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Uniaxial and Multiaxial Cyclic Deformation Behaviors of SiCp/6061Al Alloy Composites

机译:SiCp / 6061Al合金复合材料的单轴和多轴循环变形行为

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摘要

The uniaxial/multiaxial cyclic deformation behaviors of SiC_p/6061Al alloy composites with various particulate volume fractions were studied by uniaxial and multiaxial cyclic straining or stressing tests at room temperature. The cyclic softening/hardening features and ratcheting behaviors of T6-treated composites and un-reinforced matrix were discussed in different loading conditions. It is shown that the ratcheting also occurs in the composites under uniaxial and multiaxial asymmetrical cyclic stressing, and the ratcheting strain increases with stress amplitude and mean stress; however, the addition of SiC particulates into the matrix increases the resistance of the composite to ratcheting. The ratcheting depends greatly on the shapes of loading paths and mainly occurs in the direction of non-zero mean stress.
机译:通过室温下的单轴和多轴循环应变或应力试验研究了具有不同颗粒体积分数的SiC_p / 6061Al合金复合材料的单轴/多轴循环变形行为。研究了T6处理的复合材料和非增强基体在不同载荷条件下的循环软化/硬化特征和棘轮行为。结果表明,在单轴和多轴不对称循环应力作用下,复合材料中也发生了棘轮现象,棘轮应变随应力幅值和平均应力的增加而增大。但是,向基体中添加SiC颗粒会增加复合材料的耐棘齿性。棘轮在很大程度上取决于加载路径的形状,并且主要发生在非零平均应力方向上。

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