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Effects of Starting Materials on Preparation and Properties of Pure SiC Ceramics via the HTPVT Method

机译:原料通过HTPVT方法对纯SiC陶瓷制备及性能的影响

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The method of high temperature physical vapor transport (HTPVT) is an available approach to prepare silicon carbide (SiC) ceramics with high density and high purity. In the present work, α-SiC (6H-SiC) and β-SiC (3C-SiC) powders were used as starting materials respectively to fabricate SiC ceramics with HTPVT process, and the effects of starting materials on nucleation, density, microstructure and mechanical properties of SiC ceramics were investigated. It showed that at high temperature, the decomposition rate of β-SiC was higher than that of α-SiC, and at the initial nucleation stage, the average grain size of SiC crystal obtained with β-SiC starting materials was smaller than that with α-SiC starting materials, because higher vapour pressure of gas phase which decomposed by β-SiC starting materials facilitated nucleation and growth of SiC grains. Density of the resulted SiC ceramics using α-SiC and β-SiC as starting materials was 3.16 g·cm-3 and 3.17 g·cm~(-3), indicating close values, while, using β-SiC as the starting materials, the grain size was smaller, consequently, the flexure strength was higher. Increasing growth temperature from 2200°C to 2300°C, the densities and the flexure strength of the SiC ceramics using either α-SiC or β-SiC were decreased.
机译:高温物理蒸气运输(HTPVT)的方法是一种制备具有高密度和高纯度的碳化硅(SiC)陶瓷的可用方法。在目前的工作,α-SiC单晶(6H-SiC)的和的β-SiC(3C-SiC)的粉末分别用作起始原料,制造具有HTPVT过程碳化硅陶瓷,并开始对成核,密度,微结构的材料的影响,并研究了SiC陶瓷的力学性能。结果表明,在高温下,β-SiC的分解速率高于α-SiC,并且在初始成核阶段,用β-SiC起始材料获得的SiC晶体的平均晶粒尺寸小于α -SIC起始材料,因为通过β-SiC起始材料分解的气相蒸气压力促进了SiC晶粒的成核和生长。使用α-SiC和β-SiC作为起始材料的所得SiC陶瓷的密度为3.16g·cm-3和3.17g·cm〜(-3),表示近似值,而使用β-S​​iC作为起始材料,因此,晶粒尺寸较小,因此弯曲强度较高。将增长温度从2200℃增加到2300℃,使用α-SiC或β-SiC的SiC陶瓷的密度和弯曲强度降低。

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