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首页> 外文期刊>Journal of thermal analysis and calorimetry >Graphene-modified explosive lead styphnate composites
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Graphene-modified explosive lead styphnate composites

机译:石墨烯改性的爆炸硬脂酸铅复合材料

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Five kinds of graphene nanoplatelet-modified explosive lead styphnate composites (GLS) have been synthesized with different GNPs content from 0.1 to 2.0 mass% and characterized by SEM, XRD and Raman spectra. The initial thermal decomposition behaviours were studied by DPTA, and the complete thermal decompositions were studied by DSC and TG for the everlasting thermal stability of explosives in storage and application. The effects of GNP contents on thermal decomposition were investigated. The evolved gas amount from DPTA test indicates that GLS 1.0 % has the best thermal stability at ambient storage conditions. According to TG and DSC tests, the characteristic temperatures of thermal decomposition (T (p) and T (b)), the thermodynamic parameters (Delta S (not equal), Delta H (not equal) and Delta G (not equal)), the kinetic parameters (E (a) and A) also confirmed this view. The results indicate that the GNP plays two opposite roles in their thermal decomposition processes, the catalysis reaction and hindering thermal conduction.
机译:合成了五种石墨烯纳米片修饰的爆炸性苯甲酸铅复合物(GLS),其GNP含量在0.1至2.0质量%之间,并通过SEM,XRD和拉曼光谱表征。用DPTA研究了热分解的初始行为,用DSC和TG研究了完整的热分解,以确保炸药在储存和使用中具有持久的热稳定性。研究了GNP含量对热分解的影响。从DPTA测试中得出的放气量表明,GLS 1.0%在环境存储条件下具有最佳的热稳定性。根据TG和DSC测试,热分解的特征温度(T(p)和T(b)),热力学参数(Delta S(不相等),Delta H(不相等)和Delta G(不相等)) ,动力学参数(E(a)和A)也证实了这一观点。结果表明,GNP在其热分解过程中起着两个相反的作用,即催化反应和阻碍热传导。

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