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The effect of pit size and density on the fatigue behaviour of a pre-corroded martensitic stainless steel

机译:蚀坑尺寸和密度对预腐蚀马氏体不锈钢疲劳性能的影响

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摘要

UNS S17400 steel is used in turbines for the aerospace and utility industries. While it is generally corrosion resistant, it is susceptible to pitting when exposed to aqueous chloride environments. Effects of pitting characteristics, such as depth, width, and local density on fatigue life, have been studied in this work to better inform criteria for component replacement or repair. While pit depth correlates well with cracking, the deepest pit never initiated the crack that ultimately led to failure. The clustering of pits, or local pitting density, also correlated well with crack initiation location; however, the densest region of pitting was not always the location where cracking occurred. There is likely no single metric that directly correlates pitting with fatigue cracking, rather there is a combination of pitting characteristics that ultimately lead to cracking. The results from this work suggest that pit depth and local pitting density are among the more important metrics.
机译:UNS S17400钢用于航空航天和公用事业行业的涡轮机。虽然它通常耐腐蚀,但是当暴露于氯化物水溶液环境中时容易出现点蚀。在这项工作中已研究了点蚀特性(例如深度,宽度和局部密度)对疲劳寿命的影响,以更好地为零件更换或维修提供依据。尽管凹坑深度与开裂密切相关,但最深的凹坑从未引发裂纹,最终导致破裂。凹坑的聚集或局部凹坑密度也与裂纹萌生位置密切相关。但是,点蚀最密集的区域并不总是出现裂纹的位置。可能没有单一的度量将点蚀与疲劳裂纹直接相关,而是存在点蚀特征的组合最终导致裂纹。这项工作的结果表明,凹坑深度和局部凹坑密度是更重要的指标。

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