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Microstructure and Mechanical Properties of Mg-5Nb Metal-Metal Composite Reinforced with Nano SiC Ceramic Particles

机译:纳米SiC陶瓷颗粒增强Mg-5Nb金属金属复合材料的组织和力学性能

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In this work, a Mg-5Nb metal–metal composite was reinforced with nano SiC (SiCn) ceramic reinforcement of varying volume fractions, using the disintegrated melt deposition technique. The extruded Mg-5Nb-SiCn composites were characterized for their microstructure and mechanical properties. Based on the results obtained, it was observed that the volume fraction of nano-SiC reinforcement played an important role in determining the grain size and improving the mechanical properties. A comparison of properties with those of pure Mg and Mg-5Nb composite showed that while the improvement in hardness occurred at all volume fractions, a minimum volume fraction of ~0.27% SiCn was required to increase the tensile and compressive strengths. The observed mechanical response of the composites were investigated in terms of the effect of SiCn volume fraction, processing, distribution of metallic and ceramic reinforcements and the inherent properties of the matrix and reinforcements. The influences of these factors on the mechanical behavior of the composites are understood based on the structure–property relationship.
机译:在这项工作中,采用了分散熔体沉积技术,通过改变体积分数的纳米SiC(SiC n )陶瓷增强材料增强了Mg-5Nb金属-金属复合材料。对挤出的Mg-5Nb-SiC n 复合材料的微观结构和力学性能进行了表征。基于获得的结果,观察到纳米SiC增强材料的体积分数在确定晶粒尺寸和改善机械性能中起重要作用。与纯Mg和Mg-5Nb复合材料的性能比较表明,尽管在所有体积分数下都出现了硬度改善,但需要最小体积分数〜0.27%SiC n 来增加拉伸强度。和抗压强度。从SiC n 的体积分数,加工,金属和陶瓷增强材料的分布以及基体和增强材料的固有性能方面研究了复合材料观察到的机械响应。这些因素对复合材料力学性能的影响是基于结构-性能关系来理解的。

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