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Micromechanics Based Inelastic and Damage Modeling of Composites

机译:基于微力学的复合材料的弹性和损伤建模

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Micromechanics based models are considered for application to viscoelasticity and damage in metal matrix composites. The method proposes a continuation and development of Dvooak's transformation field analysis, considering the piecewise uniform eigenstrains in each material phase. Standard applications of the method to a two-phase are considered in this study model, i.e., only one sub-volume per phase is considered. A continuous model is used, employing transformation field analysis with softening in order to prevent the tensile stress overstepping the tensile strength. At the same time shear cracking occurs in the tangential direction of the possible crack. This is considered in the principal shear stresses and they make disconnections in displacements. In this case, discontinuous models are more promising. Because discrete models, that can describe the situation more realistically have not been worked out in detail, we retain a continuous model and substitute the slip eaused by overstepping the damage law by introducing eigenparameters from TFA. The various aspects of the proposed methods are systematically checked by comparing with finite element unit cell analyses, made through periodic homogenization assumptions, for SiC/Ti unidirectional lay-ups.
机译:基于微力学的模型被认为可应用于金属基复合材料的粘弹性和损伤。该方法提出了Dvooak变换场分析的继续和发展,考虑了每个材料相中的分段均匀特征应变。在此研究模型中考虑了该方法在两相中的标准应用,即,每相仅考虑一个子体积。为了防止拉伸应力超过拉伸强度,使用了连续模型,该模型采用具有软化作用的转换场分析。同时,在可能的裂纹的切线方向上发生剪切裂纹。在主剪应力中考虑了这一点,它们使位移不连续。在这种情况下,不连续的模型更有希望。由于尚未详细研究出可以更真实地描述情况的离散模型,因此我们保留了一个连续模型,并通过引入TFA的特征参数来替代通过破坏定律而产生的滑移。通过与通过周期性均质化假设进行的SiC / Ti单向叠层有限元晶胞分析进行比较,系统地检查了所提出方法的各个方面。

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