Angle-adjustable support
By designing an angle-adjustable bracket, utilizing the movable connection between the fixed assembly and the support assembly, the problem that the existing bracket cannot adjust the angle and position is solved, achieving higher operating flexibility and convenience.
Patent Information
- Application Number
- CN202421091465.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-17
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-05-17
AI Technical Summary
The existing brackets cannot easily adjust the angle and position, limiting the user's operational flexibility.
An adjustable angle bracket including a fixing assembly and a support assembly is designed, and the fixing assembly can adjust its position relative to the support assembly through a movable connection, thereby achieving flexible adjustment of angle and position.
The bracket can easily adjust the position and angle of the object to be fixed, improving the user's convenience and flexibility of operation.
Smart Images

Figure CN222950749U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of brackets, and in particular to a bracket with adjustable angle. Background Art
[0002] As the use of electronic products such as mobile phones becomes more and more common, the application of brackets is becoming more and more extensive. When the bracket is used, it can support the mobile phone, thereby freeing the user's hands, so the bracket can bring great convenience.
[0003] In the related art, metal or non-metal materials are usually used to make brackets to support mobile phones and other electronic products. However, such brackets can only keep the product in the same position, or it is difficult to adjust the shape of the bracket, which is not convenient for users to use. Utility Model Content
[0004] The present application provides a bracket with adjustable angle, which can fix an object to be fixed on the bracket and facilitate the user to adjust the position of the object to be fixed.
[0005] The angle-adjustable bracket provided in the present application includes a fixing component and a supporting component; wherein the fixing component is used to removably place the object to be fixed on the bracket; one end of the supporting component is movably connected to the fixing component, and when the fixing component is subjected to external force, the position of the fixing component relative to the supporting component can be adjusted.
[0006] In the present application, the object to be fixed can be installed on the fixing component in a detachable manner, so that the object to be fixed can be detachably installed on the bracket; the supporting component provides support for the fixing component, and when the fixing component is subjected to external force, the position of the fixing component relative to the supporting component can be adjusted, thereby facilitating the user to adjust the position of the fixing device and the object to be fixed.
[0007] In a possible implementation of the present application, the fixing assembly includes a fixing member and a supporting member, the fixing member is connected to the supporting member, the supporting member is movably connected to one end of the supporting assembly, and the fixing member is used to apply a force to the object to be fixed.
[0008] In a possible implementation of the present application, the support member has a fixing structure that matches the fixing member, and the fixing member is fixedly connected to the support member via the fixing structure.
[0009] In one possible implementation of the present application, the supporting assembly includes an extension member and a supporting member, the supporting member is connected to one end of the extension member, and the supporting member is connected to an end of the extension member away from the supporting member.
[0010] In a possible implementation of the present application, the support member is movably connected to the extension member via a first connection member, and the extension member is movably connected to the supporting member via a second connection member.
[0011] In a possible implementation of the present application, the first connecting member and / or the second connecting member includes a damping shaft structure.
[0012] In a possible implementation of the present application, a first avoidance space is provided between the fixing member and the first connecting member, so that during the process in which the fixing member rotates relative to the extending member through the first connecting member, the first avoidance space can reduce the restriction of the first connecting member on the rotation range of the fixing member.
[0013] In a possible implementation of the present application, a reinforcing member is provided on the extension member and / or the supporting member.
[0014] In a possible implementation of the present application, the angle-adjustable bracket further includes a covering member, and the covering member covers at least one of the following: a supporting member, an extending member, a supporting member, and a reinforcing member.
[0015] In a possible implementation of the present application, a connection structure is provided between the covering member and the reinforcing member, and the covering member is covered on the reinforcing member through the connection structure.
[0016] In one possible implementation of the present application, when a reinforcement member is provided on the extension member, a second avoidance space is provided between the reinforcement member and the second connecting member, so that during the process of the extension member rotating relative to the supporting member through the second connecting member, the second avoidance space can reduce the restriction of the extension member on the rotation range of the extension member by the reinforcement member; and / or, when a reinforcement member is provided on the extension member, a third avoidance space is provided between the reinforcement member and the first connecting member, so that during the process of the extension member rotating relative to the fixed member through the first connecting member, the third avoidance space can reduce the restriction of the rotation range of the fixed member by the reinforcement member; and / or, when a reinforcement member is provided on the supporting member, a fourth avoidance space is provided between the reinforcement member and the second connecting member, so that during the process of the supporting member rotating relative to the extension member through the second connecting member, the fourth avoidance space can reduce the restriction of the reinforcement member on the rotation range of the supporting member.
[0017] In one possible implementation of the present application, when a reinforcement member is provided on the extension member and the reinforcement member is covered with a covering member, a fifth avoidance space is provided between the covering member on the reinforcement member and the second connecting member, so that during the process of the extension member rotating relative to the supporting member through the second connecting member, the fifth avoidance space can reduce the restriction of the covering member on the reinforcement member on the rotation range of the extension member; and / or, when a reinforcement member is provided on the extension member and the reinforcement member is covered with a covering member, a sixth avoidance space is provided between the covering member on the reinforcement member and the first connecting member, so that during the process of the extension member rotating relative to the fixed member through the first connecting member, the sixth avoidance space can reduce the restriction of the covering member on the reinforcement member on the rotation range of the fixed member; and / or, when a reinforcement member is provided on the supporting member and the reinforcement member is covered with a covering member, a seventh avoidance space is provided between the covering member on the reinforcement member and the second connecting member, so that during the process of the supporting member rotating relative to the extension member through the second connecting member, the seventh avoidance space can reduce the restriction of the covering member on the reinforcement member on the rotation range of the supporting member.
[0018] In a possible implementation of the present application, the fixing member includes a magnetic member.
[0019] In a possible implementation of the present application, the fixing member includes a first fixing member and a second fixing member, and the first fixing member and the second fixing member are respectively mounted on two opposite sides of the supporting member.
[0020] In a possible implementation of the present application, a support member or a fixing member is provided with a wireless charging component. When an object to be fixed is placed on the fixing member, the wireless charging component is electromagnetically connected to the object to be fixed, and the object to be fixed can be charged.
[0021] In one possible implementation of the present application, an adjustment component is installed at the other end of the supporting component; the adjustment component is used to fix the bracket at the installation position and adjust the position of the supporting component relative to the adjustment component. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 A schematic diagram of the first structural form of the angle-adjustable bracket provided in the present application;
[0023] Figure 2 A schematic diagram of the second structural form of the angle-adjustable bracket provided in the present application;
[0024] Figure 3 A schematic diagram of the third structural form of the angle-adjustable bracket provided in the present application;
[0025] Figure 4 A schematic diagram of the fourth structural form of the angle-adjustable bracket provided in the present application.
[0026] Description of reference numerals:
[0027] 1-fixing assembly; 11-fixing member; 12-supporting member; 2-supporting assembly; 21-extension member; 22-supporting member; 3-first connecting member; 4-second connecting member; 5-reinforcement member. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical solution and advantages of the embodiments of the present application clearer, the specific technical solution of the present application will be further described in detail below in conjunction with the drawings in the embodiments of the present application. The following embodiments are used to illustrate the present application, but are not used to limit the scope of the present application.
[0029] In the embodiments of the present application, the terms "first" and "second" are used for descriptive purposes only and are not to be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the embodiments of the present application, unless otherwise specified, "multiple" means two or more.
[0030] In addition, in the embodiments of the present application, directional terms such as "up", "down", "left" and "right" are defined relative to the orientation of the components in the drawings. It should be understood that these directional terms are relative concepts. They are used for relative description and clarification, and they may change accordingly according to the changes in the orientation of the components in the drawings.
[0031] In the embodiments of the present application, unless otherwise clearly specified and limited, the term "connection" should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium.
[0032] In the embodiments of the present application, the terms "include", "comprises" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or device including the element.
[0033] In the embodiments of the present application, words such as "exemplary" or "for example" are used to indicate examples, illustrations or descriptions. Any embodiment or design described as "exemplary" or "for example" in the embodiments of the present application should not be interpreted as being more preferred or more advantageous than other embodiments or designs. Specifically, the use of words such as "exemplary" or "for example" is intended to present related concepts in a specific way.
[0034] Brackets are widely used as supporting parts in today's applications. For example, hydraulic brackets, solar brackets, etc. can be used in industry, mobile phone brackets, laptop computer brackets, etc. can be used in life, and greenhouse brackets, etc. can be used in production and life. Among them, taking mobile phone brackets as an example, the emergence of mobile phone brackets can improve the user experience to a certain extent. On the one hand, by installing the object to be fixed on the bracket, the user's hands can be freed; on the other hand, the position of the object to be fixed can be adjusted to meet the usage requirements in different scenarios.
[0035] The present application embodiment provides a bracket with adjustable angle. Figure 1 , Figure 1 The structure diagram of the adjustable angle bracket is a triangle. The adjustable angle bracket includes a fixing component 1 and a supporting component 2; wherein the fixing component 1 is used to removably place the object to be fixed on the bracket; one end of the supporting component 2 is movably connected to the fixing component 1, and when the fixing component 1 is subjected to external force, the position of the fixing component 1 relative to the supporting component 2 can be adjusted.
[0036] In the embodiment of the present application, the fixing component 1 serves as the fixing part of the bracket. The fixing component 1 has a structure or part that can fix the object to be fixed on the bracket. The user can install the object to be fixed on the bracket according to usage requirements, or the user can also remove the object to be fixed from the bracket.
[0037] Exemplarily, the fixing assembly 1 may be a structure including a fixing part and a supporting part. The supporting part may provide support for the fixing part, and the fixing part may fix the object to be fixed on the bracket.
[0038] In another example, the fixing assembly 1 may also be a structural form including a clamping member and a mounting member. The mounting member may provide support for the clamping member, and the clamping member may clamp the object to be fixed on the bracket by clamping.
[0039] In another example, the fixing assembly 1 may also be a structure including a clamping member and a clamping body. The clamping body may provide support for the clamping member, and the clamping member may clamp the object to be fixed on the bracket by clamping.
[0040] In the embodiment of the present application, the supporting component 2 serves as the main body of the bracket, and one end of the supporting component 2 has a structure that allows the fixing component 1 to move relative to the supporting component 2, through which one end of the supporting component 2 can be movably connected to the fixing component 1. When the fixing component 1 is subjected to an external force, the position of the fixing component 1 can change relative to the supporting component 2, so that the position of the fixing component 1 relative to the supporting component 2 can be adjusted.
[0041] Exemplarily, the supporting component 2 may be an integrated structure, that is, the supporting component 2 may be connected to the fixing component 1 as a whole, and when the fixing component 1 is subjected to external force, the position of the fixing component 1 relative to the supporting component 2 may be adjusted within a range.
[0042] In another example, the supporting component 2 may also be a spliced structure connected by at least two parts. Taking two parts as an example, the two parts may be movably connected, and one of the parts is movably connected to the fixing component 1. The position of the fixing component 1 relative to the supporting component 2 may be adjusted by the movement between the two parts; the position of the fixing component 1 relative to the supporting component 2 may also be adjusted by the movement between the fixing component 1 and one of the corresponding parts. The position of the fixing component 1 relative to the supporting component 2 may be adjusted within two ranges.
[0043] In the above embodiment, since a fixing component 1 is provided, the fixing component 1 serves as a fixing part of the bracket, and the fixing component 1 can fix the object to be fixed on the bracket in a detachable manner; since a supporting component 2 is provided, the supporting component 2 serves as the main part of the bracket, the fixing component 1 can be supported by the supporting component 2, and when the fixing component 1 is subjected to external force, the position of the fixing component 1 relative to the supporting component 2 can be adjusted, thereby facilitating the user to adjust the position of the fixing member 11 and the object to be fixed.
[0044] In some embodiments of the present application, reference Figure 2 , Figure 2 The structure diagram shows that the angle-adjustable bracket has not changed. The fixing assembly 1 includes a fixing member 11 and a supporting member 12, the fixing member 11 is connected to the supporting member 12, the supporting member 12 is movably connected to one end of the supporting assembly 2, and the fixing member 11 is used to apply a force to the object to be fixed.
[0045] In the embodiment of the present application, the fixing component 1 can be set to a structural form including a fixing member 11 and a supporting member 12. Among them, the fixing member 11 and the supporting member 12 both have a matching structure, and the fixing member 11 can be connected to the supporting member 12 through the structure. In addition, the supporting member 12 can also be movably connected to one end of the supporting component 2. When the supporting member 12 or the fixing member 11 is subjected to an external force, the positions of the supporting member 12 and the fixing member 11 relative to the supporting component 2 can change; the fixing member 11 is used to apply a force to the object to be fixed. For example, the fixing member 11 can fix the object to be fixed on the fixing member 11 by applying abutment force, pressure force or clamping force to the object to be fixed.
[0046] Exemplarily, the object to be fixed can be installed on the fixing member 11 or removed from the fixing member 11. The fixing member 11 provides support for the object to be fixed, and the support member 12 provides support for the fixing member 11. For example, the fixing member 11 can be a cylindrical structure with a hollow center, and the support member 12 can be a circular ring with a hollow center, and the axis of the support member 12 can coincide with the axis of the fixing member 11, or nearly coincide with it; the size of the outer periphery of the fixing member 11 can match the size of the central structure of the support member 12, so that the fixing member 11 can be inserted into the support member 12, or the support member 12 can be sleeved on the fixing member 11, so as to connect the fixing member 11 and the support member 12.
[0047] In another example, the fixing member 11 may be detachably connected to the supporting member 12. For example, the fixing member 11 and the supporting member 12 both have matching supporting structures, and the fixing member 11 is connected to the supporting member 12 through the supporting structure; for another example, the fixing member 11 may be connected to the supporting member 12 through a component, and the component may match the supporting member 12 or the fixing member 11.
[0048] Alternatively, the fixing member 11 may be fixedly connected to the supporting member 12. For example, the fixing member 11 and the supporting member 12 may be fixedly connected by welding; or for another example, the fixing member 11 and the supporting member 12 may be fixedly connected by sewing or bonding.
[0049] In another example, the support member 12 can be movably connected to one end of the supporting assembly 2. For example, the support member 12 can be slidably connected to one end of the supporting assembly 2, or the support member 12 can be rotatably connected to one end of the supporting assembly 2.
[0050] In the above embodiment, since the fixing member 11 and the supporting member 12 are provided, the fixing member 11 can apply a force to the object to be fixed, so that the object to be fixed can be installed on the bracket; the supporting member 12 can provide support for the fixing member 11, and the supporting member 12 can also be movably connected to one end of the supporting component 2. When the supporting member 12 or the fixing member 11 is subjected to external force, the positions of the supporting member 12 and the fixing member 11 relative to the supporting component 2 can change.
[0051] In some embodiments of the present application, Figure 2 As shown, the support member 12 has a fixing structure matching the fixing member 11 , and the fixing member 11 is fixedly connected to the support member 12 via the fixing structure.
[0052] In the embodiment of the present application, a fixing structure may be provided on the support member 12 , and features such as the size and shape of the fixing structure may match those of the fixing member 11 , and the support member 12 is connected to the fixing member 11 via the fixing structure.
[0053] Exemplarily, a mounting hole may be provided on the support member 12, the shape of the mounting hole may match the shape of the fixing member 11, the aperture of the mounting hole may match the dimension of the fixing member 11 along the radial direction of the mounting hole, and the fixing member 11 may be fixed in the mounting hole, thereby fixing the support member 12 and the fixing member 11 to be connected.
[0054] The fixing member 11 can be inserted into the mounting hole by interference fit, so that the fixing member 11 and the supporting member 12 are fixedly connected.
[0055] In another example, the positions where the fixing member 11 and the supporting member 12 are connected are both provided with threaded holes, and the fixing member 11 and the supporting member 12 are fixedly connected by screwing screws into the threaded holes.
[0056] As another example, glue or other adhesives may be applied to the position where the fixing member 11 and the supporting member 12 are connected, and the fixing member 11 and the supporting member 12 may be fixedly connected by bonding.
[0057] In the above embodiment, since a fixing structure is provided, the fixing member 11 and the support member 12 can be fixedly connected by the fixed structure. By providing a corresponding fixing structure on the fixing member 11 itself or on the support member 12 itself, the fixing structure can use fewer parts to fix the fixing member 11 and the support member 12. There is no need to provide a complex structure, and the structure can be simplified on the basis of satisfying the requirement of fixing the fixing member 11 and the support member 12.
[0058] In some embodiments of the present application, Figure 2 As shown, the supporting assembly 2 includes an extension member 21 and a supporting member 22 . The support member 12 is connected to one end of the extension member 21 , and the supporting member 22 is connected to one end of the extension member 21 away from the support member 12 .
[0059] In the embodiment of the present application, the supporting assembly 2 can be configured to include an extension member 21 and a supporting member 22, and the extension member 21 can be located between the supporting member 12 and the supporting member 22. One end of the extension member 21 can be connected to the supporting member 12, for example, one end of the extension member 21 can be movably connected to the supporting member 12 through a corresponding part or a matching structure; one end of the extension member 21 away from the supporting member 12 can be connected to the supporting member 22, for another example, one end of the extension member 21 away from the supporting member 12 can be movably connected to the supporting member 22 through a corresponding part or a matching structure.
[0060] Exemplarily, the extension member 21 can be arranged at a position between the support member 12 and the supporting member 22. One end of the extension member 21 can be connected to the support member 12, for example, the end of the extension member 21 facing the support member 12 has a groove, and the end of the support member 12 facing the extension member 21 has a protrusion; the groove and the protrusion can be square, and the sizes of the groove and the protrusion can be the same, or nearly the same, so that the protrusion can be stuck in the groove. In the direction perpendicular to the extension direction of the extension member 21, the extension member 21 has a first through hole. Similarly, in the direction perpendicular to the extension direction of the support member 12, the support member 12 has a second through hole. When the protrusion is stuck in the groove, the axes of the first through hole and the second through hole can coincide, or nearly coincide. Then, the rotating shaft is inserted into the first through hole and the second through hole, so that one end of the extension member 21 can be movably connected to the support member 12, and the support member 12 and the extension member 21 can rotate relative to each other.
[0061] Alternatively, one end of the extension member 21 can be movably connected to the support member 12 by a hinge connection or a ball joint connection, so that the position of the extension member 21 relative to the support member 12 can be changed, and the position of the support member 12 relative to the extension member 21 can also be changed.
[0062] In another example, the end of the extension member 21 away from the support member 12 can be connected to the support member 22. The end of the extension member 21 away from the support member 12 can be connected to the support member 22 by a hinge connection, a ball joint connection, or a snap connection.
[0063] It should be noted that the connection method between the support member 12 and the extension member 21 and the connection method between the extension member 21 and the supporting member 22 may be the same or different.
[0064] In the above embodiment, the extension member 21 and the supporting member 22 are provided. One end of the extension member 21 can be connected to the supporting member 12, and the other end of the extension member 21 away from the supporting member 12 can be connected to the supporting member 22. When the supporting member 12 is subjected to external force, the position of the supporting member 12 relative to the extension member 21 can be adjusted; when the extension member 21 is subjected to external force, the position of the extension member 21 relative to the supporting member 22 can be adjusted. The adjustment range of the bracket shape can be expanded, thereby expanding the adjustment range of the position of the object to be fixed.
[0065] In some embodiments of the present application, Figure 2 As shown, the support member 12 is movably connected to the extension member 21 through the first connection member 3 , and the extension member 21 is movably connected to the supporting member 22 through the second connection member 4 .
[0066] In the embodiment of the present application, the first connecting member 3 has a structure that matches the support member 12, and the first connecting member 3 also has a structure that matches the supporting member 22. Therefore, the support member 12 can be movably connected to the supporting member 22 through the first connecting member 3; the second connecting member 4 has a structure that matches the extension member 21, and the second connecting member 4 also has a structure that matches the supporting member 22. Therefore, the extension member 21 can be movably connected to the supporting member 22 through the second connecting member 4.
[0067] Exemplarily, the first connecting member 3 can be arranged between the support member 12 and the extension member 21, and the first connecting member 3 can be an aluminum sheet, an iron sheet, or a part of other non-metallic materials. The second connecting member can be arranged between the extension member 21 and the supporting member 22, and the second connecting member 4 can be an aluminum sheet, an iron sheet, or a part of other non-metallic materials. Among them, metal materials or non-metallic materials such as aluminum sheets and iron sheets can be bent when subjected to a force, and the position of the support member relative to the extension member can be adjusted during the bending process, or the position of the extension member relative to the supporting member can be adjusted. After being bent, the metal material or non-metallic material can be bent back to its original position.
[0068] In another example, the first connecting member 3 may be another part with a self-locking function, that is, after the position of the supporting member 12 relative to the extending member 21 is adjusted by the part, the supporting member 12 can still be kept at the current position; the second connecting member 4 may also be another part with a self-locking function, that is, after the position of the extending member 21 relative to the supporting member 22 is adjusted by the part, the extending member can still be kept at the current position. For example, the part with a self-locking function may be a hinge, and the connection method of the hinge may be a hinge connection or a ball joint connection.
[0069] It should be noted that the structures of the first connecting member 3 and the second connecting member 4 may be the same or different; that is, the first connecting member 3 and the second connecting member 4 may be the same part or different parts.
[0070] In the above embodiment, the first connecting member 3 and the second connecting member 4 are provided. The support member 12 and the extension member 21 can be movably connected by the first connecting member 3, and the extension member 21 and the supporting member 22 can be movably connected by the second connecting member 4. The first connecting member 3 is provided between the support member 12 and the extension member 21, and the second connecting member 4 is provided between the extension member 21 and the supporting member 22, which can save space, and has a simple structure and is easy to operate.
[0071] In some embodiments of the present application, Figure 2As shown, the first connecting member 3 and / or the second connecting member 4 includes a damping shaft structure, that is, the first connecting member 3 includes a damping shaft structure, or the second connecting member 4 includes a damping shaft structure, or the first connecting member 3 and the second connecting member 4 both include a damping shaft structure.
[0072] In the embodiment of the present application, the first connecting member 3 and the second connecting member 4 may both include a damping shaft structure. The principle of the damping shaft structure is to generate friction through the extrusion between the gaskets. Under the action of the friction, one of the two parts connected by the damping shaft structure can be kept in a specific position. The magnitude of the friction force is related to the number of gaskets installed and the tightness of the nut tightening.
[0073] The damping shaft structure can be divided into a connecting shaft, a connecting plate, a gasket and a nut. The connecting shaft provides an installation environment for the connecting plate, the gasket and the nut. The connecting plate, the gasket and the nut are sleeved on the connecting shaft, and the connecting plate is located between the gasket and the nut. The connecting shaft has a thread structure adapted to the nut, and the nut can move on the connecting shaft. The nut is twisted in a direction close to the connecting plate, so that the nut squeezes the connecting plate, and the connecting plate squeezes the gasket.
[0074] Exemplarily, taking the first connecting member 3 as an example, the axial direction of the connecting shaft can be perpendicular to, or nearly perpendicular to, the extension direction of the support member 12. The support member 12 can be connected to the extension member 21, the support member 12 can be connected to the connecting shaft, the extension member 21 can also be connected to the connecting shaft, and the connecting piece can be connected to the support member 12. When the support member 12 is subjected to an external force, the support member 12 can drive the connecting piece to rotate on the connecting shaft, thereby adjusting the position of the support member 12 relative to the extension member 21, and also enabling the support member 12 to remain in a desired position.
[0075] Another example, taking the second connecting member 4 as an example, Figure 2 As shown, the unfolding direction of the supporting member, the extension member and the connecting member can be used as the length direction of the bracket, and the axial direction of the connecting shaft can be perpendicular to the length direction of the bracket, or nearly perpendicular. The extension member 21 can be connected to the supporting member 22, the extension member 21 can be connected to the connecting shaft, the supporting member 22 can also be connected to the connecting shaft, and the connecting piece can be connected to the extension member 21. When the extension member 21 is subjected to external force, the extension member 21 can drive the connecting piece to rotate on the connecting shaft, so that the position of the extension member 21 relative to the supporting member 22 can be adjusted, and the extension member 21 can also be kept in the required position.
[0076] As another example, the components used in the damping shaft structure may be made of manganese steel; and the manufacturing process of the components in the damping shaft structure may include: stamping, heat treatment and nickel electroplating.
[0077] In the above embodiment, the damping shaft structure is provided; the position of the support member 12 relative to the extension member 21 can be adjusted by the damping shaft structure, and the position of the extension member 21 relative to the support member 22 can be adjusted by the damping shaft structure. In addition, the damping shaft structure also has a self-locking function, so that the support member 12 and the extension member 21 can be kept in a specific position.
[0078] In some embodiments of the present application, reference Figure 3 and Figure 4 , Figure 3 The structural diagram shows that both the support member 12 and the supporting member 22 are deformed. Figure 4 The structural diagram shows that the extension member 21 and the support member 12 are not deformed, but the support member 22 is deformed. The extension member 21 and / or the support member 22 are provided with a reinforcing member 5, that is, the extension member 21 can be provided with a reinforcing member 5, or the support member 22 can be provided with a reinforcing member 5, or both the extension member 21 and the support member 22 can be provided with a reinforcing member 5.
[0079] In the embodiment of the present application, a reinforcing member 5 may be provided on the extension member 21, and a reinforcing member 5 may also be provided on the supporting member 22. Both the extension member 21 and the supporting member 22 are provided with structures that provide an installation environment for the reinforcing member 5. The reinforcing member 5 may be provided in a part of the extension member 21, or may be laid flat on the extension member 21; or the reinforcing member 5 may be provided in a part of the supporting member 22, or may be laid flat on the supporting member 22.
[0080] Exemplarily, the reinforcing member 5 may be made of acrylonitrile-butadiene-styrene (ABS) plastic, or other materials that can improve the deformation resistance of the extending member 21 and the supporting member 22 .
[0081] In another example, the reinforcement member 5 may be a part of a plate-shaped or block-shaped structure. For example, the reinforcement member 5 may be a reinforcement plate made of manganese steel.
[0082] As another example, the reinforcing member 5 can be fixed to the extending member 21 or the supporting member 22 by means of snap-fitting or plug-in; the reinforcing member 5 can also be fixed to the extending member 21 or the supporting member 22 by means of gluing.
[0083] In the above embodiment, since the reinforcement member 5 is provided, the deformation resistance of the extension member 21 and the supporting member 22 can be improved through the reinforcement member 5, thereby improving the supporting effect of the extension member 21 and the supporting member 22, and further improving the stability of the bracket.
[0084] In some embodiments of the present application, there is a first avoidance space between the fixing member 11 and the first connecting member 3, so that when the fixing member 11 rotates relative to the extending member 21 through the first connecting member 3, the first avoidance space can reduce the restriction of the first connecting member 3 on the rotation range of the fixing member 11.
[0085] In the embodiment of the present application, taking the first connecting member 3 including a damping shaft structure as an example, a first avoidance space can be set between the fixing member 11 and the first connecting member 3, so that when the fixing member 11 rotates relative to the extending member 21 through the first connecting member 3, the fixing member 11 can be folded relative to the extending member 21, and the probability of the fixing member 11 being obstructed by the first connecting member 3 during the folding process can be reduced.
[0086] For example, along the length direction of the bracket, there is a spacing between the position of the fixing member 11 closest to the first connecting member 3 and the first connecting member 3, and the spacing may be one centimeter, two centimeters, or three centimeters, so that the fixing member 11 is not hindered during the folding process. In the embodiment of the present application, there is no limitation on the spacing between the fixing member 11 and the first connecting member 3.
[0087] In another example, the fixing member 11 has a certain thickness along the extension direction of the fixing member 11, which may be two centimeters, three centimeters or four centimeters, so that the fixing member 11 will not be hindered during the folding process. The thickness of the fixing member 11 is not limited in the embodiment of the present application.
[0088] In another example, the fixing member 11 can be installed at different positions on the support member 12, for example, the extension direction of the fixing member 11 can be parallel to or nearly parallel to the length direction of the bracket; in another example, the extension direction of the fixing member 11 can be perpendicular to or nearly perpendicular to the length direction of the bracket, so that the fixing member 11 will not be hindered during the folding process.
[0089] In the above embodiment, since the first avoidance space is provided, when the fixing member 11 moves relative to the extension member 21 through the first connecting member 3, the probability of the fixing member 11 being obstructed by the first connecting member 3 can be reduced, and the movement range of the fixing member 11 relative to the extension member 21 can be increased, so that the user can adjust the position of the fixing member 11 conveniently.
[0090] In some embodiments of the present application, when a reinforcement member 5 is provided on the extension member 21, a second avoidance space is provided between the reinforcement member 5 and the second connecting member 4, so that during the rotation of the extension member 21 relative to the supporting member 22 through the second connecting member 4, the second avoidance space can reduce the restriction of the reinforcement member 5 on the rotation range of the extension member 21.
[0091] In the embodiment of the present application, taking the second connecting member 4 including a damping shaft structure as an example, when the extension member 21 is provided with a reinforcing member 5, a second avoidance space can be provided between the reinforcing member 5 and the second connecting member 4. When the second connecting member 4 is subjected to an external force and moves, the extension member 21 can be folded relative to the supporting member 22 through the second connecting member 4, and the restriction of the reinforcing member 5 on the rotation range of the extension member 21 during the folding process can be reduced.
[0092] Alternatively, when the extension member 21 is provided with a reinforcement member 5, a third avoidance space may be provided between the reinforcement member 5 and the first connection member 3. This allows the extension member 21 to be folded relative to the fixing member 11 through the first connection member 3 when the first connection member 3 is moved by an external force, and the restriction of the reinforcement member 5 on the rotation range of the fixing member 11 during the folding process can be reduced.
[0093] Alternatively, when the support member 22 is provided with a reinforcing member 5, a fourth avoidance space may be provided between the reinforcing member 5 and the second connecting member 4. This allows the support member 22 to be folded relative to the extending member 21 through the second connecting member 4 when the second connecting member 4 is moved by an external force, and the probability of the reinforcing member 5 causing the support member 22 to rotate during the folding process can be reduced.
[0094] Exemplarily, along the length direction of the bracket, there is a spacing between the position on the reinforcement 5 closest to the second connecting member 4 and the second connecting member 4, or there is a spacing between the position on the reinforcement 5 closest to the first connecting member 3 and the first connecting member 3, or there is a spacing between the position on the reinforcement 5 closest to the first connecting member 3 and the first connecting member 3, and between the position on the reinforcement 5 closest to the second connecting member 4 and the second connecting member 4. The spacing can be one centimeter, two centimeters, or three centimeters, so that the reinforcement 5 can reduce the limit on the rotation range of the extension member 21 and / or the supporting member 22 during the folding process. In the embodiment of the present application, there is no restriction on the spacing between the reinforcement 5 and the second connecting member 4, and there is no restriction on the spacing between the reinforcement 5 and the first connecting member 3.
[0095] In another example, the reinforcing member 5 has a certain thickness, which may be 2 cm, 3 cm or 4 cm, so that the extending member 21 and / or the supporting member 22 will not be hindered by the second connecting member 4 during the folding process. The thickness of the reinforcing member 5 is not limited in the embodiment of the present application.
[0096] In another example, the reinforcing member 5 can be installed at different positions on the extension member 21 and / or the supporting member 22. For example, the reinforcing member 5 is installed on the extension member 21. The reinforcing member 5 can be installed on one of the surfaces of the extension member 21, or on the surface of the extension member 21 opposite to one of the surfaces, so that the extension member 21 will not be hindered by the second connecting member 4 during the folding process.
[0097] In the above embodiment, since the second avoidance space is provided, the restriction of the reinforcement member 5 on the rotation range of the extension member 21 and / or the supporting member 22 can be reduced, and the rotation range of the extension member 21 and / or the supporting member 22 can be increased, so that the user can adjust the position of the extension member 21 and / or the supporting member 22 conveniently.
[0098] In some embodiments of the present application, Figure 3 As shown, the angle-adjustable bracket further includes a covering member, which covers at least one of the following: the supporting member 12 , the extending member 21 , the supporting member 22 and the reinforcing member 5 .
[0099] In the embodiment of the present application, the angle-adjustable bracket can be configured to have a structural form that also includes a covering member. The covering member can cover at least one of the support member 12, the extension member 21, the support member 22, and the reinforcement member 5; the covering member can also cover a portion of the first connection member 3 and the second connection member 4, that is, a portion of the first connection member 3 or the second connection member 4 can be covered by the covering member.
[0100] Exemplarily, the covering member may only cover one of the support member 12, the extension member 21 and the supporting member 22; or may cover two of them; or, the support member 12, the extension member 21 and the supporting member 22 may all be covered by the covering member.
[0101] It is understandable that, when the extension member 21 and / or the supporting member 22 are provided with a reinforcing member 5, the covering member may also be covered on the reinforcing member 5, and the reinforcing member 5 is located between the covering member and the extension member 21, or between the covering member and the supporting member 22. When no reinforcing member 5 is provided, the covering member may be directly covered on the extension member 21 and / or the supporting member 22.
[0102] Furthermore, the covering member may also cover the first connecting member 3 and / or the second connecting member 4, without affecting the deformation of the first connecting member 3 and / or the second connecting member 4 under the action of force. Alternatively, the covering member may not cover the first connecting member 3 and / or the second connecting member 4, that is, the first connecting member 3 and / or the second connecting member 4 are exposed, so that the deformation process of the first connecting member 3 and / or the second connecting member 4 under the action of force is smoother.
[0103] In another example, the covering piece may include a flexible material. The flexible material has a characteristic of good bending property, which facilitates the user to bend the covering piece.
[0104] The flexible material may be leather or artificial leather, etc. The flexible material may also be cloth or other materials.
[0105] In another example, the covering member can be covered on the support member 12, the extension member 21, the support member 22 and the reinforcement member 5 by routing at the edge of the covering member. Alternatively, the covering member can be covered on the support member 12, the extension member 21, the support member 22 and the reinforcement member 5 by screw connection or the like. Alternatively, the covering member can be bonded to the support member 12, the extension member 21, the support member 22 and the reinforcement member 5 by glue bonding.
[0106] In the above embodiment, since a covering member is provided, the covering member can improve the overall aesthetics of the bracket on the one hand, and can also improve the comfort of the user during operation and enhance the user's operating experience on the other hand.
[0107] In some embodiments of the present application, when a reinforcement member 5 is provided on the extension member 21 and a covering member is covered on the reinforcement member 5, a fifth avoidance space is provided between the covering member on the reinforcement member 5 and the second connecting member 4, so that during the process of the extension member 21 rotating relative to the supporting member 22 through the second connecting member 4, the fifth avoidance space can reduce the restriction of the covering member on the reinforcement member 5 on the rotation range of the extension member 21.
[0108] In the embodiment of the present application, when a reinforcement member 5 is provided on the extension member 21 and the reinforcement member 5 is covered with a covering member, a fifth avoidance space can be set between the covering member located on the reinforcement member 5 and the second connecting member 4. By setting the fifth avoidance space, when the extension member 21 rotates relative to the supporting member 22 through the second connecting member 4, the restriction of the covering member located on the reinforcement member 5 on the rotation range of the extension member 21 can be reduced.
[0109] Alternatively, when a reinforcement member 5 is provided on the extension member 21 and a covering member is covered on the reinforcement member 5, a sixth avoidance space may be provided between the covering member on the reinforcement member 5 and the first connecting member 3, so that during the rotation of the extension member 21 relative to the fixing member 5 through the first connecting member 3, the sixth avoidance space can reduce the restriction of the covering member on the reinforcement member 5 on the rotation range of the fixing member 5.
[0110] Alternatively, when a reinforcement member 5 is provided on the supporting member 22 and a covering member is covered on the reinforcement member 5, a seventh avoidance space is provided between the covering member on the supporting member 22 and the second connecting member 4, so that during the rotation of the supporting member 22 relative to the extension member 21 through the second connecting member 4, the seventh avoidance space can reduce the restriction of the covering member on the reinforcement member 5 on the rotation range of the supporting member 22.
[0111] Exemplarily, along the length direction of the bracket, there is a spacing between the position of the covering member on the extension member 21 closest to the first connecting member 3 and the first connecting member 3, or there is a spacing between the position of the covering member on the extension member 21 closest to the second connecting member 4 and the second connecting member 4, or there is a spacing between the position of the covering member on the supporting member 22 closest to the second connecting member 4 and the second connecting member 4. The spacing may be one centimeter, two centimeters, or three centimeters, etc., which can reduce the restriction of the corresponding covering member on the rotation range of the extension member 21 and / or the supporting member 22. In the embodiment of the present application, there is no restriction on the spacing between the covering member on the extension member 21 and the first connecting member 3, there is no restriction on the spacing between the covering member on the extension member 21 and the second connecting member 4, and there is no restriction on the spacing between the covering member on the supporting member 22 and the second connecting member 4.
[0112] In another example, the covering member has a certain thickness, which may be 2 cm, 3 cm or 4 cm, so that the covering member is not hindered during the folding process with the supporting member 22 and / or the extending member 21. The thickness of the covering member is not limited in the embodiment of the present application.
[0113] In another example, the covering member can be provided as a single layer, covering one surface of the bracket, or covering another surface of the bracket; or the covering member can be provided as two layers, one of which covers one surface of the bracket, and the other covers another surface of the bracket; or the covering member can be sleeved on the surface of the bracket, thereby covering both surfaces of the bracket. In this way, when the covering member moves with the bracket, the first connecting member 3 and / or the second connecting member 4 will not hinder the covering member.
[0114] In the above embodiment, since the third avoidance space is provided, the third avoidance space can reduce the restriction of the rotation range of the extension member 21 by the covering member on the reinforcement member 5 during the rotation of the extension member 21 relative to the supporting member 22; or, reduce the restriction of the rotation range of the extension member 21 by the covering member on the reinforcement member 5 during the rotation of the extension member 21 relative to the fixing member 11; or, reduce the restriction of the rotation range of the supporting member 22 by the covering member on the reinforcement member 5 during the rotation of the supporting member 22 relative to the extension member 21, thereby facilitating the user to bend the extension member 21 and / or the supporting member 22 within a larger range.
[0115] In some embodiments of the present application, a connection structure is provided between the covering member and the reinforcing member 5 , and the covering member is covered on the reinforcing member 5 through the connection structure.
[0116] In the embodiment of the present application, the bracket may further include a connection structure, taking the extension member 21 as an example. For example, a structure matching the connection structure may be provided only on the covering member, or a structure matching the connection structure may be provided on both the extension member 21 and the covering member; the covering member is covered on the extension member 21 through the connection structure, and an accommodation space is formed between the extension member 21 and the covering member, and the reinforcement member 5 is placed in the accommodation space.
[0117] Exemplarily, the connection structure may be a bonding structure. For example, the covering member may be a single-layer structure, and the covering member may be bonded to one of the surfaces of the extension member 21; for another example, the covering member may be a double-layer structure, and two covering members are respectively arranged on opposite sides of the extension member 21, and the two covering members are bonded. The reinforcement member 5 is arranged in the accommodation space formed by bonding the covering member and the extension member 21.
[0118] In another example, the connection structure may be a sewing structure. For example, the covering member may be a single-layer structure, and the covering member may be sewn to one of the surfaces of the extension member 21; for another example, the covering member may be a double-layer structure, and two covering members are respectively arranged on opposite sides of the extension member 21, and the two covering members are sewn. The reinforcement member 5 is arranged in the accommodation space formed by sewing the covering member and the extension member 21.
[0119] As another example, the connection structure may also be a snap-fit structure. When the covering member is a single-layer structure, the covering member may be snap-fitted onto the extension member 21. When the covering member is a double-layer structure, one of the covering members may be snap-fitted onto the other covering member, thereby covering the extension member 21, and the reinforcement member 5 is located in the accommodation space formed by the covering member and the extension member 21. The size of the accommodation space may be the same as, or nearly the same as, the size of the reinforcement member 5, thereby reducing the probability of the reinforcement member 5 shaking in the accommodation space.
[0120] In the above embodiment, since a connection structure is provided, the covering member can be covered on the reinforcing member 5 through the provided connection structure, which can reduce the probability of the reinforcing member 5 falling off the extending member 21 or the supporting member 22.
[0121] In some embodiments of the present application, the fixing member 11 includes a magnetic member.
[0122] In the embodiment of the present application, the fixing member 11 may be a magnetic member, and the object to be fixed is adsorbed and fixed on the fixing member 11 through the adsorption function of the magnetic member.
[0123] Exemplarily, the magnetic part can be an electromagnetic coil; when the power is turned on, the current passing through the coil will generate a magnetic field, and when the object to be fixed is close to the magnetic part, the magnetic field will generate magnetic force on the object to be fixed, thereby adsorbing and fixing the object to be fixed on the magnetic part.
[0124] As another example, the magnetic member may be a magnet module, and the object to be fixed has a structure that matches the magnet module, for example, the object to be fixed has an iron ring.
[0125] As another example, the magnetic member may also be a magnetic conductive member, and the object to be fixed has a structure that matches the magnetic conductive member, for example, the object to be fixed has a magnet.
[0126] In the above embodiment, since a magnetic member is provided, the object to be fixed can be fixed on the fixing member 11 by the provided magnetic member, and then the object to be fixed can be fixed on the bracket. The corresponding parts are installed on the mobile phone, and the parts and the magnetic member can be attracted to each other, and then the mobile phone is placed on the fixing member 11, so that the mobile phone or other electronic device can be fixed on the bracket without the user having to perform unnecessary operations.
[0127] In some embodiments of the present application, the fixing member 11 includes a first fixing member and a second fixing member, and the first fixing member and the second fixing member are respectively installed on two opposite sides of the supporting member 12 .
[0128] In the embodiment of the present application, the fixing member 11 can be set to a structural form including a first fixing member and a second fixing member, the first fixing member can be installed on one of the surfaces of the support member 12, and the second fixing member can be installed on the surface of the support member 12 opposite to one of the surfaces.
[0129] Exemplarily, the first fixing member may be installed on one side of the support member 12, and the second fixing member may be installed on the support member 12 at a position opposite to the first fixing member. For example, along the width direction of the bracket, the first fixing member and the second fixing member may be fixed on opposite sides of the support member 12. For another example, along a direction perpendicular to the length direction of the bracket, the first fixing member and the second fixing member may be fixed on opposite sides of the support member 12.
[0130] In another example, the first fixing member can be installed on one side of the support member 12, and the second fixing member can be installed on the support member 12 at a position adjacent to the first fixing member. This does not affect the installation of the object to be fixed on the first fixing member or the second fixing member, and does not affect the adjustment of the position of the object to be fixed.
[0131] In the above embodiment, since the first fixing member and the second fixing member are provided, the object to be fixed can be fixed on the bracket by the first fixing member or the second fixing member, and the first fixing member and the second fixing member are located on opposite sides. Therefore, the user can install the object to be fixed at different positions of the bracket, which is convenient for the user to use the object to be fixed.
[0132] In some embodiments of the present application, the support member 12 or the fixing member 11 is provided with a wireless charging component. When the object to be fixed is placed on the fixing member 11, the wireless charging component is electromagnetically connected to the object to be fixed, and the object to be fixed can be charged.
[0133] In the embodiment of the present application, a wireless charging component may be provided on the support member 12, or a wireless charging component may be provided on the fixing member 11. When the object to be fixed is placed on the fixing member 11, the wireless charging component is electromagnetically connected to the object to be fixed, and the object to be fixed is charged through the wireless charging component.
[0134] Exemplarily, the charging assembly includes components such as coils, circuit boards, and chips. For example, if the object to be fixed is a mobile phone, the charging assembly is powered by a charging device, and a high-frequency electromagnetic field is generated when the current passes through the coil in the charging assembly. After the mobile phone is fixed on the bracket, when the mobile phone is close to the electromagnetic field, the receiving coil inside the mobile phone will sense the magnetic field and convert it into current, thereby charging the mobile phone. The number of charging assemblies in the embodiment of the present application is not limited.
[0135] As another example, the support member 12 may be a cylinder, which is convenient for fixing objects of different sizes. The axial direction of the cylinder is perpendicular to and does not intersect with the length direction of the bracket. A receiving space such as a circular hole, a circular groove or annular groove may be provided on the cylinder, and the coil or other components in the charging component may be fixed in the receiving space. The support member 12 has a charging interface, and the charging component can be electrically connected to the charging interface. The charging device is provided with a connector, which can be plugged into the charging interface. The charging device is electrically connected to the charging component through the charging interface and the connector to supply power to the charging component.
[0136] In another example, a receiving space such as a circular hole, a circular groove or annular groove may be provided on the fixing member 11, and the coil or other components in the charging assembly may be fixed in the receiving space. The fixing member 11 has a charging interface, so that the charging device can be connected to the charging assembly through the charging interface to supply power to the charging assembly.
[0137] In the above embodiment, since a wireless charging component is provided, the object to be fixed can be charged by the provided wireless charging component while the user is using the object to be fixed, thereby meeting the user's needs of using the object to be fixed in different scenarios.
[0138] In some embodiments of the present application, an adjustment component is installed at the other end of the supporting component 2; the adjustment component is used to fix the bracket at the installation position and adjust the position of the supporting component 2 relative to the adjustment component.
[0139] In some embodiments of the present application, an adjustment component can be installed at the other end of the supporting component 2, and the adjustment component can be set to a structural form including an adjustment member and a bearing member; one end of the adjustment member can be connected to the supporting component 2, and the other end can be connected to the bearing member, and at least one end of the adjustment component can be movably connected, that is, the supporting component 2 can be movable, or the supporting component 2 and the adjustment member can both be movable. The bearing member has a bearing structure, and the bearing member can fix the adjustment member and the supporting component 2 at the installation position through the bearing structure.
[0140] Exemplarily, the supporting component 2 can be fixedly connected to one end of the adjusting member, and the bearing member can be rotatably connected to the other end of the adjusting member. When subjected to a force, the supporting component 2 can drive the adjusting member to rotate 360°, thereby adjusting the position of the supporting component 2 and the fixing member 11.
[0141] In another example, the supporting component 2 can be rotatably connected to one end of the adjusting member, and the bearing member can be fixedly connected to the other end of the adjusting member. The supporting component 2 can rotate 360° when subjected to a force, so that the position of the supporting component 2 and the fixing member 11 can be adjusted.
[0142] Alternatively, one end of the adjusting member may be rotatably connected to the bearing member by means of a ball joint connection, and the other end may also be rotatably connected to the supporting assembly 2 by means of a ball joint connection.
[0143] The adjusting member may be made of ABS plastic or other parts that can provide support for the supporting assembly 2 and the bearing member.
[0144] As another example, the carrier may be a part with an adhesive function. For example, the carrier may be a Velcro. The embodiment of the present application may use a Velcro with adhesive backing, which refers to a Velcro with adhesive backing that is made by melting the glue on the back of ordinary Velcro and special Velcro tapes through a high-temperature adhesive hot melt machine, and then affixing a layer of oily release paper. Compared with ordinary Velcro, Velcro with adhesive backing has a wider range of applications. The carrier may be bonded to a fixed position by the Velcro with adhesive backing, thereby installing the adjusting member, the supporting assembly 2, and the fixing member 11 at a fixed position.
[0145] In the above embodiment, since an adjustment component is provided, the bracket can be installed in a fixed position through the provided adjustment component on the one hand, and the position of the supporting component 2, the fixing member 11 and the object to be fixed can be adjusted on the other hand, thereby expanding the adjustment range of the position of the object to be fixed.
[0146] The following is an explanation of the use process of the adjustable angle bracket provided by the present application. When the adjustable angle bracket provided by the present application is used, first, the user can install the bracket in a fixed position through a bearing. Then, the user needs to check whether a structure adapted to the magnetic part is installed on the object to be fixed to be used. If the structure adapted to the magnetic part is not installed, the structure needs to be installed on the object to be fixed first. After installation, align the structure adapted to the magnetic part on the object to be fixed with the magnetic part, and then fix the object to be fixed on the magnetic part, at which time the object to be fixed has been fixed on the bracket. After the object to be fixed is fixed on the bracket, the user applies a force to the support member 12, and under the action of the first connecting member 3, the position of the support member 12 relative to the extension member 21 can be adjusted, thereby adjusting the position of the object to be fixed, and keeping the object to be fixed in the current position; the user can also apply a force to the extension member 21, and under the action of the second connecting member 4, the position of the extension member 21 relative to the supporting member 22 can be adjusted, and the position of the object to be fixed can be adjusted again, thereby expanding the adjustment range of the position of the object to be fixed.
[0147] The above are only preferred embodiments of the present application, and are not intended to limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A bracket with adjustable angle, characterized in that: include: A fixing assembly, the fixing assembly is used to removably place the object to be fixed on the bracket; A supporting component, one end of which is movably connected to the fixing component, and when the fixing component is subjected to external force, the position of the fixing component relative to the supporting component can be adjusted; The fixing assembly includes a fixing member and a supporting member, wherein the fixing member is connected to the supporting member, the supporting member is movably connected to one end of the supporting assembly, and the fixing member is used to apply a force to the object to be fixed.
2. The angle-adjustable bracket according to claim 1, characterized in that: The support member is provided with a fixing structure matching the fixing member, and the fixing member is fixedly connected to the support member via the fixing structure.
3. The angle-adjustable bracket according to claim 1, characterized in that: The supporting assembly comprises an extension member and a supporting member, the supporting member is connected to one end of the extension member, and the supporting member is connected to an end of the extension member away from the supporting member.
4. The angle-adjustable bracket according to claim 3, characterized in that: The support member is movably connected to the extension member via a first connection member, and the extension member is movably connected to the supporting member via a second connection member.
5. The angle-adjustable bracket according to claim 4, characterized in that: The first connecting member and / or the second connecting member comprises a damping shaft structure.
6. The angle-adjustable bracket according to claim 4, characterized in that: A first avoidance space is provided between the fixing member and the first connecting member, so that during the process in which the fixing member rotates relative to the extending member through the first connecting member, the first avoidance space can reduce the restriction of the first connecting member on the rotation range of the fixing member.
7. The angle-adjustable bracket according to claim 5, characterized in that: The extension member and / or the supporting member is provided with a reinforcement member.
8. The angle-adjustable bracket according to claim 7, characterized in that: The angle-adjustable bracket further includes a covering member, and the covering member covers at least one of the following: the supporting member, the extending member, the supporting member, and the reinforcing member.
9. The angle-adjustable bracket according to claim 8, characterized in that: A connection structure is provided between the covering member and the reinforcing member, and the covering member is covered on the reinforcing member through the connection structure.
10. The angle-adjustable bracket according to claim 7, characterized in that: When the reinforcing member is provided on the extension member, a second avoidance space is provided between the reinforcing member and the second connecting member, so that when the extension member rotates relative to the supporting member through the second connecting member, the second avoidance space can reduce the restriction of the reinforcing member on the rotation range of the extension member; And / or, when a reinforcement member is provided on the extension member, a third avoidance space is provided between the reinforcement member and the first connecting member, so that when the extension member rotates relative to the fixing member through the first connecting member, the third avoidance space can reduce the restriction of the reinforcement member on the rotation range of the fixing member; And / or, when a reinforcement member is provided on the supporting member, a fourth avoidance space is provided between the reinforcement member and the second connecting member, so that during the rotation of the supporting member relative to the extending member through the second connecting member, the fourth avoidance space can reduce the restriction of the reinforcement member on the rotation range of the supporting member.
11. The angle-adjustable bracket according to claim 8, characterized in that: When the extension member is provided with the reinforcement member and the reinforcement member is covered with the covering member, a fifth avoidance space is provided between the covering member on the reinforcement member and the second connecting member, so that during the process that the extension member rotates relative to the supporting member through the second connecting member, the fifth avoidance space can reduce the restriction of the covering member on the reinforcement member on the rotation range of the extension member; And / or, when a reinforcement member is provided on the extension member and the reinforcement member is covered with a covering member, a sixth avoidance space is provided between the covering member on the reinforcement member and the first connecting member, so that when the extension member rotates relative to the fixing member through the first connecting member, the sixth avoidance space can reduce the restriction of the covering member on the reinforcement member on the rotation range of the fixing member; And / or, when a reinforcement member is provided on the supporting member and a covering member is covered on the reinforcement member, a seventh avoidance space is provided between the covering member on the reinforcement member and the second connecting member, so that during the process of the supporting member rotating relative to the extending member through the second connecting member, the seventh avoidance space can reduce the restriction of the covering member on the reinforcement member on the rotation range of the supporting member.
12. The angle-adjustable bracket according to any one of claims 1 to 11, characterized in that: The fixing member includes a magnetic member.
13. The angle-adjustable bracket according to any one of claims 1 to 11, characterized in that: The fixing member includes a first fixing member and a second fixing member, and the first fixing member and the second fixing member are respectively mounted on two opposite sides of the supporting member.
14. The angle-adjustable bracket according to any one of claims 1 to 11, characterized in that: The supporting member or the fixing member is provided with a wireless charging component. When the object to be fixed is placed on the fixing member, the wireless charging component is electromagnetically connected to the object to be fixed, so that the object to be fixed can be charged.
15. The angle-adjustable bracket according to any one of claims 1 to 11, characterized in that: An adjusting component is installed at the other end of the supporting component; the adjusting component is used to fix the bracket at the installation position and adjust the position of the supporting component relative to the adjusting component.