Quick release structure and movable support

The design of the quick-release rotating components and mounting components solves the problem of inconvenient disassembly of existing brackets, enabling convenient disassembly, storage and replacement, thus improving ease of use and lifespan.

CN223609059UActive Publication Date: 2025-11-28深圳市原研寺技术有限公司
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Patent Information

Application Number
CN202520076614.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-09-29
Filing Date
2025-01-11
Publication Date
2025-11-28
Estimated Expiration
2035-01-11

AI Technical Summary

Technical Problem

The existing bracket is inconvenient to disassemble, store, carry and replace, and cannot replace damaged parts individually, resulting in inconvenience in use.

Method used

It adopts a quick-release structure, including a rotating component and a mounting component that are rotatably connected to each other. The button structure enables snap-on connection or release, and the combination of springs and balls provides rotational feedback. It supports 0 to 360° rotation and features a detachable support component design.

Benefits of technology

It enables convenient disassembly and storage of the bracket, increases the flexibility and lifespan of use, supports individual replacement of damaged parts, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of supports, in particular to a quick release structure and a movable support. The utility model provides a quick release structure. The quick release structure comprises a rotating assembly and a mounting assembly which are rotationally connected with each other, the rotating assembly comprises a shell and a button structure at least partially exposed out of the shell, a matching groove corresponding to the button structure is formed in the side, away from the shell, of the mounting assembly, and the end, close to the mounting assembly, of the button structure can do telescopic motion relative to the shell so as to implement clamping connection with the matching groove or release clamping connection with the matching groove. The technical problem that it is inconvenient for a user to disassemble, store or carry the support is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a support technical field, especially a quick release structure and mobile support. BACKGROUND

[0002] The existing support usually includes a support structure for supporting electronic equipment, a base and a support for connecting the support structure and the base, when the user wants to disassemble the support from the vehicle body or the desktop to store the support, it is very inconvenient. In addition, if the existing support is old or damaged, the entire support usually needs to be discarded, and the support cannot be replaced individually. This leads to the problem of inconvenience when the user wants to disassemble the support, store the support or carry the support. SUMMARY

[0003] To solve the technical problem of inconvenience when the user wants to disassemble the support, store the support or carry the support, the utility model provides a quick release structure and mobile support.

[0004] The utility model solves the technical problem and provides a quick release structure, the quick release structure includes rotation component and installation component who are connected with each other rotationally, the rotation component includes the casing and the button structure who are exposed at least partially outside the casing, the installation component is opened with the cooperation groove on the side away from the casing, the button structure is close to the end of the installation component and can be relative to the casing to implement the telescopic motion, so as to implement the clamping connection with the cooperation groove or the clamping connection with the cooperation groove is cancelled.

[0005] Preferably, the rotation component further includes a spring and a ball, the casing is opened with at least one containing groove on the side close to the installation component, at least part of the ball is exposed outside the containing groove, and the spring is arranged between the ball and the bottom of the containing groove.

[0006] The installation component is provided with a limiting groove on the side close to the casing and corresponding to the ball, and when the rotation component rotates relative to the installation component, the ball can be clamped into or separated from the limiting groove. The rotation of the casing relative to the installation component is step rotation, which can provide better rotation feedback to the user.

[0007] Preferably, the button structure includes an elastic member, a fixing member and a pressing member, the fixing member is arranged inside the casing, at least part of the pressing member is exposed outside the casing, the elastic member is arranged between the pressing member and the fixing member, when the end of the button structure close to the installation component is clamped with the cooperation groove, the rotation component can limit the installation component to move along the axial direction of the installation component, and the user can clamp or cancel the clamping with the cooperation groove by pressing the pressing member, which is simple and convenient.

[0008] Preferably, the number of the pressing pieces is at least two, and the pressing pieces are symmetrically arranged on both sides of the fixing piece in the axial direction of the shell, so that the user can more conveniently apply pressure to the pressing piece when pressing it.

[0009] Preferably, the pressing piece comprises a pressing part and a locking part, the shell is provided with a first accommodation channel for the pressing part to pass through in the axial direction of the elastic piece, and the shell is provided with a second accommodation channel for the locking part to pass through on the side close to the mounting assembly, the second accommodation channel is spaced from the accommodating groove, and when the pressing part moves, the locking part also moves together with the pressing part, so that the locking part can be extended into or retracted from the second accommodation channel, which is simple and convenient.

[0010] Preferably, the locking part is used to implement the clamping connection with the matching groove or release the clamping connection with the matching groove.

[0011] When the pressing part is subjected to force, the pressing part moves towards the elastic piece, and the locking part releases the clamping connection with the matching groove.

[0012] When the pressing part cancels the force, the pressing part moves away from the elastic piece, and the locking part implements the clamping connection with the matching groove, which is simple to operate and has high convenience.

[0013] Preferably, the locking part comprises a connecting segment and a locking segment connected to each other, the connecting segment is arranged at one end of the pressing part close to the elastic piece, the locking segment is arranged at one side of the connecting segment close to the pressing part in the axial direction of the elastic piece, the mounting assembly is formed with a matching channel, and the matching channel is provided with a matching groove at one end away from the shell corresponding to the button structure, and the locking segment matches with the matching groove to implement the clamping connection with the matching groove or release the clamping connection with the matching groove.

[0014] Preferably, the shell can be rotated 0-360° relative to the mounting assembly about the axial center line thereof. The range of 0-360° rotation includes 0-90°, 90-180°, 180-270° or 270-360° rotation. The user can rotate the shell according to the actual needs, so that the shell can be rotated relative to the mounting assembly about the axial center line thereof.

[0015] Preferably, the quick release structure further comprises a first supporting assembly, one end of the rotating assembly is connected with the first supporting assembly, and the other end is rotationally connected with the mounting assembly. After the user splits the rotating assembly and the mounting assembly, the user can freely choose to store the first supporting assembly together with the rotating assembly, while storing the mounting assembly separately, which increases the convenience and flexibility of storage.

[0016] Preferably, the first supporting assembly comprises a first connecting piece, a bracket structure, a second connecting piece and a supporting seat for supporting the electronic device, one end of the bracket structure is rotationally connected to the end of the rotating assembly away from the mounting assembly through the first connecting piece, and the other end is rotationally connected to the supporting seat through the second connecting piece. The first connecting piece and the second connecting piece are detachably connected to the bracket structure. If the first connecting piece and the second connecting piece are worn during rotation, the user can also disassemble and replace them, thereby increasing the service life of the quick-release structure.

[0017] Preferably, the end of the supporting seat close to the bracket structure and the end of the rotating assembly close to the bracket structure are both provided with reinforcing ribs.

[0018] The end of the bracket structure close to the rotating assembly can rotate 0-360° around the axis of the first connecting piece, and the end of the bracket structure close to the supporting seat can rotate 0-360° around the axis of the second connecting piece. The reinforcing ribs increase the service life of the quick-release structure, and the user can also adjust the distance between the supporting seat and the mounting assembly according to their actual needs, thereby increasing the convenience.

[0019] Preferably, the supporting seat comprises a supporting main body, a magnetic attraction piece and a cover, the supporting main body is rotationally connected to the bracket structure through the second connecting piece, a mounting groove is formed on the side of the supporting main body away from the bracket structure, the magnetic attraction piece is arranged in the mounting groove, and the cover is used to cover the slot of the mounting groove. The magnetic attraction piece can provide a magnetic attraction force to the electronic device, so that the electronic device can be more stably fixed on the supporting seat.

[0020] Preferably, the quick-release structure further comprises a second supporting assembly, one end of the mounting assembly is connected to the second supporting assembly, and the other end is rotationally connected to the rotating assembly. After the user disassembles the rotating assembly and the mounting assembly, the user can freely choose to store the second supporting assembly together with the mounting assembly, while the rotating assembly is stored separately, thereby increasing the convenience and flexibility of storage.

[0021] Preferably, the second supporting assembly comprises a supporting and pasting structure, and the supporting and pasting structure is arranged on the side of the mounting assembly away from the rotating assembly.

[0022] Preferably, the second supporting assembly comprises a magnetic attraction mounting piece and a magnetic attraction ring, the magnetic attraction ring is arranged on the outer edge of the mounting assembly and has a spacing from the outer edge of the mounting assembly, the magnetic attraction mounting piece is clamped between the magnetic attraction ring and the mounting assembly, and the magnetic attraction mounting piece is rotationally connected to the magnetic attraction ring.

[0023] Preferably, the second supporting assembly comprises a clamping shell, first and second clamping members movably arranged on two sides of the clamping shell, and an adjusting assembly; the first clamping member comprises a first clamping part and a first connecting part, the second clamping member comprises a second clamping part and a second connecting part, and one end of each of the first and second connecting parts is arranged inside the clamping shell, and the other end of each of the first and second connecting parts is exposed outside the clamping shell.

[0024] The first clamping part is arranged on the side of the clamping shell away from the mounting assembly, and the second clamping part is arranged on the side of the clamping shell away from the mounting assembly.

[0025] The adjusting assembly is arranged at one end of the first clamping part away from the second clamping member, and part of the adjusting assembly is sequentially rotatably connected to the first clamping part, the first connecting part and the second connecting part.

[0026] Preferably, a matching channel is formed in the mounting assembly, the mounting assembly and the clamping shell are connected to form a containing space, and the matching groove is formed at one end of the containing space close to the matching channel.

[0027] Preferably, a magnetic attraction part is arranged on the side of the clamping shell away from the mounting assembly.

[0028] The utility model also provides a mobile support which comprises a first base assembly and the quick release structure as above, the quick release structure comprises a first supporting assembly and a rotating assembly and a mounting assembly which are rotatably connected to each other; one end of the rotating assembly away from the mounting assembly is connected to the first supporting assembly, one end of the mounting assembly away from the rotating assembly is connected to the first base assembly, and the rotating assembly and the mounting assembly are detachably connected.

[0029] Preferably, the first base assembly comprises a base sticking structure, and the base sticking structure is arranged on the side of the mounting assembly away from the rotating assembly.

[0030] Preferably, the first base assembly comprises a bolt and a first base shell, the first base shell is sleeved on the side of the mounting assembly away from the rotating assembly, one end of the bolt is arranged in the first base shell, and the other end of the bolt is exposed outside the first base shell.

[0031] Preferably, a matching channel is formed in the mounting assembly, the first base assembly comprises a mounting base, the mounting base is provided with a fixing groove corresponding to the mounting assembly, the mounting assembly is arranged in the fixing groove to form a containing space with the fixing groove, and the matching groove is arranged at one end of the containing space close to the matching channel.

[0032] The utility model also provides a mobile support, including second base assembly and quick detach structure as above, quick detach structure includes second support assembly and rotation component and mounting component of mutual rotation connection, rotation component is connected with second support assembly away from one end of mounting component of rotation component, one end away from rotation component of mounting component is connected with second base assembly, rotation component and mounting component can be detachably connected.

[0033] Preferably, the second base assembly includes a second base housing and a threaded connecting piece, one end of the second base housing is connected with the rotation component, and the other end is connected with the threaded connecting piece.

[0034] Preferably, the second base assembly further includes a buffer assembly,

[0035] The buffer assembly includes a first fixed plate, a buffer spring, a second fixed plate, and a fixed bolt piece. The first fixed plate is connected with one end of the second base housing away from the threaded connecting piece. The second fixed plate is arranged on the side of the first fixed plate close to the housing with a spacing from the first fixed plate. The buffer spring is clamped between the first fixed plate and the second fixed plate. The fixed bolt piece passes through the second fixed plate and the housing in sequence to detachably connect the buffer assembly and the rotation component. BRIEF DESCRIPTION OF DRAWINGS

[0036] Figure 1a is the explosion map of the quick detach structure provided by the first embodiment of the utility model.

[0037] Figure 1b is the explosion map one of the rotation component of the quick detach structure provided by the first embodiment of the utility model.

[0038] Figure 1c is the structure schematic view of the button structure of the quick detach structure provided by the first embodiment of the utility model.

[0039] Figure 1d is the explosion map two of the rotation component of the quick detach structure provided by the first embodiment of the utility model.

[0040] Figure 1e is the cross-sectional view of the part structure of the rotation component of the quick detach structure provided by the first embodiment of the utility model.

[0041] Figure 2a is the structure schematic view of the quick detach structure provided by the second embodiment of the utility model.

[0042] Figure 2b is Figure 2a the structure schematic view of part structure in

[0043] Figure 2c is Figure 2a is an exploded view of the partial structure in

[0044] Figure 2d is Figure 2a is an exploded view of the first supporting assembly in

[0045] Figure 3a is a schematic view of the connection of the second supporting assembly and the mounting assembly in the quick release structure provided by the third embodiment of the utility model.

[0046] Figure 3b is a schematic view of the connection of the second supporting assembly, the mounting assembly and the rotating assembly in the quick release structure provided by the third embodiment of the utility model.

[0047] Figure 3c is a schematic view of the connection of the second supporting assembly, the mounting assembly and the rotating assembly in the quick release structure provided by the third embodiment of the utility model.

[0048] Figure 3d is Figure 3c is a schematic view of the structure of the second supporting assembly and the mounting assembly in

[0049] Figure 3e is Figure 3c is a schematic view of the rotation of the magnetic attraction ring around the magnetic attraction mounting piece in

[0050] Figure 3f is a schematic view of the structure of the second supporting assembly and the mounting assembly in the quick release structure provided by the third embodiment of the utility model.

[0051] Figure 3g is Figure 3f is an exploded view of the second supporting assembly and the mounting assembly in

[0052] Figure 3h is Figure 3f is an exploded view of the second supporting assembly and the mounting assembly in

[0053] Figure 4a is a schematic view of the connection of the second base assembly, the rotating assembly and the mounting assembly in the mobile support provided by the fourth embodiment of the utility model.

[0054] Figure 4b is Figure 4a is a schematic view of the connection of the second base assembly and the rotating assembly in

[0055] Figure 4c is a schematic view of the connection of the second base assembly and the rotating assembly in the mobile support provided by the fourth embodiment of the utility model.

[0056] Figure 4d isFigure 4c An exploded view of a second base assembly and a rotating assembly.

[0057] Figure 5a A connection schematic view of a first base assembly, a mounting assembly and a rotating assembly in the mobile support provided by the fifth embodiment of the utility model.

[0058] Figure 5b A structural schematic view of another first base assembly and a mounting assembly in the mobile support provided by the fifth embodiment of the utility model.

[0059] Figure 5c A connection schematic view of another first base assembly, a mounting assembly and a rotating assembly in the mobile support provided by the fifth embodiment of the utility model.

[0060] Figure 5d A structural schematic view of still another first base assembly and a mounting assembly in the mobile support provided by the fifth embodiment of the utility model.

[0061] Figure 5e A Figure 5d An exploded view of still another first base assembly and a mounting assembly.

[0062] Figure 6 An exploded view of the mobile support provided by the fourth embodiment of the utility model.

[0063] Figure 7 An exploded view of the mobile support provided by the fifth embodiment of the utility model.

[0064] Explanation of the attached drawings:

[0065] 100a, mobile support; 100b, mobile support;

[0066] 10, quick release structure;

[0067] 1, rotating assembly; 3, mounting assembly;

[0068] 11, shell; 12, button structure; 13, ball; 31, matching groove; 32, matching channel; 33, limiting groove;

[0069] 111, first accommodation channel; 112, second accommodation channel; 113, accommodating groove; 121, pressing piece; 122, elastic piece;

[0070] 1211, pressing part; 1212, locking part;

[0071] 12121, connecting section; 12122, locking section.

[0072] 2, first supporting assembly; 21, first connecting piece; 22, support structure; 23, second connecting piece; 24, supporting seat; 25, reinforcing rib;

[0073] 241, supporting body; 242, magnetic attraction piece; 243, cover body; 244, mounting groove;

[0074] 3A, mounting assembly; 3A1, matching groove; 4, second supporting assembly; 41, supporting adhesive structure;

[0075] 4A, second supporting assembly; 4A2, magnetic attraction mounting piece; 4A3, magnetic attraction ring;

[0076] 3B, mounting assembly; 3B1, matching groove; 3B2, matching channel; 4B, second supporting assembly; 4B4, clamping shell; 4B5, first clamping piece; 4B6, second clamping piece; 4B7, adjusting assembly; 4B8, magnetic attraction part; 4B51, first clamping part; 4B52, first connecting part; 4B61, second clamping part; 4B62, second connecting part; 4B71, adjusting rod; 4B72, adjusting handle;

[0077] 5, second base assembly; 51, second base shell; 52, threaded connecting piece; 53, buffer assembly; 531, first fixed plate; 532, buffer spring; 533, second fixed plate; 534, fixed bolt piece;

[0078] 6, first base assembly; 61, base adhesive structure;

[0079] 3C, mounting assembly; 3C1, matching groove; 6A, first base assembly; 6A2, bolt; 6A3, first base shell;

[0080] 3D, mounting assembly; 3D1, matching groove; 3D2, matching channel; 6B, first base assembly; 6B4, mounting base; 6B41, fixed groove.

DETAILED DESCRIPTION

[0081] In order to make the purpose of the utility model, the technical scheme and the advantage are more clear and obvious, the following is combined with the drawing and the implementation example, and the utility model is further explained in detail. It should be understood that the specific embodiments described herein are only used to explain the utility model, and are not used to limit the utility model.

[0082] It should be noted that the terms "first" and "second" and the like in the specification and claims of the present application are used to distinguish different objects, and are not used to describe a specific order.

[0083] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. Where, when an element is referred to as being "connected" or "coupled" to another element, it can be directly connected or coupled to the other element or intervening elements can also be present. The terms "vertical", "horizontal", "left", "right", and the like as used herein are made only for purposes of illustration and are not intended to be limiting.

[0084] In the present application, the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "transverse", "longitudinal" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe the present application and its embodiments, and are not intended to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.

[0085] In addition, in addition to being used to indicate the orientation or positional relationship, the above-mentioned terms can also be used to indicate other meanings, for example, the term "upper" can also be used to indicate a certain dependent relationship or connection relationship in some cases. For those skilled in the art, the specific meaning of these terms in the present application can be understood according to the specific circumstances.

[0086] In addition, the terms "mounting", "setting", "provided with", "connection", "connected" should be understood broadly. For example, it can be fixedly connected, detachably connected, or integrally constructed; it can be mechanically connected, or electrically connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be internal communication between two devices, elements or components. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0087] Please refer to Figure 1a The first embodiment of the present application provides a quick release structure 10, which comprises a rotating assembly 1 and a mounting assembly 3 connected to each other; the rotating assembly 1 comprises a shell 11 and a button structure 12 at least partially exposed outside the shell 11, and the mounting assembly 3 is provided with a matching groove 31 corresponding to the button structure 12 on the side away from the shell 11; the end of the button structure 12 close to the mounting assembly 3 can be relatively extended and retracted relative to the shell 11, so as to implement the clamping connection with the matching groove 31 or release the clamping connection with the matching groove 31. When the end of the button structure 12 close to the mounting assembly 3 is clamped and connected with the matching groove 31, the rotating assembly 1 can limit the movement of the mounting assembly 3 along the axial direction thereof, and the end of the button structure 12 in contact with the matching groove 31 can slide along the surface of the matching groove 31.

[0088] It should be understood that the existing support usually comprises a supporting structure for supporting electronic devices, a base and a support for connecting the supporting structure and the base, which is very inconvenient when the user wants to detach the support from the vehicle body or the desktop to store the support. In the embodiment, by providing the mounting assembly 3 and the rotating assembly 1 which can be detachable or mounted, the side of the mounting assembly 3 away from the rotating assembly 1 can be used for connecting with the base or the support. And the side of the rotating assembly 1 away from the mounting assembly 3 can also be used for connecting with the base or the support. Specifically, when the user wants to separate the support and the base for storage, only need to press the button structure 12, so that the button structure 12 is retracted into the shell 11 at one end of the mounting assembly 3, and when the end is retracted into the shell 11, the clamping connection with the matching groove 31 is released, that is, the user can freely separate the base and the support for storage, which increases the convenience and flexibility of storage.

[0089] The electronic device in the utility model is not limited to mobile phones, tablet computers, folding mobile phones, GPS positioning devices, watches and the like. The following text will not be described in detail.

[0090] It should be noted that when the button structure 12 is clamped and connected with the matching groove 31 at one end of the mounting assembly 3, the rotating assembly 1 restricts the movement of the mounting assembly 3 in the axial direction, so that the rotating assembly 1 and the mounting assembly 3 have good stability in the axial direction when they are clamped and connected.

[0091] Further, please refer to Figure 1a and Figure 1b The button structure 12 comprises an elastic member 122, a fixed member 123 and a pressing member 121, the fixed member 123 is arranged inside the shell 11, at least part of the pressing member 121 is exposed outside the shell 11, and the elastic member 122 is arranged between the pressing member 121 and the fixed member 123. It should be understood that the fixed member 123 is provided with a cylindrical limiting structure corresponding to the elastic member 122, and one end of the elastic member 122 close to the fixed member 123 is fixed to the limiting structure. The user can press one end of the pressing member 121 exposed outside the shell 11, and after the pressing member 121 is stressed, the pressure continues to act on the elastic member 122, and since the fixed member 123 is fixedly connected with the shell 11, the elastic member 122 with a certain length is compressed. When the user cancels the pressure applied to the pressing member 121, the compressed elastic member 122 generates a restoring force, which forces the pressing member 121 to move away from the elastic member 122 until the elastic member 122 returns to the length before being compressed.

[0092] Specifically, the number of the pressing pieces 121 is at least two. It should be noted that the number of the pressing pieces 121 is not specifically set, but for the convenience of the user to press. The number of the pressing pieces 121 is preferably an even number. For example, the number of the pressing pieces 121 is two, the user can press it with two fingers. For another example, the number of the pressing pieces 121 is four, the user can press it with four fingers. Specifically, the pressing pieces 121 are symmetrically arranged on both sides of the fixing piece 123 along the axial direction of the shell 11. It should be understood that the pressing pieces 121 are symmetrically arranged on both sides of the fixing piece 123, so that when the user presses the pressing pieces 121, the fingers can more conveniently apply pressure to the pressing pieces 121.

[0093] Specifically, please refer to Figure 1b and Figure 1c , the pressing pieces 121 are connected to each other and include the pressing portions 1211 and the locking portions 1212, the shell 11 is provided with a first accommodation channel 111 for the pressing portions 1211 to pass through along the axial direction of the elastic piece 122, and the shell 11 is provided with a second accommodation channel 112 for the locking portions 1212 to pass through on the side close to the mounting assembly 3. It should be noted that the pressing portions 1211 and the locking portions 1212 are exposed to the surfaces of different sides of the shell 11. It should be understood that, for example, the user can apply pressure to the pressing portions 1211, and the pressing portions 1211 move towards the direction close to the elastic piece 122 after being stressed, and the pressure continues to act on the elastic piece 122 so that the elastic piece 122 is compressed, and the pressing portions 1211 also shrink into the first accommodation channel 111. When the pressing portions 1211 move, the locking portions 1212 also move together with the pressing portions 1211, and the movement direction of the locking portions 1212 is the same as that of the pressing portions 1211, and then the locking portions 1212 shrink into the second accommodation channel 112. When the user cancels the pressure applied to the pressing portions 1211, the elastic piece 122 generates a restoring force due to the extrusion, and the restoring force forces the pressing portions 1211 to move away from the elastic piece 122, and the end of the pressing portions 1211 away from the elastic piece 122 extends out of the first accommodation channel 111. Similarly, when the pressing portions 1211 move, the locking portions 1212 also move together with the pressing portions 1211, and the movement direction of the locking portions 1212 is still the same as that of the pressing portions 1211, and then the locking portions 1212 extend out of the second accommodation channel 112.

[0094] Specifically, please refer to Figures 1b to 1dThe locking portion 1212 is used to implement the clamping connection with the matching groove 31 or release the clamping connection with the matching groove 31. In a possible implementation, when the pressing portion 1211 is subjected to force, the pressing portion 1211 moves towards the elastic member 122, and the pressing portion 1211 is retracted into the first accommodation channel 111 after being subjected to force. The locking portion 1212 moves together with the pressing portion 1211 and is retracted into the second accommodation channel 112, so that the locking portion 1212 releases the clamping connection with the matching groove 31.

[0095] In another possible implementation, please continue to combine Figures 1b to 1d When the pressing portion 1211 is released, the elastic member 122 subjected to compression generates a restoring force, forcing the pressing portion 1211 to move away from the elastic member 122. The pressing portion 1211 is subjected to force and extends out of the first accommodation channel 111. The locking portion 1212 moves together with the pressing portion 1211 and extends out of the second accommodation channel 112. The locking portion 1212 implements the clamping connection with the matching groove 31.

[0096] Specifically, the locking portion 1212 includes a connecting segment 12121 and a locking segment 12122 connected to each other. The connecting segment 12121 is arranged at one end of the pressing portion 1211 close to the elastic member 122. The locking segment 12122 is arranged at one side of the connecting segment 12121 close to the pressing portion 1211 in the axial direction of the elastic member 122. The mounting assembly 3 penetrates to form a matching channel 32. An end of the matching channel 32 away from the housing 11 is provided with a matching groove 31 corresponding to the button structure 12. The locking segment 12122 is matched with the matching groove 31 to implement the clamping connection with the matching groove 31 or release the clamping connection with the matching groove 31.

[0097] It can be understood that the inner wall of the matching channel 32 is cylindrical. When the rotating assembly 1 and the mounting assembly 3 are clamped and connected, the rotating assembly 1 and the mounting assembly 3 can be rotated by 360° in the circumferential direction without limitation. During rotation, one side of the connecting segment 12121 close to the pressing portion 1211 is arc-shaped, so that one side of the connecting segment 12121 close to the pressing portion 1211 can be matched with the inner wall of the matching channel 32. When the arc-shaped structure and the inner wall of the matching channel 32 are in contact during rotation of the rotating assembly 1 or the mounting assembly 3, a large friction force is not generated, improving the user experience.

[0098] Further, please combine Figure 1b and Figure 1dThe rotating assembly 1 further comprises a spring and a ball 13. The housing 11 is provided with at least one accommodating groove 113 on the side close to the mounting assembly 3. The accommodating groove 113 is spaced from the second clearance channel 112. At least part of the ball 13 is exposed outside the accommodating groove 113. The spring is arranged between the ball 13 and the groove bottom of the accommodating groove 113. The mounting assembly 3 is provided with a limiting groove 33 corresponding to the ball 13 on the side close to the housing 11. When the rotating assembly 1 rotates relative to the mounting assembly 3, the ball 13 can be clamped into or separated from the limiting groove 33.

[0099] It should be understood that, exemplarily, the side of the rotating assembly 1 away from the mounting assembly 3 is used to support the electronic device. When the rotating assembly 1 rotates relative to the mounting assembly 3, the rotating assembly 1 can drive the supporting structure for supporting the electronic device to rotate relative to the mounting assembly 3. Therefore, the user only needs to rotate the rotating assembly 1 to adjust the direction of the electronic device. Specifically, when the user drives the housing 11 to rotate relative to the mounting assembly 3, the ball 13 also rotates together with the housing 11. During the rotation, the ball 13 can be continuously clamped into or separated from the limiting groove 33, so that the rotation of the housing 11 relative to the mounting assembly 3 is step rotation, which can provide better rotation feedback to the user.

[0100] It should be understood that, please combine Figure 1e When the clamping part 1212 and the matching groove 31 are clamped and connected, there is a fixed distance d between the surface of the side of the housing 11 provided with the accommodating groove 113 and the mounting assembly 3. When the ball 13 is clamped into the limiting groove 33, the length of the ball 13 exposed outside the accommodating groove 113 is greater than the distance d. Specifically, the spring arranged between the ball 13 and the groove bottom of the accommodating groove 113 provides an elastic force, so that part of the ball 13 is exposed outside the accommodating groove 113 and clamped into the limiting groove 33. Exemplarily, when the user rotates the housing 11, the housing 11 drives the ball 13 in the accommodating groove 113 to rotate together. After the ball 13 is stressed, it moves towards the direction close to the groove bottom of the accommodating groove 113 and slides out of the limiting groove 33. At the same time, the spring is compressed during the process. Until the ball 13 rotates to the next limiting groove 33 with the housing 11, the compressed spring provides an elastic force, which makes the ball 13 clamped into the limiting groove 33. Therefore, the ball 13 can provide a rotation feedback to the user when it is clamped into or separated from the limiting groove 33. In addition, when the ball 13 is clamped into the limiting groove 33, if the user does not rotate the housing 11, the ball 13 will be limited in the limiting groove 33, that is, the housing 11 cannot be arbitrarily rotated relative to the mounting assembly 3 at this time, thereby improving the connection stability of the rotating assembly 1 and the mounting assembly 3.

[0101] It should be noted that the number of limiting grooves 33 is greater than or equal to the number of balls 13. In this embodiment, multi-stage rotation feedback needs to be achieved, so the more the number of limiting grooves 33, the shorter the time to feel the rotation feedback when rotating the shell 11.

[0102] Further, the shell 11 can be rotated 0-360° relative to the mounting assembly 3 about its axis. Alternatively, the 0-360° rotation range includes 0-90°, 90-180°, 180-270° or 270-360° rotation. Illustratively, if the mounting assembly 3 is fixed on the vehicle body or the desktop, the side of the rotating assembly 1 away from the mounting assembly 3 is used to support the electronic device. The user can rotate the shell 11 according to actual needs, so that the shell 11 can be rotated relative to the mounting assembly 3 about its axis, and then the electronic device can be rotated to the appropriate position.

[0103] Please combine Figure 1a and Figure 2a The second embodiment of the utility model further provides a quick release structure 10, which further comprises a first supporting assembly 2, one end of the rotating assembly 1 is connected with the first supporting assembly 2, and the other end is rotationally connected with the mounting assembly 3.

[0104] It can be understood that the function of the first supporting assembly 2 in the quick release structure 10 of this embodiment is mainly to support the electronic device, and after the first supporting assembly 2 is connected with the rotating assembly 1, it can rotate relative to the mounting assembly 3 together with the rotating assembly 1, thereby adjusting the position of the electronic device at will. When the user wants to store the quick release structure 10, the button structure 12 can be pressed to make the button structure 12 close to the end of the mounting assembly 3 and retract into the shell 11, and when the end is retracted into the shell 11, the clamping connection with the cooperating groove 31 is released. That is, after the user disassembles the rotating assembly 1 and the mounting assembly 3, the user can freely choose to store the first supporting assembly 2 together with the rotating assembly 1, and store the mounting assembly 3 separately, thereby increasing the convenience and flexibility of storage.

[0105] Further, please combine Figure 2a and Figure 2cThe first supporting assembly 2 comprises a first connecting piece 21, a support structure 22, a second connecting piece 23 and a supporting seat 24 for supporting the electronic device. One end of the support structure 22 is rotationally connected to the rotating assembly 1 away from the mounting assembly 3 through the first connecting piece 21, and the other end is rotationally connected to the supporting seat 24 through the second connecting piece 23. It should be understood that when the electronic device is fixed on the supporting seat 24, the user can adjust the distance between the supporting seat 24 and the mounting assembly 3 by adjusting the support structure 22. Specifically, by arranging the first connecting piece 21 and the second connecting piece 23, the rotational connection between the support structure 22 and the rotating assembly 1 and the rotational connection between the support structure 22 and the supporting seat 24 are respectively implemented. The first connecting piece 21 and the second connecting piece 23 are both detachably connected to the support structure 22. If the first connecting piece 21 and the second connecting piece 23 are worn during rotation, the user can also replace them by himself, thereby increasing the service life of the quick release structure 10.

[0106] If the user feels that the electronic device is too far away, the distance between the electronic device and the user can be adjusted by adjusting the support structure 22. For example, the end of the support structure 22 close to the rotating assembly 1 can rotate 0-360° around the axis of the first connecting piece 21. That is, when the end of the support structure 22 close to the rotating assembly 1 rotates around the axis of the first connecting piece 21, the electronic device on the supporting seat 24 will gradually move away from the mounting assembly 3 and approach the user. For another example, the end of the support structure 22 close to the supporting seat 24 can rotate 0-360° around the axis of the second connecting piece 23. That is, when the end of the support structure 22 close to the supporting seat 24 rotates around the axis of the second connecting piece 23, the electronic device on the supporting seat 24 will also gradually move away from the mounting assembly 3 and approach the user. It should be noted that the above two rotation methods can make the electronic device move away from the mounting assembly 3, and the user can adjust according to his actual needs, which is highly convenient.

[0107] Specifically, please refer to Figure 2b The end of the supporting seat 24 close to the support structure 22 and the end of the rotating assembly 1 close to the support structure 22 are both provided with reinforcing ribs 25. It should be understood that since the support structure 22 will rotate with the supporting seat 24, the support structure 22 may be deformed due to stress during rotation. By arranging the reinforcing ribs 25 at the end of the support structure 22 close to the supporting seat 24, the structure of the support structure 22 itself is strengthened, so that the support structure 22 will not be deformed due to rotation, thereby prolonging the service life of the support structure 22.

[0108] Further, the supporting seat 24 comprises a supporting body 241, a magnetic attraction piece 242 and a cover 243, the supporting body 241 is rotationally connected with the support structure 22 through the second connecting piece 23, a mounting groove 244 is formed on the side of the supporting body 241 away from the support structure 22, the magnetic attraction piece 242 is arranged in the mounting groove 244, and the cover 243 is used for covering the slot of the mounting groove 244. The magnetic attraction piece 242 can provide a magnetic attraction force for the electronic device, so that the electronic device can be more stably fixed on the supporting seat 24.

[0109] Please combine Figure 1a The third embodiment of the utility model further provides a quick release structure 10, the quick release structure 10 further comprises a second supporting assembly, one end of the mounting assembly 3 is connected with the second supporting assembly, and the other end is rotationally connected with the rotating assembly 1. Wherein the illustration of the rotating assembly 1 and the mounting assembly 3 please refer to Figure 1a The illustration of the second supporting assembly please refer to the following embodiments respectively.

[0110] In a possible implementation, please combine Figure 3a and 3bThe quick release structure 10 in the embodiment includes a second supporting assembly 4, which includes a supporting and pasting structure 41 arranged on the side of the mounting assembly 3A away from the rotating assembly 1. Specifically, the side of the mounting assembly 3A away from the shell 11 is provided with a matching groove 3A1 corresponding to the button structure 12, and the side of the mounting assembly 3A away from the rotating assembly 1 is provided with a groove for accommodating the supporting and pasting structure 41. It can be understood that the supporting and pasting structure 41 is used to directly contact the electronic device, and further, the supporting and pasting structure 41 can directly paste the mounting assembly 3A to the side of the electronic device away from the screen. When the user uses the electronic device, the mounting assembly 3A will be carried together, and when the user wants to fix the electronic device, only needs to fix the mounting assembly 3A on the rotating assembly 1, at this time, the electronic device can rotate together with the mounting assembly 3A relative to the rotating assembly 1, which is simple and convenient. When the user wants to store the quick release structure 10, the button structure 12 can be pressed to make the button structure 12 close to the end of the mounting assembly 3A and retract into the shell 11, and when the end is retracted into the shell 11, the clamping connection with the matching groove 3A1 is released, that is, after the user separates the rotating assembly 1 and the mounting assembly 3A, the user can freely choose to store the second supporting assembly 4 together with the mounting assembly 3A, and the rotating assembly 1 is stored separately, which increases the convenience and flexibility of storage. It should be noted that the supporting and pasting structure 41 is mostly accommodated in the groove, and only a small part is exposed outside the groove to facilitate the adhesion and fixation of the electronic device. When the side of the electronic device away from the screen is connected with the supporting and pasting structure 41, the surface of the side of the mounting assembly 3A away from the rotating assembly 1 and the side of the electronic device away from the screen are also fully attached, avoiding dust from entering the groove and being difficult to clean. It should be understood that the mounting assembly 3A in the embodiment is a structural deformation of the mounting assembly 3 in the first embodiment.

[0111] In one possible implementation, please combine Figure 3c , Figure 3d and 3eIn this embodiment, another second supporting assembly 4A is provided, which comprises a magnetic mounting member 4A2 and a magnetic ring 4A3. The magnetic ring 4A3 is arranged at the outer edge of the mounting assembly 3 and spaced from the outer edge of the mounting assembly 3. The magnetic mounting member 4A2 is clamped between the magnetic ring 4A3 and the mounting assembly 3 and rotationally connected with the magnetic ring 4A3. It can be understood that the electronic device itself can be provided with a magnetic shell, and the magnetic ring 4A3 can be matched with the magnetic shell, so as to magnetically attract the mounting assembly 3 to the magnetic shell provided on the electronic device. When the user uses the electronic device, the magnetic shell is provided on the electronic device. When the user wants to fix the electronic device, the mounting assembly 3 is fixed on the rotating assembly 1, and the magnetic shell and the magnetic ring 4A3 are matched, so as to fix the electronic device. At this time, the electronic device can rotate together with the mounting assembly 3 relative to the rotating assembly 1, which is simple and convenient.

[0112] In a possible implementation, please refer to Figure 1a , Figure 3f and 3g , in this embodiment, another second supporting assembly 4B is provided, which comprises a clamping shell 4B4, a first clamping member 4B5 and a second clamping member 4B6 arranged on both sides of the clamping shell 4B4 and relatively movable, and an adjusting assembly 4B7. The first clamping member 4B5 comprises a first clamping part 4B51 and a first connecting part 4B52, and the second clamping member 4B6 comprises a second clamping part 4B61 and a second connecting part 4B62. One end of the first connecting part 4B52 and the second connecting part 4B62 is arranged inside the clamping shell 4B4, and the other end is exposed outside the clamping shell 4B4. The part of the first clamping part 4B51 exposed outside the clamping shell 4B4 is arranged away from one side of the mounting assembly 3B, and the part of the second clamping part 4B61 exposed outside the clamping shell 4B4 is arranged away from one side of the mounting assembly 3B. The adjusting assembly 4B7 is arranged at one end of the first clamping part 4B51 away from the second clamping member 4B6, and part of the adjusting assembly 4B7 is rotationally connected with the second connecting part 4B62 in sequence through the first clamping part 4B51 and the first connecting part 4B52.

[0113] It can be understood that the side of the clamping shell 4B4 away from the mounting assembly 3B is used to support the side of the electronic device away from the screen. The functions of the first clamping member 4B5 and the second clamping member 4B6 are to clamp the two sides of the electronic device, so as to limit the movement of the electronic device along the axial direction of the first connecting part 4B52 or the second connecting part 4B62, so that the electronic device can be stably fixed between the first clamping member 4B5 and the second clamping member 4B6.

[0114] Specifically, the adjusting assembly 4B7 is sequentially threaded through the first clamping portion 4B51 and the first connecting portion 4B52 and the second connecting portion 4B62. When the user wants to fix the electronic device, the adjusting assembly 4B7 is first rotated in a direction, so that the adjusting assembly 4B7 drives the first connecting portion 4B52 to move away from the second connecting portion 4B62, and drives the second connecting portion 4B62 to move away from the first connecting portion 4B52. After the first connecting portion 4B52 and the second connecting portion 4B62 move, they respectively drive the first clamping portion 4B51 and the second clamping portion 4B61 to move, so that the first clamping portion 4B51 and the second clamping portion 4B61 move away from each other until the first clamping portion 4B51 and the second clamping portion 4B61 are far enough apart to accommodate the electronic device. Further, the electronic device is placed in the first clamping portion 4B51 and the second clamping portion 4B61, and the adjusting assembly 4B7 is rotated in the opposite direction. Similarly, the adjusting assembly 4B7 drives the first clamping portion 4B51 and the second clamping portion 4B61 to move, so that the first clamping portion 4B51 and the second clamping portion 4B61 move towards each other until the first clamping portion 4B51 and the second clamping portion 4B61 clamp the two sides of the electronic device. Finally, the clamping shell 4B4 is connected to the mounting assembly 3B, and the mounting assembly 3B is fixed to the rotating assembly 1, so that the electronic device is fixed. At this time, the electronic device can rotate together with the mounting assembly 3B relative to the rotating assembly 1, which is simple and convenient.

[0115] Specifically, the adjusting assembly 4B7 includes an adjusting rod 4B71 and an adjusting handle 4B72. The adjusting rod 4B71 is sequentially rotatably connected to the first clamping portion 4B51 and the first connecting portion 4B52 and the second connecting portion 4B62. The adjusting handle 4B72 is arranged at one end of the adjusting rod 4B71 away from the clamping shell 4B4. It should be understood that the adjusting handle 4B72 is more easily held by the user's fingers, so that the user can easily rotate the adjusting handle 4B72, thereby driving the adjusting rod 4B71 to rotate.

[0116] It should be noted that the mounting assembly 3B in the present embodiment is a structural modification of the mounting assembly 3 in the first embodiment. Specifically, the mounting assembly 3B in the present embodiment can be integrally formed with the clamping shell 4B4. The mounting assembly 3B is provided with a matching channel 3B2. The mounting assembly 3B and the clamping shell 4B4 are integrally formed and form a receiving space. The end of the receiving space close to the matching channel 3B2 forms a matching groove 3B1. It should be understood that in the present embodiment, the mounting assembly 3B and the clamping shell 4B4 are integrally formed. After the mobile phone is fixed on the clamping shell 4B4, only the button structure 12 on the rotating assembly 1 needs to be threaded through the matching channel 3B2 and the matching groove 3B1 in the receiving space to be clamped, so that the clamping shell 4B4 together with the mounting assembly 3B can be fixed on the rotating assembly 1, and the installation is more convenient.

[0117] Further, please combine 3h, the clamping shell 4B4 away from the side of the mounting assembly 3B provided with magnetic attraction part 4B8. It should be understood that if only rely on the first clamping part 4B51 and the second clamping part 4B61 clamping electronic equipment, electronic equipment can be slipped out of the clamping shell 4B4 along the direction perpendicular to the first connecting part 4B52 or the second connecting part 4B62. And the clamping shell 4B4 away from the side of the mounting assembly 3B provided with magnetic attraction part 4B8, magnetic attraction part 4B8 can be with the metal back plate on the electronic equipment magnetic attraction, thereby avoiding the electronic equipment and clamping shell 4B4 between the slip, enhance the connection stability of electronic equipment and the second support assembly 4B. As a kind of deformation, electronic equipment can also be covered with magnetic attraction shell, magnetic attraction shell can be and magnetic attraction part 4B8 implement magnetic attraction connection, thereby fixing electronic equipment in the clamping shell 4B4 away from the side of the mounting assembly 3B.

[0118] Please combine Figure 1a 、 Figure 4a and Figure 4c , the fourth embodiment of the utility model further provides a second base assembly 5, one end of rotating assembly 1 and second base assembly 5 are connected, the other end is used to and the mounting assembly 3 in quick release structure 10 rotationally connected.

[0119] It can be understood that the second base assembly 5 in the quick release structure 10 of the embodiment is mainly fixed on the desktop or the car, and after the second base assembly 5 is connected with the rotating assembly 1, the rotating assembly 1 can be stably fixed on the desktop or the car. After the rotating assembly 1 is fixed together with the second base assembly 5, the user does not need to store the rotating assembly 1, but only needs to store the mounting assembly 3. Specifically, the button structure 12 can be pressed to make the button structure 12 retract into the shell 11 on the side close to the mounting assembly 3, and when the end is retracted into the shell 11, the clamping connection with the matching groove 31 is released. That is, after the user disassembles the rotating assembly 1 and the mounting assembly 3, the mounting assembly 3 can be stored separately, which increases the convenience and flexibility of storage.

[0120] In a possible implementation, please combine Figure 1a 、 Figure 4a and Figure 4bThe second base assembly 5 comprises a second base shell 51 and a threaded connecting piece 52. One end of the second base shell 51 is connected with the rotating assembly 1, and the other end is connected with the threaded connecting piece 52. It can be understood that in some use scenarios, the second base assembly 5 is usually not required to be disassembled, for example, the second base assembly 5 is installed on a car or a bicycle. In the embodiment, the threaded connecting piece 52 is used to connect with an external threaded support. Exemplarily, the threaded connecting piece 52 is fixedly connected with the second base shell 51 and the rotating assembly 1. In order to fix the second base assembly 5 on a bicycle, the threaded support can be fixed on the frame of the bicycle, and then the threaded connection between the threaded support and the threaded connecting piece 52 is implemented, so that the second base assembly 5 is fixed on the bicycle. At this time, the second base assembly 5 and the rotating assembly 1 do not need to be disassembled and are usually fixed on the frame. For example, the mobile phone is fixed on the mounting assembly 3. When the mobile phone needs to be fixed on the frame, the mounting assembly 3 and the rotating assembly 1 are matched, and the fixation of the mobile phone is completed, which is simple and convenient.

[0121] In a possible implementation, please refer to Figure 1a , Figure 4c and Figure 4d , the second base assembly 5 further comprises a buffer assembly 53. The buffer assembly 53 comprises a first fixed plate 531, a buffer spring 532, a second fixed plate 533 and a fixed bolt piece 534. The first fixed plate 531 is connected with one end of the second base shell 51 away from the threaded connecting piece 52. The second fixed plate 533 is arranged on one side of the first fixed plate 531 close to the shell 11 and has a spacing with the first fixed plate 531. The buffer spring 532 is clamped between the first fixed plate 531 and the second fixed plate 533. The fixed bolt piece 534 passes through the second fixed plate 533 and the shell 11 in sequence, so as to implement the detachable connection between the buffer assembly 53 and the rotating assembly 1.

[0122] It can be understood that in modern society, cycling has become a part of people's healthy travel. If the electronic device needs to be fixed to the frame of the bicycle, the bicycle will shake when riding, and the electronic device will also shake. The problem caused by this situation is that the shaking may cause damage to the electronic device. In the embodiment, the role of the buffer assembly 53 is to reduce the degree of shaking of the electronic device. The buffer assembly 53 is fixed to the frame of the bicycle together with the second base assembly 5 and the rotating assembly 1. When the bicycle is riding, the shaking of the frame will cause the second base assembly 5 to shake, and in turn drive the threaded connecting piece 52 and the second base shell 51 to shake. The second base shell 51 will drive the first fixed plate 531 to shake. The first fixed plate 531 will generate a force to the buffer spring 532 after shaking. Since the buffer spring 532 can absorb and weaken the force transmitted by the first fixed plate 531, the second fixed plate 533 will only produce weak shaking, so the rotating assembly 1 will only produce weak shaking. When the electronic device is fixed to the rotating assembly 1 together with the mounting assembly 3, since the rotating assembly 1 only produces weak shaking, the electronic device will not shake violently when the bicycle is driving, thereby improving the user's experience.

[0123] Please refer to Figure 6 The utility model provides a fourth embodiment provides a kind of mobile support 100a, specifically, the mobile support 100a in the embodiment includes second base assembly and quick release structure 10, quick release structure 10 includes second supporting assembly 4 and mutually rotating connecting rotating assembly 1 and mounting assembly 3;Rotating assembly 1 is connected away from mounting assembly 3 one end and second supporting assembly 4, mounting assembly 3 is connected away from rotating assembly 1 one end with second base assembly 5, rotating assembly 1 and mounting assembly 3 can be detached connection.It needs to be explained that, the second base assembly 5 provided in the embodiment is identical with the second base assembly 5 in the fourth embodiment.Quick release structure 10 provided in the embodiment has the same beneficial effect with quick release structure 10 in the first embodiment and the third embodiment.

[0124] Exemplarily, Figure 6In the mobile support 100a shown, the rotatable detachable mobile support 100a comprises a second supporting assembly 4, a rotating assembly 1, a second base assembly 5 and a mounting assembly 3. The rotating assembly 1 is rotatably connected to one end of the second base assembly 5 and rotatably connected to the other end of the mounting assembly 3. The second supporting assembly 4 is a supporting and pasting structure 41. The supporting and pasting structure 41 is arranged on the side of the mounting assembly 3 away from the rotating assembly 1. Specifically, the supporting and pasting structure 41 is used to directly contact the electronic device, and the supporting and pasting structure 41 can directly paste the mounting assembly 3 to the side of the electronic device away from the screen. When the user uses the electronic device, the user will carry the mounting assembly 3 together. When the user wants to fix the electronic device, the user only needs to fix the mounting assembly 3 on the rotating assembly 1. At this time, the electronic device can rotate together with the mounting assembly 3 relative to the rotating assembly 1, which is simple and convenient.

[0125] Please refer to Figure 1a , the fifth embodiment of the utility model also provides a quick release structure 10, the quick release structure 10 further comprises a first base assembly 6, one end of the mounting assembly 3 is connected with the first base assembly, and the other end is rotatably connected with the rotating assembly 1 in the quick release structure 10. The illustration of the rotating assembly 1 and the mounting assembly 3 can be referred to Figure 1a , and the illustration of the first base assembly can be referred to the following embodiments.

[0126] In a possible implementation, please refer to Figure 5a , the first base assembly 6 is fixedly arranged on the side of the mounting assembly 3 away from the rotating assembly 1. The first base assembly 6 comprises a base pasting structure 61, and the base pasting structure 61 is arranged on the side of the mounting assembly 3 away from the rotating assembly 1. It can be understood that the base pasting structure 61 is used to contact the desktop or the interior of the vehicle, and further, the base pasting structure 61 can directly paste the mounting assembly 3 to the desktop or the interior of the vehicle. The user does not need to disassemble and store the mounting assembly 3 in daily use, and only needs to store the rotating assembly 1. Specifically, the button structure 12 can be pressed to make the button structure 12 retract into the shell 11 on one end of the mounting assembly 3. When the end is retracted into the shell 11, the clamping connection with the matching groove 31 is released. That is, after the user disassembles the rotating assembly 1 and the mounting assembly 3, the user can store the rotating assembly 1 alone, which increases the convenience and flexibility of storage.

[0127] In a possible implementation, please refer to Figure 5b and Figure 5cIn this embodiment, another mounting assembly 3C and a first base assembly 6A are provided. The first base assembly 6A includes a bolt 6A2 and a first base housing 6A3. The first base housing 6A3 is sleeved on the side of the mounting assembly 3C away from the rotating assembly 1. One end of the bolt 6A2 is arranged in the first base housing 6A3, and the other end of the bolt 6A2 is exposed outside the first base housing 6A3. It can be understood that in some embodiments, it is inconvenient to paste in the vehicle. For example, in order to facilitate the user to install the support in the vehicle, a 1 / 4 standard screw hole is reserved in the vehicle. It should be understood that in this embodiment, the bolt 6A2 exposed to the first base housing 6A3 can be threadedly connected with the screw hole in the vehicle, so as to fix the first base assembly 6A together with the mounting assembly 3C in the vehicle, which is simple and convenient. The user does not need to disassemble and store the mounting assembly 3C in daily use, and only needs to store the rotating assembly 1. Specifically, the button structure 12 can be pressed to make the button structure 12 retract into the inside of the shell 11 at one end of the mounting assembly 3C. When the end is retracted into the inside of the shell 11, the clamping connection with the cooperating groove 3C1 is released. That is, after the user disassembles the rotating assembly 1 and the mounting assembly 3C, the rotating assembly 1 can be stored separately, which increases the convenience and flexibility of storage.

[0128] In a possible implementation, please refer to Figure 5d and Figure 5e In this embodiment, another mounting assembly 3D and a first base assembly 6B are provided. The mounting assembly 3D is provided with a cooperating channel 3D2, and the first base assembly 6B can be a base that is not fixed on the desktop and can move freely. The first base assembly 6B includes a mounting base 6B4. It should be understood that in order to stably support the quick release structure 10 and the electronic device arranged on the quick release structure 10, the mounting base 6B4 itself has a certain weight and volume. In order to ensure that the mounting base 6B4 does not fall when fixing the electronic device. Further, the mounting base 6B4 is provided with a fixing groove 6B41 corresponding to the mounting assembly 3D. Specifically, the mounting base 6B4 can also be integrally formed with the mounting assembly 3D. For example, the mounting assembly 3D is accommodated in the fixing groove 6B41 to form an accommodation space with the fixing groove 6B41. The accommodation space is provided with a cooperating groove 3D1 at one end close to the cooperating channel 3D2.

[0129] It can be understood that the mounting base 6B4 is usually placed on the desktop. When the user wants to fix the electronic device on the desktop, the user only needs to fix the mobile phone on the quick release structure. Specifically, the button structure 12 passes through the cooperating channel 3D2 and the cooperating groove 3D1 at one end close to the mounting assembly 3D to cooperate with the cooperating groove 3D1, so that the rotating assembly 1 on the quick release structure 10 and the mounting assembly 3D are clamped, and the electronic device can be fixed, which is simple and convenient.

[0130] Please refer to Figure 7The fifth embodiment of the present application also provides a mobile support 100b, which comprises a first base assembly 6 and a quick release structure 10, the quick release structure 10 comprises a first supporting assembly 2 and a rotating assembly 1 and a mounting assembly 3 which are connected with each other in a rotatable manner; one end of the rotating assembly 1 which is away from the mounting assembly 3 is connected with the first supporting assembly 2, and the other end of the mounting assembly 3 which is away from the rotating assembly 1 is connected with the first base assembly 6; and the rotating assembly 1 and the mounting assembly 3 are detachably connected. It should be noted that the quick release structure 10 provided in the embodiment has the same beneficial effects as the quick release structure 10 in the first embodiment and the second embodiment.

[0131] Exemplarily, Figure 7 In the mobile support 100b shown in the figure, the rotating detachable mobile support 100b comprises the first supporting assembly 2, the rotating assembly 1, the first base assembly 6 and the mounting assembly 3, one end of the rotating assembly 1 is rotatably connected with the first supporting assembly 2, and the other end is rotatably connected with the mounting assembly 3. The first base assembly 6 is a base sticking structure 61 which is arranged on the side of the mounting assembly 3 which is away from the rotating assembly 1. Specifically, the mounting assembly 3 is stuck on the desktop through the base sticking structure 61, and the electronic device is fixed on the first supporting assembly 2. The user can adjust the orientation of the electronic device by rotating the first supporting assembly 2 and the rotating assembly 1. When the user wants to store the quick release structure 10, the button structure 12 can be pressed to make the button structure 12 retract into the inside of the shell 11 on the side which is away from the mounting assembly 3, and when the side is retracted into the inside of the shell 11, the clamping connection with the matching groove 31 is released, that is, after the user detaches the rotating assembly 1 and the mounting assembly 3, the first supporting assembly 2 can be stored together with the rotating assembly 1, and the mounting assembly 3 is left on the desktop, which increases the convenience and flexibility of storage.

[0132] The above only describes the preferred embodiments of the present application and should not be used to limit the present application, and any modification, equivalent replacement and improvement made within the principles of the present application should be included in the protection scope of the present application.

Claims

1. A quick release structure, characterized by: The quick release structure comprises a rotating assembly and a mounting assembly which are connected with each other in a rotating mode; the rotating assembly comprises a shell and a button structure which is at least partially exposed outside the shell; the mounting assembly is provided with a matching groove corresponding to the button structure at a side thereof away from the shell; the button structure is capable of performing a telescopic movement relative to the shell at an end thereof close to the mounting assembly, so as to be connected with or disconnected from the matching groove.

2. The quick release structure of claim 1, wherein: The rotating assembly further comprises a spring and a plurality of balls; the shell is provided with at least one accommodating groove at a side thereof close to the mounting assembly; the balls are at least partially exposed outside the accommodating groove; the spring is arranged between the balls and the bottom of the accommodating groove; The mounting assembly is provided with a limiting groove corresponding to the balls at a side thereof close to the shell; when the rotating assembly rotates relative to the mounting assembly, the balls can be engaged in or disengaged from the limiting groove.

3. The quick release structure of claim 2, wherein: The button structure comprises an elastic member, a fixing member and a pressing member; the fixing member is arranged inside the shell; the pressing member is at least partially exposed outside the shell; the elastic member is arranged between the pressing member and the fixing member; when the end of the button structure close to the mounting assembly is connected with the matching groove, the rotating assembly can limit the mounting assembly from moving along the axial direction of the mounting assembly.

4. The quick release structure of claim 3, wherein: The number of the pressing members is at least two; the pressing members are symmetrically arranged at two sides of the fixing member along the axial direction of the shell.

5. The quick release structure of claim 4, wherein: The pressing member comprises a pressing portion and a locking portion; the shell is provided with a first clearance passage for the pressing portion to pass through along the axial direction of the elastic member; the shell is provided with a second clearance passage for the locking portion to pass through at a side thereof close to the mounting assembly; the second clearance passage is spaced apart from the accommodating groove.

6. The quick release structure of claim 5, wherein: The locking portion is used to be connected with or disconnected from the matching groove; When the pressing portion is subjected to a force, the pressing portion moves towards the elastic member; the locking portion is disconnected from the matching groove; When the pressing portion is not subjected to the force, the pressing portion moves away from the elastic member; the locking portion is connected with the matching groove.

7. The quick release structure of claim 5, wherein: The locking portion comprises a connecting segment and a locking segment which are connected with each other; the connecting segment is arranged at an end of the pressing portion close to the elastic member; the locking segment is arranged at a side of the connecting segment close to the pressing portion along the axial direction of the elastic member; the mounting assembly is provided with a matching passage; the matching groove is arranged at an end of the matching passage away from the shell corresponding to the button structure; the locking segment is matched with the matching groove, so as to be connected with or disconnected from the matching groove.

8. The quick release structure of claim 1, wherein: The shell can rotate relative to the mounting assembly by 0-360° around the axial line thereof; The rotation range includes 0-90°, 90-180°, 180-270° or 270-360°.

9. The quick release structure of claim 1, wherein: The quick release structure further comprises a first supporting assembly; one end of the rotating assembly is connected with the first supporting assembly; the other end is rotatably connected with the mounting assembly.

10. The quick release structure of claim 9, wherein: The first supporting assembly comprises a first connecting piece, a bracket structure, a second connecting piece and a supporting seat for supporting electronic devices, one end of the bracket structure is rotationally connected to the end of the rotating assembly away from the mounting assembly through the first connecting piece, and the other end is rotationally connected to the supporting seat through the second connecting piece.

11. The quick release structure of claim 10, wherein: The end of the supporting seat close to the bracket structure and the end of the rotating assembly close to the bracket structure are provided with reinforcing ribs. The end of the bracket structure close to the rotating assembly can rotate 0-360° around the axis of the first connecting piece, and the end of the bracket structure close to the supporting seat can rotate 0-360° around the axis of the second connecting piece.

12. The quick release structure of claim 10, wherein: The supporting seat comprises a supporting main body, a magnetic attraction piece and a cover, the supporting main body is rotationally connected to the bracket structure through the second connecting piece, a mounting groove is formed on the side of the supporting main body away from the bracket structure, the magnetic attraction piece is arranged in the mounting groove, and the cover is used for covering the slot of the mounting groove.

13. The quick release structure of claim 1, wherein: The quick release structure further comprises a second supporting assembly, one end of the mounting assembly is connected to the second supporting assembly, and the other end is rotationally connected to the rotating assembly.

14. The quick release structure of claim 13, wherein: The second supporting assembly comprises a supporting and pasting structure, and the supporting and pasting structure is arranged on the side of the mounting assembly away from the rotating assembly.

15. The quick release structure of claim 13, wherein: The second supporting assembly comprises a magnetic attraction mounting piece and a magnetic attraction ring, the magnetic attraction ring is arranged on the outer edge of the mounting assembly and has a spacing from the outer edge of the mounting assembly, the magnetic attraction mounting piece is clamped between the magnetic attraction ring and the mounting assembly, and the magnetic attraction mounting piece is rotationally connected to the magnetic attraction ring.

16. The quick release structure of claim 13, wherein: The second supporting assembly comprises a clamping shell, first and second clamping pieces movably arranged on both sides of the clamping shell, and an adjusting assembly; the first clamping piece comprises a first clamping part and a first connecting part, the second clamping piece comprises a second clamping part and a second connecting part, one end of the first and second connecting parts is arranged inside the clamping shell, and the other end is exposed outside the clamping shell through the clamping shell; The part of the first clamping part exposed to the clamping shell is arranged on the side away from the mounting assembly, and the part of the second clamping part exposed to the clamping shell is arranged on the side away from the mounting assembly. The adjusting assembly is arranged on the end of the first clamping part away from the second clamping piece, and part of the adjusting assembly is rotationally connected to the second connecting part through the first clamping part and the first connecting part in sequence.

17. The quick release structure of claim 16, wherein: A matching channel is formed on the mounting assembly, the mounting assembly and the clamping shell are connected to form a containing space, and the end of the containing space close to the matching channel forms the matching groove.

18. The quick release structure of claim 16, wherein: The side of the clamping shell away from the mounting assembly is provided with a magnetic attraction part.

19. A mobile stand, characterized by: The quick release structure comprises a first base assembly and a quick release structure as claimed in any one of claims 1-12, the quick release structure comprising a first supporting assembly, and a rotating assembly and a mounting assembly rotatably connected with each other; one end of the rotating assembly away from the mounting assembly is connected with the first supporting assembly, and one end of the mounting assembly away from the rotating assembly is connected with the first base assembly; and the rotating assembly and the mounting assembly are detachably connected.

20. The mobile stand of claim 19, wherein: The first base assembly comprises a base adhesive structure arranged on a side of the mounting assembly away from the rotating assembly.

21. The mobile stand of claim 19, wherein: The first base assembly comprises a bolt and a first base shell, the first base shell is sleeved on a side of the mounting assembly away from the rotating assembly, one end of the bolt is arranged in the first base shell, and the other end of the bolt is exposed outside the first base shell.

22. The mobile stand of claim 19, wherein: The mounting assembly is provided with a matching channel, the first base assembly comprises a mounting base, the mounting base is provided with a fixing groove corresponding to the mounting assembly, the mounting assembly is accommodated in the fixing groove to form an accommodation space with the fixing groove, and the matching groove is arranged at one end of the accommodation space close to the matching channel.

23. A mobile stand, characterized by: The quick release structure comprises a second base assembly and a quick release structure as claimed in any one of claims 1-8 and claims 13-18, the quick release structure comprising a second supporting assembly, and a rotating assembly and a mounting assembly rotatably connected with each other; one end of the rotating assembly away from the mounting assembly is connected with the second supporting assembly, and one end of the mounting assembly away from the rotating assembly is connected with the second base assembly; and the rotating assembly and the mounting assembly are detachably connected.

24. The mobile stand of claim 23, wherein: The second base assembly comprises a second base shell and a threaded connecting piece, one end of the second base shell is connected with the rotating assembly, and the other end of the second base shell is connected with the threaded connecting piece.

25. The mobile stand of claim 24, wherein: The second base assembly further comprises a buffer assembly, The buffer assembly comprises a first fixing plate, a buffer spring, a second fixing plate, and a fixing bolt piece, the first fixing plate is connected with one end of the second base shell away from the threaded connecting piece, the second fixing plate is arranged on a side of the first fixing plate close to the shell and spaced apart from the first fixing plate, the buffer spring is clamped between the first fixing plate and the second fixing plate, and the fixing bolt piece passes through the second fixing plate and the shell in sequence to detachably connect the buffer assembly and the rotating assembly. The second base assembly further comprises a buffer assembly, The buffer assembly comprises a first fixing plate, a buffer spring, a second fixing plate, and a fixing bolt piece, the first fixing plate is connected with one end of the second base shell away from the threaded connecting piece, the second fixing plate is arranged on a side of the first fixing plate close to the shell and spaced apart from the first fixing plate, the buffer spring is clamped between the first fixing plate and the second fixing plate, and the fixing bolt piece passes through the second fixing plate and the shell in sequence to detachably connect the buffer assembly and the rotating assembly.