CHINESE JOURNAL OF ENERGETIC MATERIALS
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超细HNS颗粒状态研究
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王平(1950-)男,高级工程师,主要从事含能材料研究。

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Study on Superfine HNS Particles
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    摘要:

    -研究了温度及高聚物对超细六硝基茋(HNS-Ⅳ)颗粒状态的影响。结果表明: 经22~25 ℃干燥48 h的超细HNS颗粒分散性较好,而100 ℃干燥2 h即引起HNS-Ⅳ颗粒团聚; HNS-Ⅳ在真空25 ℃脱气8 h,所测孔体积与比表面积(BET)高于真空65 ℃脱气2 h的测试数据; HNS-Ⅳ比表面积并非完全取决于平均粒径,而在一定程度上随其孔体积呈线性变化; 纯HNS-Ⅳ平均粒径0.789 μm,孔体积0.032 cm3?g-1,比表面积15.13 m2?g-1,添加3% P聚合物后,其平均粒径0.594 μm,孔体积 0.026 cm3?g-1,比表面积11.41 m2?g-1,加入4% P聚合物,其平均粒径0.890 μm,孔体积0.052 cm3?g-1,比表面积23.38 m2?g-1

    Abstract:

    The effect of preparation temperature and polymer additive on superfine HNS particles was studied to investigate its microstructure. The results show that superfine HNS particles disperse well drying 48 h at 22-25 ℃,and aggregates drying 2 h at 100 ℃. The pore volume and specific surface area of HNS-Ⅳ adsorbed 8 h in vacuum at 25 ℃ are larger than that of HNS-Ⅳ adsorbed 2 h in vacuum at 65 ℃. The surface area is not totally depended on mean particle size but linearly changes with pore volume to some extent. The mean particle size of pure HNS-Ⅳ is 0.789 μm,the pore volume and surface area are 0.032 cm3?g-1 and 15.13 m2?g-1 respectively. The mean particle size,pore volume and surface area of particles containing 3% polymer are 0.594 μm,0.026 cm3?g-1 and 11.41 m2?g-1 respectively. The mean particle size,pore volume and surface area of particles containing 4% polymer respectively are 0.594 μm,0.026 cm3?g-1 and 11.41 m2?g-1 respectively.

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王平,郁卫飞,张娟,等.超细HNS颗粒状态研究[J].含能材料, 2008, 16(5):511-514.
WANG Ping, YU Wei-fei, ZHANG Juan, et al. Study on Superfine HNS Particles[J]. Chinese Journal of Energetic Materials, 2008, 16(5):511-514.

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  • 收稿日期: 2008-07-17
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  • 在线发布日期: 2011-05-06
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