首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Preparation and characterization of cyclo-1,3,5-trimethylene-2,4,6-trinitramine (RDX) powder: Comparison of microscopy, dynamic light scattering and field-flow fractionation for size characterization
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Preparation and characterization of cyclo-1,3,5-trimethylene-2,4,6-trinitramine (RDX) powder: Comparison of microscopy, dynamic light scattering and field-flow fractionation for size characterization

机译:环1,3,5-三亚甲基-2,4,6-三硝胺(RDX)粉末的制备和表征:显微镜,动态光散射和场流分级分离技术的比较

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摘要

RDX powder was prepared using a supercritical anti-solvent (SAS) recrystallization. Then the physicochemical properties of the RDX powder were analyzed by using differential scanning calorimetry (DSC), electrophoretic light scattering (ELS), X-ray diffraction (XRD), and scanning electron microscopy (SEM). The size distribution of the RDX powder was studied by dynamic light scattering (DLS) and optical microscopy (OM). Asymmetrical flow field-flow fractionation (AsFlFFF) was tested for determination of size distribution. Results from FFF were compared with those from DLS and OM, and then the merits and limitations of the sizing techniques were discussed. It was found that DLS is not suitable for the size analysis of samples having broad size distributions, such as the RDX powder prepared in this work. The mean sizes of the RDX powder obtained by OM and FFF were in reasonable agreement For FFF analysis, combination of FL-70, a surfactant, with regenerated cellulose (RC) membrane was found to provide the best performance with good resolution and minimized particle-membrane interaction, resulting in reliable size distribution. The FFF technique showed higher reproducibility in measuring the particle size than OM or DLS with relative standard deviation of 6%. FFF is a useful tool for size-based separation and size characterization of the RDX powder with a particle size distribution from about 1 μm to 25 μm.
机译:使用超临界抗溶剂(SAS)重结晶制备RDX粉末。然后使用差示扫描量热法(DSC),电泳光散射(ELS),X射线衍射(XRD)和扫描电子显微镜(SEM)分析RDX粉末的理化性质。通过动态光散射(DLS)和光学显微镜(OM)研究了RDX粉末的尺寸分布。测试了不对称流场流分馏法(AsFlFFF)以确定尺寸分布。将FFF的结果与DLS和OM的结果进行了比较,然后讨论了上浆技术的优缺点。发现DLS不适合用于具有宽尺寸分布的样品的尺寸分析,例如在这项工作中制备的RDX粉末。通过OM和FFF获得的RDX粉末的平均尺寸在合理范围内。对于FFF分析,发现表面活性剂FL-70与再生纤维素(RC)膜的组合可提供最佳性能,并具有良好的分离度,并使颗粒最小化。膜相互作用,导致可靠的尺寸分布。 FFF技术显示出比OM或DLS具有更高的重现性,相对标准偏差为6%。 FFF是有用的工具,用于基于RDX粉末的尺寸分离和尺寸表征,其粒径分布范围约为1μm至25μm。

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