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Stress corrosion cracking of AISI 321 stainless steel in acidic chloride solution

机译:酸性氯化物溶液中AISI 321不锈钢的应力腐蚀开裂

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The stress corrosion cracking (SCC) of AISI 321 stainless steel in acidic chloride solution was studied by slow strain rate (SSR) technique and fracture mechanics method. The fractured surface was characterized by cleavage fracture. In order to clarify the SCC mechanism, the effects of inhibitor KI on SCC behaviour were also included in this paper. A study showed that the inhibition effects of KI on SCC were mainly attributed to the anodic reaction of the corrosion process. The results of strain distribution in front of the crack tip of the fatigue pre-cracked plate specimens in air, in the blank solution (acidic chloride solution without inhibitor KI) and in the solution added with KI measured by speckle interferometry (SPI) support the unified mechanism of SCC and corrosion fatigue cracking (CFC).
机译:通过慢应变速率(SSR)技术和断裂力学方法研究了AISI 321不锈钢在酸性氯化物溶液中的应力腐蚀开裂(SCC)。断裂表面的特征在于解理断裂。为了阐明SCC的机制,还包括抑制剂KI对SCC行为的影响。研究表明,KI对SCC的抑制作用主要归因于腐蚀过程的阳极反应。通过散斑干涉法(SPI)测量的空气中,在预溶液中的疲劳预裂试样的裂纹尖端前的应变分布结果,空白溶液(无抑制剂KI的酸性氯化物溶液)和添加KI的溶液中的应变分布支持SCC和腐蚀疲劳裂纹(CFC)的统一机制。

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