Quick release lock catch structure and electronic equipment
By using a quick-release locking mechanism and drive component design, the problem of stable disassembly of the PDA scanner body and handle is solved, achieving a secure connection and easy operation.
Patent Information
- Application Number
- CN202423188591.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-23
AI Technical Summary
In the existing technology, the connection structure between the body and handle of the PDA scanner is difficult to simultaneously meet the requirements of easy disassembly and stable installation, which can easily lead to the body falling off or scratching the body during disassembly.
It adopts a quick-release locking structure, including a bottom shell, a clamping mechanism and a drive assembly. Through the cooperation of the clamping part and the elastic reset part of the clamping mechanism, combined with the operation of the drive assembly, it can achieve convenient disassembly and a stable connection.
It achieves a stable connection between the PDA scanner body and the handle, making operation convenient and disassembly simple, avoiding problems such as the body falling off and being scratched.
Smart Images

Figure CN223681334U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to POS machine technical field especially relates to a quick release lock catch structure and electronic equipment. BACKGROUND
[0002] The PDA gun is also called PDA scanning gun, is a kind of data processing terminal, has automatic identification and database integration technology.The main function of PDA gun is to obtain commodity information and carry out real-time transmission, and it is convenient for the management of commodity.In practical application, it has operating system, display card, screen and keyboard, and can also transmit data, and it is very convenient to use.In current logistics industry, PDA gun plays a very important role, and greatly improves work efficiency.
[0003] The PDA gun includes body and handle part, and the handle part is designed to be more comfortable and convenient to operate.Usual ergonomic principles are considered to ensure that users will not feel tired in long-time use.The design of handle part also makes operation more convenient.Exemplarily, in warehouse management, users need to frequently scan, input and query, and the position and shape of handle are designed to facilitate single-handed operation of users, reduce operation difficulty and time.
[0004] In prior art, the cooperation between body and handle part is usually realized by plastic buckle, which generally cannot meet the requirements of convenient disassembly and stable installation.In order to facilitate disassembly, it is easy to make installation not stable enough, and the use process is not firm and reliable, and the body is easy to fall off.If the installation is stable, it is difficult to disassemble, and the body will be scratched when disassembling.
[0005] Therefore, it is necessary to provide a quick release lock catch structure which is convenient to disassemble and stable to install. UTILITY MODEL CONTENTS
[0006] The utility model aims at providing a quick release lock catch structure which is convenient to disassemble and stable to install.
[0007] Another purpose of the utility model is to provide an electronic equipment which is convenient to disassemble and stable to install.
[0008] To achieve the above purpose, the utility model provides a quick release lock catch structure, which comprises:
[0009] Bottom shell;
[0010] The clamping mechanism comprises multiple sets of clamping assemblies which are slidably arranged on both sides of the bottom shell; the clamping assemblies on both sides form a containing space on the bottom shell for containing a product to be clamped; each clamping assembly comprises a clamping piece, and an elastic reset piece is arranged in the clamping piece; when the clamping assembly is clamped, the elastic reset piece is in a compressed state or the elastic reset piece is unfolded to an initial position;
[0011] The driving assembly is movably arranged on the bottom shell and is linked with the clamping mechanism; the driving assembly is operated to simultaneously move the clamping assemblies on both sides of the bottom shell outward to release the clamping mechanism; the clamping assemblies on both sides are manually or automatically moved inward, and the clamping mechanism is locked through the driving assembly.
[0012] Compared with the prior art, the quick release lock structure of the utility model is clamped through the clamping mechanism, and the clamping mechanism is locked or released through the driving assembly, which is convenient to operate and stable to clamp. The quick release lock structure comprises a bottom shell, a clamping mechanism and a driving assembly. The clamping mechanism and the driving assembly are arranged on the bottom shell, the clamping mechanism comprises multiple sets of clamping assemblies, and the multiple sets of clamping assemblies are slidably arranged on both sides of the bottom shell, so that the products contained in the containing space can be clamped on both sides. Each clamping assembly comprises a clamping piece, and an elastic reset piece is arranged in the clamping piece. In some cases, when the clamping assembly is clamped, the elastic reset piece is in an unfolded state to an initial position, and when it is released, the elastic reset piece is in a compressed state and has a tendency to reset the clamping assembly to a clamped state. In other cases, when the clamping assembly is clamped, the elastic reset piece is in a compressed state and has a tendency to reset the clamping assembly to a released state. The specific role of the elastic reset piece is realized according to the specific structure. On the other hand, the driving assembly is movably arranged on the bottom shell and is linked with the clamping mechanism; the driving assembly is operated to simultaneously move the clamping assemblies on both sides of the bottom shell outward to release the clamping mechanism. The release of the clamping mechanism is completed by operating the driving assembly. The clamping assemblies are simultaneously moved inward, and the clamping assemblies can be manually or automatically moved inward and the clamping mechanism is locked through the driving assembly. The quick release lock structure of the utility model is convenient to operate, simple to disassemble, and stable to clamp the products.
[0013] Preferably, a sliding groove is formed in the bottom of the clamping piece, a sliding block is arranged on the bottom shell, and the clamping piece slides along the sliding block through the sliding groove to be locked or released.
[0014] Preferably, a cover plate is further arranged, a limiting sliding groove is further formed in the clamping piece, a limiting block is protrusively arranged in the limiting sliding groove of the bottom shell, the clamping piece is forced to slide back and forth along the limiting block through the limiting sliding groove, and the cover plate covers the clamping piece and the driving assembly and is connected to the limiting block.
[0015] Preferably, the bottom shell is provided with a material blocking portion protruding upward along the periphery, and the material blocking portion is provided with a first clamping portion protruding toward the accommodating space.
[0016] Preferably, the clamping member is provided with a mounting slot penetrating therethrough, the bottom shell is provided with a blocking block protruding upward, the blocking block is located in the mounting slot, and the elastic reset member is located in the mounting slot and connected to the clamping member at one end and to the blocking block at the other end.
[0017] Preferably, the bottom shell is further provided with a through slot penetrating therethrough, the driving assembly comprises a driving member, the driving member comprises a handle and a driving portion, the driving portion is located in the bottom shell, one end of the handle extends out of the bottom shell through the through slot, and the handle is operated to push the driving portion to slide in the bottom shell.
[0018] Preferably, the clamping member is provided with a pushing inclined surface matched with the driving portion on a surface close to the driving assembly, the driving portion is provided with a driving inclined surface matched with the pushing inclined surface, the handle is slid along the through slot to drive the driving inclined surface to push the pushing inclined surface, so that the clamping member is moved to the outside to be released, and the elastic reset member always has a tendency to drive the clamping member to return to the clamping state.
[0019] Preferably, the bottom shell is provided with a matching slot penetrating therethrough, the clamping member is provided with a slot body penetrating therethrough, the driving assembly comprises a button and an elastic member, one end of the button sequentially passes through the matching slot and the slot body and can lock the clamping member in the slot body, the button is pressed to make the button disengage from the clamping member to release the clamping member, and the elastic reset member compressed in the clamping member drives the clamping member to move to the outside.
[0020] Preferably, the button is provided with a locking portion protruding upward for locking the clamping member, the slot body is provided with a locking slot matched with the locking portion, the locking slot is provided with a sliding groove for the locking portion to slide, and the locking portion is located in the locking slot to lock the clamping member; the button is pressed to make the locking portion disengage from the locking slot, the clamping member is released and moves to the outside under the action of the elastic reset member and the sliding groove slides along the locking portion; the clamping member is pressed and slid until the locking slot is located below the locking portion, the elastic member always has a tendency to drive the button to return and drive the locking portion to be locked in the locking slot.
[0021] To achieve the above-mentioned another object, the utility model also provides a kind of electronic equipment, including equipment body and the shell for clamping equipment body, shell is provided with above-mentioned quick release lock structure.
[0022] Compared with prior art, the electronic equipment of the utility model, equipment body can be firmly clamped in shell, and disassembly is convenient. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor on the premise of not paying creative labor.
[0024] Figure 1 It is the structure diagram of the quick release lock catch structure provided by an embodiment of the present application.
[0025] Figure 2 It is Figure 1 The structure diagram of another angle.
[0026] Figure 3 It is the structure diagram of the quick release lock catch structure at an angle provided by an embodiment of the present application.
[0027] Figure 4 It is Figure 3 The structure diagram of another angle without the driving member.
[0028] Figure 5 It is Figure 4 The structure diagram of the middle bottom shell.
[0029] Figure 6 It is Figure 4 The structure diagram of the middle clamping member.
[0030] Figure 7 It is Figure 3 The structure diagram of the driving member.
[0031] Figure 8 It is the structure sectional view of the quick release lock catch structure provided by another embodiment of the present application.
[0032] Figure 9 It is Figure 8 The structure diagram of the quick release lock catch structure at an angle.
[0033] Figure 10 It is Figure 9 The structure diagram of the middle bottom shell.
[0034] Figure 11 It is Figure 9 The structure diagram of the middle clamping member.
[0035] Figure 12 It is Figure 9 The structure diagram of the driving assembly.
[0036] Figure 13 It is the structure diagram of the electronic device provided by an embodiment of the present application.
[0037] Explanation of reference signs:
[0038] 1000, electronic device;
[0039] 100, quick-release lock structure;
[0040] 10, bottom shell; 10', bottom shell (another embodiment); 11, material blocking part; 111, first buckle; 12, through slot; 13, recess; 14, sliding block; 15, blocking block; 16, limiting block; 17, matching groove;
[0041] 20, clamping mechanism; 201, clamping assembly; 202, accommodating space; 21, clamping piece; 21', clamping piece (another embodiment); 211, clamping part; 212, second buckle; 213, mounting groove; 214, limiting sliding groove; 215, pushing inclined surface; 216, sliding groove; 217, mounting column; 218, groove body; 2181, locking groove; 2182, sliding groove; 22, elastic reset piece;
[0042] 30, driving assembly; 31, driving piece; 311, handle; 312, driving part; 313, driving inclined surface; 314, sliding part; 32, button; 321, locking part; 33, elastic piece;
[0043] 40, cover plate;
[0044] 50, handle;
[0045] 200, device body. DETAILED DESCRIPTION
[0046] In order to illustrate the technical content and structural features of the utility model, the following further description is made in combination with the embodiments and the accompanying drawings.
[0047] Please refer to Figure 1 and Figure 2The utility model provides a kind of quick-release lock catch structure 100, can be used to clamp product, and it is convenient to disassemble.Product can be electronic equipment 1000 or other product needing to be clamped.Exemplarily, product can be PDA rifle body.Quick-release lock catch structure 100 includes bottom shell 10, clamping mechanism 20 and drive assembly 30.Clamping mechanism 20 includes multiple sets of clamping assembly 201, and multiple sets of clamping assembly 201 are slidably arranged on the both sides of bottom shell 10, to be able to from two sides to the product in middle clamps.Two sides of clamping assembly 201 form accommodating space 202 for accommodating the product to be clamped on bottom shell 10.Each set of clamping assembly 201 includes clamping piece 21, and clamping piece 21 is provided with elastic reset piece 22.In some embodiments, when clamping assembly 201 clamps, elastic reset piece 22 is in compression state, and constantly has the tendency to drive clamping assembly 201 to slide to both sides to reset to release state.In some embodiments, when clamping assembly 201 clamps, elastic reset piece 22 is unfolded to initial position.Elastic reset piece 22 unfolds reset and drives clamping assembly 201 to clamp, and when clamping assembly 201 is in release state, elastic reset piece 22 is compressed, and elastic reset piece 22 constantly has the tendency to drive clamping assembly 201 to reset to clamping state.On the other hand, drive assembly 30 is movably arranged on bottom shell 10 and is linked with clamping mechanism 20.Operating drive assembly 30 to make the clamping assembly 201 of the both sides of bottom shell 10 simultaneously move to outside to make clamping mechanism 20 release lock.Two sides of clamping assembly 201 manually or automatically move to inside, and clamping mechanism 20 is locked by drive assembly 30, to make clamping mechanism 20 keep clamping lock state.
[0048] Compared with the prior art, the quick release lock catch structure 100 clamps the body of the PDA gun through the clamping mechanism 20, and locks or releases the clamping mechanism 20 through the driving assembly 30, so that the operation is convenient and the clamping is stable. The quick release lock catch structure 100 comprises a bottom shell 10, a clamping mechanism 20 and a driving assembly 30. The clamping mechanism 20 and the driving assembly 30 are arranged on the bottom shell 10, the clamping mechanism 20 comprises a plurality of clamping assemblies 201, and the plurality of clamping assemblies 201 are slidably arranged on both sides of the bottom shell 10, so that the products arranged in the accommodation space 202 can be clamped on both sides. Each clamping assembly 201 comprises a clamping piece 21, and the clamping piece 21 is provided with an elastic reset piece 22. In some cases, the elastic reset piece 22 is in an expanded initial position when the clamping assembly 201 is clamped, and is in a compressed state when it is released, and always has a tendency to reset the clamping assembly 201 to the clamped state. In other cases, the elastic reset piece 22 is in a compressed state when the clamping assembly 201 is clamped, and always has a tendency to reset the clamping assembly 201 to the released state. The specific effect of the elastic reset piece 22 is realized according to the specific structure. On the other hand, the driving assembly 30 is movably arranged on the bottom shell 10 and is linked with the clamping mechanism 20, and the driving assembly 30 is operated to make the clamping assemblies 201 on both sides of the bottom shell 10 move outward at the same time to release the clamping mechanism 20. The release of the clamping mechanism 20 is completed by operating the driving assembly 30. The clamping assemblies 201 move inward at the same time, and the clamping assemblies 201 can be manually or automatically moved inward, and the clamping mechanism 20 is locked by the driving assembly 30. The quick release lock catch structure 100 of the utility model is convenient to operate, simple to disassemble, and the clamping of the product is stable.
[0049] Please refer to Figure 5 、 Figure 6 、 Figure 10 and Figure 11 In some optional embodiments, the clamping piece 21 is provided with a sliding groove 216 at the bottom, and a sliding block 14 is arranged on the bottom shell 10. The clamping piece 21 is installed on the sliding block 14 through the sliding groove 216 and can slide back and forth along the sliding block 14 to lock or release each other. The sliding block 14 and the sliding groove 216 are arranged, the sliding is more reliable, there is no misalignment, and the clamping effect is better. In the embodiment, the number of clamping assemblies 201 is two, and the two clamping assemblies 201 are symmetrically arranged on both sides of the bottom shell 10, and the two clamping assemblies 201 share the sliding block 14.
[0050] Please refer to Figure 1 and Figure 2In some alternative embodiments, the quick release buckle structure 100 further comprises a cover plate 40 covering the clamping member 21 and the driving assembly 30 for limiting the clamping member 21 and the driving assembly 30 in the longitudinal direction. A limiting sliding groove 214 is further provided on the clamping member 21, and the bottom shell 10 is provided with a limiting block 16 protruding in the limiting sliding groove 214. The limiting block 16 can limit the sliding range of the clamping member 21 and also assist the sliding of the clamping member 21. When the clamping member 21 is forced to slide along the sliding block 14, the clamping member 21 simultaneously slides back and forth along the limiting block 16 through the limiting sliding groove 214. The cover plate 40 is connected to the limiting block 16 by screws, and the cover plate 40 can position the clamping member 21 and the driving assembly 30 in the longitudinal direction without affecting the movement of the clamping member 21 and the driving assembly 30.
[0051] Referring to Figures 1 to 6 and Figures 8 to 10 In some alternative embodiments, the bottom shell 10 is provided with a material blocking portion 11 protruding upward from the periphery of the bottom shell 10. The material blocking portion 11 can wrap the product in the accommodation space 202. The material blocking portion 11 is provided with a first buckle 111 protruding upward from the periphery of the material blocking portion 11 towards the accommodation space 202. The first buckle 111 can better secure the product in the accommodation space 202. On the other hand, the clamping member 21 is provided with a clamping portion 211 protruding upward from the clamping member 21. The clamping portion 211 is provided with a second buckle 212 protruding upward from the clamping portion 211 towards the accommodation space 202. The clamping portion 211 is used to clamp the product in the accommodation space 202, and the second buckle 212 is used to reinforce the clamping of the clamping portion 211, so that the product is more stably placed in the accommodation space 202.
[0052] Referring to Figure 4 , Figure 6 , Figure 9 and Figure 11 In some alternative embodiments, the clamping member 21 is provided with a mounting groove 213 extending therethrough. On the other hand, the bottom shell 10 is provided with a stop block 15 protruding therefrom, and the stop block 15 is located in the mounting groove 213. The elastic return member 22 is located in the mounting groove 213 and connected to the clamping member 21 at one end and to the stop block 15 at the other end. The clamping member 21 is further provided with a mounting column 217 protruding therefrom for mounting the elastic return member 22. The elastic return member 22 is a spring, and one end of the spring is sleeved on the mounting column 217 and the other end is connected to the stop block 15. The mounting column 217 can guide the spring, so that the overall movement is smoother.
[0053] Referring to Fig Figures 3 to 7In some alternative embodiments, a through slot 12 is formed on the bottom shell 10. The driving assembly 30 comprises a driving member 31. The driving member 31 comprises a handle 311 and a driving portion 312, which are formed as one piece. The driving portion 312 is located in the bottom shell 10, and one end of the handle 311 extends out of the bottom shell 10 through the through slot 12 for easy operation. The handle 311 is operated to push the driving portion 312 to slide in the bottom shell 10. Specifically, the clamping members 21 are provided with pushing inclined surfaces 215 on the surface close to the driving assembly 30, and the driving portion 312 is provided with driving inclined surfaces 313 corresponding to the pushing inclined surfaces 215. In this embodiment, the handle 311 is operated to slide along the through slot 12 to push the driving inclined surfaces 313 to push the pushing inclined surfaces 215, so that the clamping members 21 are released to move outward. The handle 311 extends out of the bottom shell 10 at the through slot 12, and is pushed to slide in the through slot 12, so that the driving inclined surfaces 313 on the driving portion 312 push the pushing inclined surfaces 215 on the clamping members 21 to convert the longitudinal movement into the lateral movement, and then the clamping members 21 on both sides slide to the sides to release the products in the accommodation space 202. The driving portion 312 is further provided with a sliding portion 314, and the bottom shell 10 is provided with a recess 13 for the sliding portion 314 to slide. The driving member 31 is limited by the cover plate 40, and the handle 311 is pushed to make the driving member 31 slide along the recess 13 by the sliding portion 314 to push the clamping members 21 on both sides. In this embodiment, the clamping members 21 are compressed during the outward sliding process, and the compressed elastic return members 22 always have the tendency to drive the clamping members 21 to return to the clamping state.
[0054] Please refer to Figures 8 to 12In some alternative embodiments, the bottom shell 10' is provided with a matching slot 17, and the clamping member 21' is provided with a slot 218. In this embodiment, the driving assembly 30 comprises a button 32 and an elastic member 33. One end of the button 32 passes through the matching slot 17 and the slot 218 in sequence, and can lock the clamping member 21' in the slot 218. Pressing the button 32 to release the button 32 from the clamping member 21' to release the clamping member 21', and the compressed elastic return member 22 in the clamping member 21' drives the clamping member 21' to move outward. Specifically, the button 32 is provided with a locking portion 321 for locking the clamping member 21', and the slot 218 is provided with a locking slot 2181 matched with the locking portion 321. The locking slot 2181 is provided with a sliding groove 2182 for the locking portion 321 to slide, and the locking portion 321 is located in the locking slot 2181 to lock the clamping member 21'. Pressing the button 32 to release the locking portion 321 from the locking slot 2181, and the clamping member 21' is released and moves outward under the action of the elastic return member 22 and the sliding groove 2182 slides along the locking portion 321; press the sliding clamping member 21' until the locking slot 2181 is located below the locking portion 321, and the elastic member 33 always has a tendency to reset the button 32 and reset the locking portion 321 to be locked in the locking slot 2181. It can be understood that when the locking portion 321 of the button 32 is engaged in the locking slot 2181, the clamping mechanism 20 is locked, and the clamping assembly 201 remains in the clamping state. When the button 32 is pressed upward, the elastic member 33 is compressed between the cover plate 40 and the button 32, and the locking portion 321 is released from the locking slot 2181. At this time, the locking force is released, the compressed elastic return member 22 in the clamping assembly 201 drives the clamping member 21' to slide outward, and the clamping mechanism 20 is in the release state, and the product in the accommodation space 202 can be taken out. When the clamping member 21' slides, the sliding groove 2182 slides along the locking portion 321 to release the locking portion 321 from the locking slot 2181, and the elastic member 33 remains compressed and always has a tendency to reset the button 32. When the clamping assembly 201 slides inward, the sliding groove 2182 slides along the locking portion 321 until the locking portion 321 is aligned with the locking slot 2181. At this time, the elastic member 33 is elastically reset, and the locking portion 321 is locked in the locking slot 2181 to release the clamping assembly 201. Since the locking portion 321 limits the clamping assembly 201 in the direction of movement of the clamping assembly 201, the clamping assembly 201 continues to remain in the clamping and locking state, the product in the accommodation space 202 is clamped, and the elastic return member 22 in the clamping assembly 201 is in a compressed state and has a state of releasing the clamping member 21.
[0055] Please refer to Figure 13The utility model also provides an electronic equipment 1000, the electronic equipment 1000 can be PDA pistol. Electronic equipment 1000 includes device body 200 and the shell for clamping solid device body 200. Device body 200 is the body of PDA pistol, and the shell is provided with handle 50, can be more convenient to hold operation. Among them, still be provided with above-mentioned quick release lock catch structure 100 on the shell, to make device body 200 can be more firmly installed in the shell, and disassembly is more convenient. Compared with prior art, the electronic equipment 1000 of the utility model, device body 200 can be firmly clamped in the shell, and disassembly is convenient.
[0056] As Figures 1 to 13 The utility model discloses electronic equipment 1000 includes quick release lock catch structure 100, through the clamping mechanism 20 in quick release lock catch structure 100 to the body of PDA pistol is clamped, and through drive assembly 30 to lock clamping mechanism 20 or release lock clamping mechanism 20, convenient operation and clamping firm. Quick release lock catch structure 100 includes bottom shell 10, clamping mechanism 20 and drive assembly 30. Clamping mechanism 20 and drive assembly 30 are all set up on bottom shell 10, and clamping mechanism 20 includes multiple sets of clamping assembly 201, and multiple sets of clamping assembly 201 are symmetrically set up on the both sides of bottom shell 10 and slide, to be clamped on the product in the accommodation space 202 on both sides. Every clamping assembly 201 includes clamping piece 21, and clamping piece 21 is provided with elastic reset piece 22. In some cases, as Figure 4 The elastic reset piece 22 is in the state of unfolding to initial position when clamping assembly 201 clamps, and is in the state of being compressed when loosening, and always has the tendency of driving clamping assembly 201 to reset to the clamping state. In another case, as Figure 9 The elastic reset piece 22 is in the state of being compressed when clamping assembly 201 clamps, and always has the tendency of driving clamping assembly 201 to reset to the loosening state. The specific effect of elastic reset piece 22 is realized according to the specific structure, which is not limited here. On the other hand, drive assembly 30 is movably arranged on bottom shell 10 and is linked with clamping mechanism 20, and drive assembly 30 is operated to make the clamping assembly 201 on the both sides of bottom shell 10 move outward to release lock clamping mechanism 20. The release lock of clamping mechanism 20 is completed by operating drive assembly 30. The clamping assembly 201 moves inward, and the clamping assembly 201 can move inward manually or automatically, and clamping mechanism 20 is locked by drive assembly 30. The quick release lock catch structure 100 of the utility model is convenient to operate, simple to disassemble, and the clamping of the product is firm.
[0057] The above only discloses the preferred embodiment of the utility model, and cannot limit the scope of the utility model, so equivalent changes made according to the utility model claims all belong to the scope covered by the utility model.
Claims
1. A quick release carabiner structure, characterized by, The utility model relates to a product clamping device, including: A bottom shell; A clamping mechanism including multiple sets of clamping components, the multiple sets of clamping components are slidably arranged on both sides of the bottom shell, and the clamping components on both sides form a containing space for containing a product to be clamped on the bottom shell; each set of clamping components includes a clamping piece, and a resilient reset piece is arranged in the clamping piece; when the clamping components are clamped, the resilient reset piece is in a compressed state or the resilient reset piece is unfolded to an initial position; A drive assembly is movably arranged on the bottom shell and is linked with the clamping mechanism, and the drive assembly is operated to simultaneously move the clamping components on both sides of the bottom shell outward to release the clamping mechanism; the clamping components on both sides are manually or automatically moved inward, and the clamping mechanism is locked by the drive assembly.
2. The quick release carabiner structure according to claim 1, wherein, A sliding groove is formed in the bottom of the clamping piece, a sliding block is arranged on the bottom shell, and the clamping piece slides along the sliding block through the sliding groove to be locked by moving closer to each other or to be released by moving away from each other.
3. The quick release carabiner structure of claim 1, wherein, Further including a cover plate, a limiting sliding groove is further formed through the clamping piece, a limiting block is protrusively arranged in the limiting sliding groove on the bottom shell, and the clamping piece slides back and forth along the limiting block under stress through the limiting sliding groove; the cover plate covers the clamping piece and the drive assembly and is connected to the limiting block.
4. The quick release carabiner structure of claim 1, wherein, A material blocking portion is protrusively arranged on the circumferential side of the bottom shell, a first clamping buckle for clamping is protrusively arranged on the material blocking portion towards the containing space, a clamping portion is protrusively arranged on the clamping piece upwards, and a second clamping buckle for clamping is protrusively arranged on the clamping portion towards the containing space.
5. The quick release carabiner structure of claim 1, wherein, An installation groove is formed through the clamping piece, a stop block is protrusively arranged on the bottom shell, the stop block is located in the installation groove, and the resilient reset piece is located in the installation groove and connected to the clamping piece at one end and to the stop block at the other end.
6. The quick release carabiner structure of claim 1, wherein, A through groove is further formed through the bottom shell, the drive assembly includes a drive piece, the drive piece includes a handle and a drive portion, the drive portion is located in the bottom shell, one end of the handle extends out of the bottom shell through the through groove, and the handle is operated to push the drive portion to slide in the bottom shell.
7. The quick release carabiner structure of claim 6, wherein, A pushing inclined surface matched with the drive portion is arranged on the surface of the clamping piece close to the drive assembly, a drive inclined surface matched with the pushing inclined surface is arranged on the drive portion, the handle is slid along the through groove to drive the drive inclined surface to push the pushing inclined surface, so that the clamping piece moves outward to be released, and the resilient reset piece always has a tendency to reset the clamping piece to a clamping state.
8. The quick release carabiner structure of claim 1, wherein, A matching groove is formed through the bottom shell, a groove body is formed through the clamping piece, the drive assembly includes a button and an elastic piece, one end of the button sequentially passes through the matching groove and the groove body and can lock the clamping piece in the groove body, the button is pressed to make the button separate from the clamping piece to release the clamping piece, and the compressed resilient reset piece in the clamping piece drives the clamping piece to move outward.
9. The quick release carabiner structure of claim 8, wherein, The button is provided with a locking part protruding outward for locking the clamping part, the groove is provided with a locking groove matched with the locking part, the locking groove is provided with a sliding groove for the locking part to slide, and the locking part is located in the locking groove to lock the clamping part; the button is pressed to make the locking part disengage from the locking groove, the clamping part is released and moves outward under the action of the elastic reset part, and the sliding groove slides along the locking part; The clamping part is pressed until the locking groove is located below the locking part, and the elastic part always has a tendency to reset the button and lock the locking part in the locking groove.
10. An electronic device, comprising a device body and a housing for clamping the device body, characterized in that, The shell is provided with the quick release buckle structure as claimed in any one of claims 1-9.