toward the multiscale nature of stress corrosion cracking

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ID: 161847
2018
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Abstract
This article reviews the multiscale nature of stress corrosion cracking (SCC) observed by high-resolution characterizations in austenite stainless steels and Ni-base superalloys in light water reactors (including boiling water reactors, pressurized water reactors, and supercritical water reactors) with related opinions. A new statistical summary and comparison of observed degradation phenomena at different length scales is included. The intrinsic causes of this multiscale nature of SCC are discussed based on existing evidence and related opinions, ranging from materials theory to practical processing technologies. Questions of interest are then discussed to improve bottom-up understanding of the intrinsic causes. Last, a multiscale modeling and simulation methodology is proposed as a promising interdisciplinary solution to understand the intrinsic causes of the multiscale nature of SCC in light water reactors, based on a review of related supporting application evidence.
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liu2018nucleartoward the Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Xiaolong Liu;Woonggi Hwang;Jaewoong Park;Donghyun Van;Yunlong Chang;Seung Hwan Lee;Sung-Yup Kim;Sangsoo Han;Boyoung Lee
Journal Journal of hazardous materials
Year 2018
DOI
10.1016/j.net.2017.10.014
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