CHINESE JOURNAL OF ENERGETIC MATERIALS
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HAN基电控固体推进剂的热分解和电导率特性
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1.南京理工大学化工学院;2.南京理工大学空间推进技术研究所;3.南京理工大学 特种能源材料教育部重点实验室, 江苏 南京210094

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中央高校基本科研业务专项 30919012102 30919011404 30918011315;特种能源材料教育部重点实验室开放基金 2019SEM08中央高校基本科研业务专项(30919012102,30919011404, 30918011315)和特种能源材料教育部重点实验室开放基金(2019SEM08)


Thermal Decomposition and Conductivity Characteristics of HAN-Based Electrically Controlled Solid Propellants
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Affiliation:

1.School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;2.Institute of Space Propulsion, Nanjing University of Science and Technology, Nanjing 210094, China;3.Key Laboratory of Special Energy Materials, Ministry of Education ,Nanjing University of Science and Technology,Nanjing 210094, China

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    摘要:

    为了揭示硝酸羟胺(HAN)基电控固体推进剂(ECSP)可靠点火和燃烧调控机理,采用热重-差示扫描量热-质谱(TG-DSC-MS)联用技术和阻抗-频率扫描方法分别研究了ECSP的热分解行为、热分解产物以及压力与温度对电导率的影响。结果表明:与纯HAN溶液相比,ECSP的热稳定性提高,初始分解温度提高11 ℃,高温放热峰峰温后移24 ℃,热分解历程变长。结合ECSP的热分解行为与产物质谱曲线,发现HAN基ECSP的热分解历程主要分为三步:HAN发生热分解反应;HAN的热分解产物和未分解的HAN与聚乙烯醇(PVA)发生相互作用;ECSP中剩余其他组分发生热分解。ECSP的电导率在低频率范围(0~1000 Hz)内急剧增加,但随着频率的增加,在高频率范围(大于1000 Hz)内趋于恒定。随着压强和温度的增加,ECSP的电导率增加。当温度增加到150 ℃时,ECSP在高频率范围的电导率与125 ℃时相比降低2.92%。

    Abstract:

    In order to realize the reliable ignition and clarify combustion control mechanism of hydroxylamine nitrate (HAN)-based electrically controlled solid propellant (ECSP), thermogravimetric-differential scanning calorimetry-mass spectrometry (TG-DSC-MS) and impedance-frequency scanning techniques have been used. The effects of thermal decomposition behavior, decomposition products, pressure and temperature on conductivity of ECSP were studied independently. The results showed that compared with the pure HAN solution, the thermal stability of ECSP was improved. The initial decomposition temperature was raised by 11 ℃, whereas the peak temperature of exothermic peak was decreased by 24 ℃ with a broader exothermic temperature range. Combining the thermal decomposition behavior of ECSP with the mass spectrometry curves of the gaseous products, it could be concluded that the thermal decomposition process of HAN-based ECSP might be divided into three steps: the thermal decomposition reaction of HAN, the interaction of the thermal decomposition products of HAN and the undecomposed HAN with polyvinyl alcohol (PVA), and the thermal decomposition of the residue components in ECSP. The electron conductivity of the ECSP was increased largely in the low frequency range (0-1000 Hz), but tended to be constant in the high frequency range (greater than 1000 Hz) as the frequency increased. With the increase of the pressure and temperature, the electron conductivity of the ECSP was increased. By raising the temperature to 150 ℃, the electron conductivity in the high frequency range was reduced by 2.92% compared with that obtained at 125 ℃.

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引用本文

鲍立荣,张伟,陈永义,等. HAN基电控固体推进剂的热分解和电导率特性[J].含能材料, 2019, 27(9):743-748. DOI:10.11943/CJEM2019054.
BAO Li-rong, ZHANG Wei, CHEN Yong-yi, et al. Thermal Decomposition and Conductivity Characteristics of HAN-Based Electrically Controlled Solid Propellants[J]. Chinese Journal of Energetic Materials, 2019, 27(9):743-748. DOI:10.11943/CJEM2019054.

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  • 收稿日期: 2019-03-14
  • 最后修改日期: 2019-07-24
  • 录用日期: 2019-06-17
  • 在线发布日期: 2019-07-22
  • 出版日期: 2019-09-27