Detection device
By designing adjustable clamping components and a linkage system, the problem that existing testing devices cannot adapt to different types of products has been solved, achieving highly versatile product adhesion testing.
Patent Information
- Application Number
- CN202422961948.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Existing testing devices use fixed positions and angles for clamping components when testing product bonding effects, making them unsuitable for different types of products and resulting in low testing versatility.
A detection device was designed, comprising a loading component, a support component, a linkage component, and a clamping component. The position and tilt orientation of the clamping component can be adjusted by combining the linkage component and the adjustment component. The clamping position of the clamping component is adjusted by rotating a spherical body in the receiving groove. A preset tension is applied by an external driving component to detect the bonding force of different types of products.
It improves the versatility of the detection device, making it applicable to different types of products, ensuring that the clamping parts are stably subjected to the preset tension, and accurately detecting the bonding force of the products.
Smart Images

Figure CN223770022U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to product detection technical field especially relates to a detection device. BACKGROUND
[0002] At present, two components are generally bonded by using colloid in the manufacturing process of electronic products, but the two components are affected by various factors in the bonding process, including temperature, humidity, etc. The combined effect of these factors may cause the two components to be not firmly bonded, so a detection device is usually used to detect the bonding effect of the product.
[0003] The existing detection device detects the product by first loading and fixing one of the components by a fixing member, then clamping the other component by a clamping member, and finally driving the clamping member to apply a preset tension to the clamped component by a driving member, and determining whether the two components are separated to detect whether the two components are firmly bonded. However, the clamping position and angle of the clamping member in the detection device are fixed, which results in that the detection device cannot detect different types of products, and its detection versatility is low. SUMMARY
[0004] In view of the above situation, it is necessary to provide a detection device to improve the detection versatility.
[0005] The embodiment of the application provides a detection device for detecting a product, the product comprising a first workpiece and a second workpiece connected together, comprising:
[0006] A loading assembly for loading the product and fixing the first workpiece;
[0007] A support assembly erected on the loading assembly;
[0008] A linkage assembly comprising a linkage member and an adjusting member, the linkage member movably penetrating the support assembly and being connected to an external driving member, the adjusting member being connected to the linkage member and being provided with a plurality of arc-shaped adjusting portions, the arc-shaped adjusting portions being arranged along the circumference of the adjusting member, each of the arc-shaped adjusting portions comprising a plurality of arc-shaped grooves arranged along the radial direction of the adjusting member;
[0009] The clamping assembly comprises a connecting piece and a clamping piece. One end of the connecting piece is movably arranged in one of the arc-shaped grooves and detachably connected with the adjusting piece. The other end of the connecting piece is provided with a receiving groove and a through hole. The receiving groove is a spherical surface adjacent to one end of the loading assembly. The through hole is arranged on the spherical surface and communicates with the receiving groove. The clamping piece is movably arranged in the through hole and extends into the receiving groove. The clamping piece is provided with a spherical body adjacent to one end of the adjusting piece, which is matched with the spherical surface. The spherical body abuts against the spherical surface. The spherical body is used to rotate in the receiving groove to adjust the clamping piece to a preset orientation. The clamping piece is used to clamp the second workpiece and apply a preset tension to the second workpiece under the driving of the external driving piece to detect the bonding force between the first workpiece and the second workpiece.
[0010] In actual use, the detection device loads the product and fixes the first workpiece through the loading assembly. Then, according to the type of the product, the connecting piece is inserted into a preset position of one of the arc-shaped grooves to adjust the clamping position of the clamping piece. The spherical body rotates in the receiving groove to adjust the clamping piece to a preset orientation. The clamping piece after adjustment stably clamps the second workpiece. Finally, the linkage member applies a preset tension to the second workpiece through the clamping piece under the driving of the external driving member to determine whether the second workpiece is separated from the first workpiece under the action of the preset tension, so as to detect the bonding force between the first workpiece and the second workpiece. The clamping position and the inclined orientation of the clamping piece are adjusted according to the type of the product, so that the detection device is suitable for detecting different types of products, and the detection versatility is improved.
[0011] In some embodiments, the connecting piece comprises:
[0012] The connecting body is movably arranged in the arc-shaped groove and is provided with the receiving groove and the through hole.
[0013] The elastic body is sleeved on the connecting body and located on the side of the adjusting piece away from the loading assembly.
[0014] The sleeve body is sleeved on the elastic body and abuts against the two ends of the elastic body, respectively.
[0015] The locking body and the abutting body are threadedly connected with the connecting body, respectively. The locking body is arranged on the side of the sleeve body away from the elastic body. The abutting body is arranged on the side of the adjusting piece away from the elastic body. The locking body and the abutting body are used to move towards the adjusting piece under the action of an external force, so that the sleeve body compresses the elastic body to the adjusting piece and fixes the connecting body to the adjusting piece. The locking body and the abutting body are also used to move away from the adjusting piece under the action of an external force, so that the compressed elastic body elastically expands and resets, and drives the connecting body to support the spherical body.
[0016] In some embodiments, the connecting member further comprises:
[0017] a gasket sleeved on the connecting body, opposite sides of the gasket abutting against the adjusting member and the elastic body, respectively.
[0018] In some embodiments, the clamping member further comprises:
[0019] a clamping body, one end of the clamping body movably penetrating the through hole and extending to the accommodating groove, the spherical body being connected with the clamping body;
[0020] a movable body oppositely arranged with the clamping body; and
[0021] a limiting body movably penetrating the movable body and the clamping body, one end of the limiting body being threadedly connected with the clamping body, the other end of the limiting body abutting against a side of the movable body away from the clamping body, the limiting body being used for pushing the movable body to move close to the clamping body under the action of an external force to clamp the second workpiece.
[0022] In some embodiments, the clamping body comprises:
[0023] a clamping main body and a clamping connecting portion, the clamping main body being threadedly connected with the limiting body, the clamping connecting portion movably penetrating the through hole and extending to the accommodating groove, the clamping connecting portion being connected with the spherical body, a cross-sectional area of the clamping connecting portion being smaller than a cross-sectional area of the through hole.
[0024] In some embodiments, the clamping member further comprises:
[0025] a guide body, one end of the guide body being connected with the movable body, the other end of the guide body movably penetrating the clamping body, the guide body being used for guiding a movement direction of the movable body.
[0026] In some embodiments, the support assembly comprises:
[0027] a base arranged on one side of the loading assembly;
[0028] a support member erected above the loading assembly and provided with a placement groove, the placement groove accommodating the linkage member.
[0029] In some embodiments, the support member is provided with a sliding groove, the placement groove is provided with an opening, the opening and the sliding groove are located on the same side of the support member and are in communication, an outer side of the linkage member is provided with a limiting groove, and the support assembly further comprises:
[0030] A stopper movably arranged in the support and having a stop body, the stop body being slidably arranged in the sliding groove, the stop body being used to move into the limiting groove under the action of an external force to stop the linkage.
[0031] In some embodiments, the loading assembly comprises:
[0032] A loading member arranged on one side of the loading assembly and below the adjusting member, the loading member being used to load the first workpiece;
[0033] A rotating member arranged on one side of the loading member and rotationally connected with the loading member;
[0034] A pressing member used to press the first workpiece to the loading member and spaced apart from a receiving groove and a position-avoiding groove, the receiving groove being used to receive the rotating member, and the position-avoiding groove being used to receive the second workpiece;
[0035] A fastening member threadedly connected with one end of the rotating member away from the loading member, the fastening member being used to move close to the pressing member to position the first workpiece to the loading member by resisting the pressing member.
[0036] In some embodiments, the loading assembly further comprises:
[0037] A limiting member, one end of the limiting member being connected with the loading member, and the other end of the limiting member being used to be inserted into the receiving groove to limit the pressing member. BRIEF DESCRIPTION OF DRAWINGS
[0038] Figure 1 A schematic diagram of the three-dimensional structure of the detection device provided in the embodiments of the present application and the product adapted thereto.
[0039] Figure 2 A schematic diagram of the three-dimensional structure of the clamping assembly in the detection device shown. Figure 1
[0040] A schematic diagram of the cross-sectional structure of the clamping assembly in the direction of III-III shown. Figure 3 Figure 2 A schematic diagram of the structure of the support assembly and the linkage assembly in the detection device shown.
[0041] Figure 4 Figure 1 A schematic diagram of the structure of the support assembly and the linkage assembly in the detection device shown.
[0042] Figure 5 A schematic diagram of the three-dimensional structure of the stopper in the support assembly shown. Figure 4
[0043] A schematic diagram of the three-dimensional structure of the pressing member in the detection device shown. Figure 6 Figure 1 A schematic diagram of the three-dimensional structure of the pressing member in the detection device shown.
[0044] Main element symbol explanation: detection device 100, loading assembly 10, loading piece 11, rotating piece 12, pressing piece 13, accommodating groove 131, avoiding groove 132, fastening piece 14, limiting piece 15, supporting assembly 20, base 21, supporting piece 22, arranging groove 221, opening 2211, sliding groove 222, stop piece 23, stop body 231, linkage assembly 30, linkage piece 31, limiting groove 311, adjusting piece 32, arc-shaped adjusting part 321, arc-shaped groove 3211, clamping assembly 40, connecting piece 41, accommodating groove 411, spherical surface 4111, through hole 412, connecting body 413, elastic body 414, sleeve body 415, locking body 416, abutting body 417, gasket 418, clamping piece 42, spherical body 421, clamping body 422, clamping main body 4221, clamping connecting part 4222, movable body 423, limiting body 424, guide body 425, product 200, first workpiece 201, second workpiece 202. DETAILED DESCRIPTION
[0045] The embodiments of the present application will be described in detail below with reference to the drawings, in which the same or similar components have the same or similar designations throughout the drawings and a repeated description is omitted. The embodiments described below are examples in which the present application is applied to the detection device, and the present application is not limited to the embodiments.
[0046] In the description of the present application, it should be understood that the terms indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and are not intended to indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first" and "second" are for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined as "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, it should be noted that the meaning of "a plurality of" is two or more, unless otherwise explicitly specified and limited.
[0047] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the term "connection" should be broadly understood, for example, it can be a fixed connection, or a detachable connection, or an integral connection; it can be a mechanical connection, or an electrical connection or can communicate with each other, it can be a direct connection, or an indirect connection through an intermediate medium, or a communication relationship between two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above-mentioned term in the present application can be understood according to the specific circumstances.
[0048] Some embodiments of the present application will be described in detail with reference to the drawings.
[0049] Please refer to Figure 1 The detection device 100 is used for detecting a product 200, and includes a loading assembly 10, a supporting assembly 20, a linkage assembly 30 and a clamping assembly 40. The product 200 includes a first workpiece 201 and a second workpiece 202 connected together. The first workpiece 201 and the second workpiece 202 can be connected by bonding or welding.
[0050] Please refer to Figure 1 、 Figure 2 and Figure 3 The loading assembly 10 is used for loading the product 200 and fixing the first workpiece 201, and the supporting assembly 20 is arranged on the loading assembly 10. The linkage assembly 30 includes a linkage member 31 and an adjusting member 32. The linkage member 31 is movably arranged in the supporting assembly 20 and is connected to an external driving member (not shown). The adjusting member 32 is connected to the linkage member 31 and is provided with a plurality of arc-shaped adjusting portions 321. The arc-shaped adjusting portions 321 are arranged along the circumference of the adjusting member 32. Each arc-shaped adjusting portion 321 includes a plurality of arc-shaped grooves 3211 arranged along the radial direction of the adjusting member 32. The clamping assembly 40 includes a connecting member 41 and a clamping member 42. One end of the connecting member 41 is movably arranged in one of the arc-shaped grooves 3211 and is detachably connected to the adjusting member 32. The other end of the connecting member 41 is provided with a receiving groove 411 and a through hole 412. The receiving groove 411 is a spherical surface 4111 adjacent to one end of the loading assembly 10. The through hole 412 is arranged on the spherical surface 4111 and is in communication with the receiving groove 411. The clamping member 42 is movably arranged in the through hole 412 and extends into the receiving groove 411. The clamping member 42 is provided with a spherical body 421 adjacent to the adjusting member 32. The spherical body 421 abuts against the spherical surface 4111. The spherical body 421 is used for rotating in the receiving groove 411 to adjust the clamping member 42 to a preset orientation. The clamping member 42 is used for clamping the second workpiece 202 and applying a preset tension to the second workpiece 202 under the driving of the external driving member to detect the bonding force between the first workpiece 201 and the second workpiece 202.
[0051] In actual use, the detection device 100 first loads the assembly 10 with the product 200 and fixes the first workpiece 201, then according to the type of the product 200, the connecting piece 41 is inserted into the preset position of one of the arc-shaped grooves 3211 to adjust the clamping position of the clamping piece 42, the spherical body 421 rotates in the accommodating groove 411 to adjust the clamping piece 42 to the preset orientation, the adjusted clamping piece 42 stably clamps the second workpiece 202, and finally the linkage 31 is driven by the external driving piece to apply a preset tension to the second workpiece 202 through the clamping piece 42 to determine whether the second workpiece 202 is separated from the first workpiece 201 under the action of the preset tension, so as to detect the bonding force between the first workpiece 201 and the second workpiece 202, adjust the clamping position and inclined orientation of the clamping piece 42 according to the type of the product 200, and make the detection device 100 applicable to detecting different types of products 200, thereby improving the detection versatility.
[0052] It can be understood that the number of clamping assemblies 40 can be multiple groups, and the multiple groups of clamping assemblies 40 are inserted into the preset position of one of the arc-shaped grooves 3211 according to the clamping requirement to clamp different positions of the second workpiece 202.
[0053] Please refer to Figure 2 and Figure 3 In some embodiments, the connecting piece 41 includes a connecting body 413, an elastic body 414, a sleeve body 415, a locking body 416, and an abutting body 417. The connecting body 413 is movably inserted into the arc-shaped groove 3211 and is provided with the accommodating groove 411 and the through hole 412. The elastic body 414 is sleeved on the connecting body 413 and located on the side of the adjusting piece 32 away from the loading assembly 10. The sleeve body 415 is sleeved on the elastic body 414 and abuts against both ends of the elastic body 414, respectively. The locking body 416 and the abutting body 417 are threadedly connected with the connecting body 413, respectively. The locking body 416 is located on the side of the sleeve body 415 away from the elastic body 414, and the abutting body 417 is located on the side of the adjusting piece 32 away from the elastic body 414. The locking body 416 and the abutting body 417 are used to move towards the adjusting piece 32 under the action of an external force, so that the sleeve body 415 compresses the elastic body 414 to the adjusting piece 32 and fixes the connecting body 413 to the adjusting piece 32, and are also used to move away from the adjusting piece 32 under the action of an external force, so that the compressed elastic body 414 elastically expands and resets and drives the connecting body 413 to support the spherical body 421. Exemplarily, the elastic body 414 can be a spring, and the locking body 416 and the abutting body 417 can be nuts.
[0054] Thus, when the clamping position of the clamping member 42 needs to be adjusted, the locking body 416 and / or the abutting body 417 move away from the adjusting member 32 under the action of an external force to cancel the locking of the connecting body 413 to the adjusting member 32, so that the connecting body 413 moves relative to the adjusting member 32 under the action of an external force, thereby achieving the function of adjusting the clamping position of the clamping member 42. In addition, after the clamping member 42 completes the adjustment operation, the locking body 416 and the abutting body 417 move towards the adjusting member 32 under the action of an external force, the abutting body 417 abuts against one side of the adjusting member 32 away from the elastic body 414, and the locking body 416 pushes the sleeve body 415 to abut against one side of the adjusting member 32 towards the elastic body 414, so as to fix the connecting body 413 to the preset position of the adjusting member 32, thereby facilitating the linkage member 31 to drive the clamping member 42 to apply a preset tension to the second workpiece 202, and at the same time, the sleeve body 415 directly abuts against the adjusting member 32 under the abutment of the locking body 416, avoiding the gap fit between the sleeve body 415 and the adjusting member 32, which causes the elastic body 414 to offset part of the tension during detection, thereby ensuring that the linkage member 31 stably applies a preset tension to the second workpiece 202. In addition, when the spherical body 421 drives the clamping member 42 to complete the inclination towards the adjustment, the spherical body 421 is separated from the spherical surface 4111 of the accommodating groove 411. First, the abutting body 417 moves away from the adjusting member 32 under the action of an external force to cancel the locking of the connecting body 413 to the adjusting member 32, and then the compressed elastic body 414 provides an elastic force to drive the sleeve body 415 to move away from the loading assembly 10 with the connecting body 413, so that the spherical surface 4111 of the accommodating groove 411 abuts against the spherical body 421, and at the same time, the abutting body 417 abuts against one side of the adjusting member 32 towards the loading assembly 10. Finally, the locking body 416 moves towards the adjusting member 32 under the action of an external force, so that the sleeve body 415 abuts against the adjusting member 32 under the abutment of the locking body 416, thereby locking the connecting body 413 to the adjusting member 32, ensuring that the connecting member 41 stably supports the clamping member 42, and facilitating the connecting member 41 to stably apply a preset tension to the clamping member 42.
[0055] Referring to Figure 1 and Figure 2 In some embodiments, the connecting member 41 further comprises a gasket 418, which is sleeved on the connecting body 413, and the opposite sides of the gasket 418 abut against the adjusting member 32 and the elastic body 414, respectively.
[0056] Thus, by providing the above-mentioned gasket 418, the gasket 418 covers part of the arc-shaped groove 3211, so that the gasket 418 stably supports the elastic body 414, thereby increasing the area of the force receiving region of the two ends of the elastic body 414, and further ensuring that the elastic body 414 is stably stressed, avoiding the situation that part of the position of the elastic body 414 corresponds to the arc-shaped groove 3211, which causes the elastic body 414 to be unable to be uniformly stressed.
[0057] Referring to Figure 3In some embodiments, the clamping member 42 further comprises a clamping body 422, a movable body 423 and a limiting body 424. One end of the clamping body 422 is movably arranged in the through hole 412 and extends to the accommodating groove 411, and the spherical body 421 is connected with the clamping body 422. The movable body 423 is oppositely arranged with the clamping body 422, the limiting body 424 is movably arranged in the movable body 423 and the clamping body 422, one end of the limiting body 424 is threadedly connected with the clamping body 422, and the other end of the limiting body 424 abuts against one side of the movable body 423 away from the clamping body 422, and the limiting body 424 is used for pushing the movable body 423 to move close to the clamping body 422 under the action of an external force to clamp the second workpiece 202.
[0058] In this way, by arranging the specific structure of the clamping member 42, the limiting body 424 pushes the movable body 423 to move close to the clamping body 422 under the action of an external force, so that the clamping body 422 and the movable body 423 clamp the second workpiece 202, and the function of stably clamping the second workpiece 202 by the clamping member 42 is realized.
[0059] Please continue to refer to Figure 3 In some embodiments, the clamping body 422 comprises a clamping main body 4221 and a clamping connecting portion 4222, the clamping main body 4221 is threadedly connected with the limiting body 424, the clamping connecting portion 4222 is movably arranged in the through hole 412 and extends to the accommodating groove 411, the clamping connecting portion 4222 is connected with the spherical body 421, and the cross-sectional area of the clamping connecting portion 4222 is smaller than the cross-sectional area of the through hole 412.
[0060] Since the spherical body 421 rotates in the accommodating groove 411 and drives the clamping body 422 to rotate synchronously, in this way, by arranging the cross-sectional area of the clamping connecting portion 4222 to be smaller than the cross-sectional area of the through hole 412, it is ensured that the through hole 412 provides a large enough movement space for the clamping connecting portion 4222, so as to avoid the clamping connecting portion 4222 from being unable to rotate due to interference between the clamping connecting portion 4222 and the through hole 412 when the clamping connecting portion 4222 is driven to rotate by the spherical body 421, and thus it is beneficial to smoothly adjust the inclined orientation of the clamping body 422.
[0061] Please refer to Figure 2 and Figure 3 In some embodiments, the clamping member 42 further comprises a guide body 425, one end of the guide body 425 is connected with the movable body 423, and the other end of the guide body 425 is movably arranged in the clamping body 422, and the guide body 425 is used for guiding the movement direction of the movable body 423.
[0062] In this way, by arranging the guide body 425, the guide body 425 guides the movement direction of the movable body 423, so that the movable body 423 always moves in the direction in which the movable body 423 points to the clamping member 42 under the guidance of the guide body 425, and it is ensured that the movable body 423 and the clamping body 422 stably clamp the second workpiece 202.
[0063] Referring to Figure 1 and Figure 4 In some embodiments, the supporting assembly 20 comprises a base 21 and a support 22. The base 21 is arranged at one side of the loading assembly 10, and the support 22 is arranged above the loading assembly 10 and is provided with a receiving groove 221 for receiving the linkage 31.
[0064] In this way, by arranging the specific structure of the supporting assembly 20, the support 22 stably receives the linkage 31 through the receiving groove 221, so that the supporting assembly 20 and the linkage assembly 30 are reasonably arranged.
[0065] Referring to Figure 4 and Figure 5 In some embodiments, the support 22 is provided with a sliding groove 222, the receiving groove 221 is provided with an opening 2211, the opening 2211 is located on the same side of the support 22 as the sliding groove 222 and is in communication with the sliding groove 222, the outer side of the linkage 31 is provided with a limiting groove 311, and the supporting assembly 20 further comprises a stopper 23 movably arranged in the support 22 and having a stopper body 231, the stopper body 231 is slidably arranged in the sliding groove 222, and the stopper body 231 is used to move into the limiting groove 311 under the action of an external force to stop the linkage 31.
[0066] In this way, the stopper 23 drives the stopper body 231 to move under the action of an external force, so that the stopper body 231 moves into the limiting groove 311 to stop the linkage 31, thereby avoiding the linkage 31 from shaking during the adjusting operation and clamping operation of the clamping member 42, and facilitating the clamping member 42 to stably perform the adjusting operation and the clamping operation.
[0067] Referring to Figure 1 and Figure 6 In some embodiments, the loading assembly 10 comprises a loading member 11, a rotating member 12, a pressing member 13, and a fastening member 14. The loading member 11 is arranged at one side of the loading assembly 10 and below the adjusting member 32, and is used to load the first workpiece 201. The rotating member 12 is arranged at one side of the loading member 11 and is rotationally connected with the loading member 11. The pressing member 13 is used to press the first workpiece 201 to the loading member 11 and is spaced apart to form a receiving groove 131 and an avoiding groove 132. The receiving groove 131 is used to receive the rotating member 12, and the avoiding groove 132 is used to receive the second workpiece 202. The fastening member 14 is threadedly connected with the end of the rotating member 12 away from the loading member 11, and is used to move close to the pressing member 13 to position the first workpiece 201 to the loading member 11. Exemplarily, the fastening member 14 can be a nut.
[0068] Thus, the first workpiece 201 is received and loaded by the loading member 11 first, the pressing member 13 presses the first workpiece 201 to the loading member 11, then the rotating member 12 rotates and moves into the receiving groove 131 under the action of an external force, and finally the fastening member 14 moves close to the pressing member 13 under the action of an external force to position the first workpiece 201 to the loading member 11 by abutting against the pressing member 13, so as to realize positioning and fixing of the first workpiece 201, avoid shaking of the first workpiece 201 in the detection process, and at the same time, the second workpiece 202 extends out through the avoiding groove 132, so as to facilitate clamping of the second workpiece 202 by the clamping member 42.
[0069] Please refer to Figure 1 In some embodiments, the loading assembly 10 further comprises a limiting member 15, one end of the limiting member 15 is connected with the loading member 11, and the other end of the limiting member 15 is used for being inserted into the receiving groove 131 to limit the pressing member 13.
[0070] Thus, when the pressing member 13 presses the first workpiece 201 to the loading member 11, the limiting member 15 is inserted into the receiving groove 131, so as to limit the placement position and the placement direction of the pressing member 13, and ensure that the pressing member 13 stably presses the first workpiece 201 to the loading member 11.
[0071] The working process of the detection device 100 is as follows:
[0072] Firstly, the first workpiece 201 is received and loaded by the loading member 11, the pressing member 13 presses the first workpiece 201 to the loading member 11, the rotating member 12 rotates and moves into the receiving groove 131 under the action of an external force, and then the fastening member 14 moves close to the pressing member 13 under the action of an external force to position the first workpiece 201 to the loading member 11 by abutting against the pressing member 13;
[0073] Then, according to the type of the product 200, the connecting body 413 is inserted into a preset position of one of the arc-shaped grooves 3211, the spherical body 421 rotates in the accommodating groove 411 to adjust the inclined direction of the clamping body 422, then the abutting body 417 and the locking body 416 move close to the adjusting member 32 under the action of an external force, the abutting body 417 abuts against one side of the adjusting member 32 which is directed to the loading member 11, and the sleeve body 415 abuts against the adjusting member 32 and compresses the elastic body 414 under the pushing of the locking body 416, so as to lock the connecting body 413 to the adjusting member 32;
[0074] Finally, the limiting body 424 is pushed by external force to move the movable body 423 close to the clamping body 422, so that the clamping body 422 and the movable body 423 clamp the second workpiece 202, and then the linkage 31 is driven by the external driving member to apply a preset tension to the clamped second workpiece 202, so as to determine whether the second workpiece 202 is separated from the first workpiece 201 under the preset tension, so as to detect the bonding force between the first workpiece 201 and the second workpiece 202, and adjust the clamping position and the inclined orientation of the clamping member 42 according to the type of the product 200, so that the detection device 100 is suitable for detecting different types of products 200, and the detection versatility is improved.
[0075] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application.
Claims
1. An inspection apparatus for inspecting a product, the product comprising a first workpiece and a second workpiece connected together, characterized by, The application relates to a product loading and testing device. The device comprises: a loading assembly for loading the product and fixing the first workpiece; a supporting assembly arranged on the loading assembly; a linkage assembly comprising a linkage and an adjusting member, the linkage is movably arranged on the supporting assembly and is connected to an external driving member, the adjusting member is connected to the linkage and is provided with a plurality of arc-shaped adjusting portions, the arc-shaped adjusting portions are arranged in a circumferential direction of the adjusting member, each of the arc-shaped adjusting portions comprises a plurality of arc-shaped grooves arranged in a radial direction of the adjusting member; 2. The detection device of claim 1, wherein, a clamping assembly comprising a connecting member and a clamping member, one end of the connecting member is movably arranged in one of the arc-shaped grooves and is detachably connected to the adjusting member, the other end of the connecting member is provided with a receiving groove and a through hole, the receiving groove is a spherical surface arranged at one end of the connecting member close to the loading assembly, the through hole is arranged on the spherical surface and is in communication with the receiving groove, the clamping member is movably arranged in the through hole and extends into the receiving groove, one end of the clamping member close to the adjusting member is provided with a spherical body matched with the spherical surface, the spherical body is in abutment with the spherical surface, the spherical body is used for rotating in the receiving groove to adjust the clamping member to a preset orientation, and the clamping member is used for clamping the second workpiece and applying a preset pulling force on the second workpiece under the driving of the external driving member to detect the bonding force between the first workpiece and the second workpiece. The connecting member comprises: a connecting body movably arranged in the arc-shaped groove and provided with the receiving groove and the through hole; an elastic body sleeved on the connecting body and arranged on a side of the adjusting member away from the loading assembly; a sleeve body sleeved on the elastic body and in abutment with both ends of the elastic body respectively; 3. The detection device of claim 2, wherein, a locking body and an abutting body threadedly connected to the connecting body respectively, the locking body is arranged on a side of the sleeve body away from the elastic body, and the abutting body is arranged on a side of the adjusting member away from the elastic body, the locking body and the abutting body are used for moving towards the adjusting member under the action of an external force to enable the sleeve body to compress the elastic body to the adjusting member and fix the connecting body to the adjusting member, and the locking body and the abutting body are also used for moving away from the adjusting member under the action of the external force to enable the compressed elastic body to elastically expand and reset and drive the connecting body to support the spherical body. The connecting member further comprises:
4. The detection device of claim 1, wherein, a gasket sleeved on the connecting body, and the gasket is in abutment with the adjusting member and the elastic body respectively. The clamping member further comprises: a clamping body, one end of the clamping body is movably arranged in the through hole and extends into the receiving groove, and the spherical body is connected to the clamping body; a movable body arranged opposite to the clamping body; and 5. The detection device of claim 4, wherein, a limiting body movably arranged in the movable body and the clamping body, one end of the limiting body is threadedly connected to the clamping body, and the other end of the limiting body is in abutment with a side of the movable body away from the clamping body, the limiting body is used for pushing the movable body to move towards the clamping body under the action of an external force to clamp the second workpiece. The clamping body comprises: The clamping body is threadedly connected with the limiting body, and the clamping connecting part is movably arranged in the through hole and extends to the accommodating groove, and the clamping connecting part is connected with the spherical body, and the cross-sectional area of the clamping connecting part is smaller than that of the through hole.
6. The detection device of claim 4, wherein, The clamping piece further comprises: The guide body is connected with the movable body at one end, and the other end of the guide body is movably arranged in the clamping body, and the guide body is used for guiding the movement direction of the movable body.
7. The detection device of claim 1, wherein, The support assembly comprises: The base is arranged on one side of the loading assembly; The support piece is arranged above the loading assembly and is provided with a mounting groove, and the mounting groove accommodates the linkage.
8. The detection device of claim 7, wherein, The support piece is provided with a sliding groove, and the mounting groove is provided with an opening, and the opening and the sliding groove are located on the same side of the support piece and are in communication, and the outer side of the linkage is provided with a limiting groove, and the support assembly further comprises: The stop piece is movably arranged in the support piece and has a stop body, and the stop body is slidably arranged in the sliding groove, and the stop body is used for moving into the limiting groove under the action of an external force to stop the linkage.
9. The detection device of claim 1, wherein, The loading assembly comprises: The loading piece is arranged on one side of the loading assembly and below the adjusting piece, and the loading piece is used for loading the first workpiece; The rotating piece is arranged on one side of the loading piece and is rotatably connected with the loading piece; The pressing piece is used for pressing the first workpiece to the loading piece and is spaced apart to accommodate the receiving groove and the avoiding groove, the receiving groove is used for accommodating the rotating piece, and the avoiding groove is used for accommodating the second workpiece; The fastening piece is threadedly connected with the end of the rotating piece away from the loading piece, and the fastening piece is used for moving close to the pressing piece to position the first workpiece to the loading piece by pressing the pressing piece.
10. The detection device of claim 9, wherein, The loading assembly further comprises: The limiting piece is connected with the loading piece at one end, and the other end of the limiting piece is used for being inserted into the receiving groove to limit the pressing piece.