Clip assembly and electronic device
By using the rotating part and slide chute linkage design of the clamp assembly in electronic equipment, convenient locking and release of embedded objects is achieved, and the problems of cumbersome operation and space limitations in the prior art are solved, and the convenience of assembly and disassembly is improved.
Patent Information
- Application Number
- CN202422201140.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-09
AI Technical Summary
The fixing method of existing embedded objects is complicated to operate in electronic devices, making it difficult to quickly install and disassemble in a narrow space, and the existing snap structure is inconvenient in small or densely arranged equipment.
A clamp assembly is adopted, including the first and second clamps and a rotating part. The first and second clamp slots are brought close or away by the rotation of the rotating part, thereby achieving locking or releasing the embedded object. The linkage design of the slide chute and the clamp block is simplified, and the guide of the push and pull part and the mounting rail is combined to achieve convenient assembly and disassembly.
It provides a convenient locking and release method for embedded objects, and can snap in smoothly without tilting in anisotropic manner, improving assembly and disassembly convenience, reducing operational difficulty and manufacturing costs.
Smart Images

Figure CN223067371U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of equipment installation, and particularly relates to a buckle assembly and an electronic device. Background Art
[0002] With the increasing popularity and diversification of electronic devices, the application of embedded objects has become more and more extensive. Embedded objects are usually used in the internal structure of electronic devices to realize the fixation and connection of various functional modules. For example, in computers, communication devices or other electronic devices, it is usually necessary to install embedded objects such as hard disks, optical drives, memory cards, etc. at specific positions, and at the same time, it is necessary to ensure that they can be conveniently disassembled and replaced.
[0003] Traditional fixing methods for embedded objects mostly rely on structures such as screws and buckles. However, the screw fixing method usually requires tools, the operation process is cumbersome, and it is difficult to achieve rapid installation and disassembly in a narrow space. Although the buckle structure can provide a certain degree of convenience, there are still many inconveniences in the existing buckle designs during the operation process. For example, some buckle assemblies need to apply force in multiple directions to complete the installation or disassembly, which not only increases the complexity of the operation, but may also damage the embedded object or the electronic device. In addition, when the existing buckle structures are assembled and disassembled, a relatively large operating space often needs to be reserved, which is particularly inconvenient in some small or densely arranged electronic devices. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is: to provide a buckle assembly and an electronic device to realize the convenient disassembly of the electronic device and the embedded object.
[0005] In order to solve the above technical problem, the technical solution adopted by the utility model is:
[0006] A buckle assembly for installing an embedded object, the embedded object having a first flange and a second flange arranged back to back, comprising a first buckle, a second buckle and a rotating part;
[0007] The first buckle includes a first base and a first extension; the first base is provided with a first card slot, the first card slot is located at one end of the first base close to the first extension, the first card slot is used for clamping the first flange, the first extension is connected to the first base, and the first extension is movably connected to the rotating part;
[0008] The second buckle includes a second base and a second extension; the second base is provided with a second card slot, the second card slot is located at one end of the second base close to the second extension, the second card slot is used for clamping the second flange, the second extension is connected to the second base, and the second extension is movably connected to the rotating part;
[0009] The rotating part can rotate on its own axis in at least one plane. When the rotating part rotates on its own axis, the first clamping groove and the second clamping groove approach each other to lock the embedded object; and, the first clamping groove and the second clamping groove move away from each other to release the embedded object.
[0010] Further, sliding grooves are respectively arranged on both sides of the rotation center of the rotating part, and the first extension part and the second extension part are respectively movably connected to the two sliding grooves.
[0011] Further, a first clamping block is arranged on the first extension part, a second clamping block is arranged on the second extension part, and the first clamping block and the second clamping block are respectively movably connected to the two sliding grooves; the two sliding grooves are symmetrically arranged on both sides of the rotation center of the rotating part, and the first clamping block and the second clamping block are arranged in a staggered manner.
[0012] Further, the first clip further includes a pushing and pulling part, which is arranged at one end of the first base away from the first extension part, and the pushing and pulling part is used to push or pull back the first base so that the rotating part rotates on its own axis.
[0013] In order to solve the above technical problems, another technical solution adopted by the present utility model is:
[0014] An electronic device includes a main body and the clip assembly as described above. The first base is slidably arranged on the main body, and the second base is slidably arranged on the main body, and the rotating part is rotatably connected to the main body.
[0015] Further, the main body includes at least one mounting rail, the first base and the second base are respectively movably arranged at both ends of the mounting rail, and the rotating part is rotatably connected to the surface of the mounting rail.
[0016] Further, an elastic buckle is arranged on the lower surface of the first base and / or the second base, and at least two position-matching stop grooves are arranged on the mounting rail.
[0017] Further, the rotating part includes a turntable and a rotating shaft, the turntable is connected to the rotating shaft, the rotating shaft is rotatably connected to the mounting rail, and the rotating part can rotate around the rotating shaft as the rotation center.
[0018] Further, a limiting flange is arranged on a part of the inner wall of the mounting rail, and the limiting flange abuts against the surfaces of the first base and the second base.
[0019] Further, the mounting rail includes an open end and a closed end; the first base is arranged at the open end; the second base is arranged at the closed end.
[0020] The beneficial effects of the present utility model are as follows: A buckle assembly and an electronic device are provided, and the buckle assembly provided on the electronic device is used to lock or release an embedded object. Specifically, during the rotation of the rotating part, the first base and the second base movably connected to the rotating part approach or separate from each other, so that the first card slot and the second card slot approach or separate from each other, thereby completing the locking or releasing of the embedded object; among them, the setting of the rotating member enables the actions of the first base and the second base to be linked, that is, when any one of the bases moves, it can drive the other base to move, that is, when any one of the bases moves away from the rotating part, it will drive the other base to move away from the rotating part simultaneously through the rotation of the rotating part, and the same is true when approaching, so that the locking and releasing of the embedded object can be realized by operating any one of the bases, that is, sufficient operating space is reserved for the electronic device during assembly or disassembly, and the embedded object can be smoothly inserted without tilting in all directions, improving the convenience of assembly and disassembly. Description of the Drawings
[0021] Figure 1 It is an assembly schematic diagram of a buckle assembly and an electronic device for locking an embedded object;
[0022] Figure 2 It is an assembly schematic diagram of an electronic device and a buckle assembly;
[0023] Figure 3 It is a structural schematic diagram of an installation rail of an electronic device;
[0024] Figure 4 It is an assembly schematic diagram a of a buckle assembly;
[0025] Figure 5 It is a side view of a buckle assembly;
[0026] Figure 6 It is an assembly schematic diagram b of a buckle assembly;
[0027] Figure 7 It is a malfunction schematic diagram of the functions of the first extension part, the second extension part and the rotating member;
[0028] Figure 8 It is a structural schematic diagram of the first base and the second base;
[0029] Label Description:
[0030] 1. First buckle clip; 11. First base; 12. First extension; 13. First card slot; 14. First card block; 15. Push-pull part; 2. Second buckle clip; 21. Second base; 22. Second extension; 23. Second card slot; 24. Second card block; 3. Rotating part; 31. Slide groove; 32. Turntable; 33. Rotating shaft; 4. Body; 5. Installation rail; 51. Stop groove; 52. Limit flange; 6. Elastic buckle; 7. Embedded object; 71. First flange; 72. Second flange. Detailed implementation
[0031] To describe in detail the technical content, achieved purpose and effects of the present utility model, the following is described in conjunction with the embodiments and with reference to the drawings.
[0032] Please refer to Figure 1 , Figure 4 and Figure 5 , a buckle clip assembly for installing an embedded object 7, the embedded object 7 having a first flange 71 and a second flange 72 arranged back to back, characterized in that: it includes a first buckle clip 1, a second buckle clip 2 and a rotating part 3;
[0033] The first buckle clip 1 includes a first base 11 and a first extension 12; the first base 11 is provided with a first card slot 13, the first card slot 13 is located at one end of the first base 11 close to the first extension 12, the first card slot 13 is used for clamping the first flange, the first extension 12 is connected to the first base 11, and the first extension 12 is movably connected to the rotating part 3;
[0034] The second buckle clip 2 includes a second base 21 and a second extension 22; the second base 21 is provided with a second card slot 23, the second card slot 23 is located at one end of the second base 21 close to the second extension 22, the second card slot 23 is used for clamping the second flange, the second extension 22 is connected to the second base 21, and the second extension 22 is movably connected to the rotating part 3;
[0035] The rotating part 3 can rotate self in at least one plane. When the rotating part 3 rotates self, the first card slot 13 and the second card slot 23 are close to each other to lock the embedded object 7; and, the first card slot 13 and the second card slot 23 are far from each other to release the embedded object 7.
[0036] It can be understood that the embedded object 7 is applied to various system devices or various types of chassis. In order to enable the electronic device to be detachably fixed to the required module, such as an embedded track, etc., a buckle structure is mostly used for disassembly and assembly, which is convenient for recycling and position adjustment.
[0037] Among them, the rotating part 3 can rotate on its own axis in at least one plane. When the rotating part 3 rotates, the first clamping groove 13 and the second clamping groove 23 will approach or move away from each other. When approaching, the clamping grooves clamp the flange of the embedded object 7 to achieve locking; when moving away, the clamping grooves loosen to release the embedded object 7. The rotating part 3 can be implemented in the following ways:
[0038] (1) Mechanical structure: The rotating part 3 can be a central shaft, with the two ends respectively movably connected to the first base 11 and the second base 21. When the central shaft rotates, the two clamping clips approach or move away from each other as the rotation angle changes.
[0039] (2) Gear transmission structure: The rotating part 3 can be designed as a gear mechanism. When the gear rotates, it drives the two bases to move along a predetermined trajectory.
[0040] (3) Eccentric wheel structure: Using the eccentric wheel design, when rotating, the eccentric wheel drives the relative position of the base to change. By changing the shape and position of the eccentric wheel, the movement range and speed of the clamping groove can be controlled to adapt to different usage requirements.
[0041] (4) Electric or pneumatic drive: In some advanced applications, the rotating part 3 can be combined with an electric motor or a pneumatic device, and the rotation of the rotating part 3 is controlled by electric control or air pressure to achieve automated operation.
[0042] From the above description, the beneficial effects of the present utility model are as follows: The clamping component provided on the electronic device is used to lock or release the embedded object 7. Specifically, during the self-rotation process of the rotating part 3, the first base 11 and the second base 21 movably connected to the rotating part 3 approach or move away from each other, so that the first clamping groove 13 and the second clamping groove 23 approach or move away from each other, thereby completing the locking or release of the embedded object 7; among them, the setting of the rotating part makes the actions of the first base 11 and the second base 21 have linkage, that is, when any one of the bases moves, it can drive the other base to move. That is, when any one of the bases moves away from the rotating part 3, it will drive the other base to move away from the rotating part 3 simultaneously through the self-rotation of the rotating part 3. The same is true when approaching, so that the locking and release of the embedded object 7 can be achieved by operating any one of the bases, that is, sufficient operating space is reserved for the electronic device during assembly or disassembly, and the embedded object 7 can be smoothly inserted without tilting in all directions, improving the convenience of assembly and disassembly.
[0043] Please refer to Figure 4 and Figure 5, in an embodiment of the present utility model, chutes 31 are respectively provided on both sides of the rotation center of the rotating part 3, and the first extension part 12 and the second extension part 22 are respectively movably connected to the two chutes 31. By respectively arranging the chutes 31 on both sides of the rotation center of the rotating part 3, when the rotating part 3 rotates, the first extension part 12 and the second extension part 22 slide in the corresponding chutes 31 respectively. Since the two chutes 31 are respectively arranged on both sides of the rotation center, when the rotating part 3 rotates, the first extension part 12 and the second extension part 22 approach or move away from each other under the action of the chutes 31, so as to realize the relative approach or separation of the first card slot 13 and the second card slot 23. The delicate design of the chutes 31 on the rotating part is used to realize the action linkage of the two bases, reduce the manufacturing cost, and simplify the operation difficulty at the same time.
[0044] Please refer to Figures 4 to 8 , in an embodiment of the present utility model, the first extension part 12 is provided with a first clamping block 14, the second extension part 22 is provided with a second clamping block 24, and the first clamping block 14 and the second clamping block 24 are respectively movably connected to the two chutes 31; the two chutes 31 are symmetrically arranged on both sides of the rotation center of the rotating part, and the first clamping block 14 and the second clamping block 24 are arranged in a staggered manner. By symmetrically arranging the chutes 31, when the rotating part rotates, under the action of the first clamping block 14 and the second clamping block 24, the movement trends of the first base 11 and the second base 21 are relatively consistent, so as to ensure that the locking or releasing process of the embedded part can be carried out stably and evenly, and avoid the need to tilt the electronic device due to too fast movement on one side, resulting in assembly jams.
[0045] In addition, by arranging the first clamping block 14 and the second clamping block 24 in a staggered manner, it is avoided that the connecting line of the centers of the first clamping block 14 and the second clamping block 24 is parallel to the movement direction of the base during the rotation of the rotating part. The principle is that, as Figure 7 shown, when either the first base 11 or the second base 21 is used as the driving source, its movement will drive the other base to move synchronously through the rotating part 3. If the connecting line of the centers of the clamping blocks of the two bases is parallel to the movement direction of the base, if either base is driven again, it may cause the clamping block of the base to slide in the chute 31, unable to drive the rotating part 3 to rotate, resulting in the failure of the rotating part to function, and thus the two bases lose their linkage. Through experiments, by arranging the first clamping block 14 of the first base 11 and the second clamping block 24 of the second base 21 in a staggered manner, the above problems can be avoided.
[0046] In an embodiment of the present utility model, the first clip 1 further includes a push-pull part 15, which is arranged at one end of the first base 11 away from the first extension part 12. The push-pull part 15 is used to push or pull back the first base 11 so that the rotating part 3 rotates self. By setting the push-pull part 15, it is convenient to manually control the first base 11, and further realize the locking and releasing of the clip assembly to the embedded object 7. Specifically, the push-pull part 15 is an object that extends out of the electronic device and can be clamped or held, such as a handle or a push-pull rod, etc.
[0047] Please refer to Figures 1 to 3 , an electronic device, including a body 4 and a clip assembly. The first base 11 is slidably arranged on the body 4, and the second base 21 is also slidably arranged on the body 4. The rotating part 3 is rotatably connected to the body 4. The rotating part 3 is rotatably connected to the body 4. When any base moves, the rotating part 3 rotates self under the action of the base movement, so as to realize the linkage of the two bases, and further realize the release and locking of the embedded component.
[0048] Please refer to Figure 3 , in an embodiment of the present utility model, the body 4 includes at least one mounting rail 5. The first base 11 and the second base 21 are respectively movably arranged at both ends of the mounting rail 5. The rotating part 3 is rotatably connected to the surface of the mounting rail 5. The first base 11 and the second base 21 are respectively arranged on the mounting rail 5, and the mounting rail 5 is used to guide the movement directions of the first base 11 and the second base 21. Specifically, the mounting rail 5 can be a rail with a slide rail or a chute 31 with a fixed direction.
[0049] Please refer to Figure 3 and Figure 6 , in an embodiment of the present utility model, an elastic buckle 6 is arranged on the lower surface of the first base 11 and / or the second base 21, and at least two stop grooves 51 with matching positions are arranged on the mounting rail 5. By using the cooperation of the elastic buckle 6 and the stop grooves 51 on the mounting rail 5, the movement distances of the first base 11 and the second base 21 are restricted to avoid excessive movement of the two bases. Specifically, there are two stop grooves 51, namely a locking stop groove 51 and a release stop groove 51, which cooperate with the rotating part to limit the positions of the first base 11 and the second base 21. Preferably, the stop groove 51 is a "V" - shaped groove to realize the stability of the clamping of the elastic buckle 6 in the groove.
[0050] Please refer to Figure 5 and Figure 6, in an embodiment of the present utility model, the rotating part 3 includes a turntable 32 and a rotating shaft 33. The turntable 32 is connected to the rotating shaft 33, and the rotating shaft 33 is rotatably connected to the mounting rail 5. The rotating part 3 can rotate around the rotating shaft 33 as the center of self-rotation. Using the turntable 32 as the rotating part 3 to movably connect with the extension parts of the two bases simplifies the assembly structure and reduces the manufacturing cost at the same time.
[0051] Please refer to Figure 3 , in an embodiment of the present utility model, a limiting flange 52 is provided on a part of the inner wall of the mounting rail 5. The limiting flange 52 abuts against the surfaces of the first base 11 and the second base 21. The limiting flange 52 is provided inside the mounting rail 5 to limit the two bases, preventing the first base 11 and the second base 21 from falling off the mounting rail 5. At the same time, the limiting flange 52 is used to realize the assembly of the mounting rail 5 and the two bases. The two bases are inserted through the gap between the limiting flange 52 and the mounting rail 5, thus completing the assembly of the bases and the mounting rail 5.
[0052] In an embodiment of the present utility model, the mounting rail 5 includes an open end and a closed end; the first base 11 is arranged at the open end; the second base 21 is arranged at the closed end. Under the action of the rotating part 3, the movements of the two bases are linked with each other. Therefore, only the movement of one of the bases is needed to control the other base. On the basis of providing the pushing and pulling part 15 on the first base 11, the first base 11 is regarded as the active part and arranged at the open end, and the second base 21 is regarded as the driven part and arranged at the closed end. The anti-misoperation design of the closed end and the open end on the mounting rail 5 is convenient for the assembly of the two bases and the mounting rail 5 on the one hand, and convenient for the staff to quickly find the end for manual locking and releasing in the actual operation on the other hand.
[0053] The present utility model provides a buckle assembly and an electronic device, which are mainly applied to the locking and releasing of the embedded object 7 by the electronic device. The following is a specific description with reference to the embodiments.
[0054] Please refer to Figure 1 and Figures 4 to 8 , Embodiment 1 of the present utility model is:
[0055] A buckle assembly for installing an embedded object 7, the embedded object 7 having a first flange and a second flange arranged back to back, characterized in that: it includes a first buckle 1, a second buckle 2 and a rotating part 3; the first buckle 1 includes a first base 11 and a first extension 12; the first base 11 is provided with a first card slot 13 for clamping the first flange, the first extension 12 is connected to the first base 11, and the first extension 12 is movably connected to the rotating part 3; the second buckle 2 includes a second base 21 and a second extension 22; the second base 21 is provided with a second card slot 23 for clamping the second flange, the second extension 22 is connected to the second base 21, and the second extension 22 is movably connected to the rotating part 3; the rotating part 3 can rotate self in at least one plane, when the rotating part 3 rotates self, the first card slot 13 and the second card slot 23 approach each other to lock the embedded object 7; and, the first card slot 13 and the second card slot 23 move away from each other to release the embedded object 7. During the self-rotation process of the rotating part 3, the first base 11 and the second base 21 movably connected to the rotating part 3 approach or move away from each other, so that the first card slot 13 and the second card slot 23 approach or move away from each other, and then the locking or releasing of the embedded object 7 is completed; wherein, the setting of the rotating part makes the actions of the first base 11 and the second base 21 have linkage, that is, when any base moves, it can drive the other base to move, that is, when any base moves away from the rotating part 3, it will drive the other base to move away from the rotating part 3 simultaneously through the self-rotation of the rotating part 3, and the same is true when approaching, so that the locking and releasing of the embedded object 7 can be realized by operating any base, that is, enough operating space is reserved for the electronic device during assembly or disassembly, and the embedded object 7 can be smoothly inserted without tilting in all directions, improving the convenience of assembly and disassembly.
[0056] Please refer to Figures 4 to 8, on both sides of the rotation center of the rotating part 3, there are sliding grooves 31 respectively. The two sliding grooves 31 are symmetrically arranged on both sides of the rotation center of the rotating part. The first extension part 12 is provided with a first clamping block 14, and the second extension part 22 is provided with a second clamping block 24. The first clamping block 14 and the second clamping block 24 are respectively movably connected to the two sliding grooves 31; the first clamping block 14 and the second clamping block 24 are arranged in a staggered manner. By arranging the sliding grooves 31 on both sides of the rotation center of the rotating part 3 respectively, when the rotating part 3 rotates, the first extension part 12 and the second extension part 22 slide in the corresponding sliding grooves 31 respectively. Since the two sliding grooves 31 are respectively arranged on both sides of the rotation center, when the rotating part 3 rotates, the first extension part 12 and the second extension part 22 approach or move away from each other under the action of the sliding grooves 31, so as to realize the relative approach or separation of the first clamping groove 13 and the second clamping groove 23. The ingenious design of the sliding grooves 31 on the rotating part is used to realize the action linkage of the two bases, reduce the manufacturing cost, and simplify the operation difficulty at the same time. At the same time, the sliding grooves 31 are symmetrically arranged. When the rotating part rotates, under the action of the first clamping block 14 and the second clamping block 24, the movement trends of the first base 11 and the second base 21 are relatively consistent, so as to ensure that the locking or releasing process of the embedded part can be carried out stably and evenly, and avoid the need to tilt the electronic device due to too fast movement on one side, resulting in assembly jams.
[0057] In addition, the first clamping block 14 and the second clamping block 24 are arranged in a staggered manner to prevent the connection line between the centers of the first clamping block 14 and the second clamping block 24 from being parallel to the movement direction of the base during the rotation of the rotating part. The principle is that, as Figure 7 shown, when either the first base 11 or the second base 21 is used as the driving source, its movement will drive the other base to move synchronously through the rotating part 3. If the connection line between the centers of the clamping blocks of the two bases is parallel to the movement direction of the base, if either base is driven again, it may cause the clamping block of the base to slide in the sliding groove 31 and fail to drive the rotating part 3 to rotate, thus causing the two bases to lose their linkage. Through experiments, the first clamping block 14 of the first base 11 and the second clamping block 24 of the second base 21 are arranged in a staggered manner to avoid the above problems.
[0058] The first clip 1 further includes a pushing and pulling part 15. The pushing and pulling part 15 is arranged at one end of the first base 11 away from the first extension part 12. The pushing and pulling part 15 is used to push or pull back the first base 11 so that the rotating part 3 rotates. By setting the pushing and pulling part 15, it is convenient to manually control the first base 11, and further realize the locking and releasing of the clip assembly to the embedded object 7. Specifically, the pushing and pulling part 15 is a pushing and pulling handle.
[0059] Please refer to Figures 1 to 3 , Embodiment 2 of the present utility model is:
[0060] An electronic device includes a main body 4 and a clip assembly as described in the first embodiment above. The first base 11 is slidably disposed on the main body 4, and the second base 21 is slidably disposed on the main body 4. The rotating part 3 is rotatably connected to the main body 4. The main body 4 includes two mounting rails 5. The first base 11 and the second base 21 are respectively movably disposed at both ends of the mounting rail 5. The rotating part 3 is rotatably connected to the surface of the mounting rail 5. The first base 11 and the second base 21 are respectively disposed on the mounting rail 5 to guide the moving directions of the first base 11 and the second base 21 by means of the mounting rail 5. Specifically, the mounting rail 5 is a chute 31 with a fixed direction.
[0061] Please refer to Figure 3 and Figure 6 , elastic buckles 6 are provided on the lower surfaces of the first base 11 and the second base 21, and at least two position-matching stop grooves 51 are provided on the mounting rail 5. By cooperating the elastic buckles 6 with the stop grooves 51 on the mounting rail 5, the moving distances of the first base 11 and the second base 21 are restricted to prevent the two bases from moving excessively. Specifically, there are two stop grooves 51, namely a locking stop groove 51 and a release stop groove 51, which cooperate with the rotating member to define the positions of the first base 11 and the second base 21. Specifically, the stop groove 51 is a "V"-shaped groove to achieve the stability of the clamping of the elastic buckle 6 in the groove.
[0062] Please refer to Figure 5 and Figure 6 , the rotating part 3 includes a turntable 32 and a rotating shaft 33. The turntable 32 is connected to the rotating shaft 33, and the rotating shaft 33 is rotatably connected to the mounting rail 5. The rotating part 3 can rotate around the rotating shaft 33 as the center of self-rotation. By using the turntable 32 as the rotating part 3 to be movably connected to the extension parts of the two bases, the assembly structure is simplified and the manufacturing cost is reduced at the same time.
[0063] A limiting flange 52 is provided on a part of the inner wall of the mounting rail 5, and the limiting flange 52 abuts against the surfaces of the first base 11 and the second base 21. The limiting flange 52 is provided inside the mounting rail 5 to limit the two bases to prevent the first base 11 and the second base 21 from falling off the mounting rail 5. At the same time, the assembly of the mounting rail 5 and the two bases is realized by using the limiting flange 52. The two bases are inserted through the gap between the limiting flange 52 and the mounting rail 5, thus completing the assembly of the bases and the mounting rail 5.
[0064] The mounting rail 5 includes an open end and a closed end; the first base 11 is provided at the open end; the second base 21 is provided at the closed end. Under the action of the rotating part 3, the actions of the two bases are linked to each other, so only the action of one of the bases is required to control the other base. On the basis of providing the pushing and pulling part 15 on the first base 11 as described above, the first base 11 is regarded as the driving part and arranged at the open end, and the second base 21 is regarded as the driven part and arranged at the closed end. The anti-fooling design of the closed end and the open end on the mounting rail 5 facilitates the assembly of the two bases and the mounting rail 5 on the one hand, and facilitates the staff to quickly find the end for manual locking and releasing in the actual operation on the other hand.
[0065] The above are only the embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent transformation made by using the content of the specification and drawings of the present invention, or directly or indirectly applied in the relevant technical fields, shall be equally included in the patent protection scope of the present invention.
Claims
1. A buckle assembly for installing an embedded object, the embedded object having a first flange and a second flange disposed back to back, characterized in that: It includes a first clip, a second clip and a rotating part; The first clip includes a first base and a first extension; the first base is provided with a first clamping groove, the first clamping groove is located at one end of the first base close to the first extension, the first clamping groove is used for clamping the first flange, the first extension is connected to the first base, and the first extension is movably connected to the rotating part; The second clip includes a second base and a second extension; the second base is provided with a second clamping groove, the second clamping groove is located at one end of the second base close to the second extension, the second clamping groove is used for clamping the second flange, the second extension is connected to the second base, and the second extension is movably connected to the rotating part; The rotating part can rotate self - in at least one plane. When the rotating part rotates self - in, the first clamping groove and the second clamping groove approach each other to lock the embedded object; and, the first clamping groove and the second clamping groove move away from each other to release the embedded object.
2. The clip assembly according to claim 1, wherein: On both sides of the self - rotation center of the rotating part, there are sliding grooves respectively, and the first extension and the second extension are respectively movably connected to the two sliding grooves.
3. The clip assembly according to claim 2, wherein: The first extension is provided with a first clamping block, the second extension is provided with a second clamping block, the first clamping block and the second clamping block are respectively movably connected to the two sliding grooves; the two sliding grooves are symmetrically arranged on both sides of the self - rotation center of the rotating part, and the first clamping block and the second clamping block are arranged in a staggered manner.
4. A clip assembly according to claim 1, wherein: The first clip further includes a pushing and pulling part, the pushing and pulling part is arranged at one end of the first base away from the first extension, and the pushing and pulling part is used for pushing or pulling back the first base so that the rotating part rotates self - in.
5. An electronic device, characterized in that: It includes a body and a clip assembly according to any one of claims 1 - 4. The first base is slidably arranged on the body, and, the second base is slidably arranged on the body, and the rotating part is rotatably connected to the body.
6. An electronic device according to claim 5, characterized in that: The body includes at least one mounting rail. The first base and the second base are respectively movably arranged at both ends of the mounting rail, and the rotating part is rotatably connected to the surface of the mounting rail.
7. An electronic device according to claim 6, characterized in that: An elastic buckle is arranged on the lower surface of the first base and / or the second base, and at least two position - matching stop grooves are arranged on the mounting rail.
8. An electronic device according to claim 6, characterized in that: The rotating part includes a turntable and a rotating shaft. The turntable is connected to the rotating shaft, the rotating shaft is rotatably connected to the mounting rail, and the rotating part can rotate with the rotating shaft as the self - rotation center.
9. An electronic device according to claim 6, characterized in that: A limiting flange is arranged on a part of the inner wall of the mounting rail, and the limiting flange abuts against the surfaces of the first base and the second base.
10. An electronic device according to claim 6, wherein: The mounting rail includes an open end and a closed end; the first base is arranged at the open end; the second base is arranged at the closed end.