Electrode detection tool set capable of rapidly replacing head and being used in multiple scenes
By designing a multi-scenario electrode testing tool with quick head replacement, the problem of limited applicability of traditional tools has been solved, enabling efficient testing of various insulating tools and improving testing accuracy and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- KUNMING NENGREI TECH CO LTD
- Filing Date
- 2025-04-25
- Publication Date
- 2026-04-21
AI Technical Summary
Traditional electrode testing tools have limited functionality, making them unsuitable for testing various insulating tools. They also suffer from low testing efficiency and safety hazards.
Design a multi-scenario electrode testing kit with quick-change head, including replaceable straight, right-angle, 45-degree, and arc-shaped electrode plates, suitable for different types of insulating tools, and achieve fixed connection of electrode plates through test rod head base and test leads.
It improves detection efficiency and accuracy, reduces detection errors, eliminates safety hazards, and enhances the portability of the device.
Smart Images

Figure CN224152596U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of insulating tool testing technology, specifically to a complete set of electrode testing tools that can be quickly changed and used in multiple scenarios. Background Technology
[0002] Currently, there are many problems in electrode testing of insulating tools. Traditional electrode testing tools are single-function, capable of testing only one type of insulating tool, making it difficult to adapt to the testing needs of different types of insulating tools in various scenarios. This directly leads to extremely low testing efficiency. Moreover, the applicability of existing testing tools is very limited. For curved tools such as insulating rods, the contact area between the testing probe and the tested object is too small. This mismatch can easily lead to large errors in the test results, thus creating safety hazards and failing to effectively guarantee the accuracy and reliability of insulating tool testing. Utility Model Content
[0003] In order to overcome the problems existing in the background technology, this utility model provides a complete set of electrode testing tools that can be quickly changed and used in multiple scenarios, so as to solve the technical problem that the traditional electrode testing tools mentioned in the background technology have a single function and can only be used to test one type of insulating tool, making it difficult to test multiple types of insulating tools.
[0004] To achieve the above objectives, this utility model is implemented through the following technical solution:
[0005] A complete set of electrode testing tools with quick head replacement for use in multiple scenarios includes an insulating operating rod 100, a test rod head base 200, a test lead 400, and test electrode plates. The test rod head base 200 is connected to the front end of the insulating operating rod 100. The test electrode plates include a straight electrode plate 300, a right-angle electrode plate 500, a 45-degree electrode plate 600, and an arc-shaped electrode plate 700. The straight electrode plate 300, right-angle electrode plate 500, 45-degree electrode plate 600, and arc-shaped electrode plate 700 can be replaced and installed on the test rod head base 200. The front end of the arc-shaped electrode plate 700 has an arc-shaped structure. The test lead 400 is connected to the test electrode plate.
[0006] Preferably, the test rod head base 200 has a U-shaped structure, and the two parallel rods of the U-shaped structure have slots 203 for fixing the detection electrode sheet. The detection electrode sheet is fixed in the slot 203 by electrode fixing bolts 201. The test line 400 has two wires that are respectively connected to the two monitoring electrode sheets.
[0007] Preferably, the end of the test line 400 is provided with a round hole nose 401 that is inserted into the slot 203 to contact the detection electrode sheet and is fixed by the electrode fixing bolt 201.
[0008] Preferably, the lower end of the test rod head base 200 is provided with an insert plate 204 inserted into the front end of the insulating operating rod 100. The insert plate 204 is fixedly connected to the insulating operating rod 100 by a locking bolt 102, thereby fixing the test rod head base 200 to the front end of the insulating operating rod 100.
[0009] Preferably, the front edge of the insulating operating rod 100 is provided with an insulating shield 202 that isolates the insulating operating rod 100 from the working area of the detection electrode sheet.
[0010] Preferably, the rear end of the insulating operating rod 100 is fitted with a rubber grip 101.
[0011] The beneficial effects of this utility model are as follows: By setting interchangeable detection electrode plates of various types, this utility model can efficiently detect a variety of insulating tools, such as insulating blankets, insulating ladders, insulating clothing, and insulating rods, thereby improving detection efficiency and solving the problem of limited functionality and applicability of traditional monitoring tools. Furthermore, by setting detection electrode plates of different shapes to detect corresponding insulating tools, the contact area between the detection electrode plates and the insulating tools is increased, thereby improving the accuracy and stability of the detection, reducing detection errors, eliminating safety hazards, and eliminating the need to carry multiple types of detection tools, thus improving the portability of the device. Attached Figure Description
[0012] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0013] Figure 2 This is a schematic diagram of the structure of the right-angled electrode sheet, the 45-degree electrode sheet, and the arc-shaped electrode sheet.
[0014] Figure 3 This is a schematic diagram of the connection structure between the test rod head base and the detection electrode plate.
[0015] Figure 4 This is a structural schematic diagram of the test rod head base. Detailed Implementation
[0016] To make the objectives, technical solutions, and beneficial effects of this utility model clearer, the preferred embodiments of this utility model will be described in detail below with reference to the accompanying drawings, so as to facilitate the understanding of those skilled in the art.
[0017] like Figure 1-4As shown, this utility model provides a complete set of electrode testing tools that can be quickly interchanged and used in multiple scenarios. It includes an insulating operating rod 100, a test rod head base 200, a test lead 400, and testing electrode plates. The test rod head base 200 is connected to the front end of the insulating operating rod 100. The testing electrode plates include a straight electrode plate 300, a right-angle electrode plate 500, a 45-degree electrode plate 600, and an arc-shaped electrode plate 700. The straight electrode plate 300, right-angle electrode plate 500, 45-degree electrode plate 600, and arc-shaped electrode plate 700 can be replaced and installed on the test rod head base 200. The front end of the arc-shaped electrode plate 700 has an arc-shaped structure. The test lead 400 is connected to the testing electrode plate. This invention, depending on the type of insulating tool to be tested, selects and mounts different testing electrodes on the test rod head base 200. Straight electrode 300 is mainly used for testing insulating blankets; right-angle electrode 500 is mainly used for testing insulating ladders; 45-degree electrode 600 is mainly used for testing insulating clothing; and arc-shaped electrode 700 is mainly used for testing insulating rods. The end of the test lead 400 is connected to the insulation tester, and the electrode is brought into contact with the insulating tool to be tested to detect its insulation performance. This invention features replaceable electrodes. Multiple types of detection electrode pads enable efficient detection of various insulating tools, such as insulating blankets, insulating ladders, insulating clothing, and insulating rods, thereby improving detection efficiency and solving the problems of limited functionality and applicability of traditional monitoring tools. By setting detection electrode pads of different shapes to detect corresponding insulating tools, the contact area between the detection electrode pads and the insulating tools is increased, thereby improving the accuracy and stability of the detection, reducing detection errors, eliminating safety hazards, and eliminating the need to carry multiple types of detection tools, thus improving the portability of the device.
[0018] The test rod head base 200 has a U-shaped structure. Two parallel rods of the U-shaped structure have slots 203 for fixing the detection electrode pieces. The detection electrode pieces are fixed in the slots 203 by electrode fixing bolts 201. The test leads 400 have two leads, each connected to one of the two detection electrode pieces. The detection electrode pieces to be installed are inserted into the slots 203 and then fixed in place by the electrode fixing bolts 201, thus achieving the connection between different detection electrode pieces and the test rod head base 200.
[0019] The test lead 400 has a round hole nose 401 at its end, which fits into the slot 203 and contacts the detection electrode plate, and is fixed by the electrode fixing bolt 201. During installation, the detection electrode plate is inserted into the slot 203, and the round hole nose 401 at the end of the test lead 400 is inserted into the slot 203 and aligned with the through hole on the detection electrode plate. Then, the electrode fixing bolt 201 passes through both the detection electrode plate and the round hole nose 401 for fixation, thereby fixing the test lead 400 and the detection electrode plate together and improving the installation efficiency of the detection electrode plate.
[0020] The lower end of the test rod head base 200 is provided with an insert plate 204 inserted into the front end of the insulating operating rod 100. The insert plate 204 is fixedly connected to the insulating operating rod 100 by a locking bolt 102, thereby fixing the test rod head base 200 to the front end of the insulating operating rod 100.
[0021] The front edge of the insulating operating rod 100 is provided with an insulating shield 202 to isolate the insulating operating rod 100 from the working area of the detection electrode sheet. By setting the insulating shield 202, the area of the insulating operating rod 100 can be effectively isolated from the working area of the detection electrode sheet, thereby improving the safety of the personnel during insulation testing.
[0022] The rear end of the insulating operating rod 100 is fitted with a rubber grip 101.
[0023] Work process:
[0024] This invention, depending on the type of insulating tool to be tested, selects and installs different testing electrode plates on the test rod head base 200. Straight electrode plate 300 is mainly used for testing insulating blanket-type tools; right-angle electrode plate 500 is mainly used for testing insulating ladder-type tools; 45-degree electrode plate 600 is mainly used for testing insulating clothing-type tools; and arc-shaped electrode plate 700 is mainly used for testing insulating rod-type tools. The required testing electrode plate is inserted into the slot 203 and then fixed in the slot 203 using electrode fixing bolts 201. The round hole lug 401 at the end of the test line 400 is inserted into the slot 203 and aligned with the through hole on the testing electrode plate. Then, the electrode fixing bolts 201 are used to fix both the testing electrode plate and the round hole lug 401, thus fixing the test line 400 and the testing electrode plate together. The end of the test line 400 is connected to the insulation tester. The electrode plate is then brought into contact with the insulating tool to be tested, allowing for the detection of the insulating performance of the tool.
[0025] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of this utility model.
Claims
1. A complete set of electrode testing tools that can be quickly interchanged and used in multiple scenarios, characterized in that: The device includes an insulating operating rod (100), a test rod head base (200), a test lead (400), and detection electrode plates. The test rod head base (200) is connected to the front end of the insulating operating rod (100). The detection electrode plates include straight electrode plates (300), right-angle electrode plates (500), 45-degree electrode plates (600), and arc-shaped electrode plates (700). The straight electrode plates (300), right-angle electrode plates (500), 45-degree electrode plates (600), and arc-shaped electrode plates (700) can be replaced and installed on the test rod head base (200). The front end of the arc-shaped electrode plate (700) has an arc-shaped structure. The test lead (400) is connected to the detection electrode plate.
2. The electrode detection kit of claim 1, wherein: The test rod head base (200) has a U-shaped structure. The two parallel rods of the U-shaped structure have slots (203) for fixing the detection electrode sheet. The detection electrode sheet is fixed in the slot (203) by electrode fixing bolts (201). The test line (400) has two wires that are respectively connected to the two monitoring electrode sheets.
3. The electrode detection kit of claim 2, wherein: The test line (400) has a round hole nose (401) at its end, which is inserted into the slot (203) and contacts the detection electrode sheet, and is fixed by the electrode fixing bolt (201).
4. The electrode detection kit of any one of claims 1-3, wherein: The lower end of the test rod head base (200) is provided with an insert plate (204) inserted into the front end of the insulating operating rod (100). The insert plate (204) is fixedly connected to the insulating operating rod (100) by locking bolts (102), thereby fixing the test rod head base (200) to the front end of the insulating operating rod (100).
5. The electrode detection kit of claim 4, wherein: The front edge of the insulating operating rod (100) is provided with an insulating shield (202) that isolates the insulating operating rod (100) from the working area of the detection electrode sheet.
6. The electrode test kit of any one of claims 1-3, wherein: The rear end of the insulating operating rod (100) is fitted with a rubber grip (101).