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A cyclic slip irreversibility based model for fatigue crack initiation of nickel base alloys

机译:基于循环滑动不可逆的镍基合金疲劳裂纹萌生模型

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The opportunity to define a microscopic law of fatigue crack initiation using Manson-Coffin law formulated in terms of cyclic slip irreversibility deduced from AFM measurements is discussed for a polycrystalline superalloy with different grain sizes and precipitate sizes. The results show that the modified Manson-Coffin law, relating cyclic slip irreversibility parameter to fatigue crack initiation life, is sustained through a two-parameter power law: ε~(′)_(f)and c. The analysis suggests that the exponent c-value can be related to the degree of plastic strain incompatibility between grains, and the cumulative irreversible cyclic plastic strain to crack initiation is a relevant damage indicator for crack initiation. Consequently, our approach allows giving a physical base of engineering law.
机译:对于具有不同晶粒尺寸和析出物尺寸的多晶高温合金,讨论了使用曼森-科芬定律来定义疲劳裂纹萌生的微观定律的机会,该定律是根据AFM测量得出的循环滑动不可逆性制定的。结果表明,修正的曼森-科芬定律将循环滑移不可逆参数与疲劳裂纹萌生寿命相关联,并通过两参数幂定律ε〜(')_(f)和c得以维持。分析表明,指数c值可能与晶粒间塑性应变不相容的程度有关,累积的不可逆循环塑性应变对裂纹萌生是裂纹萌生的重要破坏指标。因此,我们的方法允许提供工程法的物理基础。

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