Corrosion liquid and corrosion method for ultralow steel original austenite crystal boundary
A technology of austenite grain boundary and corrosion solution, which is applied in the field of ultra-low carbon steel, can solve the problems of time-consuming and reagents, unavailable, unsatisfactory results, etc., and achieve the advantages of simple processing, energy saving and labor intensity reduction Effect
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Embodiment 1
[0022] Embodiment 1, an etching solution for the prior austenite grain boundary of ultra-low steel, according to parts by volume, the components include 20 parts of supersaturated picric acid, 2 parts of detergent, and 1 part of hydrochloric acid, that is, 10 ml of supersaturated picric acid , 1ml detergent, 0.5ml hydrochloric acid. Wherein the concentration of hydrochloric acid is 37%. The detergent can be Goldfish brand dishwashing liquid, the material is easy to obtain and the price is cheap.
[0023] A method for etching the corrosion solution of the ultra-low steel prior austenite grain boundary as claimed in claim 1, comprising the following steps:
[0024] Step 1) cutting and sampling the ultra-low carbon steel and performing metallographic grinding and polishing;
[0025] Step 2) Soak the polished ultra-low carbon steel in the corrosion solution for 200 seconds;
[0026] Step 3) Scrub with saturated oxalic acid solution after corrosion, and blow dry. There is no req...
Embodiment 2
[0029] Example 2. The difference between Example 2 and Example 1 is that the corrosion solution is made by mixing 9.5ml supersaturated picric acid, 0.9ml detergent, and 0.4ml hydrochloric acid, and the soaking corrosion time is 220 seconds.
[0030] In this embodiment, the amount of reagent used is small, and the soaking time is extended appropriately to achieve a good corrosion effect and reduce the damage of the reagent to the operator.
Embodiment 3
[0031] Example 3. The difference between Example 3 and Example 1 is that the corrosion solution is made by mixing 10.5ml of supersaturated picric acid, 1.1ml of detergent, and 0.6ml of hydrochloric acid, and the immersion corrosion time is 180 seconds.
[0032] In this embodiment, the corrosion effect is good, the corrosion time is short, and the operation time and labor intensity can be reduced.
[0033] The invention has the advantages of simple configuration of materials, reduced configuration cost, simple operation, easy manual control, small deviation and good austenite grain boundary.
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Abstract
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