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A comparative hardness study of Al-Si/AlB2 and Al-Si/AlB12 composites : Science and Engineering of Composite Materials

机译:Al-Si / AlB2和Al-Si / AlB12复合材料的比较硬度研究:复合材料的科学与工程

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摘要

The mechanical properties of centrifuged Al-Si-B composites containing aluminum diboride and aluminum dodecaboride particles were studied using optical and scanning electron microscopy (SEM), hardness tests, and nanoindentation. SEM was used to further analyze the Rockwell indentations, while nanoindentation experiments were completed on the matrix and the reinforcing particles. The outcomes of this study were compared with the results obtained in superficial Rockwell hardness and Vickers microhardness tests to determine which of the boride reinforcements was more beneficial for the mechanical properties of the Al-Si matrix composite. Aluminum diboride was found to improve bulk mechanical properties more than did aluminum dodecaboride particles. On the other hand, aluminum dodecaboride showed to be a better reinforcement at the micron and submicron scales, as revealed by nanoindentation experiments. A discussion of these findings helped understand the underlying mechanisms behind this apparent discrepancy.
机译:使用光学和扫描电子显微镜(SEM),硬度测试和纳米压痕研究了包含二硼化铝和十二硼化铝颗粒的离心Al-Si-B复合材料的机械性能。 SEM用于进一步分析洛氏压痕,而纳米压痕实验则在基体和增强颗粒上完成。将这项研究的结果与表面洛氏硬度和维氏显微硬度测试的结果进行比较,以确定哪种硼化物增强材料对Al-Si基复合材料的机械性能更有利。发现二硼化铝比十二硼化铝颗粒更能改善整体机械性能。另一方面,纳米压痕实验表明,十二碳铝在微米和亚微米尺度上表现出更好的增强作用。对这些发现的讨论有助于理解这种明显差异背后的潜在机制。

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