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Studies on the thermal properties of silicone polymer based thermal protection systems for space applications

机译:基于空间应用的硅氧烷基的热保护系统的热性能研究

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Thermal decomposition, thermal conductivity, specific heat and flammability of polydimethyl siloxane (PDMS) resin and three PDMS-based systems with three different types of additives were studied using various thermo-analytical techniques. The additives were found to modify the thermal properties of PDMS to different extents. Among the three systems, highest specific heat and lowest thermal conductivity, desired for thermal protection application, were obtained for System I. The thermal stability of the three systems is in the order System I > System II > System III. Even though System III showed the lowest specific heat and highest thermal conductivity, due to its very high LOI among all other systems, the system finds application as a flame retardant. Thermogravimetric-mass spectroscopic analysis was carried out to find out the decomposition products. The major decomposition product was identified as hexamethylcyclotrisiloxane in all the systems. The decomposition kinetics of these systems was investigated by thermogravimetry using multiple heating rate methods, viz. Kissinger and Flynn-Wall-Ozawa. The kinetic parameters, viz. activation energy and pre-exponential factor, were derived using the two methods for all the systems. From the kinetic study, it is confirmed that the activation energy for the decomposition of the neat PDMS decreased as decomposition progressed, whereas the activation energy increased for the silicone composite systems.
机译:使用各种热分析技术研究了热分解,热传导性,聚二甲基硅氧烷(PDMS)树脂和三种不同类型添加剂的基于3种基于PDMS的基于组织的易燃性。发现添加剂将PDMS的热性能改性为不同的范围。在系统I中获得了三种系统中所需的最高的热保护应用的最高热和最低导热率。三种系统的热稳定性是顺序系统I>系统II>系统III。尽管系统III显示出最大的比热和最高导热率,但由于其在所有其他系统中具有非常高的LOI,该系统将应用作为阻燃剂。进行热量标记 - 质谱分析,以找出分解产物。主要分解产物在所有系统中鉴定为六甲基环氯硅氧烷。使用多种加热速率方法,Viz研究了这些系统的分解动力学。基辛格和Flynn-wall-ozawa。动力学参数,viz。使用所有系统的两种方法导出激活能量和预指数因子。从动力学研究中,证实,由于分解进展,纯PDM的分解的激活能量降低,而活化能量增加用于硅氧烷复合系统。

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