首页> 外文会议>International Conference on Very High Cycle Fatigue; 20070819-22; Ann Arbor,MI(US) >Competing Failure Modes in Fatigue and the Consequent S-N Curve Shapes
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Competing Failure Modes in Fatigue and the Consequent S-N Curve Shapes

机译:疲劳中的竞争性失效模式和随之产生的S-N曲线形状

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It has recently been discovered that competing fatigue failure modes lead to two separate S-N curves, one for surface-initiated cracks and the other for interior-initiated cracks. The competing failure modes and the associated two different fatigue life distributions seem to occur in high strength materials that either have sparsely populated defects or are processed to minimize the inclusion content. Typically, there exists a shorter-life-distribution that is associated with surface-crack-initiated failures. The longer-life-distribution generally occurs due to internal-crack-initiated failures. There can be a complete separation of the two failure distributions or they can dominate at high and low stress ranges with a discontinuity (step) in the mid-stress-range, depending on the material. Examples of competing fatigue failures in titanium alloys and in nickel-base superalloys are presented. We illustrate the metallurgical and environmental conditions that would trigger this type of behavior in structural materials. We also develop a broad rationale based on which different shapes of S-N curves, including the very-high-cycle-fatigue segments, can be explained based on the presence or absence of defects and the environmental effect. The competing failure modes phenomenon challenges the prevailing notions about S-N fatigue curves and requires a new paradigm in material design and fatigue life considerations.
机译:最近发现,竞争性疲劳破坏模式会导致两条独立的S-N曲线,一条曲线是表面引发的裂纹,另一条曲线是内部引发的裂纹。竞争性失效模式和相关的两种不同的疲劳寿命分布似乎发生在缺陷稀疏的高强度材料中,或者经过处理以最小化夹杂物含量。通常,存在寿命较短的分布,该寿命与表面裂纹引发的故障有关。寿命更长的分布通常是由内部裂纹引发的故障引起的。两种失效分布可以完全分离,或者取决于材料,它们可以在高应力范围和低应力范围内以中间应力范围的不连续性(阶跃)为主导。给出了钛合金和镍基高温合金中竞争性疲劳破坏的例子。我们举例说明了会触发结构材料中此类行为的冶金和环境条件。我们还建立了广泛的理论基础,可以根据缺陷的存在与否以及环境影响来解释不同形状的S-N曲线,包括非常高的循环疲劳段。竞争失效模式现象挑战了有关S-N疲劳曲线的流行观念,并要求在材料设计和疲劳寿命考虑方面建立新的范例。

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