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Characterizing the effect of creep on stress corrosion cracking of cold worked Alloy 690 in supercritical water environment

机译:表征蠕变对超临界水环境冷加工合金690应力腐蚀开裂的影响

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The effect of creep on stress corrosion cracking (SCC) was studied by measuring crack growth rates (CGRs) of 30% cold worked (ON) Alloy 690 in supercritical water (SCW) and inert gas environments at temperatures ranging from 450 degrees C to 550 degrees C. The SCC crack growth rate under SCW environments can be regarded as the cracking induced by the combined effect of corrosion and creep, while the CGR in inert gas environment can be taken as the portion of creep induced cracking. Results showed that the CW Alloy 690 sustained high susceptibility to intergranular (IG) cracking, and creep played a dominant role in the SCC crack growth behavior, contributing more than 80% of the total crack growth rate at each testing temperature. The temperature dependence of creep induced CGRs follows an Arrhenius dependency, with an apparent activation energy (Q(E)) of about 225 kJ/mol. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过在超临界水(SCW)和惰性气体环境中测量30%冷(上)合金690,在450℃至550的温度范围内测量30%冷(上)合金690的裂纹生长速率(CGR)对应力腐蚀裂纹(SCC)的影响。 SCW环境下的SCC裂纹生长速率可以被视为通过腐蚀和蠕变的组合效果引起的裂缝,而惰性气体环境中的CGR可以作为蠕变诱导的裂缝的一部分。 结果表明,CW合金690对晶间(IG)开裂的持续高易感性,并且蠕变在SCC裂纹生长行为中发挥了显着作用,在每个测试温度下促进总裂纹生长速率的80%以上。 蠕变诱导的CGR的温度依赖性遵循Arrhenius依赖性,具有约225kJ / mol的表观活化能量(Q(e))。 (c)2017年Elsevier B.V.保留所有权利。

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