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Inclusion of initial powder distribution in FEM modelling of near net shape PM hot isostatic pressed components

机译:在接近最终形状的PM热等静压零件的FEM建模中包括初始粉末分布

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摘要

The final shape of powder metallurgy hot isostatic pressing (HIP) components is determined by many factors, including the shape and size of the capsule, the initial density distribution of the powder before HIP, and HIPprocess parameters. Current HIP simulation, which usually assumes that the powder inside the capsule is homogeneous, cannot predict non-uniform shrinkage. Therefore, the purpose of this work is to develop a methodology to quantitatively determine the initial powder density distribution inside HIP capsules, which were precompacted by different techniques. The relative density distribution obtained from experimental work is used as the initial condition for numerical simulations. The final shapes of the capsules produced by HIP are compared to simulation results. The paper shows the sensitivity of the final shape on the initial powder density distribution and illustrates the need to implement the initial powder distribution into the finite element model to improve the quality of the near net shape HIP simulation.
机译:粉末冶金热等静压(HIP)组件的最终形状取决于许多因素,包括胶囊的形状和大小,HIP之前粉末的初始密度分布以及HIP工艺参数。当前的HIP模拟通常假设胶囊内的粉末是均匀的,无法预测不均匀的收缩。因此,这项工作的目的是开发一种方法来定量确定HIP胶囊内部的初始粉末密度分布,这些密度是通过不同技术预先压实的。从实验工作获得的相对密度分布被用作数值模拟的初始条件。将HIP生产的胶囊的最终形状与模拟结果进行比较。该论文显示了最终形状对初始粉末密度分布的敏感性,并说明了将初始粉末分布实施到有限元模型中以提高近净形状HIP模拟质量的必要性。

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