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Effect of Volume Fraction on the Flow Behavior of Al-SiC Composites Considering the Spatial Distribution of Delaminated Particles

机译:考虑分层颗粒空间分布的体积分数对Al-SiC复合材料流动行为的影响

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摘要

The effect of the volume fraction of second-phase particles on the distribution of damaged particles and its relation to the tensile deformation behavior were investigated in the particle reinforced metal-matrix composites, Al-SiC. The spatial distributions of all SiC particles and the delaminated SiC particles were evaluated from their two-dimensional local number (LN2D). During tensile deformation, larger SiC particles in more highly clustered regions were more easily delaminated at the particle/matrix interface. The amount of particle delamination in the more highly clustered region increased with increasing volume fraction and strain during tensile deformation. A model was developed to explain the flow behavior of the composites; this showed a good fit to the experimental results in the presence of particle damage, especially when the spatial distribution of damaged particles was taken into consideration.
机译:研究了颗粒增强金属基复合材料Al-SiC中第二相颗粒的体积分数对损伤颗粒分布的影响及其与拉伸变形行为的关系。从它们的二维局部数(LN2D)评估所有SiC颗粒和分层的SiC颗粒的空间分布。在拉伸变形过程中,在高度聚集的区域中较大的SiC颗粒更容易在颗粒/基质界面处分层。随着拉伸变形过程中体积分数和应变的增加,在更高聚集区域中的颗粒分层量也增加。开发了一个模型来解释复合材料的流动行为。这表明在存在颗粒损坏的情况下非常适合实验结果,尤其是考虑到损坏颗粒的空间分布时。

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