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Effect of particle size on mechanical properties of SiC{sub}p/5210 Al metal matrix composite

机译:粒径对SiC {亚} P / 5210 Al金属基复合材料力学性能的影响

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SiC{sub}p/5210 Al metal matrix composites with a high volume fraction (50%) of SiC particles were fabricated by squeeze casting method. The effect of particle size on the mechanical properties of the composites was studied. The results show that with the decreasing of particle size, the bending strength of the composites increases, while the fracture toughness of the composites decreases. The bending strength and fracture toughness of 10μm SiC{sub}p/5210 Al metal matrix composite are 825MPa, 10.0MPa·m{sup}(1/2), and the fracture toughness of 63μm SiC{sub}p/5210 Al metal matrix composite reaches 12.8MPa·m{sup}(1/2). The main fracture mechanism changes from particle crack to particle/matrix interface de-bonding with the decreasing of particle size.
机译:通过挤压铸造方法制造具有高容积分数(50%)的SiC颗粒的SiC {亚} P / 5210 Al金属基复合材料。研究了粒度对复合材料的机械性能的影响。结果表明,随着粒度的降低,复合材料的弯曲强度增加,而复合材料的断裂韧性降低。 10μmsiC {sub} p / 5210 Al金属基质复合材料的弯曲强度和断裂韧性为825mpa,10.0mpa·m {sup}(1/2),以及63μmsic {sub} p / 5210 al金属的断裂韧性矩阵复合材料达到12.8MPa·m {sup}(1/2)。主要断裂机制从颗粒裂缝到颗粒/基质界面与粒径的降低变化。

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