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Ductile-to-brittle Transition In Tensile Failure Of Particle-reinforced Metals

机译:颗粒增强金属拉伸破坏中的韧性到脆性转变

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We present an analytical micromechanical model designed to simulate the tensile stress-strain behaviour and failure of damaging composites containing a high volume fraction of reinforcing particles. One internal damage micromechanism is considered, namely particle fracture, which is assumed to obey a Weibull distribution. Final composite tensile failure occurs when one of two possible failure criteria is reached, given by (i) the onset of tensile instability, or (ii) an "avalanche-like" propagation of particle breaks to neighbouring particles. We show that an experimentally observed transition from failure by tensile instability to abrupt failure resulting from an increase of matrix strength can be mimicked by the model because local load-sharing (i.e. load transfer from a broken particle to its immediate neighbours) is accounted for.
机译:我们提出了一种分析型微力学模型,旨在模拟拉伸应力-应变行为和破坏性复合材料,其中复合材料中含有大量的增强颗粒。考虑一种内部损伤的微观机制,即颗粒破裂,假定其服从威布尔分布。当达到两个可能的破坏标准之一时,就会发生最终的复合材料拉伸破坏,这是由(i)拉伸不稳定性的开始,或(ii)颗粒破裂“雪崩状”传播到相邻颗粒而给出的。我们表明,通过模型可以模拟通过实验观察到的从拉伸不稳定性破坏到基体强度增加而导致的突然破坏的转变,因为考虑了局部载荷共享(即载荷从破碎颗粒到其邻域的转移)。

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