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A Simplified Probabilistic Model for Nanocrack Propagation and Its Implications for Tail Distribution of Structural Strength

机译:纳米裂纹扩展的简化概率模型及其对结构强度尾部分布的影响

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This paper presents a simplified probabilistic model for thermally activated nanocrack propagation. In the continuum limit, the probabilistic motion of the nanocrack tip is mathematically described by the Fokker-Planck equation. In the model, the drift velocity is explicitly related to the energy release rate at the crack tip through the transition rate theory. The model is applied to analyze the propagation of an edge crack in a nanoscale element. The element is considered to reach failure when the nanocrack propagates to a critical length. The solution of the Fokker-Planck equation indicates that both the strength and lifetime distributions of the nanoscale element exhibit a power-law tail behavior but with different exponents. Meanwhile, the model also yields a mean stress-life curve of the nanoscale element. When the applied stress is sufficiently large, the mean stress-life curve resembles the nasquin law for fatigue failure. nased on a recently developed finite weakest-link model as well as level excursion analysis of the failure statistics of quasi-brittle structures, it is argued that the simulated power-law tail of strength distribution of the nanoscale element has important implications for the tail behavior of the strength distribution of macroscopic structures. It provides a physical justification for the two-parameter Weibull distribution for strength statistics of large-scale quasi-brittle structures.
机译:本文提出了一个简化的概率模型,用于热活化纳米裂纹的传播。在连续极限中,纳米裂纹尖端的概率运动由福克-普朗克方程进行数学描述。在该模型中,通过过渡速率理论,漂移速度与裂纹尖端处的能量释放速率显着相关。该模型可用于分析边缘裂纹在纳米尺度元素中的传播。当纳米裂纹扩展到临界长度时,该元件被认为已失效。 Fokker-Planck方程的解表明,纳米级元素的强度和寿命分布都表现出幂律尾部行为,但具有不同的指数。同时,该模型还产生了纳米级元素的平均应力-寿命曲线。当施加的应力足够大时,平均应力-寿命曲线类似于疲劳失效的纳辛法则。在最近开发的有限最弱链接模型的基础上,以及对准脆性结构破坏统计的水平偏移分析,认为纳米级元素强度分布的模拟幂律尾部对尾部行为具有重要意义。宏观结构的强度分布。它为大型准脆性结构的强度统计提供了两参数威布尔分布的物理证明。

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