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Hot isostatic pressing process simulation: Application to metal powders

机译:等静压热过程模拟:应用于金属粉末

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Deformation and transport mechanisms of matter, which intervene in the powder densification process by hot isostatic pressing (HIP), are very complicated to put into equation form. Their contribution to densification depends on powder characteristics, their configuration in aggregates, and the used HIP cycle parameters (temperature, pressure, and time). In this work, we have envisaged modifications that seemed to us necessary to bring to the previous simulations, so that their predictions will be related to experiment. New equations were established to evaluate the efficient pressure and the contributions of different mechanisms. The obtained results are used for the construction of densification diagrams by the HIP of copper, nickel, and tungsten powders and to the comparison with the experimental data. The comparative tables, between theoretical results and experimental data, were established for tin and lead. The simulation predictions are in good agreement with experimental results.
机译:通过热等静压(HIP)介入粉末致密化过程的物质变形和传输机制非常复杂,以方程形式表示。它们对致密化的贡献取决于粉末的特性,其在骨料中的构型以及所用的HIP循环参数(温度,压力和时间)。在这项工作中,我们设想了对我们来说似乎是必要的修改,这些修改对于我们之前的模拟来说是必不可少的,因此它们的预测将与实验相关。建立了新的方程式,以评估有效压力和不同机制的贡献。所得结果用于通过铜,镍和钨粉末的HIP进行致密化图的构建,并与实验数据进行比较。建立了锡和铅的理论结果与实验数据之间的比较表。仿真预测与实验结果吻合良好。

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