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首页> 外文期刊>Journal of Advanced Ceramics >Effect of heating rate on the properties of silicon carbide fiber with chemical-vapor-cured polycarbosilane fiber
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Effect of heating rate on the properties of silicon carbide fiber with chemical-vapor-cured polycarbosilane fiber

机译:加热速率对化学气相固化聚碳硅烷纤维对碳化硅纤维性能的影响

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Silicon carbide (SiC) fiber has recently received considerable attention as promising next-generation fiber because of its high strength at temperatures greater than 1300 °C in air. High-quality SiC fiber is primarily made through a curing and heat treatment process. In this study, the chemical vapor curing method, instead of the thermal oxidation curing method, was used to prepare cured polycarbosilane (PCS) fiber. During the high temperature heat treatment of the cured PCS fiber, varied heating rates of 10, 20, 30, and 40 °C/min were applied. Throughout the process, the fiber remained in the amorphous silicon carbide phase, and the measured tensile strength was the greatest when the oxygen content in the heat-treated fiber was low, due to the rapid heating rate. The fiber produced through this method was also found to have excellent internal oxidation properties. This fast, continuous process shows а great promise for the production of SiC fiber and the development of high-quality products.
机译:碳化硅(SiC)纤维由于在空气中高于1300°C的高温下具有很高的强度,因此作为有希望的下一代纤维受到了广泛的关注。高质量SiC纤维主要是通过固化和热处理工艺制成的。在这项研究中,使用化学气相固化方法代替热氧化固化方法来制备固化的聚碳硅烷(PCS)纤维。在固化的PCS纤维的高温热处理期间,采用10、20、30和40°C / min的不同加热速率。在整个过程中,由于快速的加热速率,当热处理的纤维中的氧含量低时,纤维保留在非晶碳化硅相中,并且测得的拉伸强度最大。还发现通过这种方法生产的纤维具有优异的内部氧化性能。这种快速,连续的过程为SiC纤维的生产和高质量产品的开发显示了巨大的希望。

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