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Modelling of swelling of Fe-Cu compacts sintered at temperatures above the copper melting point

机译:在高于铜熔点的温度下烧结的Fe-Cu压块的溶胀模型

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Swelling of Fe-Cu sintered alloy at temperatures above the copper melting point during sintering has been studied for many years. It has been shown that the penetration of liquid copper into iron interparticle boundaries is the dominant mechanism. Based on this mechanism, a model of swelling of Fe-Cu sintered alloys at the copper melting point is established. The particle coordination number is introduced to take into account the porosity. Different heating rates lead to different thicknesses of the diffusion layer between iron and copper particles, which also influences the swelling. In the model, the combined effect of copper content, porosity, particle size and heating rate on the swelling is analysed. The calculated volume and dimensional growths show a qualitative agreement with the published data. The calculated results can be used to predict swelling of Fe-Cu compacts with different copper contents and green densities.
机译:已经研究了Fe-Cu烧结合金在烧结期间在高于铜熔点的温度下溶胀。已经表明,液态铜渗透到铁颗粒间边界是主要机理。基于这种机理,建立了Fe-Cu烧结合金在铜熔点溶胀的模型。引入颗粒配位数以考虑孔隙率。不同的加热速率导致铁和铜颗粒之间扩散层的厚度不同,这也影响溶胀。在模型中,分析了铜含量,孔隙率,粒度和加热速率对溶胀的综合影响。计算得出的体积和尺寸增长与已发布的数据在质量上吻合。计算结果可用于预测具有不同铜含量和生坯密度的Fe-Cu压块的溶胀。

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