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首页> 外文期刊>Journal of Materials Science >Synthesis of a minute SiC product from polyvinylsilane with radiation curing: Part II - Ceramization process of radiation cured polyvinylsilane
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Synthesis of a minute SiC product from polyvinylsilane with radiation curing: Part II - Ceramization process of radiation cured polyvinylsilane

机译:用辐射固化法从聚乙烯基硅烷合成微小的SiC产物:第二部分-辐射固化的聚乙烯基硅烷的陶瓷化工艺

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摘要

We have synthesized minute SiC products from polyvinylsilane (PVS), which is a liquid organosilicon polymer, with radiation curing. Since there is a close relationship between the properties of obtained SiC products and pyrolysis condition, it is important to investigate the ceramization process of cured PVS in order to find out the optimum pyrolysis condition. In this paper, the ceramization process of the PVS cured by gamma-ray irradiation at room temperature was investigated by gas analysis, thermogravimetric analysis (TGA), density measurement, and so on. It was found that the ceramization of gamma-ray cured PVS starts above 500 K, and drastic organic-inorganic conversion occurs in the temperature range of 700-1100 K. According to the changes of mass and density, it was found that the volume shrinkage of PVS during the curing and pyrolysis processes is 80%. The SiC obtained by pyrolysis at 1573 K in argon gas atmosphere showed the density of 2500 kg/m(3) and microvickers hardness of 31.6 GPa.
机译:我们已经从聚乙烯基硅烷(PVS)(一种液态有机硅聚合物)经过辐射固化合成了微细的SiC产品。由于获得的SiC产品的性能与热解条件之间有着密切的关系,因此研究固化的PVS的陶瓷化过程以找出最佳的热解条件非常重要。本文通过气体分析,热重分析(TGA),密度测量等方法研究了室温下伽马射线辐照固化的PVS的陶瓷化过程。发现在500 K以上时,γ射线固化的PVS发生了陶瓷化,并且在700-1100 K的温度范围内发生了剧烈的有机-无机转化。根据质量和密度的变化,发现体积收缩在固化和热解过程中,PVS的百分比为80%。通过在1573 K在氩气气氛中热解获得的SiC的密度为2500 kg / m(3),微维氏硬度为31.6 GPa。

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