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A novel mechanical-thermal-electrical thermal protection system concept and its multi-scale performance evaluation for hypersonic launch vehicles

机译:一种新型机械热电热保护系统概念及其对超音速发动车辆的多规模性能评估

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摘要

In this paper, a multifunctional thermal protection system (MTPS) concept with additional functions of thermoelectric (TE) conversion and load bearing is developed for a hypersonic launch vehicle. The concept is a plate in macroscale and a unit in mesoscale. The mesoscopic unit consists of a TE module and a TPS gap. The TE module consists of an alumina ceramic layer and a fiber insulation layer to dissipate certain amount of the aerodynamic heat, a high-temperature and a mid-temperature TE layers to efficiently convert aerodynamic heat into electric energy, a load-bearing frame and honeycomb cores to improve the load bearing capacity, embedded electricity conducting plates in TE materials and low-modulus high-temperature adhesives to alleviate the thermal stress. The mechanical-thermal-electrical performance of the MTPS is evaluated based on the multi-scale analysis of the flight vehicle, MTPS plate and MTPS unit, and the transfer method of mechanical boundary conditions between different scales is developed. The results show that the multi-scale analysis is essential to ensure the accuracy of boundary conditions, and the developed MTPS concept has multi effective functions of load bearing, heat protection and power supply.
机译:本文开发了一种多功能的热保护系统(MTPS)概念,具有热电(TE)转换和承重轴承的附加功能,用于超音速发射车辆。该概念是宏观的板,在Mesoscale中是一个单位。介面镜片单元包括TE模块和TPS间隙。 TE模块由氧化铝陶瓷层和光纤绝缘层组成,以消散一定量的空气动力学热量,高温和中温TE层,以有效地将空气动力学热转化为电能,承载框架和蜂窝核心以提高承载能力,嵌入式电力导电板在TE材料和低模量高温粘合剂中,以缓解热应力。基于飞行车辆,MTPS板和MTPS单元的多尺度分析来评估MTP的机械热电性能,开发了不同尺度之间的机械边界条件的转移方法。结果表明,多尺度分析至关重要,以确保边界条件的准确性,开发的MTPS概念具有负载轴承,热保护和电源的多种有效功能。

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