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Effect of aluminum additives on the ignition of tungsten-teflon mixtures

机译:铝添加剂对钨 - 铁氟龙混合物点火的影响

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Thermodynamic analysis and studies of combustion and structure formation of products were carried out in the powder mixtures of tungsten and polytetrafluoroethylene(Teflon, Tf)with aluminum additives.The mixture components were selected to fabricate high-density condensed products with high ignition temperature.Aluminum was used as an energetic additive accelerating the ignition process and increasing the mixture combustion temperature.In mixtures, a tungsten/Tf ratio was fixed: the aluminum content was varied according to the formula(1-x)(0.8W + 0.2Tf)+ xAl = const.Mechanically activated mixtures were pressed into the samples and heated in special crucible with controlled heating rate.It was shown that an increase in the heating rate changes insignificantly the ignition temperature of systems, but strongly affects the structure of combustion products.The ignition and combustion of compositions with low aluminum content results a large volume of gaseous products, which fly apart or form a high-porous structure.At high Al concentration, the results of experiments and thermodynamic calculations are sufficiently different that can be explained by the lack of thermodynamic data on tungsten aluminides in the used program and by the fact that real conditions of reaction are far from equilibrium and adiabatic ones.The calculated and experimental data showed that the optimal aluminum content to form melted products with a high density(p(W2C)= 17.2 g/cm~3)is about 10 wt %.At high Al concentration, the main combustion product(tungsten aluminide WA14)has the lower density(p(WAl4)= 6.6 g/cm~3)that is insufficiently for practical application.
机译:热力学分析和燃烧和产品结构形成的研究是在(聚四氟乙烯,TF)与铝additives.The混合物组分钨和聚四氟乙烯的粉末混合物中进行选择来制造高密度的冷凝的产品具有很高的点火temperature.Aluminum是用作高能添加剂加速点火过程和增加混合物燃烧temperature.In混合物,钨/ TF为固定:铝含量根据下式(1-X)(+ 0.8W 0.2Tf)+ XAL变化= const.Mechanically活化的混合物压制成样品并在特殊的坩埚与受控加热rate.It结果表明,增加加热速率不明显改变的系统中的点火温度,加热但强烈地影响燃烧products.The点火的结构和具有低铝含量的组合物的燃烧导致大体积的气态产物,其飞散或用于毫安高多孔structure.At高Al浓度,实验和热力学计算的结果是足够的不同之处在于可以通过缺乏关于在所使用的程序和由以下事实钨铝化热力学数据的说明的是反应的实际条件远非平衡和绝热ones.The计算和实验数据表明,最佳铝含量形式熔化的产品具有高密度(ρ(W2C)= 17.2Hz克/厘米〜3)为约10%(重量)高.AT Al浓度,主燃烧产物(钨铝WA14)具有较低的密度(ρ(WAl4)= 6.6Hz克/厘米〜3)是不充分的实际应用。

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