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Fracture of bicrystal metal/ceramic interfaces: A study via the mechanism-based strain gradient crystal plasticity theory

机译:双晶金属/陶瓷界面的断裂:基于机理的应变梯度晶体可塑性理论的研究

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摘要

Two continuum mechanical models of crystal plasticity theory namely, conventional crystal plasticity theory and mechanism-based crystal plasticity theory, are used to perform a comparative study of stresses that are reached at and ahead of the crack tip of a bicrystal niobium/alumina specimen. Finite element analyses are done for a stationary crack tip and growing cracks using a cohesive modelling approach. Using mechanism-based strain gradient crystal plasticity theory the stresses reached ahead or the crack tip are found to be two times larger than the stresses obtained from conventional crystal plasticity theory. Results also show that strain gradient effects strongly depend on the intrinsic material length to the size of plastic zone ratio (l/R-0). It is found that the larger the (l/R-0) ratio, the higher the stresses reached using mechanism-based strain gradient crystal plasticity theory. An insight into the role of cohesive strength and work of adhesion in macroscopic fracture is also presented which can be used by experimentalists to design better bimaterials by varying cohesive strength and work of adhesion. (c) 2006 Elsevier Ltd. All rights reserved.
机译:晶体可塑性理论的两个连续力学模型,即常规晶体可塑性理论和基于机理的晶体可塑性理论,用于对双晶铌/氧化铝试样的裂纹尖端处和裂纹尖端之前达到的应力进行比较研究。使用内聚建模方法对固定裂纹尖端和扩展裂纹进行了有限元分析。使用基于机理的应变梯度晶体可塑性理论,发现向前到达的应力或裂纹尖端的应力是从常规晶体可塑性理论获得的应力的两倍。结果还表明,应变梯度效应在很大程度上取决于材料的固有长度与塑性区比的大小(1 / R-0)。发现(l / R-0)比越大,使用基于机理的应变梯度晶体可塑性理论得出的应力越高。还介绍了内聚强度和粘合作用在宏观断裂中的作用的洞察力,实验者可以通过改变内聚强度和粘合作用来设计更好的双材料。 (c)2006 Elsevier Ltd.保留所有权利。

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