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Influence of processing route and reinforcement content on the creep fracture parameters of aluminium alloy metal matrix composites

机译:工艺路线和补强量对铝合金金属基复合材料蠕变断裂参数的影响

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摘要

An attempt to understand the rupture creep behavior of aluminum alloy metal matrix composites is made. Data from published investigations on the creep fracture of a variety of materials as well as new data on 6061A1-40 vol percent SiC_w composite have been analyzed. The analysis is made on the basis of previous studies conducted by these authors in which the relevance of the load partitioning phenomenon was manifested. The well-known phenomenological approach described by the Monkman-Grant equation has been employed. It is seen that the commonly used approximation of n' = 1 (with n' the Monkman-Grant exponent) is never satisfied. Rather, ri < 1 is always obtained. A new form of this equation is proposed in order to understand the creep rupture mechanisms of these materials in greater depth.
机译:试图理解铝合金金属基复合材料的断裂蠕变行为。分析了已发表的有关各种材料的蠕变断裂的调查数据以及6061A1-40体积百分比SiC_w复合材料的新数据。这些分析是在这些作者进行的先前研究的基础上进行的,这些研究表明了负荷分配现象的相关性。已经采用了由蒙克曼-格兰特方程描述的众所周知的现象学方法。可以看出,永远不会满足n'= 1(n'是Monkman-Grant指数)的常用逼近。而是总是获得ri <1。为了更深入地了解这些材料的蠕变断裂机理,提出了一种新的方程式。

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