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Mechanical behavior of a continuous fiber reinforced aluminum matrix composite subjected to transverse and thermal loading

机译:承受横向和热载荷的连续纤维增强铝基复合材料的力学性能

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摘要

The transverse properties of an aluminum alloy metal matrix composite reinforced by continuous alumina fibers were investigated. The composite is subjected to both mechanical and cyclic thermal loading. The results of an experimental program indicate that the shakedown concept of structural mechanics provides a means of describing the material behavior. When the loading conditions are within the shakedown region, the material finally responds in an elastic manner after initial plastic response, and for loading conditions outside the shakedown region, the material exhibits a rapid incremental plastic strain accumulation. The failure strain varies by an order of magnitude according to the operating conditions. Hence, for high mechanical and low thermal loading, the failure strains is small; for low mechanical and high thermal loading, the failure strain is large.
机译:研究了连续氧化铝纤维增强铝合金金属基复合材料的横向性能。复合材料要承受机械和循环热负荷。实验程序的结果表明,结构力学的简化概念提供了描述材料行为的手段。当加载条件在减振区域内时,材料在初始塑性响应后最终以弹性方式响应,对于减振区域外的加载条件,材料表现出快速的塑性应变累积。失效应变根据操作条件而变化一个数量级。因此,对于高机械负荷和低热负荷,破坏应变很小;对于低机械负荷和高热负荷,破坏应变很大。

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    Leckie, F. A.; Jansson, S.;

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  • 年度 1991
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