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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Finite element micromechanical modelling of yield and collapse behaviour of metal matrix composites
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Finite element micromechanical modelling of yield and collapse behaviour of metal matrix composites

机译:金属基复合材料屈服和塌陷行为的有限元微机械建模

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摘要

The initial yield and collapse behaviour of fibre reinforced metal matrix composites (MMCs) have been investigated using finite element micro-mechanical models. Initial yield occurs as the loading on the MMC is increased until the most heavily loaded point within the matrix reaches the yield stress. Collapse occurs when the MMC is unable to support a higher load. The results of this work show that loads to cause collapse of MMCs are higher than those to cause first yield, particularly when the effect of residual stress arising from manufacture is included in the analysis. Initial yield and collapse envelopes have been generated for a Silicon Carbide-Titanium MMC for biaxial and shear loading. These envelopes include the effect of residual stress and also various interface conditions between the fibre and matrix; either perfectly bonded or de-bonded, with and without friction. An analytical micro-mechanical model has been developed using the method of cells to predict the collapse behaviour. The results of the analytical model compare reasonably well with those of the finite element method. Using the analytical model the effect of varying the fibre volume fraction on the collapse behaviour has been studied.
机译:使用有限元微观力学模型研究了纤维增强金属基复合材料(MMC)的初始屈服和塌陷行为。随着MMC上载荷的增加,初始屈服发生,直到基体中最重的载荷点达到屈服应力为止。当MMC无法支持更高的负载时,就会发生崩溃。这项工作的结果表明,引起MMC崩溃的载荷要高于引起首次屈服的载荷,特别是当分析中包括制造引起的残余应力的影响时。对于双轴和剪切载荷,已经生成了碳化硅-钛MMC的初始屈服和塌陷包络线。这些包络包括残余应力的影响,以及纤维与基质之间的各种界面条件。具有或没有摩擦力的完美粘合或脱胶粘合。已经使用细胞方法开发了一种分析性微力学模型来预测坍塌行为。分析模型的结果与有限元方法的结果相当合理。使用分析模型,研究了改变纤维体积分数对塌陷行为的影响。

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