Desensitization of Stainless Steels by Laser Surface Heat-Treatment

Y. Nakao, K. Nishimoto
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引用次数: 8

Abstract

Laser heating was applied for the desensitization heat-treatment of the surface layer in the sensitized HAZ of Type 304 stainless steel. The degree of sensitization was examined by EPR technique and the 10% oxalic acid electrolytic etch test. The CO2 laser with maximum power of 1.5kW was used for heat-treatment. Time-Temperature-Desensitization diagram (TTDS diagram) for sensitized Type 304 stainless steels were developed by calculation assuming the chromium diffusion control for desensitization which might occur when the chromium depleted zone was healed up due to dissolution of chromium carbide and chromium diffusion from the matrix being heated at the solution annealing temperatures. TTDS diagrams calculated agree fairly well with ones determined by corrosion tests. Laser irradiation conditions (e.g., Laser power, beam diameter and traveling velocity )required for desensitization of sensitized Type 304 stainless steels were calculated using additivity rule from the TTDS diagram calculated and theoretical thermal curve of laser heating derived from the heat conduction theory. After laser beam irradiated under an optimum condition predicted by calculation, the sensitized HAZ of Type 304 stainless steel restored complete resistance to intergranular corrosion.
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不锈钢激光表面热处理的脱敏研究
采用激光加热技术对304型不锈钢敏化热影响区表层进行了脱敏热处理。采用EPR技术和10%草酸电解刻蚀试验考察了其敏化程度。采用最大功率1.5kW的CO2激光器进行热处理。假定在溶液退火温度下,由于碳化铬的溶解和基体中铬的扩散而使贫铬区恢复时可能发生的铬扩散控制,通过计算得到了敏化304型不锈钢的时间-温度-脱敏图。计算的TTDS图与腐蚀试验结果吻合较好。根据计算得到的TTDS图和热传导理论导出的激光加热理论热曲线,利用可加法则计算出致敏304型不锈钢脱敏所需的激光辐照条件(如激光功率、光束直径和行进速度)。在计算预测的最佳条件下辐照后,304不锈钢敏化热影响区完全恢复了对晶间腐蚀的耐蚀性。
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