Buckle locking structure for detection tool
By using structural designs such as bolt connections and locating pins, the problems of easy damage to traditional inspection tooling clips and inconvenient operation have been solved, thereby improving inspection efficiency and accuracy and reducing maintenance costs.
Patent Information
- Application Number
- CN202520531063.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-25
AI Technical Summary
Traditional testing fixtures with snap-fit structures are prone to damaging products when forcibly disassembled, are inconvenient to operate, and are difficult to simulate the actual installation state of the product, affecting testing efficiency and accuracy.
The snap-fit profiler is installed and disassembled using bolt connections. Combined with positioning pins, positioning bolts, and anti-slip pads, it ensures the snap-fit is stable and accurately installed. The bolt connection allows for easy replacement of different models of snap-fit profilers, simplifying the operation process.
It improves testing efficiency and accuracy, reduces maintenance difficulty and cost, and ensures the stability of the testing process and the safety of the products.
Smart Images

Figure CN223876879U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of detection tooling, and specifically relates to a buckle locking structure for detection tooling. BACKGROUND
[0002] In the product research and development and quality detection process, the design and application of detection tooling are crucial;
[0003] In the product detection process, the product is often installed on the detection tooling through the buckle, and if the operation is improper when the product is removed after the detection in the traditional way, especially the product of plastic material, the product is easily damaged due to hard removal, which not only increases the detection cost of the product, but also affects the detection efficiency, so that the product quality cannot be accurately evaluated, in addition, the existing detection tooling buckle structure is often complex, inconvenient to operate, and difficult to simulate the installation state of the product in actual use, so that the accuracy of the detection result is affected.
[0004] To solve the above problems, a buckle locking structure for detection tooling is provided in the present application. CONTENT OF THE UTILITY MODEL
[0005] To solve the problems proposed in the background, the utility model provides a buckle locking structure for detection tooling, which is installed and removed through the screw connection mode of the buckle profiling seat, and the operation of replacing the buckle profiling seat corresponding to different models of detection parts is convenient, which greatly saves time and significantly improves the detection efficiency, the screw connection mode is used for each component, when the tooling fails or needs to be adjusted, the tooling is convenient to disassemble and replace, the maintenance difficulty and cost are reduced, the maintenance time is shortened, and the maintainability and service life of the tooling are improved.
[0006] To achieve the above purpose, the utility model provides the following technical scheme: a buckle locking structure for detection tooling, which comprises a detection tooling bottom plate, a detection part arranged above the detection tooling bottom plate, and a buckle integrally formed at the bottom of the detection part.
[0007] The surface of the detection tooling bottom plate is connected with a clasp through a bolt, the surface of the clasp is provided with a buckle profiling seat, the surface of the buckle profiling seat is provided with a profiling buckle hole matched with the buckle, and the surface of the buckle profiling seat is connected with a positioning bolt three through a thread.
[0008] As an optimal buckle locking structure for detection tooling of the utility model, the surface of the detection tooling bottom plate and one side of the clasp are provided with a locker base, the surface of the locker base is provided with a groove, the locker base is connected with a locker opening and closing plate through the groove, and one end surface of the locker opening and closing plate is provided with a handle.
[0009] As the utility model discloses a kind of buckle locking structure optimization for detection tool, the bottom of the lock base is integrally formed with a positioning pin, and the lock base is clamped on the surface of the detection tool base plate by the positioning pin.
[0010] As the utility model discloses a kind of buckle locking structure optimization for detection tool, the surface of the lock base is threadedly connected with a positioning bolt one, and the lock base is threadedly connected on the surface of the detection tool base plate by the positioning bolt one.
[0011] As the utility model discloses a kind of buckle locking structure optimization for detection tool, the surface of the lock base is symmetrically provided with a hinged plate pressing plate, the surface of the hinged plate pressing plate is threadedly connected with a positioning bolt two, and the hinged plate pressing plate is threadedly connected on the surface of the lock base by the positioning bolt two.
[0012] As the utility model discloses a kind of buckle locking structure optimization for detection tool, the lock base is slidably connected to the bottom surface of the hinged plate pressing plate, and the surface of the lock base is symmetrically fixed with a limiting protrusion.
[0013] As the utility model discloses a kind of buckle locking structure optimization for detection tool, the surface of the lock base is symmetrically fixed with a limiting protrusion.
[0014] As the utility model discloses a kind of buckle locking structure optimization for detection tool, the surface of the lock base is symmetrically fixed with a limiting protrusion.
[0015] Compared with the prior art, the utility model has the advantages that:
[0016] The utility model discloses a kind of buckle locking structure optimization for detection tool, and the surface of the lock base is symmetrically fixed with a limiting protrusion.
[0017] The positioning pin and the positioning bolt are matched with each other to provide accurate installation position for the lock base, so that the lock base is stable and does not shake, and stable and accurate installation can ensure that detection data is accurate and reliable, avoids detection error caused by tool installation deviation, and improves detection precision.
[0018] The components such as the opening and closing plate pressing plate, the limiting protrusion and the anti-skid rubber pad work cooperatively to ensure that the opening and closing plate of the locker slides stably and the travel and position of the opening and closing plate are limited, the anti-skid rubber pad increases the friction force between the opening and closing plate locker and the opening and closing plate of the locker, prevents accidental sliding, avoids damage to the buckle or product due to improper operation, and ensures the stability of the detection process;
[0019] The components are connected by bolts, so that the tooling can be conveniently disassembled and replaced when a fault occurs or adjustment is needed, the maintenance difficulty and cost are reduced, the maintenance time is shortened, and the maintainability and service life of the tooling are improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, and are used together with the embodiments of the present application to explain the present application, and do not constitute a limitation on the present application. In the drawings:
[0021] Figure 1 It is a structural schematic view of the present application;
[0022] Figure 2 It is a structural schematic view of the opening and closing plate pressing plate and the opening and closing plate locker in the present application;
[0023] Figure 3 It is a structural schematic view of the buckle profiling seat and the limiting protrusion in the present application;
[0024] Figure 4 It is a structural schematic view of the yielding hole and the positioning bolt three in the present application;
[0025] Figure 5 It is a structural schematic view of the positioning pin and the opening and closing plate locker in the present application;
[0026] In the drawings:
[0027] 1, detection tooling base plate; 2, detection piece; 3, buckle; 4, locker base; 5, locker opening and closing plate; 6, handle; 7, buckle seat; 8, positioning pin; 9, opening and closing plate locker; 10, opening and closing plate pressing plate; 11, positioning bolt two; 12, buckle profiling seat; 13, profiling buckle hole; 14, positioning bolt one; 15, limiting protrusion; 16, yielding hole; 17, positioning bolt three. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0029] Embodiment
[0030] As Figures 1-5 shown;
[0031] A buckle locking structure for detection tool, comprising a detection tool base plate 1, a detection piece 2 arranged above the detection tool base plate 1, and a buckle 3 integrally formed at the bottom of the detection piece 2.
[0032] The surface of the detection tool base plate 1 is bolted with a clamping seat 7, the surface of the clamping seat 7 is provided with a buckle profiling seat 12, the surface of the buckle profiling seat 12 is provided with a profiling buckle hole 13 matched with the buckle 3, and the surface of the buckle profiling seat 12 is threaded with a positioning bolt three 17, and the buckle profiling seat 12 is bolted to the surface of the clamping seat 7 through the positioning bolt three 17.
[0033] The position accuracy of the profiling buckle hole 13 on the buckle profiling seat 12 can be ensured, so that it is matched with the buckle 3 at the bottom of the detection piece 2, and at the same time, the buckle profiling seat 12 is installed and disassembled conveniently by means of bolt connection. When different models of detection pieces 2 need to be detected, the buckle profiling seat 12 matched therewith can be quickly replaced without complicated operation. When different models of housings are detected, the corresponding buckle profiling seat 12 can be quickly replaced, a lot of time is saved, and the detection efficiency is improved.
[0034] The surface of the detection tool base plate 1 and located at one side of the clamping seat 7 is provided with a locker base 4, the surface of the locker base 4 is provided with a groove, the locker base 4 is slidably connected in the groove, and one end surface of the locker base 4 is provided with a handle 6.
[0035] By installing the handle 6 on the locker opening and closing plate 5, the operator can directly hold the handle 6 and easily pull the locker opening and closing plate 5 to slide in the groove. The operator can accurately control the movement of the opening and closing plate through the handle 6 to realize the unlocking and locking of the buckle 3, avoid the damage of the buckle 3 or product caused by inconvenient operation, improve the detection efficiency and safety of product detection.
[0036] The bottom of the locker base 4 is integrally formed with a positioning pin 8, and the locker base 4 is clamped on the surface of the detection tool base plate 1 through the positioning pin 8.
[0037] The positioning pin 8 cooperates with the corresponding pin hole on the detection tool base plate 1 to provide an accurate installation position for the locker base 4. During installation, the operator only needs to align the positioning pin 8 with the pin hole and insert it, so that the locker base 4 can be quickly and accurately placed in the predetermined position, avoiding installation deviation caused by human operation error.
[0038] The surface of the lock base 4 is screw-connected with a positioning bolt 1, and the lock base 4 is screw-connected to the surface of the detection tool base plate 1 through the positioning bolt 1.
[0039] The close screw connection can effectively limit the shaking and displacement of the lock base 4, and even if the detection device generates a large impact force on the lock during the detection process, the positioning bolt 1 can evenly disperse the force to the detection tool base plate 1, avoiding the shaking of the lock base 4, and providing a stable basis for the detection work.
[0040] The surface of the lock base 4 is symmetrically provided with an opening and closing plate pressing plate 10, and the surface of the opening and closing plate pressing plate 10 is screw-connected with a positioning bolt 2 11, and the opening and closing plate pressing plate 10 is screw-connected to the surface of the lock base 4 through the positioning bolt 2 11.
[0041] The opening and closing plate pressing plate 10 covers the lock opening and closing plate 5, which can effectively limit the displacement of the lock opening and closing plate 5 in the vertical direction, and avoid the shaking of the lock opening and closing plate 5 due to external force or its own gravity during the sliding process, and ensure that it always smoothly slides along the predetermined track.
[0042] The lock opening and closing plate 5 is slidingly connected to the bottom surface of the opening and closing plate pressing plate 10, and the surface of the lock opening and closing plate 5 is symmetrically fixed with a limiting protrusion 15.
[0043] The lock opening and closing plate 5 slides on the bottom surface of the opening and closing plate pressing plate 10, which provides a stable and precise sliding track for it, and this structure design can effectively constrain the movement path of the lock opening and closing plate 5, so that it can only smoothly slide in a specific direction, avoiding shaking and deviation, and the symmetrically arranged limiting protrusion 15 can accurately limit the sliding stroke of the lock opening and closing plate 5.
[0044] The surface of the lock opening and closing plate 5 is provided with a gap 16, and the gap 16 is slidingly connected with an opening and closing plate locker 9, and one end of the opening and closing plate locker 9 penetrating through the lock opening and closing plate 5 is screw-connected to the surface of the lock base 4.
[0045] When it is necessary to fix the lock opening and closing plate 5 at a specific position, the operator can rotate the opening and closing plate locker 9 to make it tightly screw-connected with the lock base 4, and as the opening and closing plate locker 9 is tightened, it will tightly abut against the lock opening and closing plate 5, and lock it at the current position by using the friction force, preventing it from accidentally sliding due to external interference during the detection process, and ensuring that the buckle 3 is always in a stable locked or unlocked state.
[0046] The side of the opening and closing plate locker 9 abutting against the lock opening and closing plate 5 is provided with a non-slip rubber pad.
[0047] When the opening and closing plate lock fastener 9 is tightened and abuts against the interlock opening and closing plate 5, the anti-skid rubber pad can generate greater friction between the two, and the anti-skid rubber pad can ensure that the interlock opening and closing plate 5 is always stably kept in the locked position, ensuring that the buckle 3 is in a reliable locked or unlocked state, thereby improving the accuracy and stability of the detection result.
[0048] The working principle and use process of the utility model are as follows: before detection, first, the detection tool base plate 1 is stably placed on the workbench, the interlock base 4 is accurately clamped on the surface of the detection tool base plate 1 through the positioning pin 8, further fixed by using the positioning bolt one 14, the interlock base 4 is ensured to be stable and not to shake, then, the opening and closing plate pressing plate 10 is symmetrically installed on the surface of the interlock base 4, the opening and closing plate pressing plate 10 is tightly connected with the interlock base 4 by being tightened through the positioning bolt two 11, at this time, the interlock opening and closing plate 5 is inserted into the groove on the surface of the interlock base 4, and the interlock opening and closing plate 5 can smoothly slide in the groove, and the sliding connection of the interlock opening and closing plate 5 on the bottom surface of the opening and closing plate pressing plate 10 is ensured, the handle 6 is installed on the surface of one end of the interlock opening and closing plate 5, facilitating subsequent operation, in addition, the opening and closing plate lock fastener 9 passes through the accommodation hole 16 on the surface of the interlock opening and closing plate 5 and is threadedly connected on the surface of the interlock base 4, the locking state of the interlock opening and closing plate 5 can be controlled by adjusting the tightening degree of the opening and closing plate lock fastener 9, in the embodiment, the side, where the opening and closing plate lock fastener 9 abuts against the interlock opening and closing plate 5, is provided with the anti-skid rubber pad, which effectively increases the friction between the two, so that the locking effect is more reliable, and accidental sliding of the interlock opening and closing plate 5 in the detection process is avoided.
[0049] On the surface of the clamping seat 7, the buckle profiling seat 12 is firmly installed by using the positioning bolt three 17, the position of the profiling buckle hole 13 on the surface of the buckle profiling seat 12 is ensured to be accurate, after the above installation is completed, the entire structure is debugged, whether the connection of each component is stable and whether each movable component can normally move are checked, for example, whether the interlock opening and closing plate 5 can smoothly slide in the groove by pulling the handle 6, whether the opening and closing plate lock fastener 9 can effectively lock and unlock the interlock opening and closing plate 5, etc.
[0050] After the installation and debugging are completed, the electronic equipment shell can be detected, the electronic equipment shell with the buckle 3 is taken, the buckle 3 is aligned with the profiling buckle hole 13 on the surface of the buckle profiling seat 12, then the electronic equipment shell is gently pressed, the buckle 3 is clamped into the profiling buckle hole 13, at this time, the electronic equipment shell is accurately installed at the specified position of the detection tool, and the installation state of the electronic equipment shell in the actual use scene is simulated, in the detection process, various performance detections of the electronic equipment shell can be carried out, such as electrical performance test, structural strength test, etc.
[0051] After the detection is completed, the electronic device shell needs to be taken off from the detection tool, first, the closing plate locker 9 is loosened, so that it no longer locks the closing plate 5, then the handle 6 is pulled to drive the closing plate 5 to slide backward along the groove, because of the structural association between the closing plate 5 and the buckle profiling seat 12, with the sliding of the closing plate 5, the restriction on the buckle 3 is gradually released, the unlocking of the buckle 3 is realized, at this time, the electronic device shell can be easily taken off from the detection tool, the whole process avoids the hard disassembly of the electronic device shell, effectively protects the product, and reduces the damage risk of the product in the detection process.
[0052] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing embodiments of the present application are described in detail, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included within the scope of the present application.
Claims
1. A buckle locking structure for detection tool, comprising a detection tool base plate (1) and a detection piece (2) arranged above the detection tool base plate (1) and a buckle (3) integrally formed at the bottom of the detection piece (2). characterized in that The surface of the detection tool base plate (1) is bolted with a clamping seat (7), the surface of the clamping seat (7) is provided with a buckle profiling seat (12), the surface of the buckle profiling seat (12) is provided with a profiling buckle hole (13) matched with the buckle (3), the surface of the buckle profiling seat (12) is threaded with a positioning bolt three (17), and the buckle profiling seat (12) is bolted on the surface of the clamping seat (7) through the positioning bolt three (17).
2. The buckle locking structure for a detection tooling according to claim 1, wherein: The surface of the detection tool base plate (1) and located on one side of the clamping seat (7) is provided with a locker base (4), the surface of the locker base (4) is provided with a groove, the locker opening and closing plate (5) is slidably connected in the groove, and one end surface of the locker opening and closing plate (5) is provided with a handle (6).
3. The buckle locking structure for a detection tooling according to claim 2, wherein: The bottom of the locker base (4) is integrally formed with a positioning pin (8), and the locker base (4) is clamped on the surface of the detection tool base plate (1) through the positioning pin (8).
4. The buckle locking structure for a detection tooling according to claim 2, wherein: The surface of the locker base (4) is threaded with a positioning bolt one (14), and the locker base (4) is threaded on the surface of the detection tool base plate (1) through the positioning bolt one (14).
5. The buckle locking structure for a detection tooling according to claim 2, wherein: The surface of the locker base (4) is symmetrically provided with an opening and closing plate pressing plate (10), the surface of the opening and closing plate pressing plate (10) is threaded with a positioning bolt two (11), and the opening and closing plate pressing plate (10) is threaded on the surface of the locker base (4) through the positioning bolt two (11).
6. The buckle locking structure for a detection tooling according to claim 2, wherein: The locker opening and closing plate (5) is slidably connected to the bottom surface of the opening and closing plate pressing plate (10), and the surface of the locker opening and closing plate (5) is symmetrically fixed with a limiting lug (15).
7. The buckle locking structure for a detection tooling according to claim 2, wherein: The surface of the locker opening and closing plate (5) is provided with a let hole (16), the let hole (16) is slidably connected with an opening and closing plate locker (9), and one end of the opening and closing plate locker (9) is threaded on the surface of the locker base (4) and penetrates the locker opening and closing plate (5).
8. The buckle locking structure for a detection tooling according to claim 7, wherein: The side of the opening and closing plate locker (9) abutting against the locker opening and closing plate (5) is provided with an antiskid rubber pad.