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Effects of Processing Parameters on the Mechanical Properties of SiC_p/AC8A Composites by Pressureless Metal Infiltration Process

机译:压力金属渗透过程加工参数对SiC_P / AC8A复合材料力学性能的影响

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The effects of additional Mg content and the size of the reinforcement phase on the mechanical properties of 20 vol.% SiC_p/AC8A composites fabricated by pressureJess metaJ infiltration process were investigated. The hardness of SiC_p/AC8A composites increased gradually with an increase in the additive Mg content, while the bending strength of SiC_p/AC8A composites increased with an increase in additive Mg content up to 5%. However, this decreased when the level of additive Mg content was greater than 5%. The increase in hardness by additive Mg content is due to the formation of hard reaction products such as Mg_2Si and AlN during the process, whereas the decrease in bending strength when Mg content was above 5% is due to the formation of coarse precipitates by excessive Mg reaction and an increase in the porosity level. The hardness and strength of the composites increased with a decrease in the size of SiC particles. It was found that the composites with smaller particles enhanced the interfacial bonding more than those with bigger particles from fractography of the composites.
机译:的附加Mg含量的效果和增强相的上20体积的机械性能的大小。%SiC_p / AC8A复合材料的pressureJess metaJ渗透过程进行了调查。 SiC_p的硬度/ AC8A复合材料的增加添加剂Mg含量逐渐增加,而SiC_p / AC8A的弯曲强度复合材料至5%的增加添加剂Mg含量高达增加。然而,这种降低当添加剂Mg含量的水平为大于5%。通过添加剂Mg含量的硬度增加是由于硬反应产物,例如过程中Mg_2Si和AlN的形成,而在弯曲强度时Mg的含量为5%以上的降低是由于过度的Mg形成粗大的析出物的反应和增加的孔隙率水平。复合材料的硬度和强度,在碳化硅颗粒的尺寸降低而增加。结果发现,与更小的颗粒复合材料增强的界面结合比那些具有从复合材料的断口较大的颗粒更。

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