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Effects of SiC particle size on mechanical properties of SiC particle reinforced aluminum metal matrix composite

机译:SiC粒径对SiC颗粒增强铝金属基质复合材料力学性能的影响

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In this paper, effects of SiC particle size on the mechanical properties and the failure mechanisms of Al/SiC composites under compression with strain rates ranging from 0.001 to 5200 s(-1) were investigated. Al/SiC composites consisting of 65 wt% SiC particles with the average size of 10 mu m and 50 mu m were studied respectively. The quasi-static (strain rate of 0.001s(-1)) and dynamic compression tests (strain rates of 2200s(-1), 5200s(-1)) were performed separately for both materials with different SiC particle size. And optical microscope (OM) was used to observe the failure characteristics of the reclaimed specimens. The results show that as the increasing strain rate, results in the improvement of yield strength of both composites. Moreover, the composites with the SiC particle size of 10 mu m have a larger yield strength than that 50 mu m one. The microstructure analyses reveal that separation of SiC particles from aluminum matrix and fragmentation of SiC particles are the main failure mechanisms of Al/SiC composites subjected to compressive loading. The adhesive force between the SiC particles and aluminum matrix has a significant effect on the compressive resistance of the composites. The Al/SiC composites with the small SiC particles size are superior to the larger one under compressive loading due to the more compact interface and larger tension for the movement of dislocations. The perforation test was carried out for the material with the SiC particle average size of 10 mu m, and its anti-penetration performance is about 1.50 times higher than 10CrNiMo steel.
机译:本文研究了SiC粒度对抗压缩率的力学性能和Al / SiC复合材料的破坏机制的影响,研究了0.001至5200s(-1)的应变率。分别研究了由平均尺寸为10μm和50μm的65wt%SiC颗粒组成的Al / SiC复合材料。用于两种具有不同SiC粒径的材料分别进行准静脉(0.001秒)和动态压缩试验(2200℃,5200℃,5200s(-1))的应变率。和光学显微镜(OM)用于观察再生标本的失效特性。结果表明,随着应变率的增加,导致两种复合材料的屈服强度的提高。此外,具有10μm的SiC粒径为10μm的复合材料比50μm较大的屈服强度。微观结构分析表明,SiC颗粒来自铝基质的分离和SiC颗粒的破碎物是对压缩负载进行的Al / SiC复合材料的主要故障机制。 SiC颗粒和铝基质之间的粘合力对复合材料的压缩电阻具有显着影响。由于界面更紧凑和较大张力,具有小SiC颗粒尺寸的Al / SiC复合材料优于压缩负载较大的较大件。对具有10μm的SiC粒子平均尺寸的材料进行穿孔试验,其防渗性能约为10crnimo钢的1.50倍。

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