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Spatially resolved, in-situ monitoring of crack growth via the coupling current in aluminum alloy 5083.

机译:通过铝合金5083中的耦合电流对裂纹扩展进行空间分辨的现场监测。

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摘要

The work discussed in this dissertation is an experimental validation of a body of research that was created to model stress corrosion cracking phenomenon for 304 stainless steels in boiling water reactors. This coupled environment fracture model (CEFM) incorporates the natural laws of the conservation of charge and the differential aeration hypothesis to predict the amount of stress corrosion crack growth as a function of many external environmental variables, including potential, stress intensity, solution conductivity, oxidizer concentrations, and various other environmental parameters. Out of this approach came the concept of the coupling current; a local corrosion current that flows from within cracks, crevices, pits, etc... of a metal or alloy to the external surface. Because of the deterministic approach taken in the mentioned research, the coupling current analysis and CEFM model can be applied to the specific problem of SCC in aluminum alloy 5083 (the alloy of interest for this dissertation that is highly sought after today because of its corrosion resistance and high strength to weight ratio). This dissertation research is specifically devoted to the experimental verification of the coupling current, which results from a coupling between the crack's internal and external environments, by spatially resolving them using the scanning vibrating probe (SVP) as a tool. Hence, through the use of a unique fracture mechanics setup, simultaneous mechanical and local electrochemical data may be obtained, in situ..
机译:本文所讨论的工作是对一组研究的实验验证,该研究旨在对沸水反应堆中304不锈钢的应力腐蚀开裂现象进行建模。这种耦合的环境破裂模型(CEFM)结合了电荷守恒的自然规律和微分曝气假设,以预测应力腐蚀裂纹扩展的数量,该数量是许多外部环境变量的函数,包括电势,应力强度,溶液电导率,氧化剂浓度和其他各种环境参数。这种方法产生了耦合电流的概念。从金属或合金的裂缝,缝隙,凹坑等内部流到外表面的局部腐蚀电流。由于上述研究采用确定性方法,因此可以将耦合电流分析和CEFM模型应用于5083铝合金中的SCC特定问题(由于其耐蚀性,该合金是当今受到广泛关注的合金)和高强度重量比)。本论文的研究专门用于耦合电流的实验验证,该耦合电流是通过使用扫描振动探针(SVP)作为工具在空间上解决裂纹内部和外部环境之间的耦合而产生的。因此,通过使用独特的断裂力学设置,可以就地获得同时的力学数据和局部电化学数据。

著录项

  • 作者

    Williams, Krystaufeux D.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Materials science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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