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首页> 外文期刊>Journal of Energetic Materials >Energetic nitrocellulose coating: effective way to decrease sensitivity and modify surface property of HMX particles
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Energetic nitrocellulose coating: effective way to decrease sensitivity and modify surface property of HMX particles

机译:能量硝酸纤维素涂料:降低敏感性和修饰HMX颗粒表面性质的有效方法

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摘要

Modifying the surface properties of energetic materials has theoretical and practical significance in the field of their application. In this paper, irregular cyclotetramethylene tetranitramine (HMX) particles were successfully coated by energetic nitrocellulose (NC), leading to the uniform NC-coated HMX particles. As coating materials, energetic (NC was chosen to decrease the sensitivity and modify the surface property of HMX particles, in order to expand their application furthermore. Scanning electron microscopy, laser particle size analysis, energy dispersive spectrometer, and Fourier-transform infrared (FT-IR) spectra were utilized to investigate the morphology, size, and coating quality of NC-coated HMX particles. These results indicated the effective preparation of composites structure. Moreover, the thermal behaviors of NC-coated HMX particles were investigated by simultaneous thermogravimetric and differential scanning calorimetry analysis, coupled with FT-IR and mass spectroscopy. These results showed that NC did not induce chemical properties change of HMX, only physical hydrogen bond was formed in the coating process. Finally, the friction sensitivity, impact sensitivity, and surface properties NC-coated HMX were investigated, and the results suggested that NC-coated HMX particles had better safety and depicted stronger interaction with the binder matrix than original HMX, owing to the stability of NC on the outer layer.
机译:改变能量材料的表面特性在其应用领域具有理论和实际意义。在本文中,通过高能硝酸纤维素(NC)成功地涂覆了不规则的环四亚甲基四腈(HMX)颗粒,导致均匀的NC涂覆的HMX颗粒。作为涂料,精力充沛(选择NC以降低灵敏度并改变HMX颗粒的表面特性,以便进一步扩展它们的应用。扫描电子显微镜,激光粒度分析,能量分散光谱仪和傅立叶变换红外(FT - ry)光谱用于研究NC涂覆的HMX颗粒的形态,尺寸和涂层质量。这些结果表明了复合材料结构的有效制剂。此外,通过同时热重称之下研究了NC涂覆的HMX颗粒的热行为差分扫描量热法分析,结合FT-IR和质谱。这些结果表明,NC没有诱导HMX的化学性质变化,只有物理氢键在涂布过程中形成。最后,摩擦敏感性,冲击敏感性和表面研究了性能NC涂覆的HMX,结果表明NC涂覆的HMX颗粒具有由于NC在外层上的稳定性,更好的安全性并描绘与粘合剂基质的相互作用比原始HMX更强。

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