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Cracks in heterogeneous materials with rotating constituents - Small and Intermediate scale Cosserat continua

机译:具有旋转成分的异质材料的裂缝 - 中小型雕刻座CONTUA

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Cosserat continuum modelling of crack propagation in particulate materials with microrotations and in layered materials with sliding requires the analysis of the Cosserat characteristic lengths in their relation with the characteristic length of the material microstructure. The Cosserat lengths that are of the order of the microstructural characteristic length should be set to zero to derive the main asymptotic terms. When all Cosserat characteristic lengths are of the microscopic length the obtained continuum is termed the Small scale Cosserat continuum. Cracks of Modes I, II, III have conventional stress singularity, as well as the moment stress singularity. Moment stresses can cause bending failure of the bonds connecting the grains in the particulate material or layers in the layered material. Cases are identified when the bending stress induced by moment stress singularity exceeds tensile stresses induced by the conventional stress singularity by an order of magnitude. Then the main mechanism of crack propagation is bending failure produced by the moment stress, which explains, in a unified fashion the often-observed in-plane propagation of cracks of the classical modes. Another interesting case is when some Cosserat characteristic lengths are large. This gives what we term the Intermediate scale Cosserat continuum. An example is given by layered material with sliding layers that keep full contact during sliding. In this case the crack normal to the layering also propagates by bending failure produced by the moment stress singularity. (C) 2017 Elsevier Ltd. All rights reserved.
机译:COSSERAT连续体裂纹繁殖颗粒材料中的裂纹繁殖与微孔和滑动层的分层材料需要分析其与材料微观结构的特征长度的关系。长长的长度是微观结构特征长度的顺序应设定为零以导出主要的渐近术语。当所有Cosserat特征长度都是微观长度时,所获得的连续体被称为小规模Cosserat连续体。模式I,II,III的裂缝具有常规应力奇点,以及力矩应激奇点。片刻应力会导致连接颗粒在颗粒材料中的颗粒中的粘合剂的弯曲失效。当由时刻应力奇异性诱导的弯曲应力超过由常规应力奇异性引起的抗拉应力的弯曲应力超过级别的尺寸而识别。然后,裂缝繁殖的主要机制是弯曲的失效,由统一的方式解释,统一时尚经常观察到经典模式的裂缝的平面内传播。另一个有趣的案例是当一些洞穴特征长度很大时。这给出了我们术语中间尺度Cosserat连续体的术语。由分层材料给出一个例子,其滑动层在滑动期间保持完全接触。在这种情况下,垂直于分层的裂缝也通过瞬间应力奇异性产生的弯曲失败来传播。 (c)2017 Elsevier Ltd.保留所有权利。

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