A device for improving the detection efficiency of a formation tank solution

By combining a water bath and a lifting support, the conductivity of multiple formation tank solutions can be detected simultaneously, solving the problems of low detection accuracy and efficiency, and improving the flexibility and accuracy of the detection.

CN224594550UActive Publication Date: 2026-08-04GUANGXI HEZHOU GUIDONG ELECTRONICS TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGXI HEZHOU GUIDONG ELECTRONICS TECH
Filing Date
2025-08-27
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In existing technologies, the conductivity of chemical reaction bath solutions has low accuracy and low efficiency, especially at low room temperature, which affects the accuracy of the test. Furthermore, the efficiency of using a conductivity meter alone is insufficient.

Method used

Multiple water baths and lifting support devices are used, combined with a conductivity meter and test electrodes, to achieve simultaneous testing of multiple bath solutions. The test electrodes are inserted into the bath solution by a lifting rod to perform conductivity testing, and a temperature controller and an electric lifting support are used to improve testing efficiency and accuracy.

Benefits of technology

This technology enables simultaneous detection of multiple formation tank solutions, improving the accuracy and efficiency of conductivity detection, reducing manpower requirements, and enhancing the flexibility and accuracy of detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a device that improves the detection efficiency of formation tank liquid, by water -bath pot, beaker, elevating support, conductivity meter, still include with the test electrode that conductivity meter passes through electrode lead wire connection, at least one beaker is arranged in different water -bath pot respectively, elevating support includes base, elevating lever and cross bar, elevating lever is fixedly connected with base, cross bar is fixedly connected with elevating lever, test electrode is fixed on cross bar and is arranged above beaker, the utility model discloses through the effect of water -bath pot and elevating support can detect simultaneously many cups of tank liquid, improve the detection accuracy of conductivity and improve detection efficiency.
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Description

Technical Field

[0001] This utility model belongs to the field of aluminum foil electrolysis technology, and specifically relates to a device for improving the detection efficiency of the formation bath solution. Background Technology

[0002] In the formation process of aluminum electrolytic capacitor anode foil, the aluminum foil needs to be electro-formed and energized in multiple formation baths. During this formation and energizing process, the conductivity parameters of different baths have a significant impact on the performance of the energized electrode foil. Therefore, it is necessary to test the conductivity of each formation bath. Currently, the conductivity of the formation bath is tested by placing different baths into separate glass beakers, heating the beakers to the test temperature sequentially using an electric furnace, and then placing the beakers under the electrodes of a conductivity meter to measure the conductivity of the bath. When the room temperature is low, the temperature of the bath being tested in the glass beaker drops rapidly, affecting the accuracy of the test. Furthermore, using a single conductivity meter for bath conductivity testing results in low testing efficiency, impacting production efficiency. Utility Model Content

[0003] To address the issues of low detection accuracy and efficiency in existing technologies, this invention provides a chemical formation tank detection device that can simultaneously detect multiple tank solutions, improves conductivity detection accuracy, and enhances detection efficiency.

[0004] This utility model is achieved through the following technical solution: An apparatus for improving the detection efficiency of a chemical formation bath includes a water bath, beakers, a lifting support, and a conductivity meter; it also includes a test electrode connected to the conductivity meter via electrode wires; each water bath and beaker is at least one, and each beaker is respectively placed in a different water bath; the lifting support includes a base, a lifting rod, and a crossbar; the lifting rod is fixedly connected to the base; the crossbar is fixedly connected to the lifting rod; at least one test electrode is fixed on the crossbar and positioned above the beakers. Each external conductivity meter is connected to one test electrode, and a beaker is placed below each test electrode for detecting conductivity. Each water bath is controlled by an external power supply and a temperature controller.

[0005] Further explanation of this utility model: the lifting bracket also includes a fixed crossbar mounted on the lifting rod; the fixed crossbar is provided with crossbar I and crossbar II. By adding crossbars and simultaneously adding an equal number of conductivity meters and test electrodes, the detection efficiency is further improved.

[0006] Further explanation of this utility model: the lifting support is an electric lifting support. The electric lifting support is controlled by an external power supply and controller, which can effectively improve work efficiency and reduce manpower.

[0007] Each water bath is pre-set with a temperature controller according to the temperature control requirements of the test solution in the beaker. The water bath temperature can be set to the same temperature or different temperatures according to the requirements of the test solution, improving the flexibility and accuracy of the test. Then, different test solutions are poured into different glass beakers in different water baths. By controlling the height of the lifting rod, the test electrode fixed on the horizontal bar is inserted into the test solution in the beaker to detect the conductivity, and the detection data is fed back to the conductivity meter, thereby achieving the purpose of simultaneously detecting the conductivity of multiple formation bath solutions.

[0008] The beneficial effects of this utility model are: This invention utilizes different beakers placed in different water baths to hold different test solutions, along with a lifting support, to simultaneously test multiple different formation bath solutions. This achieves the goal of simultaneously testing the conductivity of multiple formation bath solutions, effectively improving the accuracy and efficiency of conductivity testing. Attached Figure Description

[0009] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the structure of Embodiment 2 of the present invention; Figure 3 This is a top view of the structure of Embodiment 3 of this utility model; In the diagram: 1. Water bath; 2. Beaker; 3. Lifting support; 4. Conductivity meter; 5. Test electrode; 31. Base; 32. Lifting rod; 33. Crossbar; 34. Fixed crossbar; 331. Crossbar I; 332. Detailed Implementation

[0010] The present invention will be further described below with reference to the accompanying drawings. Example

[0011] like Figure 1 As shown, an apparatus for improving the detection efficiency of a chemical formation bath includes a water bath 1, a beaker 2, a lifting support 3, and a conductivity meter 4; it also includes test electrodes 5 connected to the conductivity meter 4 via electrode wires; three water baths 1 and three beakers 2 are provided, each beaker 2 corresponding to a different water bath 1; the lifting support 3 includes a base 31, a lifting rod 32, and a crossbar 33; the lifting rod 32 is fixedly connected to the base 31; the crossbar 33 is fixedly connected to the lifting rod 32; three test electrodes 5 are provided and fixed on the crossbar 33 and positioned above the beakers 2. Each conductivity meter 4 is connected to one test electrode 5, and a beaker 2 is located below each test electrode 5 for detecting conductivity.

[0012] The lifting support 3 is an electric lifting support. The electric lifting support is controlled by an external power supply and controller, which can effectively improve work efficiency and reduce manpower. Example

[0013] like Figure 2 As shown, the difference between this embodiment and embodiment 1 is that: there are two water baths 1 and two beakers 2, and there are two conductivity meters 4 and two test electrodes 5. Example

[0014] like Figure 3 As shown, the difference between this embodiment and Embodiment 1 is that the lifting bracket 3 further includes a fixed crossbar 34 disposed on the lifting rod 32; the fixed crossbar 34 is provided with crossbar I 331 and crossbar II 332. Each of the crossbar I 331 and crossbar II 332 is provided with three test electrodes 5. By adding crossbars and adding an equal number of conductivity meters and test electrodes, the detection efficiency is further improved.

Claims

1. A device for improving the detection efficiency of chemical formation tank solutions, characterized in that: The device includes a water bath (1), a beaker (2), a lifting bracket (3), and a conductivity meter (4); it also includes a test electrode (5) connected to the conductivity meter (4) via an electrode wire; there is at least one water bath (1) and at least one beaker (2), and each beaker (2) is respectively located in a different water bath (1); the lifting bracket (3) includes a base (31), a lifting rod (32), and a crossbar (33); the lifting rod (32) is fixedly connected to the base (31); the crossbar (33) is fixedly connected to the lifting rod (32); there is at least one test electrode (5) which is fixed on the crossbar (33) and located above the beaker (2).

2. The device for improving the detection efficiency of chemical formation tank solution according to claim 1, characterized in that: The lifting support (3) also includes a fixed crossbar (34) provided on the lifting rod (32); the fixed crossbar (34) is provided with crossbar I (331) and crossbar II (332).

3. The device for improving the detection efficiency of chemical formation tank solution according to claim 1, characterized in that: The lifting support (3) is an electric lifting support.