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Pyrotechnic heater setup as a calorimeter: Micro- vs. nano- Mg/Fe2O3 thermites

机译:烟火加热器设置为量热计:Micro-Vs.nao-Mg / Fe2O3 Thermites

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Combustion of thermite composition Mg/Fe2O3 with micron- and nano-sized components was studied in pyrotechnic heater setup. Pressed charges were burned out in hermetic steel tubes with simultaneous pressure and temperature registration. Advanced system of thermocouples connections allows drawing thermal maps of the steel case heating with high spatial and temporal resolution. Mathematical processing of raw thermal data gives the temperatures for thermite combustion. Initial temperature and setup orientation (either vertical or horizontal) show almost no influence on combustion temperature. Nanothermite produces in 500 K lower temperatures compared to micron-sized composition, apparently due to lower metal content in nano-Mg. Comparison of the experimental data with thermodynamic calculation output shows important differences in the combustion temperature and composition of products. Adiabatic temperature predicted is slightly lower than experimental and this fact is linked with formation of spinel MgFe2O4 phase, not accounted in computations. Thus, utilization of the pyrotechnic heater setup gives valuable information not only about pressure and porosity effects, but also about combustion temperature, composition of products and process mechanism.
机译:在烟火加热器设置中,研究了热质组合物Mg / Fe2O3与微米和纳米尺寸组分的燃烧。压制电荷在密封钢管中烧坏,具有同时压力和温度配准。热电偶连接的先进系统允许使用高空间和时间分辨率绘制钢壳加热的热图。原始热数据的数学处理为热燃烧提供了温度。初始温度和设置方向(垂直或水平)显示几乎没有对燃烧温度的影响。与微米尺寸的组合物相比,纳米热质在500 k较低的温度下产生,显然是由于纳米Mg中的较低金属含量。具有热力学计算输出的实验数据的比较显示了燃烧温度和产品组成的重要差异。预测的绝热温度略低于实验性,并且该事实与尖晶石MgFe2O4相的形成有关,而不是计算。因此,烟火加热器设置的利用不仅可以围绕压力和孔隙效应而提供有价值的信息,而且可以涉及燃烧温度,产品组成和工艺机制。

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