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Densification mechanisms during hot isostatic pressing of stainless steel powder compacts

机译:不锈钢粉末压块热等静压过程中的致密化机理

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摘要

In order to analyse the densification behaviour of powder compacts during hot isostatic pressing (HIP) at elevated temperatures, a power-law creep constitutive model based on the plastic deformation theory for porous materials was applied to the densification. Various densification mechanisms including interparticle boundary diffusion, grain boundary diffusion and lattice diffusion mechanisms were incorporated in the constitutive model. The power-law creep model in conjunction with various diffusion models was applied to the HIP of 316L stainless steel powder compacts under 50 and 100 MPa at 1125 deg C. The results of the calculations were verified using literature data. It could be found that the contribution of the diffusional mechanisms are not significant under the current process conditions.
机译:为了分析高温下热等静压(HIP)过程中粉末压坯的致密化行为,将基于多孔材料塑性变形理论的幂律蠕变本构模型应用于致密化。本构模型并入了包括颗粒间边界扩散,晶界扩散和晶格扩散机制在内的各种致密化机制。将幂律蠕变模型结合各种扩散模型应用于316L不锈钢粉末压块在1125℃,50和100 MPa下的HIP。计算结果得到了文献数据的验证。可以发现,在当前的工艺条件下,扩散机理的贡献并不显着。

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