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CHARACTERIZATION OF INDENTATION-INDUCED 'PARTICLE CROWDING' IN METAL MATRIX COMPOSITES

机译:金属基复合材料中压痕诱导的“颗粒挤压”的表征

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A direct experimental characterization of reinforcement configuration in an indentation-deformed metal matrix composite is undertaken. The primary objective is to quantify the possible local increase in particle concentration, which has been proposed to cause inconsistency in the indentation hardness and the overall composite strength. Quantitative metallography on the post-indented material is carried out to measure the particle volume fraction. Multiple cross sections of an indentation are investigated with statistically significant results obtained. A distinct increase in particle concentration induced by the indentation is found. The spatial distribution of particle concentration is also examined in detail. The residual compressive stress field remained in the material upon unloading, as illustrated by the finite element analysis, is shown to be in qualitative agreement with the measurement.
机译:进行压痕变形金属基质复合材料中增强构型的直接实验表征。主要目的是量化颗粒浓度的可能局部增加,这已经提出了在压痕硬度和整体复合强度中引起不一致。进行缩进后材料上的定量金相以测量颗粒体积分数。通过获得统计上显着的结果来研究压痕的多个横截面。发现了压痕诱导的颗粒浓度的明显增加。还详细检查了颗粒浓度的空间分布。如有限元分析所示,卸载在卸载时残留的压缩应力场在卸载时,被显示为与测量的定性协议。

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