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Defects as a root cause of fatigue failure of metallic components. I: Basic aspects

机译:缺陷作为金属部件疲劳失效的根本原因。 我:基本方面

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According to the definition of the ASM handbook [1,3], a defect is "an imperfection. that can be shown to cause failure by a quantitative analysis and that would not have occurred in the absence of the imperfection". The topic of the present three-part review is a discussion of defects which can cause failure in cyclically loaded structures. The features discussed comprise material defects such as non-metallic inclusions, pores or micro-shrinkages, etc. and geometric defects such as surface roughness and secondary notches which have their origin in manufacturing, and defects such as surface damage due to scratches, impact events or contact fatigue as well as corrosion pits which arise in service. In this first part, the discussion is prefaced by an introduction to basic aspects which are essential for a deeper understanding of the characteristics and mechanisms how the defects influence fatigue crack initiation and propagation. These include the life cycle of a fatigue crack from initiation up to fracture, crack arrest, multiple crack initiation and coalescence, and the material and geometrical properties affecting these.
机译:根据ASM手册的定义[1,3],缺陷是“不完美。可以通过定量分析显示导致失败,并且在没有缺陷的情况下不会发生这种情况”。目前三部分审查的主题是对缺陷的讨论,这可能导致循环加载的结构中的失败。所讨论的特征包括诸如非金属夹杂物,孔隙或微缩等的材料缺陷,以及诸如具有它们在制造中的原点的表面粗糙度和次级凹口等几何缺陷,以及由于划痕而导致的表面损坏,诸如表面损坏的缺陷或接触疲劳以及服务中出现的腐蚀坑。在第一个部分中,讨论是通过对基本方面的介绍来进行的,这对于更深入地了解特征和机制是必不可少的,缺陷如何影响疲劳裂纹启动和繁殖。这些包括疲劳裂缝的生命周期从起始到断裂,裂缝停止,多裂纹引发和聚结,以及影响这些的材料和几何特性。

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