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Modeling of combustion synthesis in multilayer gasless system

机译:多层无气系统中燃烧合成的建模

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A combustion model for a flat layered composition has been developed, where chemically active layers alternate with inert metallic layers with high thermal conductivity. The heat exchange between the layers was specified by the conjugate boundary conditions. A numerical study of gasless combustion of a multi-layer system with heat-conjugated layers of two types was performed. Optimal layer sizes and parameters of the layer system were obtained to provide the maximum burning rate of the layer package. The effect of increasing the burning rate was found to be associated with heat recovery and an increase in the effective thermal conductivity of the system. The concentration limits of combustion were determined depending on the volume content of the inert element. Replacing the system of inert layers with that of low-calorie mixture layers leads to a model for synthesis of inorganic materials in the "chemical furnace" mode.
机译:已经开发出用于平坦层状组合物的燃烧模型,其中化学活性层与具有高导热率的惰性金属层交替。层之间的热交换由共轭边界条件规定。对具有两种类型的热共轭层的多层系统的无气燃烧进行了数值研究。获得了层系统的最佳层大小和参数,以提供层包装的最大燃烧速率。发现提高燃烧速率的效果与热回收和系统有效导热率的提高有关。根据惰性元素的体积含量确定燃烧的浓度极限。将惰性层系统替换为低热量混合物层系统,将导致以“化学炉”模式合成无机材料的模型。

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