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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Understanding the formation process of shrinkage pores with a 3D dendrite growth model: from casting to additive manufacturing
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Understanding the formation process of shrinkage pores with a 3D dendrite growth model: from casting to additive manufacturing

机译:使用 3D 枝晶生长模型了解收缩孔的形成过程:从铸造到增材制造

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A three dimensional dendrite growth model is used to investigate the formation of shrinkage pores in nickel-based superalloy during the solidification process. A variety of simulations are performed with the temperature gradients and cooling rates under the casting and additive manufacturing conditions. The shrinkage pores are identified according to the localized liquid feeding condition. The investigation on casting not only validates the current model and methodology by comparing with a published X-ray imaging result but also uncovers more critical details, including the location preferences of shrinkage pores in the dendrite structure and the formation sequences of shrinkage pores in different stages, which have never been revealed in available literatures. After that, the effect of cooling rate on the pore formation is discussed for different mechanisms. In the investigation of additive manufacturing, the formation mechanisms of shrinkage pores are identified and well explain the shrinkage pores found in experimental results. Furthermore, the effects of the cooling rate and the new phases on the formation of shrinkage pores are discussed.
机译:采用三维枝晶生长模型研究了镍基高温合金在凝固过程中收缩孔的形成。在铸造和增材制造条件下,对温度梯度和冷却速率进行了各种模拟。根据局部进液条件确定缩孔。对铸造的研究不仅通过与已发表的X射线成像结果进行比较来验证当前的模型和方法,而且还揭示了更多关键的细节,包括枝晶结构中收缩孔的位置偏好以及不同阶段收缩孔的形成顺序,这些在现有文献中从未被揭示过。然后,讨论了不同机理的冷却速率对孔隙形成的影响。在增材制造的研究中,确定了收缩孔的形成机理,并很好地解释了实验结果中发现的收缩孔。此外,还讨论了冷却速率和新相对收缩孔形成的影响。

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