金属基复合材料的安定极限

A. Ponter, K. F. Carter, J. Duggan
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引用次数: 8

摘要

本文讨论了一种评估金属基复合材料在温度变化下屈服值的方法。本文描述了一种直接安定分析方法,该方法通过一系列具有空间变化模量的不可压缩线性解来产生安定应力值。在有限元方法中实现时,该过程收敛于与位移场类相关的最小上界(Ponter和Carter[1,2])。在垂直于纤维方向加载的铝/氧化铝系统的解决方案证明了这种材料对温度波动的高灵敏度。给出了用无量纲变量表示强度值的简单近似方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shakedown Limits for a Metal Matrix Composite
The paper discusses a method for the evaluation of the yield values of a metal matrix composite material when subjected to a variation in temperature. A direct shakedown analysis method is described which produces a shakedown stress value as a result of a sequence of incompressible linear solutions with a spatially varying modulus. The process converges to the minimum upper bound associated with the class of displacement fields when implemented in a finite element method (Ponter and Carter [1,2]). The solutions for an Aluminum/alumina system loaded in a direction perpendicular to the direction of the fibers demonstrate the high sensitivity of this material to fluctuations in temperature. Simple approximate equations for strength values are presented in terms of nondimensional variables.
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