论文标题

连续冷却过程中的相变718合金通过激光粉床融合和吸力铸造制造的合金

Phase Transformations During Continuous Cooling in Inconel 718 Alloys Manufactured by Laser Powder Bed Fusion and Suction Casting

论文作者

Zhao, Yunhao, Hao, Liangyan, Zhang, Qiaofu, Xiong, Wei

论文摘要

了解连续冷却过程中合金相转换对于后处理设计和优化很重要。在这项工作中,在不同的匀浆条件下开发了由激光粉床融合(LPBF)制造的Inconel 718合金的连续冷却转化(CCT)图。与报告的研究中可用的CCT图不同,没有观察到伽马双素和伽马素沉淀物。从伽马基质冷却后,确定NBC和三角洲是沉淀物。重要的是,发现均质化时间和制造方法会影响NBC颗粒附近基质的NB均匀性,从而显着影响Delta相的降水过程,Delta相中的NB含量很高。在具有高NB均匀性的合金中,成核过程主要有助于降水,而在NB均匀性低的合金中,降水主要与生长过程有关。在冷却以0.1 k/s冷却后会形成亚晶粒,并可能在样品中引起最高的硬度。这项工作提供了关于Inconel 718冷却过程中处理结构 - 培训关系的研究的新观点,对合金后处理策略的制定有益。

Understanding alloy phase transformations during continuous cooling is important for post-processing design and optimization. In this work, continuous-cooling-transformation (CCT) diagrams of Inconel 718 alloys manufactured by laser powder bed fusion (LPBF) and suction casting are developed under different homogenization conditions. Unlike the available CCT diagrams in the reported studies, no gamma double prime and gamma prime precipitates can be observed. NbC and delta are determined to be the precipitates after cooling from the gamma matrix. Importantly, homogenization time and manufacturing methods are found to affect the Nb homogeneity in the matrix near NbC particles and thus significantly influence the precipitation process of the delta phase, which has a high content in Nb. In the alloys with high Nb homogeneity, the nucleation process mainly contributes to the precipitation, whereas in the alloys with low Nb homogeneity, the precipitation is primarily associated with the growth process. Subgrains are found to form after cooling at 0.1 K/s and can cause the highest hardness in samples. This work provides a new viewpoint on the study of processing-structure-property relationships during cooling in Inconel 718 and is beneficial to the development of alloy post-processing strategies.

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