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Sintering Behavior of Spark Plasma Sintered SiC with Si-SiC Composite Nanoparticles Prepared by Thermal DC Plasma Process

机译:直流等离子体技术制备的火花等离子体烧结SiC与Si-SiC复合纳米粒子的烧结行为

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摘要

The Si-coated SiC (Si-SiC) composite nanoparticle was prepared by non-transferred arc thermal plasma processing of solid-state synthesized SiC powder and was used as a sintering additive for SiC ceramic formation. Sintered SiC pellet was prepared by spark plasma sintering (SPS) process, and the effect of nano-sized Si-SiC composite particles on the sintering behavior of micron-sized SiC powder was investigated. The mixing ratio of Si-SiC composite nanoparticle to micron-sized SiC was optimized to 10 wt%. Vicker’s hardness and relative density was increased with increasing sintering temperature and holding time. The relative density and Vicker’s hardness was further increased by reaction bonding using additional activated carbon to the mixture of micron-sized SiC and nano-sized Si-SiC. The maximum relative density (97.1%) and Vicker’s hardness (31.4 GPa) were recorded at 1800 °C sintering temperature for 1 min holding time, when 0.2 wt% additional activated carbon was added to the mixture of SiC/Si-SiC.
机译:通过固态合成的SiC粉末的无转移电弧热等离子体处理制备了涂有SiC的SiC(Si-SiC)复合纳米粒子,并用作形成SiC陶瓷的烧结添加剂。通过火花等离子体烧结(SPS)工艺制备了烧结SiC颗粒,研究了纳米尺寸的Si-SiC复合颗粒对微米级SiC粉体烧结行为的影响。 Si-SiC复合纳米粒子与微米级SiC的混合比最优化为10 wt%。维氏硬度和相对密度随着烧结温度和保持时间的增加而增加。通过使用附加的活性炭与微米级SiC和纳米级Si-SiC的混合物进行反应键合,可以进一步提高相对密度和维氏硬度。当在SiC / Si-SiC混合物中添加0.2 wt%的活性炭时,在1800°C的烧结温度下记录了1min的最高相对密度(97.1%)和维氏硬度(31.4 GPa)。

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