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Determination of critical pitting temperatures for Ni-Cr-Mo alloys using electrochemical noise measurements

机译:使用电化学噪声测量确定Ni-Cr-Mo合金的临界点蚀温度

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The determination of critical pitting temperatures (CPT) in various test solutions like ferric chloride solution according to ASTM G48 or "Green Death" solution is a common test method for the comparative assessment of the pitting corrosion resistance of highly alloyed steels and Ni-Cr-Mo alloys. In addition to the wellk-nown disadvantages of standard methods, like long test times, subjective examination, and large scatter, for the highest alloyed Ni-Cr-Mo alloys no stable pitting corrosion can initiate even at the highest test temperatures. This paper describes the limitations of standard test methods and shows how these problems can be solved by an alternative test solution and an adjusted test method. By capturing and examining the current noise under potentiostatic conditions during continuous heating in a 4.5M calcium chloride solution the transition from metastable to stable pitting corrosion as a criterion for CPT can be detected in a reproducible way.
机译:根据ASTM G48或“ Green Death”溶液,在各种测试溶液(例如氯化铁溶液)中确定临界点蚀温度(CPT),是比较评估高合金钢和Ni-Cr-的耐点蚀性的常用测试方法。钼合金。除了标准方法众所周知的缺点之外,例如测试时间长,主观检查和分散性大,对于最高合金化的Ni-Cr-Mo合金,即使在最高测试温度下也无法引发稳定的点蚀。本文介绍了标准测试方法的局限性,并说明了如何通过替代测试解决方案和调整后的测试方法来解决这些问题。通过在恒电位条件下在4.5M氯化钙溶液中连续加热期间捕获并检查电流噪声,可以以可重现的方式检测从亚稳态到稳定的点蚀的过渡,作为CPT的标准。

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