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首页> 外文期刊>Journal of Materials Engineering and Performance >An Investigation of Micro-Mechanical Properties of Al Matrix in SiC/Al Composite by Indentation Experiments
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An Investigation of Micro-Mechanical Properties of Al Matrix in SiC/Al Composite by Indentation Experiments

机译:压痕实验研究SiC / Al复合材料中Al基体的微机械性能

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With the aid of indentation experiments, the micro-mechanical properties of the matrix of SiC particle-reinforced Aluminum composite were investigated with the load ranging from 80 to 480 mN and the loading speed ranging from 1.94 to 12.91 mN/s at room temperature. The results exhibited that under different loading conditions, the Young's modulus decreased along with the increasing load due to the damage accumulation. As to micro hardness, it reduced with the increasing load, the indentation depth (i.e., indentation size effect), and the decreasing loading speed. Independent of the loading speed, the micro-hardness was not only related to the material elastic property, but also to plastic property with and indenter geometry. The characteristic length was also associated with . The deduced effective strain rates reduced with the increasing load and the decreasing loading speed. According to the experiment results, the energy dissipation maps and the elastic strain map were constructed.
机译:借助压痕实验,研究了SiC颗粒增强铝复合材料在室温下的载荷范围为80至480 mN,载荷速度为1.94至12.91 mN / s的微机械性能。结果表明,在不同载荷条件下,由于损伤积累,杨氏模量随载荷的增加而减小。至于显微硬度,它随着载荷的增加,压痕深度(即压痕尺寸效应)和减小的加载速度而降低。与加载速度无关,显微硬度不仅与材料的弹性有关,而且与具有压头几何形状的塑性有关。特征长度也与关联。推导的有效应变率随着载荷的增加和载荷速度的降低而减小。根据实验结果,建立了能量耗散图和弹性应变图。

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