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首页> 外文期刊>Applied composite materials >Effect of Particulate Silicon Carbide on Cyclic Plastic Strain Response and Fracture Behavior of 6061 Aluminum Alloy Metal Matrix Composites
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Effect of Particulate Silicon Carbide on Cyclic Plastic Strain Response and Fracture Behavior of 6061 Aluminum Alloy Metal Matrix Composites

机译:颗粒碳化硅对6061铝合金金属基复合材料循环塑性应变响应和断裂行为的影响

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摘要

In this paper, the cyclic stress response and cyclic stress-strain response characteristics, cyclic strain resistance and low-cycle fatigue life, and mechanisms governing the deformation and fracture behavior of aluminum alloy 6061 discontinuously reinforced with silicon carbide (SiC) particulates are presented and discussed. Two different volume fractions of the carbide particulate reinforcement phase in the aluminum alloy metal matrix are considered. The composite specimens were cyclically deformed using fully reversed tension-compression loading under total strain-amplitude-control. The stress response characteristic was observed to vary with strain amplitude. The plastic strain-fatigue life response was found to degrade with an increase in carbide particulate content in the metal matrix. The fracture behavior of the composite is discussed in light of the interactive influences of composite microstructural effects, cyclic strain amplitude and concomitant response stress, deformation characteristics of the composite constituents and cyclic ductility.
机译:本文介绍了不连续增强碳化硅(SiC)颗粒增强铝合金6061的循环应力响应和循环应力应变响应特性,循环应变抗力和低周疲劳寿命以及控制变形和断裂行为的机理,并讨论过。考虑了铝合金金属基体中碳化物颗粒增强相的两种不同的体积分数。在完全应变-振幅控制下,使用完全反向的拉伸-压缩载荷使复合材料样本循环变形。观察到应力响应特性随应变幅度而变化。发现塑性应变-疲劳寿命响应随着金属基质中碳化物颗粒含量的增加而降低。根据复合材料的微观结构效应,循环应变幅度和伴随的响应应力,复合材料成分的变形特性和循环延性的相互作用,讨论了复合材料的断裂行为。

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