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Thermal behavior of MWCNT/ammonium perchlorate particles

机译:MWCNT /铵高氯酸铵颗粒的热行为

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A novel generation of highly advanced energetic systems depends on carbon nanomaterials (CNMs) such as expanded graphite (EG), carbon nanotubes (CNTs), graphene, and graphene oxide (GO). Carbon nanomaterials (CNMs) has a widely used as an energetic storage and catalysis in energetic material field due to his large surface area and high surface energy .One of the most advantage of (CNMs) is using as carriers of energetic components by coating or encapsulation. This study reports on catalyzed ammonium perchlorate (APC) by MWCNT. MWCNTs were effectively encapsulated with APC particles by using modified fast-crash solvent-antisolvent technique and characterized by scanning electron microscope (SEM) and Energy dispersive X-ray spectrometer (EDX). The catalytic performance of MWCNT on the thermal behavior of ammonium perchlorate (APC) was analyzed by using differential scanning calorimetery (DSC) and thermal gravimetric analysis (TGA). Interestingly, effect of MWCNTs on the thermal decomposition of APC where the results shown that encapsulated APC with 1% MWCNT show significant reductions of the high decomposition temperature from 452.8°C of APC to 390.1°C and MWCNTs offered an increase in total heat release of APC by 130 %. The results confirmed that MWCNTs are a novel catalyzing agent on the thermal decomposition of ammonium perchlorate which has a direct effect on the burning behavior, performance and combustion characteristics of the solid rocket propellants. Ammonium perchlorate. Scanning electron microscopy.
机译:一种新的高度高级能量系统的产生取决于碳纳米材料(CNMS),例如膨胀石墨(例如),碳纳米管(CNT),石墨烯和石墨烯(GO)。由于他的大表面积和高表面能,碳纳米材料(CNMS)具有广泛用作能量材料领域的能量存储和催化。(CNMS)的最优点,通过涂覆或封装使用作为能量组件的载体。本研究报告了MWCNT催化的氯酸铵(APC)。通过使用改性的快碰撞溶剂 - 抗溶剂技术有效地用APC颗粒用APC颗粒封装MWCNT,并通过扫描电子显微镜(SEM)和能量分散X射线光谱仪(EDX)。通过使用差示扫描量热(DSC)和热重分析(TGA)分析MWCNT对高氯酸铵(APC)的热行为的催化性能。有趣的是,MWCNT对APC热分解的影响,结果表明,具有1%MWCNT的包封APC的结果显示出高分解温度的高分分解温度从452.8℃的APC至390.1°C,MWCNTS的总热量增加APC达130%。结果证实,MWCNT是一种新型催化剂,用于高氯酸铵的热分解,其对固体火箭推进剂的燃烧行为,性能和燃烧特性具有直接影响。高氯酸铵。扫描电子显微镜。

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