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首页> 外文期刊>Journal of Materials Science >A MODEL SIC-BASED FIBRE WITH A LOW OXYGEN CONTENT PREPARED FROM A POLYCARBOSILANE PRECURSOR
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A MODEL SIC-BASED FIBRE WITH A LOW OXYGEN CONTENT PREPARED FROM A POLYCARBOSILANE PRECURSOR

机译:由聚碳硅烷前体制备的低氧含量的基于SIC的模型纤维

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摘要

A model SiC-fibre has been prepared from a polycarbosilane precursor by means of an irradiation oxygen-free curing process. The chemical composition remains unchanged after heat treatments under an inert atmosphere for pyrolysis temperatures of 1600 degrees C. At this temperature, the fibre consists of SiC nanocrystals (mean size 6-10 nm) and free carbon. However, a slow grain growth takes place as the temperature is increased. The fibre retains a high strength at room and high temperatures up to temperatures of 1600 degrees C when the pyrolysis has been performed under nitrogen. The electrical conductivity was studied as a function of the pyrolysis temperature T-p: For 1100 less than or equal to T-p less than or equal to 1200 degrees C, the conductivity increases by several orders of magnitude due to the reorganization of the free carbon phase at the SiC grain boundaries. Oxidation kinetics of the filaments remain parabolic from 1000-1400 degrees C. [References: 54]
机译:SiC-纤维模型是通过无氧辐照固化工艺由聚碳硅烷前体制备的。在惰性气氛下进行热解温度为1600摄氏度的热处理后,化学成分保持不变。在此温度下,纤维由SiC纳米晶体(平均尺寸6-10 nm)和游离碳组成。然而,随着温度升高,晶粒生长缓慢。当在氮气下进行热解时,该纤维在室温和高达1600摄氏度的高温下仍保持高强度。研究了电导率与热解温度Tp的关系:对于1100 Tp等于或小于1200摄氏度,由于自由碳相在C的重组,电导率增加了几个数量级。 SiC晶界。从1000到1400摄氏度,灯丝的氧化动力学保持抛物线状态。[参考文献:54]

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