Wire body fixing clamp, wire body fixing assembly, test tool and wire body test method
By combining the design of the production line fixing clamp and the transfer plate, the automated testing and transfer of the production line is realized, which solves the problem of easy bending of the production line during production and testing, improves testing efficiency and reduces labor costs.
Patent Information
- Application Number
- CN202210355038.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-02
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2042-04-02
AI Technical Summary
In existing technologies, the flexible structure of the production line makes it prone to bending during production and testing, resulting in damage and reduced yield. The testing process relies on manual operation, has a low degree of automation, a high retest rate, and high labor costs.
A wire fixing clamp is designed, including a fixing clamp body and a pressure block. The fixing clamp body is provided with a mounting groove and a conductive element. The conductive element is electrically connected to the wire head. The pressure block is movably connected to the fixing clamp body to realize the clamping and fixing of the wire head and the electrical connection. Combined with the flow transfer plate and material transfer device, it realizes automated testing and transfer.
It improved testing efficiency, reduced testing errors, lowered labor costs, and enabled automated testing and transmission of the production line, preventing damage to the production line during transmission.
Smart Images

Figure CN114966129B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of testing devices, and in particular to a wire fixing clamp, a wire fixing assembly, a testing tool and a wire testing method. Background Art
[0002] Cables, such as flexible cable assemblies, are widely used in the manufacturing processes of tablets, mobile phones, smart watches, and smart bracelets. Due to their inherent flexibility, cable assembly often relies on manual testing during production and testing. Summary of the Invention
[0003] The main purpose of the present invention is to propose a wire body fixing clamp, a wire body fixing assembly, a test tool and a wire body testing method, aiming to realize the automated testing and transmission of the wire body to be tested.
[0004] To achieve the above-mentioned object, the present invention proposes a wire fixing clamp, wherein the wire includes a wire body and a terminal connected to the wire body, and is characterized in that the wire fixing clamp includes:
[0005] A fixing clip body, wherein the fixing clip body is provided with a mounting groove for mounting the terminal head and a conductive member disposed in the mounting groove, one end of the conductive member being disposed in the mounting groove and the other end of the conductive member extending out of the fixing clip body;
[0006] A pressure block is movably connected to the fixing clamp body, and the pressure block has a clamping position for clamping the fixing clamp body and an opening position for opening the fixing clamp body. When the fixing clamp body and the pressure block are clamped, the terminal head installed in the installation groove is clamped and fixed, and the terminal head is driven to connect with the conductive member.
[0007] Optionally, the fixing clip body is arranged in the mounting hole; and the wire fixing clamp further comprises:
[0008] The wire end fixing module is detachably mounted in the mounting hole of the fixing clamp body, the mounting groove is formed in the wire end fixing module, and the conductive member is fixed to the wire end fixing module.
[0009] Optionally, the thread end fixing module includes:
[0010] The conductive member fixing block is detachably connected to the fixing clamp body, and the conductive member fixing block is used to fix the conductive member on the fixing clamp body.
[0011] Optionally, the thread end fixing module further includes:
[0012] A positioning block is provided protrudingly on the conductive member fixing block, the positioning block is at least partially accommodated in the mounting hole, and the positioning block is formed with the mounting groove for placing the terminal head; the positioning block is provided with a through hole for the conductive member to pass through.
[0013] Optionally, the positioning block is an elastic positioning block.
[0014] Optionally, the thread end fixing module further includes:
[0015] An elastic member, one end of which is arranged on the conductive member fixing block and located on one side of the positioning block, and the other end of which is in contact with the fixing clip body.
[0016] Optionally, there are multiple mounting holes.
[0017] The number of the thread end fixing modules corresponds to the number of the mounting holes, and each thread end fixing module is used to mount a type of the thread body;
[0018] And / or, when the same type of wire end fixing module has multiple wiring ends, each of the wire end fixing modules is used to install one of the wiring ends of the same wire body.
[0019] Optionally, the fixing clamp further includes:
[0020] an attracting member disposed on the fixing clamp body and / or the pressing block, the attracting member having a first working state and a second working state, and when the attracting member is in the first working state, the pressing block is controlled to be in an open position with respect to the fixing clamp body;
[0021] When the suction member is in the second working state, the pressure block is controlled to be in a clamping position clamped with the fixing clamp body.
[0022] Optionally, the pressing block has a first movable section, a second movable section and a clamping section connected in sequence, and the suction member includes:
[0023] A first suction member, used for controlling the first movable section to be sucked and fixed to the fixing clamp body;
[0024] The second suction member is used to control the second movable section to be sucked and fixed to the fixing clamp body.
[0025] Optionally, the line fixing assembly further includes:
[0026] A positioning member, through which the fixing clamp is detachably fixedly mounted on the flow plate.
[0027] Optionally, a positioning portion is further provided on the fixing clamp body, and the positioning member includes:
[0028] A positioning pin, provided on the flow carriage, adapted to fit the positioning portion on the fixing clamp body;
[0029] And / or, a third suction member is provided on the fixing clamp body and / or the pressing block.
[0030] The present invention further provides a wire fixing assembly, comprising:
[0031] A flow plate, the flow plate having a first mounting position and a second mounting position, the first mounting position being for mounting the main body of the line; and the line fixing clamp as described above;
[0032] The wire body fixing clamp is detachably mounted on the second mounting position, and the fixing clamp is used to clamp the wiring end of the wire body.
[0033] Optionally, the number of the first installation positions and the number of the second installation positions are respectively plural; each of the first installation positions is for mounting a main body of the line body;
[0034] The number of the line fixing clamps corresponds to the number of the second installation positions.
[0035] The present invention further provides a test tool, which includes:
[0036] Test components;
[0037] Storage components;
[0038] A material transfer device is provided between the test component and the storage component; and the wire fixing component as described above; wherein the material transfer device is used to drive the wire fixing component to move between the test component and the storage component.
[0039] Optionally, when the wire fixing assembly is driven to move to the storage assembly, the wire to be tested placed on the storage assembly is fixedly mounted on the wire fixing assembly; or, the tested wire is unloaded onto the storage assembly;
[0040] When the material transmission device drives the wire body fixing assembly to move to the testing assembly, the wire body fixedly installed on the wire body fixing assembly is transmitted to the work station corresponding to the testing assembly to realize wire body testing.
[0041] Optionally, the material transmission device includes:
[0042] a circulation assembly, arranged in a first direction relative to the test assembly and the storage assembly, and for movably mounting the circulation plate to drive the circulation plate to move in the first direction;
[0043] The first transfer assembly is arranged relative to the second direction of the test assembly, and the transfer assembly is used to drive the fixed clamp and the main body of the wire to move in the second direction of the test assembly.
[0044] Optionally, the material transmission device further includes:
[0045] A first suction component, one end of which is mounted on the first transfer component, and the other end of which is used to suck the fixed clamp and the main body of the wire body.
[0046] Optionally, the material transmission device further includes:
[0047] The second transfer assembly is arranged in a second direction relative to the storage assembly, and is used to drive the main body of the wire body to move in the second direction of the storage assembly.
[0048] Optionally, the material transmission device further includes:
[0049] A second suction component, one end of the second suction component is installed on the second transfer component, and the other end of the second suction component is used to suck the main body of the wire body.
[0050] Optionally, the first suction component includes:
[0051] A first slide cylinder is mounted on the second transfer assembly;
[0052] a first suction unit fixed on the first slide cylinder, the first suction unit comprising at least one set of first suction nozzles, the first suction nozzles being used to suck the fixed clamp and the main body of the wire body;
[0053] and / or, a second slide cylinder mounted on the second transfer assembly;
[0054] The second suction unit is fixed on the first slide cylinder. The first suction unit includes at least one second suction nozzle, and the second suction nozzle is used to suck the main body of the wire body.
[0055] Optionally, the test assembly includes multiple test platforms, and linear transmission is achieved between the multiple test platforms through the material transmission device.
[0056] Optionally, the storage component includes an upper material bin and a lower material bin, and the upper material bin and the lower material bin respectively realize linear transmission between the testing component through the material transmission device.
[0057] The present invention also provides a line body testing method, using the above-mentioned testing tool, the line body testing method comprises the following steps:
[0058] Control the material transfer device to extract the material to be tested from the storage component to the line body fixing component;
[0059] Controlling the wire fixing clamps of the wire fixing assembly to respectively fix the wire body and the terminal of the material to be tested;
[0060] Controlling the material transmission device to drive the line fixing assembly to move to the testing assembly;
[0061] Controlling the material transfer device to extract the wire body fixing clamp to the test station corresponding to the test assembly to test the material to be tested;
[0062] The material transmission device is controlled to extract the wire fixing clamp from the testing component to the flow plate of the wire fixing component, and drive the wire fixing component to move to the storage component.
[0063] The wire body fixing clamp of the present invention is provided with a fixing clamp body, and a mounting groove for installing a terminal head and a conductive member arranged in the mounting groove are provided on the fixing clamp body, wherein one end of the conductive member is provided in the mounting groove, and the other end of the conductive member extends out of the fixing clamp body; the present invention is also provided with a pressure block, which is movably connected to the fixing clamp body. When the fixing clamp body and the pressure block are clamped, the terminal head installed in the mounting groove is clamped and fixed, and the terminal head is driven to communicate with the conductive member. Under the fixation of the fixing clamp of the present invention, good electrical contact can be formed between the test and the terminal head during the material transmission process, which can improve the test efficiency and realize the automated testing of the wire body. BRIEF DESCRIPTION OF THE DRAWINGS
[0064] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.
[0065] Figure 1 This is a structural schematic diagram of an embodiment of the present invention wherein the fixing clamp is in the clamping position;
[0066] Figure 2 This is a structural schematic diagram of an embodiment of the present invention wherein the fixing clamp is in the open position;
[0067] Figure 3 A schematic structural diagram of the fixing clamp of the present invention from another perspective;
[0068] Figure 4 for Figure 1A schematic structural diagram of an embodiment of a center line head fixing module;
[0069] Figure 5 for Figure 1 A structural diagram of the center line head fixing module from another perspective;
[0070] Figure 6 This is a structural diagram of an embodiment of a wire fixing assembly of the present invention;
[0071] Figure 7 for Figure 1 A schematic structural diagram of an embodiment of a mid-stream transfer plate;
[0072] Figure 8 This is a schematic structural diagram of an embodiment of a material transfer device in a test fixture of the present invention;
[0073] Figure 9 for Figure 8 A schematic structural diagram of an embodiment of the first suction component;
[0074] Figure 10 This is a structural schematic diagram of another embodiment of the material transfer device in the test tooling of the present invention;
[0075] Figure 11 for Figure 10 A schematic structural diagram of an embodiment of a second suction component;
[0076] Figure 12 This is a schematic structural diagram of an embodiment of the test tool of the present invention;
[0077] Figure 13 Schematic diagram of a flow chart of an embodiment of a line testing method of the present invention.
[0078] Description of Figure Numbers:
[0079]
[0080]
[0081] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION
[0082] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0083] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.
[0084] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features specified as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that ordinary technicians in this field can implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.
[0085] The term "and / or" in this document simply describes a relationship between related objects, indicating that three possible relationships exist. For example, "A and / or B" can mean: A exists alone, A and B exist simultaneously, or B exists alone. Additionally, the character " / " in this document generally indicates that the related objects are in an "or" relationship.
[0086] The present invention proposes a cable fixing assembly for use in production equipment and testing tooling for cables. The cable comprises a cable body and a terminal connected to the cable body. The cable can be a flexible connector, a connector, or a flexible cable assembly. Flexible cable assemblies, in particular, are widely used in the manufacturing processes of tablets, mobile phones, smart watches, and smart bracelets.
[0087] The wire body typically contains several thin, long, and flexible cores. However, due to its flexible structure, the wire body may be frequently bent, or even excessively bent, during storage or movement during production, testing, and other processes. This can easily damage the outer protective layer of the wire body or even the internal wire body, resulting in a decrease in yield. Even after production, testing, and assembly, the bent wire body may affect normal use or even become scrapped, shortening its service life.
[0088] To solve the above problems, refer to Figures 1 to 12 In one embodiment of the present invention, the line fixing clamp comprises:
[0089] A fixing clip body 21 is provided with a mounting groove 211 for mounting the terminal head and a conductive member 24 disposed in the mounting groove 211 . One end of the conductive member 24 is disposed in the mounting groove 211 , and the other end of the conductive member 24 extends out of the fixing clip body 21 .
[0090] The pressure block 22 is movably connected to the fixing clamp body 21. The pressure block 22 has a clamping position for clamping with the fixing clamp body 21 and an opening position for opening with the fixing clamp body 21. When the fixing clamp body 21 and the pressure block 22 are clamped, the terminal head installed in the installation groove 211 is clamped and fixed, and the terminal head is driven to connect with the conductive member 24.
[0091] It should be noted that when testing the wiring head, a test probe is set on the test assembly. In the process of moving the wire to be tested from the wire fixing clamp to the test assembly for testing, at least two positioning operations are required: positioning the wire fixing clamp and the test assembly, and positioning the test assembly and the wiring head to be tested placed on the wire fixing clamp. This will increase the error of the test, for example, the positioning of the wire fixing clamp and the test assembly is inaccurate, and positioning of the test assembly and the wiring head to be tested is inaccurate. In addition, in the test process, it is necessary to manually place the fixing clamp on the test assembly first, and then manually connect the test probe on the test assembly to the wiring head. The test process is complicated, not intelligent, and takes a long time to test, which is not conducive to the testing of the wiring head. The entire test process is manually operated, with a high retest rate, high labor costs, and a low degree of automation.
[0092] To this end, this embodiment provides a conductive member 24, which can be a test probe. One end of the conductive member 24 can extend out of the groove wall of the installation groove 211, and can be electrically connected to the terminal head placed in the installation groove 211 when the terminal head is placed in the installation groove 211. The other end of the conductive member 24 extends outward from the fixing clamp body 21. When the wire fixing clamp moves to the test component, the end of the conductive member 24 extending out of the fixing clamp body 21 can contact with the test point on the test component, such as abutment, so that the electrical signal on the test component can be transmitted to the conductive member 24.
[0093] The shape, depth and width of the mounting groove 211 are adapted to the terminal head, and the mounting groove 211 can also be adapted to the test assembly 200. A notch is also provided on the groove wall of the mounting groove 211, and the notch is provided for the wire clamp between the terminal head and the wire body, which is beneficial to improve the stability of the terminal head fixed in the mounting groove 211 and avoid relative movement between the terminal head and the fixing clamp body 21. During the transmission and testing process, the receiving head of the wire body 500 is fixed in the mounting groove 211, and during the test process, it can cooperate with the test assembly 200 to form a test position to complete the test of the wire body 500. The pressure block 22 can be movably connected to the fixing clamp body 21 through the connecting shaft and the elastic member 253. The pressure block 22 can be opened or clamped relative to the fixing clamp body 21 to realize the loading, unloading, transmission, fixation and testing of the wire body 500. After the wire body fixing clamp and the wire body are transported to the test fixture as a whole, the conductive needle, such as the lower part of the double-headed probe, contacts the test fixture circuit board, and finally realizes the conduction between the wire body and the test fixture, so that the double-headed probe can contact the terminal test mechanism from the bottom of the terminal head. Specifically, during the loading and unloading process, the pressing block 22 is in the open position, that is, it is open to the fixing clamp body 21. When the wire body 500 is installed in the installation groove 211, the pressing block 22 is in the clamping position. Under the clamping fixation of the pressing block 22 and the fixing clamp body 21, the wire body 500 is transferred to the test position corresponding to the test assembly 200, and after the terminal of the wire body 500 is fixed in the installation groove 211, the terminal of the wire body 500 can be pressed with the terminal set in the installation groove 211 under the pressure of the pressing block 22. The test probe inside, for example, the conductive part of the terminal head of the wire body 500 abuts against the conductive part 24, so that the installation groove 211 can be used as a test point, and the test component 200 can cooperate with the conductive part 24. The conductive part 24 can realize the electrical connection between the test component and the terminal head installed in the installation groove 211, that is, the conductive part 24 can connect the terminal head and the test component, so that the electrical energy of the test component can be transmitted to the terminal head by the conductive part 24, and then transmitted to the wire body, thereby completing the test of the wire body 500.
[0094] The wire body fixing clamp 20 of the present invention is provided with a fixing clamp body 21, and a mounting groove 211 for mounting a terminal head and a conductive member 24 disposed in the mounting groove 211 are provided on the fixing clamp body 21, wherein one end of the conductive member 24 is disposed in the mounting groove 211, and the other end of the conductive member 24 extends out of the fixing clamp body 21. The present invention also provides a pressure block, which is movably connected to the fixing clamp body 21. When the fixing clamp body 21 and the pressure block are clamped, the terminal head installed in the mounting groove 211 is clamped and fixed, and the terminal head is driven to communicate with the conductive member 24. Under the fixation of the fixing clamp 20 of the present invention, good electrical contact can be achieved between the test and the terminal head during the material transmission process, which can improve the test efficiency and realize the automated testing of the wire body.
[0095] Reference Figures 1 to 5 In one embodiment, the fixing clamp body 21 is disposed in the mounting hole; the wire fixing clamp 20 further includes:
[0096] The wire end fixing module 25 is detachably mounted in the mounting hole of the fixing clamp body 21 . The mounting groove 211 is formed in the wire end fixing module 25 . The conductive member 24 is fixed to the wire end fixing module 25 .
[0097] In this embodiment, the wire end fixing module 25 has a mounting groove 211 for installing the terminal head and a conductive member 24 arranged in the mounting groove 211, and one end of the conductive member 24 extends out of the mounting groove 211. In actual application, the conductive member 24 can be fixed to the wire end fixing module 25, and then the wire end fixing module 25 can be fixed to the main body of the fixing clamp body 21. The conductive member 24 is fixed to the wire end fixing module 25, and one end of the conductive member 24 can extend out of the groove wall of the mounting groove 211, and the other end of the conductive member 24 extends out of the wire end fixing module 25. In this way, there is no need to set a test probe on the test component, and there is no need to manually connect the test probe to the terminal head. When the wire body fixing clamp 20 is moved to the test component, the terminal head fixed on the wire end fixing module 25 can automatically achieve electrical connection with the test component through the conductive member 24, which can simplify the test process and improve test efficiency.
[0098] Reference Figures 4 and 5 In one embodiment, the thread end fixing module 25 includes:
[0099] The conductive member fixing block 251 is detachably connected to the fixing clamp body 21 . The conductive member fixing block 251 is used to fix the conductive member 24 on the fixing clamp body 21 .
[0100] In this embodiment, the conductive member fixing block 251 and the fixing clamp body 21 can be fixedly connected by screws. Specifically, a plurality of semi-circular vertical walls are provided on the circumferential side of the conductive member fixing block 251, for example, two by two, and the openings of the two semi-circular vertical walls are arranged in a direction opposite to each other. Screw holes are also provided on the fixing clamp body 21. The screws can pass through the screw holes and the semi-circular vertical walls from the side away from the conductive member fixing block 251 and be locked with the nut arranged on the same side of the conductive member fixing block 251, thereby fixing the conductive member fixing block 251 to the fixing clamp body 21, and then fixing the conductive member 24 fixed on the conductive member fixing block 251 to the fixing clamp body 21.
[0101] Reference Figures 4 and 5 In one embodiment, the thread end fixing module 25 further includes:
[0102] The positioning block 252 is protruded from the conductive member fixing block 251 . The positioning block 252 is at least partially accommodated in the mounting hole. The positioning block 252 is formed with the mounting groove 211 for placing the terminal head. The positioning block 252 is provided with a through hole for the conductive member 24 to pass through.
[0103] The positioning block 252 is an elastic positioning block 252 .
[0104] In this embodiment, the positioning block 252 is integrally arranged with the conductive member fixing block 251 to form a boss structure, and a mounting groove 211 is formed on the positioning block 252. When the wire body is tested, the terminal of the wire body is placed in the mounting groove 211 to achieve positioning and fixation of the terminal. The positioning block 252 can be set as an elastic structure. After the terminal of the wire body is placed inside the elastic positioning block 252, the conductive member 24 does not contact the terminal of the wire body; the pressing block 22 is in the clamping position. Under the clamping fixation of the pressing block 22 and the fixing clamp body 21, when the clamp is clamped, the pressing block 225 presses down the terminal in the mounting groove 211, so that the terminal can be electrically connected to the conductive member 24 set in the mounting groove 211, such as a double-headed probe. Under the buffering effect of the elastic positioning block 252, the stress between the conductive member 24 and the terminal during contact can be reduced, thereby avoiding mutual damage between the conductive member 24 and the terminal.
[0105] Reference Figures 4 and 5 In one embodiment, the thread end fixing module 25 further includes:
[0106] The elastic member 253 has one end disposed on the conductive member fixing block 251 and located on one side of the positioning block 252 , and the other end of the elastic member 253 abuts against the fixing clip body 21 .
[0107] In this embodiment, the elastic member 253 can be a spring, a spring, etc., and the number of the elastic members 253 can be two. The two elastic members 253 are arranged on opposite sides of the positioning block 252. One end of the elastic member 253 is fixed on the conductive member fixing block 251, and the other end of the elastic member 253 can abut against the inner wall surface of the fixing clamp body 21 after the conductive member fixing block 251 and the positioning block 252 are assembled to the fixing clamp body 21, so that when the pressing block 22 presses down the terminal of the wire body, the elastic member 253 can be compressed by pressing down the fixing clamp body 21 to achieve communication between the terminal and the conductive member 24 arranged in the installation groove 211. When the pressing block 22 is attracted and presses down the product, the elastic compression and positioning of the terminal are achieved under the elastic action of the elastic member 253, which can ensure the stability of the position of the terminal during transmission.
[0108] Reference Figures 4 and 5In one embodiment, a first positioning member 254 is further provided on the conductive member fixing block 251 , and the conductive member fixing block 251 is detachably fixed to the fixing clip body 21 through the first positioning member 254 .
[0109] In this embodiment, the first positioning member 254 can be configured as a positioning pin, and a corresponding positioning portion can be provided on the fixing clamp body 21. The positioning portion can be configured as a positioning pin sleeve, which is adapted to fit the positioning pin to achieve positioning and fixing between the conductive member fixing block 251 and the fixing clamp body 21. The conductive member fixing block 251 is connected to the fixing clamp body 21 via a pin, ensuring the relative position of the conductive member 24 and the elastic positioning block 252.
[0110] Reference Figures 1 to 5 In one embodiment, the number of the mounting holes is multiple;
[0111] The number of the thread end fixing modules 25 corresponds to the number of the mounting holes, and each thread end fixing module 25 is used to mount a type of thread body;
[0112] And / or, when the same type of wire end fixing module 25 has multiple wiring ends, each of the wire end fixing modules 25 is used to install one of the wiring ends of the same wire body.
[0113] In this embodiment, the number of wire end fixing modules 25 can be two or more, and can be specifically set according to the number of wire ends of the wire body, and the connection between the wire ends and the test tool cable is achieved through a double-headed probe. It can be understood that in actual application, one type of wire body has two wire ends, and the other type of wire body has only one wire end. When there are two wire ends, the two wire ends need to be set on the same fixed clamp 20 respectively. When there is one wire end, the wire end can be placed in any one of the two wire end fixing modules 25. Such a setting allows one fixed clamp 20 to be used to test two types of wire bodies, which is beneficial to improving the compatibility of the fixed clamp 20. According to the needs of actual application, the conductive part 24 can be set in both wire end fixing modules 25, or the conductive part 24 can not be set.
[0114] Reference Figures 1 to 3 In one embodiment, the fixing clamp 20 further includes:
[0115] The suction member 23 is provided on the fixing clamp body 21 and / or the pressing block 22. The suction member 23 has a first working state and a second working state. When the suction member 23 is in the first working state, the pressing block 22 is controlled to be in an open position with respect to the fixing clamp body 21.
[0116] When the suction member 23 is in the second working state, the pressing block 22 is controlled to be in the clamping position clamped with the fixing clamp body 21 .
[0117] In this embodiment, the suction member 23 can be provided on the fixing clamp body 21, or on the pressure block 22, or both are provided with an adapted suction member 23. The suction member 23 can be a magnetic member, and the suction member 23 can realize the switching between the first working state and the second working state by turning the power on / off, or can be acted upon by an external force, such as a robotic arm, etc., to realize the switching between the first working state and the second working state, so that the pressure block 22 and the fixing clamp body 21 can be switched between the open position and the clamping position, so as to realize the loading, unloading, transmission, fixation and testing of the line body 500. Suitably, when the pressure block 22 and the fixing clamp body 21 are provided with suction members 23 at the same time, the clamping and opening of the pressure block 22 and the fixing clamp body 21 can be realized by the mutual attraction or separation between the suction members 23. When the suction component 23 is only arranged on the fixing clip body 21 or the pressure block 22, for example, when the suction component 23 is arranged on the fixing clip body 21, the corresponding position of the pressure block 22 and the suction component 23 can be set to a material that can be adsorbed, such as a metal material. Similarly, when the suction component 23 is arranged on the upper pressure block 22, the corresponding position of the pressure block 22 and the fixing clip body 21 can be set to a material that can be adsorbed.
[0118] Reference Figures 1 to 3 In one embodiment, the pressing block 22 has a first movable section 221, a second movable section 222 and a clamping section 223 connected in sequence, and the suction member 23 includes:
[0119] A first suction member 231 , which controls the first movable section 221 to be sucked and fixed to the fixing clamp body 21 ;
[0120] The second suction member 232 controls the second movable section 222 to be sucked and fixed to the fixing clamp body 21 .
[0121] In this embodiment, the first suction member 231 is arranged between the first movable section 221 and the fixed clamp body 21, and the second suction member 232 is arranged between the second movable section 222 and the fixed clamp body 21. The second movable section 222 is also provided with a connection portion movably connected to the fixed clamp body 21 at the junction with the first movable section 221. The connection portion can be provided with a through hole, and the connection portion and the fixed clamp body 21 are rotatably connected via a rotating shaft. The first suction member 231 controls the first movable section 221 to be sucked and fixed to the fixed clamp body 21 so that the pressure block 22 is opened relative to the fixed clamp body 21; the second suction member 232 controls the second movable section 222 to be sucked and fixed to the fixed clamp body 21 so that the pressure block 22 is clamped relative to the fixed clamp body 21, and controls the clamping section 223 to fix the terminal of the material to be tested in the mounting groove 211. The first engaging element 231 is a magnet for the opening position, and the second engaging element 232 is a magnet for the clamping position. When the fixed clamp 20 is opened, the magnet for the opening position engages and holds it in place. The filament 500 can be automatically loaded and unloaded via the nozzle. Subsequently, when the fixed clamp 20 is clamped, the magnet for the clamping position engages and holds it in place. This allows the filament 500 and the fixed clamp 20 to be positioned and circulated together, allowing testing on the test fixture.
[0122] Reference Figure 6 and Figure 7 In one embodiment, the line fixing assembly 100 further includes:
[0123] The second positioning member 30 is used to detachably fix the fixing clamp 20 on the flow plate 10 .
[0124] Specifically, the fixing clamp body 21 is further provided with a positioning portion 212, and the second positioning member 30 includes:
[0125] The positioning pin 31 is provided on the flow plate 10 and is adapted to the positioning portion 212 on the fixing clamp body 21;
[0126] And / or, the third suction member 32 is provided on the fixing clamp body 21 and / or the pressing block 22 .
[0127] In this embodiment, the positioning portion 212 can be configured as a set of positioning pins 31, which are adapted to the positioning pins 31 to achieve positioning and fixing between the fixed clamp 20 and the flow plate 10. The suction member 23 can be a magnetic member. The suction member 23 can be provided on the fixed clamp 20, or on the fixed clamp body 21, or can be provided between the fixed clamp 20 and the flow plate 10. When the fixed clamp 20 is close to or placed on the flow plate 10, the two are fixed. When the suction member 23 is only provided on the fixed clamp 20 or the flow plate 10, for example, when the suction member 23 is provided on the flow plate 10, the corresponding position of the fixed clamp 20 and the suction member 23 can be provided with a material that can be adsorbed, such as a metal material. Similarly, when the suction member 23 is provided on the upper fixed clamp 20, the corresponding position of the pressure block 22 and the flow plate 10 can be provided with a material that can be adsorbed. The second positioning member 30 can ensure stable transmission and stable fixation of the wire body 500 during loading, unloading, and transmission. The wire body fixing assembly 100 of the present invention is provided with a flow plate 10 and a fixed clamp 20. The flow plate 10 and the fixed clamp 20 are positioned by a positioning pin 31 and a positioning pin 31 sleeve, ensuring relative position accuracy. The third suction member 32 is a flow fixture adsorption magnet, which can ensure stable transmission of the fixed clamp 20 and the flow plate 10 during the flow process and prevent relative movement between the two.
[0128] Reference Figure 1 and Figure 2 In one embodiment, a wire groove 26 is further formed on the fixing clamp body, and the wire groove 26 is used to accommodate the wires of the wire body.
[0129] In this embodiment, the groove width, groove depth, length and number of the wire groove 26 can be set according to the length and diameter of the wire between the main body of the wire body and the terminal head. The wire groove 26 is used to place the wire between the terminal head and the main body of the wire body, which is beneficial to improve the stability of the terminal head fixed in the installation groove, avoid relative movement between the terminal body and the fixing clamp body, and adapt to the thin, long and soft wire core itself. However, due to the flexible structure of the wire body itself, it can avoid frequent bending or even excessive bending of the wire body when it is stored or moved during production, testing, etc.
[0130] The present invention also proposes a wire fixing assembly.
[0131] Reference Figures 1 to 7 , the line fixing assembly includes:
[0132] A flow plate 10, wherein the flow plate 10 has a first mounting position 11 and a second mounting position 12, wherein the first mounting position 11 is for mounting the main body of the line body 500; and
[0133] The fixed clamping member 20 is detachably mounted on the second mounting position 12 , and the fixed clamping member 20 is used to clamp the terminal end of the line body 500 .
[0134] In this embodiment, the wire body fixing component 100 can be applied to the assembly line of the production equipment to transfer the wire body 500 between various production stations. For example, the wire body fixing component 100 with the wire body 500 fixed thereon can be transferred from the previous production station to the next production station to realize the automated production and manufacturing of electronic devices such as tablets, mobile phones, smart watches, and smart bracelets. The wire body fixing component 100 can also be applied to the testing workpiece of the wire body 500 to transfer the wire body 500 between various loading bins 310, testing stations, and unloading bins 320. For example, the wire body fixing component 100 with the wire body 500 fixed thereon can be transferred from the loading bin 310 to the testing station. After the test is completed, the wire body fixing component 100 with the wire body 500 fixed thereon can be transferred from the testing station to the unloading bin 320 to realize the function, parameter, etc. testing of the wire body 500.
[0135] The flow plate 10 can be made of metal or other materials with a certain hardness. During the production and / or testing process, the flow plate 10 can be placed on a material transfer device 400 composed of a conveyor belt, a conveyor chain, etc., and the wire body 500 fixed on the flow plate 10 is transferred to the corresponding work station under the drive of the material transfer device 400. The flow plate 10 is provided with at least two mounting positions for the wire body 500, namely a first mounting position 11 and a second mounting position 12. The first mounting position 11 is used to fix the main body of the wire body 500, and the second mounting position 12 is used to fix the fixing clamp 20 placed thereon. After the fixing clamp 20 is fixed to the second mounting position 12, the terminal of the wire body 500 is fixed. That is, the main body of the wire body 500 is directly fixed to the first mounting position 11, and the terminal of the wire body 500 is indirectly fixed to the second mounting position 12 via the fixing clamp 20.
[0136] The first mounting position 11 can be set as a mounting groove 211, such as a U-shaped groove, and the opening of the U-shaped groove can face the fixed clamp 20 installed in the second mounting position 12. The shape, groove depth, and groove width of the mounting groove 211 are set and adapted to the shape, size, and dimensions of the wire body 500, and can be specifically formed by etching, stamping, and other processes on the flow plate 10. The first mounting position 11 can also be a limiting protrusion formed on the flow plate 10, and multiple limiting protrusions enclose to form a mounting position for the wire body 500 to be fixed. The first mounting position 11 can also be set at an attraction member 23 on the flow plate 10, such as a magnetic attraction member that can be attracted by turning on / off power, etc. When the wire body 500 needs to be fixed on the flow plate 10, it is powered on to attract and fix it, and when the wire body 500 needs to be removed from the flow plate 10, it is powered off to release the attraction and fixation. The first mounting position 11 is used to fix the main body of the line body 500 , thereby preventing relative movement between the line body 500 and the flow plate 10 during material transportation.
[0137] The fixed clamp 20 is detachably fixed to the second mounting position 12. The fixed clamp 20 has a working state in which it is fixedly mounted to the flow plate 10, and a working state in which it is separated from the flow plate 10. Specifically, when the filament 500 to be tested is removed from the loading bin 310, the fixed clamp 20 is fixed to the second mounting position 12, the main body of the filament 500 to be tested is fixedly mounted to the first mounting position 11, and the terminal head is fixedly mounted to the fixed clamp 20. When the flow plate 10 is driven by the material conveying device 400 to move to the corresponding testing station, the fixed clamp 20 is separated from the flow plate 10 by the material grasping device in the material conveying device 400 and is placed on the testing station together with the material to be tested. When the fixed clamp 20 is separated from the flow plate 10, the terminal head and main body of the filament 500 are also separated from the flow plate 10, and the fixed clamp 20 and the terminal head of the filament 500 remain in a fixed state. Under the fixation of the fixed clamp 20, a test point can be set on the terminal head fixed to the fixed clamp 20, and the test probe of the test assembly 200 can form an electrical connection with the terminal head to complete the test of the wire body 500. The fixed clamp 20 can prevent relative movement between the wire body 500 and the flow plate 10 during material transfer, and prevent relative movement between the test assembly 200 and the terminal head during testing. At the same time, under the action of the fixed clamp 20, good electrical contact is formed between the test assembly 200 and the terminal head, which can improve testing efficiency. Of course, in other embodiments, a third mounting position can also be provided on the flow plate 10, and the third mounting position can be used to fix the wire connecting the main body of the wire body 500 and the terminal head.
[0138] In one embodiment, the number of the first mounting positions 11 and the second mounting positions 12 are respectively plural; each first mounting position 11 is for mounting a main body of the line body 500; the number of the fixing clamps of the line body 500 corresponds to the number of the second mounting positions 12.
[0139] In this embodiment, multiple wires 500 can be mounted on a single flow carriage, allowing for simultaneous transfer and testing of multiple wires 500, thereby improving testing efficiency. The flow carriage 10 can be provided with multiple sets of first mounting positions 11 and second mounting positions 12. Each first mounting position can form a mounting position group with a second mounting position 12 to secure a single wire 500. In other words, a single flow carriage 10 can simultaneously accommodate multiple wires 500 and multiple fixing clamps 20, thereby improving the transfer and testing efficiency of the wires 500.
[0140] The present invention also provides a testing tool.
[0141] It should be noted that during the testing of the line body 500, when loading, it is necessary to manually take the product out of the tray and place it on the test fixture; and when unloading, it is also necessary to manually place the tested product on the tray. Figures 1 to 12 In one embodiment of the present invention, the test tool comprises:
[0142] Test component 200;
[0143] Storage component 300;
[0144] The material transmission device 400 is arranged between the test component 200 and the storage component 300; and the wire fixing component 100 as described above; wherein the material transmission device 400 is used to drive the wire fixing component 100 to move between the test component 200 and the storage component 300.
[0145] The detailed structure of the wire fixing assembly 100 can be referred to the above-mentioned embodiment and will not be repeated here. It can be understood that since the above-mentioned wire fixing assembly 100 is used in the test fixture of the present invention, the embodiment of the test fixture of the present invention includes all technical solutions of all embodiments of the above-mentioned wire fixing assembly 100, and the technical effects achieved are also exactly the same, which will not be repeated here.
[0146] In this embodiment, the test component 200 can realize the function and parameter setting of the wire body 500, and the storage component 300 can include an upper bin 310 and a lower bin 320. The upper bin 310 is for placing the wire body 500 to be tested, and the lower bin 320 is for placing the wire body 500 after the test is completed. The test tooling can also be provided with a test rack. The test component 200 and the storage component 300 are both arranged on the test rack. The test component 200 and the storage component 300 are connected through a material transmission device 400. Driven by the material transmission device 400, the material transmission device 400 can drive the wire body fixing component 100 to be fixed. The test component 200 moves between the test component 200 and the storage component 300, and when driving the wire fixing component 100 to move to the storage component 300, the wire 500 to be tested placed on the storage component 300 is fixedly installed on the wire fixing component 100; or, the tested wire 500 is unloaded onto the storage component 300; when the material transmission device 400 drives the wire fixing component 100 to move to the test component 200, the wire 500 fixedly installed on the wire fixing component 100 is transferred to the corresponding workstation of the test component 200 to realize the test of the wire 500. In this way, after the wire body 500 is loaded and placed on the wire body fixing assembly 100, the wire body 500 to be tested on the object placement assembly 300 is transferred to the test assembly 200 to complete the testing of the wire body 500. After the testing of the wire body 500 is completed, the tested wire body 500 on the test assembly 200 is transferred to the object placement assembly 300 to complete the unloading. The object placement assembly 300 includes an upper material bin 310 and a lower material bin 320, and the upper material bin 310 and the lower material bin 320 respectively realize the transmission of the wire body 500 between the testing assembly 200 and the material transfer device 400. When loading, the material tray is placed in the material bin, and the product is automatically sucked into the clamp and the flow tooling. In some embodiments, the test tooling can also be provided with an auxiliary clamp 600, such as a robot, or the user can operate the fixed clamp 20 through the auxiliary clamp 600 to further clamp the product head. The flow tooling automatically flows and is automatically placed on the test tooling for testing; when unloading, the fixed clamp 20 is opened, and the unloading module automatically sucks the product and places it in the unloading bin 320.
[0147] The present invention is provided with a test component 200, a storage component 300, and a material transfer device 400 provided between the test component 200 and the storage component 300. The material transfer device 400 is provided for the installation of the wire fixing component 100. Driven by the material transfer device 400, the wire fixing component 100 fixedly installed with the wire 500 can be moved between the test component 200 and the storage component 300. Thus, when testing the wire 500, the material can be automatically taken from the storage component 300, and the fixed clamp 20 and the wire 500 can be transferred to the test component 200, thereby realizing the automatic transfer and testing of the wire 500. After the test is completed, the wire fixing component 100 can be transferred to the storage component 300 under the drive of the material transfer device 400 to unload the wire 500 after the test is completed, thereby realizing the automatic transfer and testing of the wire 500.
[0148] Reference Figure 8 and Figure 9 In one embodiment, the material transfer device 400 includes:
[0149] The flow transfer assembly 410 is disposed in a first direction relative to the test assembly 200 and the storage assembly 300 and is used to movably mount the flow transfer plate 10 to drive the flow transfer plate 10 to move in the first direction;
[0150] The first transfer assembly 420 is disposed relative to the second direction of the test assembly 200 , and is used to drive the fixing clamp 20 and the main body of the line 500 to move in the second direction of the test assembly 200 .
[0151] In this embodiment, the first direction may be a direction parallel to the test assembly 200 and the storage assembly 300, and the second direction may be a direction perpendicular to the test assembly 200. The circulation assembly 410 is disposed on one side of the test assembly 200 and the storage assembly 300, and the first transfer assembly is disposed between the circulation assembly 410 and the test assembly 200. During operation, when testing the wire 500, the wire 500 is grabbed from the storage assembly 300 and placed on the circulation plate 10 placed on the circulation assembly 410 and fixed. The circulation assembly 410 then transfers the wire fixing assembly 100 to a position corresponding to the first transfer assembly. The first transfer assembly then transfers the wire 500 body fixed on the circulation plate 10 and the fixing clamp 20 to which the wire 500 terminal is fixed to the corresponding test position of the test assembly 200. After the test is completed, the first transfer assembly transfers the wire body 500 body and the fixed clamp 20 fixed with the wire body 500 terminal on the self-test assembly 200 to the flow plate 10 on the flow assembly 410 and fixes them. The flow assembly 410 transfers the wire body fixing assembly 100 to the next test position or transfers the wire body fixing assembly 100 to the storage assembly 300. Among them, the flow assembly 410 includes a conveyor belt and a driving component of the conveyor belt, such as a motor, a cylinder, etc., which are arranged on the test rack. There are two groups of conveyor belts, one of which is used to transport the wire body 500 to be tested, and the other group is used to transport the wire body 500 after the test is completed. The first transfer assembly includes a drag chain, a cable and an air pipe, as well as a driving component that drives the drag chain to move, such as a motor, etc. The test fixture is also provided with an electronic control component, which has a control unit, a detection unit, a power supply unit, etc. The electronic control component can control the operation of the driving component, thereby driving the flow assembly 410 and the first transfer assembly 420 to move. In this way, the wire body fixing component 100 is loaded and unloaded on the test fixture, and the first transfer component drives the first suction unit 432 to move, suck the fixed clamping piece 20 and the wire body 500, and perform testing, thereby realizing automated testing and transmission of the wire body 500.
[0152] Reference Figure 8 and Figure 9 In one embodiment, the material transmission device 400 further includes:
[0153] The first suction component 430 has one end mounted on the first transfer component, and the other end of the first suction component 430 is used to suck the fixing clamp 20 and the main body of the wire body 500 .
[0154] Specifically, the first suction assembly 430 includes:
[0155] The first slide cylinder 431 is installed on the second transfer assembly 440;
[0156] The first suction unit 432 is fixed on the first slide cylinder 431 . The first suction unit 432 includes at least one set of first suction nozzles. The first suction nozzles are used to suck the fixed clamp 20 and the main body of the wire body 500 .
[0157] In this embodiment, the slide cylinder can be connected to the air pipe provided on the transfer assembly and the suction nozzle on the first suction unit 432 to perform suction on the suction nozzle. When suction is performed, the suction nozzle can adsorb and fix the fixed clamp 20 and the body of the wire body 500, and under the drive of the first transfer assembly, the fixed clamp 20 and the wire body 500 are transferred to the test position of the test assembly 200, and then the suction is stopped to transfer the fixed clamp 20 and the wire body 500 to the test position, thereby realizing the automatic transmission and testing of the wire body 500. After the test is completed, under the drive of the first transfer assembly, the fixed clamp 20 and the wire body 500 are adsorbed onto the circulation plate 10 on the circulation assembly 410, and then the suction is stopped to unload the fixed clamp 20 and the wire body 500 after the test is completed, thereby realizing the automatic transmission and testing of the wire body 500.
[0158] Reference Figure 10 and Figure 11 In one embodiment, the material transmission device 400 further includes:
[0159] The second moving assembly 440 is disposed in a second direction relative to the storage assembly 300 . The second moving assembly 440 is used to drive the main body of the line body 500 to move in the second direction of the storage assembly 300 .
[0160] In this embodiment, the second direction of the storage assembly 300 can be a direction perpendicular to the storage assembly 300. The circulation assembly 410 is arranged on one side of the test assembly 200 and the storage assembly 300, and the second transfer assembly 440 is arranged between the circulation assembly 410 and the test assembly 200. During operation, when testing the wire body 500, the wire body 500 is grabbed from the storage assembly 300 and transferred to the second transfer assembly 440. The second transfer assembly 440 transfers the wire body 500 to the circulation plate 10 on the circulation assembly 410 and fixes it. After that, the circulation assembly 410 transfers the wire body fixing assembly 100 to the position corresponding to the first transfer assembly. The first transfer assembly transfers the wire body 500 body fixed on the circulation plate 10 and the fixing clamp 20 fixed with the wire body 500 terminal to the corresponding test position of the test assembly 200. After the test is completed, the first transfer assembly transfers the wire body 500 body and the fixed clamp 20 fixed with the wire body 500 terminal on the self-test assembly 200 to the flow carriage 10 on the flow assembly 410 and fixes them. The flow assembly 410 transfers the wire body fixing assembly 100 to the next test position or transfers the wire body fixing assembly 100 to the second transfer assembly 440 corresponding to the storage assembly 300. The second transfer assembly 440 transfers the completed test wire body 500 back to the storage assembly 300. Among them, the second transfer assembly 440 includes a drag chain, a cable and an air pipe, as well as a driving component for driving the drag chain to move, such as a motor, etc. The motor can be driven by the electronic control component on the test fixture to work, thereby driving the flow assembly 410 and the second transfer assembly 440 to move, thereby realizing automated testing and transmission of the wire body 500.
[0161] Reference Figure 10 and Figure 11 In one embodiment, the material transmission device 400 further includes:
[0162] The second suction component 450 has one end mounted on the second transfer component 440 , and the other end of the second suction component 450 is used to suck the main body of the wire body 500 .
[0163] The second slide cylinder 451 is installed on the second transfer assembly 440;
[0164] The second suction unit 452 is fixed on the first slide cylinder 431 . The first suction unit 432 includes at least one second suction nozzle, and the second suction nozzle is used to suck the main body of the wire body 500 .
[0165] In this embodiment, the slide cylinder can be connected to the air pipe provided on the transfer assembly and the suction nozzle on the first suction unit 432 to perform suction on the suction nozzle. During suction, the suction nozzle can adsorb and fix the fixed clamp 20 and the body of the wire body 500, and under the drive of the second transfer assembly 440, the wire body 500 is adsorbed to the flow plate 10 provided on the flow assembly 410, and then the suction is stopped to fix the wire body 500 to the first mounting position 11 of the flow plate 10 and the fixed clamp 20 fixed to the second mounting position 12, thereby realizing the automated transmission and testing of the wire body 500. Alternatively, after the test of the wire body 500 is completed, under the drive of the second transfer assembly 440, the wire body 500 provided on the flow plate 10 is adsorbed to the storage assembly 300, and then the suction is stopped to return the wire body 500 to the storage assembly 300, thereby completing the automated transmission and testing of the wire body 500.
[0166] In the above embodiment, the second transfer assembly 440 includes two transfer units, and the number of suction units is also two. Each transfer unit corresponds to a suction unit, forming a group of transmission devices, one group is used to absorb and transmit the wire body 500 before the test, and the other group is used to absorb and transmit the wire body 500 after the test, that is, to complete the exchange of the wire body 500 before and after the test.
[0167] Reference Figure 12 In one embodiment, the test assembly 200 includes a plurality of test platforms, and the material transmission device 400 is used to realize line 500 transmission between the plurality of test platforms.
[0168] In this embodiment, there can be multiple test platforms, each of which can perform the same functional and parameter tests on the line body 500. That is, multiple test platforms can simultaneously test multiple line bodies 500, enabling batch testing of the line body 500. The multiple test platforms can each test different functional and parameter tests. That is, each test platform can test at least one parameter and function of the line body 500. The multiple test platforms have corresponding test processes, so that after completing the previous test process, the line body 500 is transferred to the next test process under the action of the flow assembly 410, the first transfer assembly, and the first suction assembly 430. In this way, each process test of the line body 500 is achieved.
[0169] The test fixture of the present invention can achieve the fixation of the head of the wire body 500, such as the head of a cable, and the positioning and circulation of the wire body 500. The fixed clamp 20 positions and fixes the head of the cable, and the first installation position 11 of the circulation plate 10 positions the main body of the wire body 500. The circulation plate 10 and the fixed clamp 20 regard the fixing part of the wire body 500 as a whole. Driven by the circulation component 410, the circulation plate 10 circulates between the upper bin 310, various test platforms and the lower bin 320. During the testing and circulation process of the test fixture, the terminal head and the main body of the wire body 500 are fixed in corresponding positions. The test fixture solves the problem that the wire body 500, such as the cable, is soft and bendable and cannot be automatically tested.
[0170] The present invention also provides a line body testing method, using the above-mentioned testing tool, the line body testing method comprises the following steps:
[0171] Step S100: Control the material transfer device to extract the material to be tested from the storage assembly to the line fixing assembly;
[0172] Step S200: Control the wire fixing clamps of the wire fixing assembly to respectively fix the wire body and the terminal of the material to be tested;
[0173] Step S300: Control the material transmission device to drive the line fixing assembly to move to the testing assembly;
[0174] Step S400: Control the material conveying device to extract the wire body fixing clamp to the testing station corresponding to the testing component to test the material to be tested;
[0175] Step S500: Control the material transfer device to extract the wire fixing clamp from the test assembly to the flow plate of the wire fixing assembly, and drive the wire fixing assembly to move to the storage assembly.
[0176] The present invention controls the operation of a material transfer device disposed between the test assembly and the storage assembly, and driven by the material transfer device, a wire fixing assembly, on which a wire is fixedly mounted, can be moved between the test assembly and the storage assembly. Thus, when testing the wire, material can be automatically retrieved from the storage assembly, and the fixed clamp and the wire can be transferred to the test assembly, thereby achieving automated transfer and testing of the wire. After the test is completed, the wire fixing assembly can be transferred to the storage assembly under the drive of the material transfer device to unload the tested wire, thereby achieving automated transfer and testing of the wire.
[0177] In order to better illustrate the inventive concept of the present invention, the working principle of the present invention is described below in conjunction with various embodiments of the present invention:
[0178] In this embodiment, when transferring materials from the storage assembly 300 to the testing assembly 200 for testing the materials:
[0179] The second transfer assembly 440 of the material transfer device 400 drives the second suction assembly 450, which absorbs the material placed in the upper hopper 310, to move to the circulation assembly 410 and fix the material on the circulation plate 10 and the fixed clamp 20 of the moving line fixing assembly 100. The circulation plate 10 is placed on the circulation assembly 410. The circulation assembly 410 of the material transfer device 400 then drives the line fixing assembly 100 to move from the storage assembly 300 to the testing assembly 200.
[0180] When the wire fixing assembly 100 is driven to move to the testing assembly 200, the first transfer assembly 420 of the material transfer device 400 drives the first suction assembly 430 with the material and the fixed clamping member 20 adsorbed thereon to transfer the wire 500 and the fixed clamping member 20 to the corresponding workstation of the testing assembly 200, so as to realize the testing of the wire 500;
[0181] After the test is completed, the first transfer assembly 420 of the material transfer device 400 drives the first suction assembly 430 with the material and the fixed clamp 20 to fix the wire 500 on the wire fixing assembly 100. The flow assembly 410 then moves the wire fixing assembly 100 from the testing assembly 200 to the storage assembly 300.
[0182] When driving the line fixing component 100 toward the lower bin of the storage component 300 , the second transfer component 440 of the material transmission device 400 drives the second suction component 450 adsorbing the material to move to the lower bin 320 , thereby completing the line 500 test.
[0183] When the wire fixing assembly 100 moves driven by the circulation assembly 410 , the auxiliary clamp 500 can further clamp the head of the wire 500 to prevent relative movement between the head of the wire 500 and the fixing clamp 20 .
[0184] The above descriptions are merely optional embodiments of the present invention and do not limit the patent scope of the present invention. All equivalent structural transformations made using the contents of the present description and drawings under the inventive concept of the present invention, or direct / indirect applications in other related technical fields, are included in the patent protection scope of the present invention.
Claims
1. A wire fixing clamp, wherein the wire comprises a wire body and a terminal connected to the wire body, characterized in that: The line body fixing clamping member includes: A fixing clamp body, wherein the fixing clamp body is provided with a mounting groove for mounting the wiring head and a conductive member disposed in the mounting groove, one end of the conductive member is disposed in the mounting groove, and the other end of the conductive member extends out of the fixing clamp body, and is capable of automatically contacting a test point on the test assembly when the wire body fixing clamp is moved to the test assembly; the mounting groove cooperates with the test assembly to form a test position during the test process; the fixing clamp body is disposed in the mounting hole; a pressure block, the pressure block being movably connected to the fixing clamp body, the pressure block having a clamping position for clamping the fixing clamp body, and an opening position for opening the fixing clamp body; when the fixing clamp body and the pressure block are clamped, the wire body is transferred to the test position corresponding to the test assembly, the wiring head installed in the installation slot is clamped and fixed, and the wiring head is driven to communicate with the conductive member; A wire end fixing module is detachably mounted in the mounting hole of the fixing clamp body, the mounting groove is formed in the wire end fixing module, and the conductive member is fixed to the wire end fixing module; The thread end fixing module includes: a conductive member fixing block, detachably connected to the fixing clamp body, and used to fix the conductive member on the fixing clamp body; A positioning block, wherein the positioning block is protruded on the conductive member fixing block, the positioning block is at least partially accommodated in the mounting hole, and the positioning block is formed with the mounting groove for placing the terminal head; the positioning block is provided with a through hole, the through hole is for the conductive member to pass through, and the positioning block is an elastic positioning block.
2. The wire fixing clamp according to claim 1, characterized in that: The thread end fixing module also includes: An elastic member, one end of which is arranged on the conductive member fixing block and located on one side of the positioning block, and the other end of which is in contact with the fixing clip body.
3. The wire fixing clamp according to any one of claims 1 to 2, characterized in that: There are multiple mounting holes. The number of the thread end fixing modules corresponds to the number of the mounting holes, and each thread end fixing module is used to mount a type of the thread body; And / or, when the same type of wire end fixing module has multiple wiring ends, each of the wire end fixing modules is used to install one of the wiring ends of the same wire body.
4. A line fixing assembly, characterized in that: The line fixing assembly includes: A flow plate, the flow plate having a first mounting position and a second mounting position, the first mounting position being for mounting the main body of the line; and the line fixing clamp according to any one of claims 1 to 3; The wire body fixing clamp is detachably mounted on the second mounting position, and the fixing clamp is used to clamp the wiring end of the wire body.
5. The line fixing assembly according to claim 4, wherein: There are a plurality of first mounting positions and a plurality of second mounting positions; each of the first mounting positions is for mounting a main body of the line body; The number of the line fixing clamps corresponds to the number of the second installation positions.
6. A test tool, characterized in that: include: Test components; Storage components; A material transfer device is provided between the test component and the storage component; And, the wire fixing assembly according to any one of claims 4 or 5; wherein the material transmission device is used to drive the wire fixing assembly to move between the testing assembly and the storage assembly.
7. A line testing method using the testing tool as claimed in claim 6, characterized in that: The line body testing method comprises the following steps: Control the material transfer device to extract the material to be tested from the storage component to the line body fixing component; Controlling the wire fixing clamps of the wire fixing assembly to respectively fix the wire body and the terminal of the material to be tested; Controlling the material transmission device to drive the line fixing assembly to move to the testing assembly; Controlling the material transfer device to extract the wire body fixing clamp to the test station corresponding to the test assembly to test the material to be tested; The material transmission device is controlled to extract the wire fixing clamp from the testing component to the flow plate of the wire fixing component, and drive the wire fixing component to move to the storage component.
Citation Information
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