Study on Heat Release Characteristics of Sounding Device Based on Improved Carbon Fiber

Yanfeng Chen, Bingning Jin, Haobo Qi, Zhiren Deng, Chi Ma, Yu Liao
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Abstract

In the experimental study of pressure oscillation in combustion instability of solid rocket motor, the thermoacoustic effect of carbon fiber can be used to generate a large amplitude of pressure oscillation. However, the traditional carbon fiber cannot work stably for a long time with large heat release power. Therefore, this study focuses on improving the working time and heat release power of carbon fiber, and the effect of the morphology of carbon fiber on heat release characteristics is studied. Firstly, the heat release characteristics of woven and non-woven carbon fiber are simulated and analyzed. Secondly, the sounding device based on the heat release of carbon fiber are established. The influence of different diameters (12 k, 36 k, 48 k, 64 k) of woven carbon fiber yarns on the heat release characteristics are studied. Finally, the heat release characteristics of woven and non-woven carbon fibers under air and nitrogen atmosphere are compared, respectively. The results show that the stable working time and heat release power of woven carbon fiber yarns in nitrogen atmosphere are higher than those of non-woven counterparts in air. The working time of woven carbon fiber yarns in air is about 4.21 times longer, and the heat release power is about 5.5 times higher than that of non-woven carbon fiber yarns.
改良碳纤维探空装置放热特性研究
在固体火箭发动机燃烧不稳定压力振荡的实验研究中,利用碳纤维的热声效应可以产生较大振幅的压力振荡。然而,传统的碳纤维不能长时间稳定工作,放热功率大。因此,本研究的重点是提高碳纤维的工作时间和放热能力,并研究碳纤维的形貌对放热特性的影响。首先,对编织和非织造碳纤维的放热特性进行了仿真分析。其次,建立了基于碳纤维放热的探测装置。研究了不同直径(12k、36k、48k、64k)的机织碳纤维纱对其放热特性的影响。最后,比较了织物碳纤维和非织造碳纤维在空气和氮气气氛下的放热特性。结果表明,在氮气气氛下,梭织碳纤维纱的稳定工作时间和放热能力均高于空气气氛下的无纺布纤维纱。机织碳纤维纱在空气中的工作时间比无纺布碳纤维纱长约4.21倍,放热功率比无纺布碳纤维纱高约5.5倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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