Cable detection tool
By setting up adjustment components and control components, the mechanical straightening and synchronous detection of cables is achieved using bidirectional screws and hydraulic cylinders, which solves the problem of tension inconsistency caused by manual operation, and improves the consistency of cable detection and the universality of equipment.
Patent Information
- Application Number
- CN202422200343.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-09
AI Technical Summary
The existing cable testing tooling causes inconsistency in tension due to manual operation when pulling cables, which affects the consistency and repetition of test results.
The bidirectional screw in the adjustment assembly drives the moving seat to move in opposite directions, straightens the cables mechanically, and adjusts the distance of the detection device through the control assembly to adapt to cables of different lengths and specifications, and achieves synchronous detection in combination with the hydraulic cylinder.
Ensure that the cable tension is the same during each test, improve the consistency and repeatability of test results, enhance the versatility and flexibility of the equipment, and achieve comprehensive and meticulous inspection.
Smart Images

Figure CN223272618U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cable detection devices, in particular to a cable detection tool. Background Art
[0002] Cable testing tools are professional equipment used to test and diagnose cable performance. They are essential to ensuring the quality and correct installation of cables.
[0003] In existing cable testing, the first step is to select a suitable cable testing tool, check whether the tool's power supply, connecting wires, sensors and other accessories are intact, then connect the cable to be tested to the tool's test interface or fixture, and then test it through the tool's control panel or computer software according to the test requirements.
[0004] However, this cable testing tool has some defects. During the actual cable testing process, in order to better simulate the deployment of cables in actual applications and obtain more realistic performance data, the cables usually need to be straightened for testing. The existing testing tool is manually stretched, but when straightening the cables, operators may generate different degrees of tension due to different personal techniques, resulting in different cable stretching forces, affecting the consistency of test results.
[0005] Therefore, it is necessary to provide a cable detection tool to solve the above technical problems. Utility Model Content
[0006] In view of the above situation, in order to overcome the defects of the existing technology, the utility model provides a cable detection tooling that can be equipped with an adjustment component. In actual use, the bidirectional screw can drive the movable seats at both ends to move in opposite directions, thereby achieving the straightening of the cable. By straightening the cable mechanically, it can be ensured that the tension of the cable is the same during each test, reducing the variables introduced by human operation, thereby improving the consistency and repeatability of the test results.
[0007] In order to achieve the above purpose, the technical solution adopted by the present utility model is as follows:
[0008] The cable detection tooling includes: a tooling table, a detection device, the detection device is installed on the end face of the tooling table, the tooling table includes a detection table, a through slot is provided on the upper end face of the detection table, and an adjustment component is also provided on the upper end of the detection table. The adjustment component includes a bidirectional screw installed in the through slot provided in the detection table, one end of the bidirectional screw is sleeved and connected to the output end of the control motor, the control motor is installed on the side end face of the detection table, and a movable seat is also sleeved on the bidirectional screw, which is installed on the slide rail, and the slide rail is fixedly installed on the upper end face of the detection table. The movable seat is also equipped with a harness holder.
[0009] Preferably, a control component is also provided on the upper end surface of the workbench, and the control component includes a fixed seat, which is installed on the slide rail. One end of the fixed seat is fixedly connected to the hydraulic cylinder, which is fixedly installed on the bracket, and the detection device is assembled on the other end surface of the fixed seat.
[0010] Preferably, two groups of the control components and detection devices are installed, and both groups are symmetrically arranged on the upper end surface of the detection table.
[0011] Preferably, a positioning groove is provided on the end surface of the fixing seat, and the fixing seat is detachably fixedly connected to the connecting block sleeved on the output end of the hydraulic cylinder through the positioning groove and the positioning bolt.
[0012] Preferably, a threaded hole is further provided on the upper end surface of the movable seat, and the wiring harness holder is detachably mounted on the movable seat through protruding plates at both ends in cooperation with threaded bolts.
[0013] Preferably, the end surface of the detection device is further provided with a plurality of positioning caps, and the detection device is detachably mounted on the end surface of the fixing seat through the positioning caps.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] (1) The utility model has an adjustment component, which can drive the two ends of the movable seat to move in opposite directions through the bidirectional screw during actual use, thereby straightening the cable. By mechanically straightening the cable, it can ensure that the tension of the cable is the same during each test, reducing the variables introduced by human operation, thereby improving the consistency and repeatability of the test results;
[0016] (2) The utility model can realize left-right distance adjustment of the detection device by using multiple parts in the control assembly. In actual use, after the cables at both ends are straightened, the distance between the detection devices can be adjusted to accommodate cables of different lengths and specifications, thereby improving the versatility and flexibility of the equipment.
[0017] (3) The utility model is equipped with two groups of control components and detection devices, and the two groups are symmetrically arranged. In actual use, detection can be performed at both ends of the cable at the same time, ensuring the comprehensiveness and meticulousness of the test. At the same time, when there is a problem with the cable, detection at both ends helps to locate the fault point quickly and accurately. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the overall structure of the cable detection tooling provided by the utility model;
[0019] Figure 2 A schematic diagram of the installation structure of the adjustment component and control component of the cable detection tooling provided by the present invention;
[0020] Figure 3 A schematic diagram of the structure of the adjustment component of the cable detection tooling provided by the present invention;
[0021] Figure 4 This is a schematic diagram of the control component structure of the cable detection tooling provided by the utility model.
[0022] Among them, the names corresponding to the figure marks are: 100, workbench; 101, testing table; 102, bracket; 103, through slot; 200, wire harness holder; 300, adjustment component; 301, slide rail; 302, bidirectional screw; 303, control motor; 304, movable seat; 400, control component; 401, fixed seat; 402, positioning slot; 403, hydraulic cylinder; 404, connecting block; 500, testing device; 501, positioning cap. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments. The present invention includes but is not limited to the following embodiments.
[0024] First embodiment:
[0025] like Figure 1-4 As shown, the cable detection tool provided by the present invention includes: a tooling table 100, a detection device 500, the detection device 500 is installed on the end face of the tooling table 100, the tooling table 100 includes a detection table 101, a through slot 103 is opened on the upper end face of the detection table 101, and an adjustment component 300 is also provided on the upper end of the detection table 101. The adjustment component 300 includes a bidirectional screw 302 installed in the through slot 103 provided on the detection table 101, one end of the bidirectional screw 302 is sleeved and connected to the output end of the control motor 303, the control motor 303 is installed on the side end face of the detection table 101, and a movable seat 304 is also sleeved on the bidirectional screw 302. The movable seat 304 is installed on the side end face of the detection table 101. It is installed on the slide rail 301, and the slide rail 301 is fixedly installed on the upper end surface of the detection table 101. The movable seat 304 is also equipped with a harness clamp 200. When in use, the staff clamps the two ends of the cable to the harness clamp 200, and then starts the control motor 303. Through the rotation of the bidirectional screw 302, the movable seats 304 at both ends are driven to move towards each other. Through the opposite movement of the movable seat 304, the synchronous opposite stretching of the cable is achieved. When the cable is straightened, by starting the hydraulic cylinder 403, the hydraulic cylinder 403 drives the fixed seat 401 and the detection device 500 to move toward the cable interface end until the detection device 500 is docked with the cable interface.
[0026] By setting up the adjustment component 300, in actual use, the bidirectional screw 302 can drive the movable seats 304 at both ends to move in opposite directions, thereby straightening the cable. By straightening the cable mechanically, it can be ensured that the tension of the cable is the same during each test, reducing the variables introduced by human operation, thereby improving the consistency and repeatability of the test results.
[0027] Second embodiment:
[0028] like Figure 1 、 Figure 2 、 Figure 4 As shown, a control component 400 is also provided on the upper end surface of the workbench 100. The control component 400 includes a fixed seat 401, which is installed on the slide rail 301. One end of the fixed seat 401 is fixedly connected to the hydraulic cylinder 403. The hydraulic cylinder 403 is fixedly installed on the bracket 102, and the detection device 500 is assembled on the other end surface of the fixed seat 401. During actual use, the staff starts the hydraulic cylinder 403, and the piston of the hydraulic cylinder 403 is pushed to realize the movement of the fixed seat 401 on the slide rail 301.
[0029] By cooperating with multiple parts within the control component 400, the left and right distance of the detection device 500 can be adjusted. In actual use, after the cables at both ends are straightened, the distance of the adjustable detection device 500 can adapt to cables of different lengths and specifications, thereby improving the versatility and flexibility of the equipment.
[0030] Third embodiment:
[0031] like Figure 1-2 As shown, two groups of control components 400 and detection devices 500 are installed, and both groups are symmetrically arranged on the upper end surface of the detection platform 101.
[0032] By installing two sets of control components 400 and detection devices 500, and setting them symmetrically, in actual use, it is possible to test both ends of the cable simultaneously, ensuring comprehensiveness and meticulousness of the test. At the same time, when there is a problem with the cable, testing at both ends helps to quickly and accurately locate the fault point.
[0033] Fourth embodiment:
[0034] like Figure 2 、 Figure 4 As shown, a positioning groove 402 is provided on the end surface of the fixing seat 401, and the fixing seat 401 is detachably fixedly connected to the connecting block 404 sleeved on the output end of the hydraulic cylinder 403 through the positioning groove 402 and the positioning bolt.
[0035] By using the positioning groove 402 in conjunction with the connecting block 404 provided at the output end of the hydraulic cylinder 403, the fixing seat 401 and the hydraulic cylinder 403 can be quickly installed and disassembled, making it convenient for subsequent staff to disassemble and maintain them.
[0036] Fifth embodiment:
[0037] like Figure 3 As shown, a threaded hole 305 is further provided on the upper end surface of the movable seat 304 , and the harness holder 200 is detachably mounted on the movable seat 304 through protruding plates at both ends and threaded bolts.
[0038] The wire harness holder 200 is installed in a quick disassembly manner, which makes it convenient for subsequent staff to replace the wire harness holder 200. By replacing different wire harness holders 200, cables of different types can be clamped and fixed.
[0039] Sixth embodiment:
[0040] like Figure 4 As shown, the end surface of the detection device 500 is further provided with a plurality of positioning caps 501 , and the detection device 500 is detachably mounted on the end surface of the fixing seat 401 through the positioning caps 501 .
[0041] The detection device 500 is detachably mounted on the end surface of the fixing seat 401 , thereby facilitating subsequent maintenance of the detection device 500 and ensuring stable operation of the detection device 500 .
[0042] Working principle: When in use, the staff clamps the two ends of the cable onto the harness holder 200, and then starts the control motor 303, through the rotation of the bidirectional screw 302, drives the movable seats 304 at both ends to move toward each other, and through the opposite movement of the movable seats 304, the synchronous opposite stretching of the cable is achieved. When the cable is straightened, the hydraulic cylinder 403 is started, and the hydraulic cylinder 403 drives the fixed seat 401 and the detection device 500 to move toward the cable interface end until the detection device 500 is docked with the cable interface.
[0043] The above embodiment is only one of the preferred implementation methods of the present invention and should not be used to limit the scope of protection of the present invention. Any changes or modifications that have no substantive meaning made to the main design concept and spirit of the present invention, as long as the technical problems they solve are still consistent with the present invention, should be included in the scope of protection of the present invention.
Claims
1. A cable detection tool, characterized in that: include: A tooling platform (100) and a detection device (500), wherein the detection device (500) is installed on the end surface of the tooling platform (100), the tooling platform (100) includes a detection platform (101), the upper end surface of the detection platform (101) is provided with a through slot (103), and the upper end of the detection platform (101) is further provided with an adjustment component (300), wherein the adjustment component (300) includes a bidirectional screw installed in the through slot (103) provided on the detection platform (101) (302), one end of the bidirectional screw (302) is sleeve-connected with the output end of the control motor (303), the control motor (303) is installed on the side end face of the detection platform (101), the bidirectional screw (302) is also sleeved with a movable seat (304), the movable seat (304) is installed on the slide rail (301), the slide rail (301) is fixedly installed on the upper end face of the detection platform (101), and the movable seat (304) is also equipped with a wiring harness holder (200).
2. A cable detection tool according to claim 1, characterized in that: The upper end surface of the tooling table (100) is further provided with a control assembly (400), the control assembly (400) comprising a fixed seat (401), the fixed seat (401) being mounted on the slide rail (301), one end of the fixed seat (401) being fixedly connected to a hydraulic cylinder (403), the hydraulic cylinder (403) being fixedly mounted on the bracket (102), and the detection device (500) being assembled on the other end surface of the fixed seat (401).
3. A cable detection tool according to claim 2, characterized in that: The control assembly (400) and the detection device (500) are installed in two groups, and both groups are symmetrically arranged on the upper end surface of the detection platform (101).
4. A cable detection tool according to claim 2, characterized in that: The end surface of the fixing seat (401) is provided with a positioning groove (402), and the fixing seat (401) is detachably fixedly connected to a connecting block (404) sleeved on the output end of the hydraulic cylinder (403) through the positioning groove (402) and in cooperation with a positioning bolt.
5. The cable detection tool according to claim 1, characterized in that: The upper end surface of the movable seat (304) is also provided with a threaded hole (305), and the harness holder (200) is detachably mounted on the movable seat (304) through protruding plates provided at both ends in conjunction with threaded bolts.
6. The cable detection tool according to claim 3, characterized in that: The end surface of the detection device (500) is further provided with a plurality of positioning caps (501), and the detection device (500) is detachably mounted on the end surface of the fixing seat (401) via the positioning caps (501).