The application of the eshelby method of internal stress determination to short fibre metal matrix composites

P.J. Withers , W.M. Stobbs , O.B. Pedersen
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引用次数: 375

Abstract

Eshelby's equivalent inclusion approach is used to provide a rigorous theoretical basis for the prediction of the mechanical properties of short fibre composites. The equivalent inclusion construction which is central to this method is described in detail. The elastic, thermoelastic and plastic behaviour of short fibre metal matrix composites is predicted, and, taking the Al/SiC system as an example, compared with experiment. Finally, it is shown that relaxation phenomena play an important role in the development of internal stresses, and that the energetics and the resultant stress redistribution between the two phases can be understood within the framework of the Eshelby model.

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壳体内应力测定法在短纤维金属基复合材料中的应用
采用Eshelby等效夹杂法,为短纤维复合材料力学性能的预测提供了严格的理论依据。详细描述了该方法的核心等效包体结构。对短纤维金属基复合材料的弹性、热弹性和塑性性能进行了预测,并以Al/SiC体系为例,与实验结果进行了比较。最后,研究表明,松弛现象在内应力的发展中起着重要作用,并且在Eshelby模型的框架内可以理解两相之间的能量学和由此产生的应力重分布。
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