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A nanoindentation analysis of the effects of microstructure on elastic properties of Al_2O_3/SiC composites

机译:纳米压痕分析对Al_2O_3 / SiC复合材料弹性性能的影响

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Nanoindentation tests were carried out to investigate certain elastic properties of Al_2O_3/SiC_p, composites at microscopic scales (nm up to μm) and under ultra-low loads from 3 mN to 250 mN, with special attention paid to effects caused by SiC particles and pores. The measured Young's modulus depends on the volume fraction of SiC particles and on the composite porosity and it can compare with that of alumina. The Young's modulus exhibits large scatters at small penetrations, but it tends to be constant with lesser dispersion as the indentation depth increases. Further analysis indicated that the scatter results from specific microstructural heterogeneities. The measured Young's moduli are in agreement with predictions, provided the actual role of the microstructure is taken into account.
机译:进行了纳米压痕测试,以研究微观尺寸(纳米至微米)且在3 mN至250 mN的超低载荷下Al_2O_3 / SiC_p,复合材料的某些弹性性能,并特别注意SiC颗粒和孔引起的影响。测得的杨氏模量取决于SiC颗粒的体积分数以及复合材料的孔隙率,可以与氧化铝比较。杨氏模量在较小的穿透率下表现出较大的散射,但随着压痕深度的增加,它趋于恒定,而色散较小。进一步的分析表明,散射是由特定的微观结构异质性引起的。如果考虑到微观结构的实际作用,测得的杨氏模量与预测相符。

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