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首页> 外文期刊>Journal of nanomaterials >Nano-HNS Particles: Mechanochemical Preparation and Properties Investigation
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Nano-HNS Particles: Mechanochemical Preparation and Properties Investigation

机译:纳米HNS颗粒:机械化学准备和性能调查

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摘要

Nano-2,2′,4,4′,6,6′-hexanitrostilbene (HNS) particles were successfully prepared by a mechanochemical (i.e., high energy milling) process without an organic solvent, which can be viewed as a green technology. The particle size, morphology, specific area, crystal phase, thermal decomposition properties, impact sensitivity, and short duration shock initiation sensitivity were characterized and tested. The diameter of milling HNS is about 89.2?nm with a narrow size distribution and without agglomeration of particles. The formation mechanism of nano-HNS can be viewed as the transformation from thin HNS sheets with a one-dimensional nanostructure to three-dimensional nanoparticles. The nano-HNS particles present a much higher and lower impact sensitivity than purified HNS, revealing the outstanding safety properties. From the results of the short duration shock initiation sensitivity, 50% and 100% initiation voltages are decreased compared with those of HNS-IV, indicating the higher initiation sensitivity.
机译:通过有机溶剂的机械化学(即高能铣削)工艺成功地制备了纳米-2,2',4,4',6,6'-己腈硅(HNN)颗粒,其可以被视为绿色技术。特征和测试粒度,形态,特异性面积,晶相,热分解性,冲击灵敏度和短持续时间休克起始灵敏度。铣削HNS的直径约为89.2≤NM,具有窄尺寸分布,无颗粒的聚集。纳米HN的形成机制可以被视为从具有一维纳结构的薄HNS片材与三维纳米颗粒的转化。纳米HNS颗粒具有比纯化的HN更高且较低的冲击敏感性,揭示了出色的安全性。从短持续时间的结果,与HNS-IV相比,50%和100%发起电压降低,表明启动敏感度较高。

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