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Preparation of a superfine RDX/Al composite as an energetic material by mechanical ball-milling method and the study of its thermal properties

机译:机械球磨法制备RDX / Al超细复合含能材料及其热性能研究

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To research the influence of aluminum (Al) on the decomposition of 1,3,5-trimethylene trinitramine (RDX), a type of superfine RDX/Al composite as an energetic material with a mass ratio of 70/30 was successfully prepared by mechanical ball-milling method. The morphology and structure of the superfine RDX/Al composite were characterized by scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS). The thermal decomposition properties were analyzed by thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), and thermal-infrared spectrometry (DSC-FTIR) online. The results showed that the as-prepared material was a type of a novel superfine composite with the superfine RDX particles coated on the surface of Al flakes. XPS analysis indicated that a new Al–N bond was formed in the superfine RDX/Al composite and both physical and chemical absorptions existed between RDX and Al at the same time. The thermal decomposition temperature of RDX in the superfine RDX/Al composite had a shift of about 50 °C towards the lower temperature range compared with that of the neat superfine RDX when tested at four heating rates of 5, 15, 25 and 35 °C min ~(?1) . Its activation energy value also decreased to 70.8 kJ mol ~(?1) compared with that of the neat superfine RDX (119.6 kJ mol ~(?1) ). Moreover, thermal sensitivity of the superfine RDX/Al composite increased. DSC-FTIR analysis showed that the main decomposition products of the superfine RDX/Al composite were N _(2) O and CO _(2) with nearly no NO and NO _(2) detected. The formation of Al–N bond and reactive Al atoms are the main reasons for the notably advanced decomposition of RDX in the superfine RDX/Al composite.
机译:为了研究铝(Al)对1,3,5-三亚甲基三硝胺(RDX)分解的影响,成功地通过机械制备了一种质量比为70/30的超细RDX / Al复合材料为高能材料。球磨法。用扫描电子显微镜(SEM)和X射线光电子能谱(XPS)表征了超细RDX / Al复合材料的形貌和结构。在线通过热重分析(TGA),差示扫描量热法(DSC)和热红外光谱法(DSC-FTIR)分析了热分解特性。结果表明,所制备的材料是新型超细复合材料的一种,其中超细RDX颗粒包覆在铝片的表面。 XPS分析表明,在超细RDX / Al复合物中形成了新的Al-N键,RDX和Al之间同时存在物理和化学吸收。在5、15、25和35°C的四种加热速率下进行测试时,与纯超细RDX相比,超细RDX / Al复合材料中RDX的热分解温度向较低温度范围移动了约50°C。分钟〜(?1)。与纯超细RDX(119.6 kJ mol〜(?1))相比,其活化能值也降至70.8 kJ mol〜(?1)。此外,超细RDX / Al复合材料的热敏性增加。 DSC-FTIR分析表明,超细RDX / Al复合材料的主要分解产物为N_(2)O和CO_(2),几乎没有检测到NO和NO_(2)。 Al-N键和活性Al原子的形成是RDX在超细RDX / Al复合材料中明显提前分解的主要原因。

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