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首页> 外文期刊>Journal of Applied Polymer Science >High-temperature degradation of reinforced phenolic insulator
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High-temperature degradation of reinforced phenolic insulator

机译:酚醛绝缘子的高温降解

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The thermal degradation of graphite and glass-reinforced phenolic insulators have been studied at high temperature by using thermogravimetric (TGA) and differential scanning calorimetric analyses. TGA analysis was carried out in a stream of pure nitrogen over temperature range ambient to 900 degrees C and DSC analysis to 500 degrees C. A heating rate of 10 degrees C/min was used for the determination of degradation temperature and heating rates of 5, 10, 20, 30, and 50 degrees C/min were used for the estimation of degradation temperature (T-max) of the insulator at high-temperature service and calculation of activation. Activation energy of phenolic resin was calculated as 356 kJ mol(-1) using the Ozawa method. T-max was determined as 661 degrees C for 20% conversion. The specific heat capacity of graphite phenolic was found as 970 J kg(-1) K-1 at 100 degrees C. The half-life of the phenolic resin was determined to be approximately 116.2 s at 3500 degrees C. The thermal analysis has been conducted using transient heat conduction and the in-depth temperature distribution was evaluated along the rocket nozzle. The better insulator thickness, including a safety factor for graphite and E-glass-reinforced phenolics were calculated as 3 and 2 mm, respectively. (C) 1998 John Wiley & Sons, Inc. [References: 9]
机译:通过使用热重分析(TGA)和差示扫描量热分析,已经在高温下研究了石墨和玻璃纤维增​​强酚醛绝缘子的热降解。 TGA分析是在纯氮气流中进行的,温度范围为环境温度至900摄氏度,DSC分析至500摄氏度。加热速率为10摄氏度/分钟,用于测定降解温度,加热速率为5摄氏度。使用10、20、30和50摄氏度/分钟来估算高温下绝缘子的降解温度(T-max)并计算活化度。使用Ozawa方法计算出的酚醛树脂的活化能为356 kJ mol(-1)。测定T-max为661℃,转化率为20%。石墨酚醛树脂的比热容在100摄氏度下为970 J kg(-1)K-1。在3500摄氏度下,酚醛树脂的半衰期确定为大约116.2 s。使用瞬态热传导进行了测试,并评估了沿火箭喷嘴的深度温度分布。较好的绝缘体厚度(包括石墨和电子玻璃增强酚醛树脂的安全系数)分别计算为3 mm和2 mm。 (C)1998 John Wiley&Sons,Inc. [参考:9]

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