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MODELLING GRAIN BOUNDARY CHROMIUM DEPLETION IN AUSTENITIC ALLOYS

机译:模拟奥氏体合金中晶界的铬损耗

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摘要

It is widely accepted that thermally-induced grain boundary chromium depletion in austenitic alloys such as austenitic stainless steels and Ni base alloys can lead to inter-granular stress corrosion cracking (1GSCC) of high temperature components during service. Numerous modelling and experimental studies of the phenomenon have been reported. However, there are some previously unclear and unresolved fundamental issues in modelling and the interpretation of experimental observations. This paper attempts to clarify some of the issues through numerical calculations and examination of the literature on grain boundary chromium depletion.
机译:广泛接受的是,奥氏体合金(如奥氏体不锈钢和Ni基合金)中的热诱导晶界铬耗竭可导致在使用过程中高温部件的晶间应力腐蚀开裂(1GSCC)。已经报道了对该现象的大量建模和实验研究。但是,在建模和实验观察的解释中存在一些以前尚不清楚且尚未解决的基本问题。本文试图通过数值计算和对晶界铬耗竭文献的研究来澄清一些问题。

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