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Depth automatic electrolytic corrosion system and method for measuring residual stress

A technology of electrolytic corrosion and residual stress, which is used in measuring devices, preparation of test samples, force/torque/work measuring instruments, etc. The effect of precise control of corrosion depth

Inactive Publication Date: 2019-08-20
GUANGDONG LASER PEENING TECH CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Traditional electrolytic corrosion is currently mainly operated manually, and its electrolytic corrosion has the following common disadvantages: 1) When manually operating each electrolytic corrosion process, it cannot accurately control the corrosion time of electrolytic corrosion and the amount of electrolytic solution, resulting in each corrosion The depth cannot be precisely controlled; 2) The depth of electrolytic corrosion is measured by a vernier caliper, which has a large error and affects the experimental results; 3) Simple repetitive work, the operator is prone to fatigue
[0004] The above common shortcomings will lead to too large deviation of experimental data, which will affect the measurement results of residual stress distribution

Method used

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  • Depth automatic electrolytic corrosion system and method for measuring residual stress

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Embodiment Construction

[0029] Such as figure 1 The shown deep automatic electrolytic corrosion system for measuring residual stress includes a liquid distribution device 1, a tooling and clamping device 2, an electrolysis device, a measuring device, and a detection and control device 3, and the detection and control device 3 is connected to the liquid distribution device 1 and the tooling device respectively. Clamping device 2, electrolysis device and measuring device.

[0030] Among them, the liquid dispensing device 1 is used to configure the electrolytic corrosion liquid, including a solvent tank 11 , a solute integration tank 12 and a mixing tank 13 . The outlets of the solvent box 11 and the solute integration box 12 lead to the blending box 13, and the output end of the blending box 13 is connected to the electrolysis device through a pipeline. The detection and control device 3 controls the ratio of the solvent in the solvent tank 11 and the solute in the solute integration tank 12 output to...

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Abstract

The invention discloses a depth automatic electrolytic corrosion system and method for measuring a residual stress, and the system and the method are used for the electrolytic corrosion field. The system comprises a fluid preparation device, a tooling clamping device, an electrolytic device, a measuring device and a detection control device, wherein the fluid preparation device is used for preparing an electrolytic corrosion liquid; the tooling clamping device is used for clamping a workpiece and moving the workpiece to a corrosion position; the electrolytic device receives the electrolytic corrosion liquid of the fluid preparation device to quantitatively corrode the workpiece located at the corrosion position; the measuring device measures a workpiece corrosion depth; and the detection control device is connected to the fluid preparation device, the tooling clamping device, the electrolytic device and the measuring device in a signal connection mode respectively. In the invention, the corrosion depth of the metal workpiece can be accurately controlled and an error is minimized.

Description

technical field [0001] The invention relates to the field of residual stress measurement, in particular to a deep automatic electrolytic corrosion system and method for measuring residual stress. [0002] Background technique; [0003] When measuring the residual stress distribution of a metal workpiece along the depth direction, electrolytic corrosion is required layer by layer along the depth direction. Traditional electrolytic corrosion is currently mainly operated manually, and its electrolytic corrosion has the following common disadvantages: 1) When manually operating each electrolytic corrosion process, it cannot accurately control the corrosion time of electrolytic corrosion and the amount of electrolytic solution, resulting in each corrosion The depth cannot be precisely controlled; 2) The depth of electrolytic corrosion is measured by a vernier caliper, which has a large error and affects the experimental results; 3) Simple repetitive work makes the operator prone t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01L5/00G01N33/20G01N1/32
CPCG01L5/0047G01N1/32G01N33/20
Inventor 张永康李国锐林超辉
Owner GUANGDONG LASER PEENING TECH CO LTD
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