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NUMERICAL ANALYSIS FOR MICROPYRETIC SYNTHESIS OF NIAL INTERMETALLIC COMPOUND

机译:中间金属间化合物微晶合成的数值分析

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摘要

A numerical investigation of the micropyretic synthesis response parameters of the Ni-Al stoichiometric compound was undertaken. The influence of the enthalpy of the combustion reaction, Q, activation energy, E, amount of diluent, pre-exponential factor, K-0, and initial temperature T-0, on the combustion velocity, temperature, and mode was studied. The porosity of the unreacted compact, which is related to the initial compaction pressure, was considered in the calculation. It was found that the change in porosity significantly affects the thermal conductivity and the length of the pre-heat zone as also do the temperature patterns and propagation velocities. The combustion front was noted to be extinguished if the temperature in the reaction zone became tower than the melting point of the aluminium phase. This result was obtained simply by considering the changes in the thermal conductivity after the melting of aluminium without having to invoke any changes in the rate of reaction after the melting. A comparison of the numerical data with the experimental and analytical results was also made. [References: 25]
机译:对Ni-Al化学计量化合物的微热解合成响应参数进行了数值研究。研究了燃烧反应的焓,Q,活化能,E,稀释剂的量,指数前因子K-0和初始温度T-0对燃烧速度,温度和模式的影响。计算中考虑了与初始压制压力相关的未反应压块的孔隙率。发现孔隙率的变化显着影响热导率和预热区的长度,温度模式和传播速度也显着影响。如果反应区中的温度比铝相的熔点高,则燃烧前沿被熄灭。只需考虑铝熔化后的导热率变化,而不必在熔化后引起反应速率的任何变化,即可获得该结果。还对数值数据与实验和分析结果进行了比较。 [参考:25]

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