Electronic equipment accessory
By setting limit structures on the pivot assembly and bracket, the opening and closing sequence of the bracket is controlled, solving the jamming problem of the dual-pivot linkage bracket structure and improving the user experience.
Patent Information
- Application Number
- CN202422881810.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-25
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-25
AI Technical Summary
The existing dual-axis linkage bracket structure is prone to jamming or stopping during opening and closing, which affects the user experience.
By arranging a first limiting structure at one end of the rotating shaft assembly away from the fixing seat and a second limiting structure fixedly connected to the bracket, the order of opening and closing of the bracket is controlled, ensuring that the movement order is reversed to avoid jamming.
This design allows for smooth movement of the bracket during opening and closing, enhancing the user experience.
Smart Images

Figure CN223472280U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to 3C digital accessories technical field especially relates to a kind of electronic equipment accessories. BACKGROUND
[0002] In the use process of mobile phone and other electronic devices, people usually match support to realize different support angles, set support on the back of protective shell so that support is convenient to carry, can be used at any time, support can be opened on the back of protective shell or stored in the storage slot on the back of protective shell by rotating. But the support structure of traditional single-axis rotation will interfere with the side wall of storage slot when opening to a certain angle (about 120°) and cannot be opened further. Therefore, a support structure with double rotating shaft linkage appears on the market, and the movement principle process of the existing double rotating shaft linkage support structure is as follows: the rotating shaft assembly is connected with the support through one rotating shaft, and the other rotating shaft is connected with the base. When support is needed, the support and the rotating shaft connected therewith can be kept relatively stationary, the rotating shaft assembly is rotated 90° relative to the base, and then the support is rotated relative to the rotating shaft connected therewith to open to 180°. When closing the support, the support and the rotating shaft connected therewith are kept relatively stationary, the rotating shaft assembly is rotated relative to the base, and then the support is rotated relative to the rotating shaft connected therewith to reach the storage state.
[0003] Such support structure is not opposite in the process of opening and closing, for example, also 90° position, if it is opening process, from 0° to 90°, the rotating shaft connector is vertical state, two rotating shafts are arranged one above the other, but if it is closing process, from 180° to 90°, the rotating shaft connector is stored on the back of protective shell, and two rotating shafts are horizontally connected in parallel on the back of protective shell. This makes the rotating state of two rotating shafts change in the closing process, so that there is a jam or pause, affecting user experience. UTILITY MODEL CONTENTS
[0004] Therefore, to overcome at least part of the defects and deficiencies in the prior art, the utility model embodiment provides an electronic device accessory, which can control the sequence of opening and closing of the support through the first limiting structure and the second limiting structure, and solve the problem of jam or pause of the existing double rotating shaft linkage support structure during storage.
[0005] The utility model discloses an electronic equipment accessory, include: fixed seat, pivot assembly, including pivot connecting piece, pivot connecting piece with Fixed seat rotation is connected, pivot connecting piece is away from one end of fixed seat is provided with first limit structure, support, with pivot connecting piece is away from one end rotation and is connected with fixed seat, support has first position state, second position state and third position state, the opening angle between support and fixed seat gradually increases according to first position state, second position state and third position state, second limit structure is fixedly connected in support, when support is between first position state and second position state, second limit structure is limitedly connected with first limit structure, makes support and pivot connecting piece synchronous rotation, when support is between second position state and third position state, with first limit structure is cancelled limit, makes support can rotate relative pivot connecting piece.
[0006] In some embodiments, the pivot assembly further includes a first pivot, one end of the pivot connecting piece away from the fixed seat is formed with a first shaft sleeve, the first pivot is arranged in the first shaft sleeve and rotationally connected to the first shaft sleeve, and the support is fixedly connected to the first pivot.
[0007] In some embodiments, the first limit structure is arranged at an end of the first shaft sleeve along an axial direction of the first pivot.
[0008] In some embodiments, the first limit structure is a first protruding structure protruding from the end of the first shaft sleeve, and the second limit structure includes a first limiting piece, the first limiting piece includes a first connecting portion and a first hook portion, the first connecting portion is located outside the end of the first shaft sleeve, and the first hook portion is connected to one end of the first connecting portion and partially extends to one side of the first protruding structure along a circumferential direction of the first pivot.
[0009] In some embodiments, the first hook portion is arranged to be inclined to an end surface of the first shaft sleeve.
[0010] In some embodiments, the number of the first limit structures is two, and the two first limit structures are arranged at opposite ends of the first shaft sleeve, respectively.
[0011] In some embodiments, the end of the first shaft sleeve is formed with a groove located at opposite sides of the first protruding structure along a circumferential direction of the first pivot.
[0012] In some embodiments, the rotating shaft assembly further comprises a second rotating shaft, a second shaft sleeve is formed at an end of the rotating shaft connector away from the support, the second rotating shaft is arranged in the second shaft sleeve and rotationally connected with the second shaft sleeve, and the fixing seat is fixedly connected with the second rotating shaft.
[0013] In some embodiments, a third limiting structure is arranged on the second shaft sleeve, the electronic device accessory further comprises a fourth limiting structure, the fourth limiting structure is fixedly connected with the fixing seat, the fourth limiting structure is in limiting connection with the third limiting structure when the support is between the second position state and the third position state, and the fourth limiting structure is out of limiting connection with the third limiting structure when the support is between the first position state and the second position state.
[0014] In some embodiments, the third limiting structure is a second protruding structure protruding from an end of the second shaft sleeve along an axis of the second rotating shaft, and the fourth limiting structure comprises a second limiting piece, the second limiting piece comprises a second connecting portion and a second hook portion, the second connecting portion is located outside the end of the second shaft sleeve, and the second hook portion is connected to one end of the second connecting portion and partially extends to one side of the second protruding structure along a circumferential direction of the second rotating shaft.
[0015] In some embodiments, the second hook portion is arranged to be inclined to an end surface of the second shaft sleeve.
[0016] In some embodiments, a first shaft hole is formed on the support, an end of the first rotating shaft is arranged in the first shaft hole, and an anti-skid pattern is arranged on a surface of the first rotating shaft in contact with an inner wall of the first shaft hole.
[0017] In some embodiments, a first cutting surface is arranged on the second rotating shaft, an inner surface of the second shaft sleeve has a second cutting surface, and an included angle is formed between the first cutting surface and the second cutting surface when the support is in the storage state.
[0018] As can be seen from the above, the above embodiments of the utility model can achieve one or more of the following beneficial effects: by arranging the first limiting structure at an end of the rotating shaft assembly away from the fixing seat and arranging the second limiting structure fixedly connected with the support, the movement state of the support and the rotating shaft connector in the same position state interval can be adjusted by limiting connection or out of limiting connection of the first limiting structure and the second limiting structure in the specific position state of the support, the movement sequence of the support in the opening process and the closing process is opposite, the support can be prevented from being stuck or paused during the storage process, and better use experience can be obtained. BRIEF DESCRIPTION OF DRAWINGS
[0019] The specific embodiments of the utility model will be described in detail below with reference to the drawings.
[0020] Figure 1 A structure schematic view of the electronic equipment accessory in a first position state is shown.
[0021] Figure 2 For Figure 1 A structure schematic view of the electronic equipment accessory in a second position state is shown.
[0022] Figure 3 For Figure 1 A structure schematic view of the electronic equipment accessory in a third position state is shown.
[0023] Figure 4 An exploded structure schematic view of the electronic equipment accessory is shown.
[0024] Figure 5 For Figure 4 An exploded structure schematic view of the electronic equipment accessory from another angle is shown.
[0025] Figure 6 For Figure 5 A structure schematic view of the transfer shaft connecting piece is shown.
[0026] Figure 7a A local structure schematic view of the electronic equipment accessory in a first position state is shown.
[0027] Figure 7b For Figure 7a A local enlarged schematic view of area A is shown.
[0028] Figure 7c For Figure 7a A local enlarged schematic view of area B is shown.
[0029] Figure 8a A local structure schematic view of the electronic equipment accessory in a second position state is shown.
[0030] Figure 8b For Figure 8a A local enlarged schematic view of area C is shown.
[0031] Figure 8c For Figure 8a A local enlarged schematic view of area D is shown.
[0032] Figure 9a A local structure schematic view of the electronic equipment accessory in a third position state is shown.
[0033] Figure 9b For Figure 9aA local enlarged view of the middle E region.
[0034] Figure 10 Another structure schematic view of the electronic equipment accessory is provided for the embodiment of the utility model.
[0035] Figure 11 For Figure 10 A structure schematic view of the first rotating shaft in the electronic equipment accessory.
[0036] Figure 12 A cross-sectional structure schematic view of the rotating shaft structure in an embodiment along a plane perpendicular to the first rotating shaft axis.
[0037]
Explanation of reference numerals
[0038] 10, fixed seat; 11, first fixed part; 12, second fixed part; 20, rotating shaft assembly; 21, rotating shaft connecting piece; 211, first shaft sleeve; 2111, groove; 212, second shaft sleeve; 2121, second cutting surface; 213, first limiting structure; 214, third limiting structure; 22, first rotating shaft; 221, anti-skid pattern; 23, second rotating shaft; 231, first cutting surface; 30, support; 40, second limiting structure; 41, first limiting piece; 411, first connecting part; 412, first hook part; 4121, side surface of the first hook part; 42, first connecting piece; 50, shell; 51, back plate; 52, side frame; 60, fourth limiting structure; 61, second limiting piece; 611, second connecting part; 612, second hook part; 6121, side surface of the second hook part; 62, second connecting piece. DETAILED DESCRIPTION
[0039] In order to make the above-mentioned purpose, features and advantages of the utility model more apparent, obvious and easy to understand, the specific implementation manners of the utility model will be described in detail below with reference to the drawings.
[0040] In order to make the person skilled in the art better understand the technical scheme of the utility model, the technical scheme in the embodiment of the utility model will be described clearly and completely below with reference to the drawings in the embodiment of the utility model. Obviously, the described embodiment is only a part of the embodiment of the utility model, rather than all the embodiments. Based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without creative labor should belong to the protection scope of the utility model.
[0041] It should be noted that the terms "first", "second", and the like in the description and claims of the utility model and the above drawings are used to distinguish like objects, and do not have to be described in a particular order or sequence. It should be understood that the terms thus used can be interchangeable under appropriate circumstances so that the utility model embodiments described herein can be implemented in other than the order illustrated or described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device comprising a series of steps or units does not have to be limited to the clearly listed steps or units, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0042] It should also be noted that the division of multiple embodiments in the utility model is only for the convenience of description, and should not constitute a special limitation. The features in various embodiments can be combined and mutually referenced without contradiction.
[0043] The utility model embodiment provides an electronic equipment accessory, refer to Figure 1 And Figure 4 , the electronic equipment accessory includes fixed seat 10, pivot assembly 20, support 30 and second limiting structure 40. Wherein, pivot assembly 20 includes pivot connecting piece 21, and pivot connecting piece 21 is rotatably connected with fixed seat 10. The end of pivot connecting piece 21 away from fixed seat 10 is provided with first limiting structure 213 (refer to Figure 6 ). Support 30 is rotatably connected with the end of pivot connecting piece 21 away from fixed seat 10. Support 30 has first position state, second position state and third position state, and the opening angle between support 30 and fixed seat 10 increases in turn according to first position state, second position state and third position state. Second limiting structure 40 is fixedly connected to support 30, and second limiting structure 40 is limitedly connected with first limiting structure 213 when support 30 is between first position state and second position state, so that support 30 and pivot connecting piece 21 rotate synchronously, and second limiting structure 40 is released from the limitation of first limiting structure 213 when support 30 is between second position state and third position state, so that support 30 can rotate relative to pivot connecting piece 21.
[0044] The utility model embodiment provides an electronic equipment accessory, for example, refer to Figures 1 to 3 , the protective shell of the support structure including shell 50 can also be Figure 4 The separate support structure shown. Wherein shell 50 includes back plate 51 and side frame 52, for example. Fixed seat 10 is installed on back plate 51, and back plate 51 is provided with mounting groove that can accommodate support 30, pivot assembly 20 and fixed seat 10, so that the back of shell 50 remains flat when support 30 is stored.
[0045] Figure 1 The support 30 is in the first position state, and an opening angle between the support 30 and the fixed seat 10 is, for example, 0°, that is, the support 30 is in a storage state (also called a closed state), or the opening angle of the support 30 is 0°. Figure 2 The support 30 is in the second position state, and the opening angle between the support 30 and the fixed seat 10 is, for example, 90°, which is a state after the support 30 is rotated by 90° relative to the fixed seat 10 from the storage state. Figure 3 The support 30 is in the third position state, and the opening angle between the support 30 and the fixed seat 10 is, for example, 180°, which is a state after the support 30 is rotated by 180° relative to the fixed seat 10 from the storage state.
[0046] The opening and closing process and movement principle of the electronic equipment accessory provided in the embodiment are as follows: first, the support 30 is in the first position state shown in Figure 1 In the process of opening the support 30 from the first position state to the second position state, the first limiting structure 213 and the second limiting structure 40 are in limiting connection, so that the support 30 is fixed relative to the shaft connecting piece 21, and the support 30 drives the shaft connecting piece 21 to rotate relative to the fixed seat 10 until the support 30 reaches the second position state shown in Figure 2 In the process of continuing to open from the second position state to the third position state, the first limiting structure 213 and the second limiting structure 40 are disengaged from limiting, so that the support 30 is no longer fixed with the shaft connecting piece 21, and the support 30 rotates relative to the shaft connecting piece 21 to the third position state shown in Figure 3 In the closing process, the first limiting structure 213 and the second limiting structure 40 are disengaged from limiting between the second position state and the third position state, so that the support 30 is not fixed with the shaft connecting piece 21, and the support 30 rotates relative to the shaft connecting piece 21 from the third position state to the second position state shown in Figure 2 The first limiting structure 213 and the second limiting structure 40 are reconnected in limiting when between the second position state and the first position state, so that in the process of closing the support 30 from the second position state to the first position state, the support 30 rotates synchronously with the shaft connecting piece 21 until the support 30 is stored.
[0047] According to the above opening and closing process, in the electronic equipment accessory provided in the embodiment, the movement sequence of the support 30 and the shaft connecting piece 21 is reversed in the opening process and the closing process of the support 30, so that the closing process is smoother and does not jam, and the use experience is improved.
[0048] Specifically, referring to Figure 4 andFigure 5 In one specific embodiment of the present application, the rotating shaft assembly 20 further comprises a first rotating shaft 22, the end of the rotating shaft connecting piece 21 away from the fixing base 10 is provided with a first shaft sleeve 211, the first rotating shaft 22 is arranged in the first shaft sleeve 211 and is rotatably connected to the first shaft sleeve 211, and the support 30 is fixedly connected to the first rotating shaft 22. The first limiting structure 213 is arranged on the first shaft sleeve 211. The first rotating shaft 22 arranged in the first shaft sleeve 211 can realize more stable rotary connection through the damping force between the first rotating shaft 22 and the first shaft sleeve 211. In some embodiments, the support 30 is provided with a first shaft hole, the end of the first rotating shaft 22 is arranged in the first shaft hole, and the specific structure can be referred to Figure 11 The surface of the first rotating shaft 22 in contact with the inner wall of the first shaft hole is provided with anti-skid lines 221, the anti-skid lines 221 can increase the friction between the first rotating shaft 22 and the inner wall of the first shaft hole, and the fixing effect between the first rotating shaft 22 and the support 30 is ensured.
[0049] In some embodiments, the rotating shaft assembly 20 further comprises a second rotating shaft 23, the end of the rotating shaft connecting piece 21 away from the support 30 is provided with a second shaft sleeve 212, the second rotating shaft 23 is arranged in the second shaft sleeve 212 and is rotatably connected to the second shaft sleeve 212, and the fixing base 10 is fixedly connected to the second rotating shaft 23. The second rotating shaft 23 arranged in the second shaft sleeve 212 can realize more stable rotary connection through the damping force between the second rotating shaft 23 and the second shaft sleeve 212. That is, the support 30 rotates relative to the rotating shaft connecting piece 21, specifically, the support 30 rotates relative to the rotating shaft connecting piece 21 through the first rotating shaft 22 rotating in the first shaft sleeve 211. The rotating shaft connecting piece 21 rotates relative to the fixing base 10 through the second rotating shaft 23 rotating around the second shaft sleeve 212. In some embodiments, the specific structure can be referred to Figure 12 The second rotating shaft 23 is provided with a first tangent surface 231, the inner surface of the second shaft sleeve 212 has a second tangent surface 2121, and the first tangent surface 231 and the second tangent surface 2121 form an included angle when the support 30 is in the storage state. The included angle between the second tangent surface 2121 and the first tangent surface 231 when the support 30 is in the first position state can provide damping force, prevent the second shaft sleeve 212 and the second rotating shaft 23 from rotating relative to each other without additional external force, and prevent the support 30 from being accidentally opened when the support 30 is in the storage state. The specific principle is that when the first tangent surface 231 and the second tangent surface 2121 are parallel to each other, there is no interaction force between the second rotating shaft 23 and the second shaft sleeve 212, the second rotating shaft 23 rotates relative to the second shaft sleeve 212 under the action of external force to a certain angle, so that the first tangent surface 231 and the second tangent surface 2121 form a certain included angle, and the specific structure can be referred to Figure 12As can be seen, the second shaft 23 is in an interference fit with the second shaft sleeve 212, and the second shaft sleeve 212 will be deformed, which makes the second shaft 23 have a tendency to rotate back. Therefore, when the support 30 is in the closed state, an included angle is formed between the first cutting surface 231 and the second cutting surface 2121, so that the support 30 has a tendency to remain in the closed state under force, thereby preventing the support 30 from being accidentally opened and achieving self-locking.
[0050] In some embodiments, the first limiting structure 213 is arranged at an end of the first shaft sleeve 211 in the axial direction of the first shaft 22, which facilitates processing and manufacturing. In a specific embodiment, referring to Figure 7b , the first limiting structure 213 is a first protruding structure protruding from the end of the first shaft sleeve 211. The second limiting structure 40 includes a first limiting piece 41, which includes a first connecting portion 411 and a first hook portion 412. The first connecting portion 411 is located outside the end of the first shaft sleeve 211, and the first hook portion 412 is connected to one end of the first connecting portion 411 and partially extends to one side of the first protruding structure in the circumferential direction of the first shaft 22. Referring to Figure 7a 、 Figure 7b 、 Figure 8a 、 Figure 8b , between the first position state and the second position state, the end face of the first hook portion 412 close to the first connecting portion 411 abuts against the first protruding structure to achieve limiting connection of the first limiting structure 213 and the second limiting structure 40. Therefore, when the user flips the support 30, the first hook portion 412 pushes the shaft connecting piece 21 to move together through the first protruding structure, so that the support 30 rotates synchronously with the shaft connecting piece 21. When the support 30 is rotated to the second position state, the shaft connecting piece 21 abuts against the fixed seat 10 and cannot continue to rotate relative to the fixed seat 10. If a force continues to be applied to the support 30 to flip it back, the first hook portion 412 will pass through and be separated from the first protruding structure, so that the first limiting structure 213 and the second limiting structure 40 are released from limiting. Referring to Figure 9a and Figure 9b After the first hook portion 412 passes through the first protruding structure and reaches the other side of the first protruding structure, it can continue to rotate back by a certain angle, so that the support 30 is opened to a third state position. When the support 30 is closed from the third state position to the second position state, the first hook portion 412 rotates toward the direction of gradually approaching the first protruding structure, and the support 30 rotates relative to the first shaft sleeve 211. When reaching the second position state, the end face of the first hook portion 412 away from the first connecting portion 411 abuts against the first protruding structure, and the first limiting structure 213 and the second limiting structure 40 are in limiting connection. If a force continues to be applied to the support 30 to close it, the first hook portion 412 will push the first protruding structure, so that the support 30 rotates synchronously with the shaft connecting piece 21, and the support 30 returns to the first position state.
[0051] The first limiting structure 213 and the second limiting structure 40 can be limitedly connected or released from the limitation in the corresponding state through the cooperation of the first hook portion 412 and the first protruding structure, which is simple in structure and easy to implement.
[0052] In some embodiments, with reference to Figure 7b The side surface 4121 of the first hook portion 412 is inclined to the end surface of the first shaft sleeve 211. The inclined surface is beneficial to guide the movement of the first hook portion 412, so that the switching of the first hook portion 412 from the release of the limitation to the limited connection or from the limited connection to the release of the limitation is more smooth.
[0053] In some embodiments, with reference to Figure 4 and Figure 6 The number of the first limiting structure 213 is two, and the two first limiting structures 213 are arranged at the opposite ends of the first shaft sleeve 211. The number of the first limiting member 41 is two and is arranged one by one corresponding to the two first limiting structures 213. The arrangement of the first limiting structure 213 and the second limiting structure 40 corresponding to the two ends of the first shaft sleeve 211 makes the force more balanced, and the synchronous rotation between the support 30 and the rotating shaft connecting member 21 is more stable. In some embodiments, the second limiting structure 40 further comprises a first connecting member 42, the first limiting member 41 is connected with the first connecting member 42, and the first connecting member 42 is riveted to the support 30. When the first limiting member 41 is arranged corresponding to the two ends of the first shaft sleeve 211, the two first limiting members 41 are connected to the two ends of the first connecting member 42 respectively. In some embodiments, the support 30 is further provided with a containing groove for containing the first connecting member 42, so that the surface of the support 30 after being connected with the first connecting member 42 is still relatively flat.
[0054] In some embodiments, with reference to Figure 9b The end of the first shaft sleeve 211 is formed with a groove 2111 located on the opposite sides of the first protruding structure in the circumferential direction of the first rotating shaft 22. The first hook portion 412 can be provided with a certain containing space.
[0055] In some embodiments, with reference to Figure 5 and Figure 6The third limiting structure 214 is arranged on the second shaft sleeve 212. The electronic device accessory further comprises a fourth limiting structure 60 fixedly connected to the fixed seat 10. The fourth limiting structure 60 is in limiting connection with the third limiting structure 214 when the support 30 is between the second position state and the third position state, and is out of limiting connection with the third limiting structure 214 when the support 30 is between the first position state and the second position state. In this way, the shaft connecting piece 21 is relatively fixed with the fixed seat 10 when the support 30 is closed from the third position state to the second position state, and the shaft connecting piece 21 cannot rotate relative to the fixed seat 10 during this process, and only the support 30 rotates around the shaft connecting piece 21. When the support 30 is closed from the second position state to the first position state, the third limiting structure 214 is out of limiting connection with the fourth limiting structure 60, and the shaft connecting piece 21 can rotate relative to the fixed seat 10, so that the closing process is more stable and smooth.
[0056] In some embodiments, similar to the first limiting structure 213 and the second limiting structure 40, the third limiting structure 214 is a second protruding structure protruding from the end of the second shaft sleeve 212 along the axis of the second shaft 23. The fourth limiting structure 60 comprises a second limiting piece 61, which comprises a second connecting part 611 and a second hook part 612. The second connecting part 611 is located outside the end of the second shaft sleeve 212, and the second hook part 612 is connected to one end of the second connecting part 611 and partially extends to one side of the second protruding structure along the circumference of the second shaft 23. The principle of limiting connection and out-of-limiting connection of the fourth limiting structure 60 is similar to that of the first limiting structure 213 and the second limiting structure 40. For details, please refer to the description of the first limiting structure 213 and the second limiting structure 40. Figure 8c Before reaching the second position state, the second hook part 612 abuts against the second protruding structure to keep the shaft connecting piece 21 relatively fixed with the fixed seat 10. When passing through the second position state, the second hook part 612 passes over the second protruding structure to the other side of the second protruding structure, and can continue to rotate by a certain angle in a direction away from the second protruding structure, so that the shaft connecting piece 21 can rotate relative to the fixed seat 10.
[0057] Similarly, the side surface 6121 of the second hook part 612 towards the second shaft sleeve 212 is inclined to the end surface of the second shaft sleeve 212, which is beneficial to guide the movement of the second hook part 612, so that the switching of the second hook part 612 from out-of-limiting connection to limiting connection or from limiting connection to out-of-limiting connection is more smooth.
[0058] In some embodiments, the fixing seat 10 comprises a first fixing part 11 and a second fixing part 12, the first fixing part 11 and the second fixing part 12 are respectively arranged on opposite sides of the back plate 51 and riveted to each other, and the second rotating shaft 23 is fixedly connected with the first fixing part 11. The fourth limiting structure 60 further comprises a second connecting piece 62, the second limiting piece 61 is connected with the second connecting piece 62, and the second connecting piece 62 is riveted with the first fixing part 11. Referring to Figure 4 and Figure 5 that is, directly taking the second fixing part 12 as the second connecting piece 62, or referring to Figure 10 The second connecting piece 62 can also be separately arranged, and the present embodiment is not limited.
[0059] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Although the present application has been disclosed as above with a preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above disclosed technical content without departing from the scope of the present application, and any simple modification, equivalent change and modification of the above embodiments according to the technical essence of the present application still belong to the scope of the present application.
Claims
1. An electronic device accessory, characterized in that, The utility model relates to a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly.
2. The electronic device accessory of claim 1, wherein, The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly.
3. The electronic device accessory of claim 2, wherein, The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly.
4. The electronic device accessory of claim 3, wherein, The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly.
5. The electronic device accessory of claim 4, wherein, The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly.
6. The electronic device accessory of claim 4, wherein, The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. 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The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical field of rotating shaft assembly. The utility model discloses a rotating shaft assembly and a fixing seat thereof, and belongs to the technical 7. The electronic device accessory of claim 4, wherein, The first shaft sleeve (211) is formed with a groove (2111) at the end thereof on opposite sides of the first protruding structure in the circumferential direction of the first rotating shaft (22).
8. The electronic device accessory of claim 2, wherein, The rotating shaft assembly (20) further comprises a second rotating shaft (23), and the rotating shaft connector (21) is formed with a second shaft sleeve (212) at one end thereof away from the support (30), the second rotating shaft (23) is arranged through the second shaft sleeve (212) and is rotationally connected with the second shaft sleeve (212), and the fixing base (10) is fixedly connected with the second rotating shaft (23).
9. The electronic device accessory of claim 8, wherein, The second shaft sleeve (212) is provided with a third limiting structure (214), and the electronic device accessory further comprises a fourth limiting structure (60), the fourth limiting structure (60) is fixedly connected with the fixing base (10), and the fourth limiting structure (60) is in limiting connection with the third limiting structure (214) when the support (30) is between the second position state and the third position state, and the fourth limiting structure (60) is out of limiting connection with the third limiting structure (214) when the support (30) is between the first position state and the second position state.
10. The electronic device accessory of claim 9, wherein, The third limiting structure (214) is a second protruding structure protruding from the end of the second shaft sleeve (212) along the axis of the second rotating shaft (23), and the fourth limiting structure (60) comprises a second limiting member (61), the second limiting member (61) comprises a second connecting portion (611) and a second hook portion (612), the second connecting portion (611) is located outside the end of the second shaft sleeve (212), and the second hook portion (612) is connected to one end of the second connecting portion (611) and partially extends to one side of the second protruding structure in the circumferential direction of the second rotating shaft (23).
11. The electronic device accessory of claim 10, wherein, The second hook portion (612) is inclined to the end surface of the second shaft sleeve (212) towards the side surface of the second shaft sleeve (212).
12. The electronic device accessory of claim 2, wherein, The support (30) is formed with a first shaft hole, the end of the first rotating shaft (22) is arranged through the first shaft hole, and the surface of the first rotating shaft (22) in contact with the inner wall of the first shaft hole is provided with an anti-skid pattern (221).
13. The electronic device accessory of claim 8, wherein, The second rotating shaft (23) is provided with a first tangent surface (231), the inner surface of the second shaft sleeve (212) has a second tangent surface (2121), and the first tangent surface (231) and the second tangent surface (2121) form an included angle when the support (30) is in the storage state.