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Effect of surface machining and cold working on the ambient temperature chloride stress corrosion cracking susceptibility of AISI 304L stainless steel

机译:表面加工和冷加工对AISI 304L不锈钢的环境氯离子应力腐蚀开裂敏感性的影响

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摘要

Effect of plastic deformation induced by cold rolling or surface machining on the susceptibility to chloride-induced stress corrosion cracking at ambient temperature of 304L austenitic stainless steel was investigated in this study. The test material was subjected to three treatments: (a) solution annealed, (b) cold rolled and (c) surface machined to induce different levels of strain/stresses in the material. Subsequently constant strained samples were produced as per ASTM G30 for each condition and these were exposed to 1 M HCl at ambient temperature until cracking occurred. Subsequently the cracked samples were characterized using stereo microscopy, optical microscopy and atomic force microscopy to understand the effect of microstructural changes produced by straining on the susceptibility to stress corrosion cracking at ambient temperature. Strained surface produced by machining accelerated the process of crack initiation resulting in densely distributed shallow surface cracks in a very short period of time as compared to solution annealed and cold worked sample. Crack propagation in cold worked sample was along the slip lines and cracking occurred much earlier than in the solution annealed sample.
机译:研究了冷轧或表面加工引起的塑性变形对环境温度下304L奥氏体不锈钢对氯化物引起的应力腐蚀开裂敏感性的影响。对测试材料进行三种处理:(a)溶液退火,(b)冷轧和(c)表面加工以在材料中引起不同水平的应变/应力。随后,针对每种条件,根据ASTM G30制备恒定应变的样品,并将其在环境温度下暴露于1 M HCl中,直到发生破裂。随后,使用立体显微镜,光学显微镜和原子力显微镜对破裂的样品进行表征,以了解应变引起的微观结构变化对环境温度下应力腐蚀破裂敏感性的影响。与固溶退火和冷加工样品相比,通过机械加工产生的应变表面加快了裂纹萌生的过程,从而在很短的时间内导致了密集分布的浅表面裂纹。冷加工样品中的裂纹沿滑移线传播,并且比固溶退火样品中的裂纹要早得多。

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