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首页> 外文期刊>Engineering Fracture Mechanics >Prediction of interfacial strength and failure mechanisms in particle-reinforced metal-matrix composites based on a micromechanical model
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Prediction of interfacial strength and failure mechanisms in particle-reinforced metal-matrix composites based on a micromechanical model

机译:基于微力学模型的颗粒增强金属基复合材料界面强度和破坏机理预测

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摘要

The interfacial strength and failure mechanisms of particle-reinforced metal-matrix composites were predicted using a micromechanical model. The micromechanical model was constructed based on the cohesive zone model, and the spherical particle was arranged on the body-centered cubic distribution. The SiC particle-reinforced Al matrix composite was chosen as the model system and its interfacial properties was predicted. It can be seen that a complete interfacial debonding all over the particle could never be reached, and the plastic strain of composite when the interfacial debonding begins to appear shows an increase trend with the increasing of interfacial strength. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用微力学模型预测了颗粒增强金属基复合材料的界面强度和破坏机理。基于内聚区模型建立了微机械模型,并将球形颗粒排列在以人体为中心的立方分布上。选择SiC颗粒增强Al基复合材料作为模型体系,并对其界面性能进行了预测。可以看出,不可能在整个粒子上达到完全的界面剥离,当界面剥离开始出现时,复合材料的塑性应变随界面强度的增加而呈现增加的趋势。 (C)2015 Elsevier Ltd.保留所有权利。

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