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针对当前固体火箭发动机无法重复启停、难以实现推力可控等需求,结合固体火箭和液体火箭的优点,国内外研究机构探究了一种具有重复点火与熄火、燃烧速度可调、输出能量可控的电控固体推进剂。系统介绍了新型电控固体推进剂领域的国内外研究现状,首先,总结了国内外各类电控固体推进剂(硝酸铵基、硝酸羟胺基、高氯酸锂基)的发展,以及在微推、炮弹点火器和固体发动机方面的应用情况;其次,概述了配方组分、电压、电流、外界环境温度和压强等因素对电控固体推进剂的燃速、点火延迟时间以及力学性能的影响;然后,分析了电控固体推进剂的启停机理,介绍了硝酸铵羟胺和高氯酸锂基电控固体推进剂的反应机理;最后,对电控固体推进剂的未来发展进行了展望,指出未来仍需重点研究的方向:加强电控固体推进剂制备工艺放大研究;设计新型电敏氧化剂,解决高压下无法可控燃烧的问题;开展大尺寸电控固体发动机试验研究;通过数值模拟进一步揭示电能与推进剂燃烧耦合效应。附参考文献62篇。 相似文献
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Interface debonding between particle and matrix in composite propellant influences its macroscopic mechanical properties greatly. For this, the laws of interface cohesive damage and failure were analyzed. Then, its microscopic computational model was established. The interface mechanical response was modeled by the bilinear cohesive zone model. The effects of interface properties and particle sizes on the macroscopic mechanical behavior were investigated. Numerical simulation of debonding damage evolution of composite propellant under finite deformation was carried out. The debonding damage nucleation, propagation mechanism and non-uniform distribution of microscopic stress-strain fields were discussed. The results show that the finite element simulation method based on microstructure model can effectively predict the trend of macroscopic mechanical behavior and particle/matrix debonding evolution process. It can be used for damage simulation and failure assessment of composite propellants. 相似文献
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应用高分辨率A/D和DSP实现的加速度计并行数据采集系统 总被引:5,自引:0,他引:5
介绍了高分辨率模数转换器ADS1 2 1 0和数字信号处理器TMS3 2 0C3 2组成的石英挠性加速度计并行数据采集系统 ,给出了工作原理、实现方法和测试结果 相似文献
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