the support part relative to the middle of the support part, so as to divide the support part into a first segment, a second segment and a third segment in sequence along its length direction; The first structural member includes a connecting body and four connecting arms, and the connecting body is provided with two connecting arms at intervals along the length direction on both sides in the width direction of the support part to connect the first segment and the second segment respectively, or, the second segment and the third segment, and form openings between the first segment and the second segment, and between the second segment and the third segment.

3. The deformation structure according to claim 2, wherein There are four first structural members, and two spaced first structural members are symmetrically arranged on both sides of the support part relative to its middle respectively, so as to divide the support part into the first segment, a fourth segment, the second segment, a fifth segment and the third segment in sequence along the length direction; The four connecting arms of the first structural member connect the first segment and the fourth segment respectively, or, the fourth segment and the second segment, or, the second segment and the fifth segment, or, the fifth segment and the third segment, and form the openings between the first segment and the fourth segment, between the fourth segment and the second segment, between the second segment and the fifth segment, and between the fifth segment and the third segment.

4. The deformation structure according to claim 3, wherein Open holes are formed at one ends of the first segment, the fourth segment, the second segment, the fifth segment and the third segment that are close to each other to enclose four accommodating spaces, the first structural member is arranged in the accommodating spaces, and the connecting body and the connecting arms are spaced from the side walls of the accommodating spaces in the length direction.

5. The deformation structure according to claim 4, wherein A plurality of spaced strip-shaped holes are arranged in the first segment, the fourth segment, the second segment, the fifth segment and the third segment along the length direction, the strip-shaped holes extend along the width direction, and buckle grooves are integrally formed at both ends of the strip-shaped holes.

6. The deformation structure according to claim 1, wherein Further comprising: A second structural member, the second structural member being integrally formed with the support part and located in the middle of the support part, the second structural member can deform along with the deformation of the support part to release the stress generated during the deformation of the support part during the deformation process.

7. The deformation structure according to claim 6, wherein The second structure includes an elastic telescopic member and an arc-shaped protrusion. Both ends of the elastic telescopic member are integrally connected to the middle of the support portion, and the arc-shaped protrusion is provided on both sides of the support portion in its width direction and protrudes from the inner arc side of the support portion.

8. The deformation structure according to claim 1, characterized in that, It further includes: Third structural members, there are two of the third structural members and they are respectively arranged at both ends of the support portion. The third structural members are spaced apart from the first structural members symmetrically distributed on both sides of the support portion.

9. A deformation component, characterized in that, It includes: A support portion, the support portion is in a symmetric arc shape strip; A first structural member, the first structural member is integrally formed with the support portion and is symmetrically distributed on both sides of the support portion relative to the middle of the support portion; A housing, which forms an accommodation space, and the support portion and the first structure are arranged in the accommodation space; Wherein, the first structural member can deform with the deformation of the support portion to release the stress generated during the deformation of the support portion during the deformation process.

10. A wearable device, characterized in that, It includes: A support portion, the support portion is in a symmetric arc shape strip; A first structural member, the first structural member is integrally formed with the support portion and is symmetrically distributed on both sides of the support portion relative to the middle of the support portion; An interaction portion, connected to the support portion, for outputting information or obtaining input information; Wherein, the first structural member can deform with the deformation of the support portion to release the stress generated during the deformation of the support portion during the deformation process.