揭示了激光粉末床熔合制备纯钽在不同工艺参数下熔池演变及缺陷

IF 6.1 1区 工程技术 Q1 ENGINEERING, MANUFACTURING
Zhenyu Yang , Jiangqi Zhu , Yajun Liu , Chao Pan , Dan Wu , Zhaoyang Deng , Di Wang , Rongpei Shi , Gang Wang , Zhaoguo Qiu , Min Liu , Xingchen Yan
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引用次数: 0

摘要

钽具有优良的力学性能和生物学性能,是制备植入体的重要生物医学材料。然而,缺陷的存在对植入效果有很大的影响。熔池的稳定性和流动状态是由工艺参数控制的,对激光粉末床熔合(LPBF)制造的无缺陷构件的形成具有重要意义。迄今为止,尚未建立工艺参数、熔池演变与缺陷之间的关系。本文采用LPBF技术制备了纯Ta的单轨和块状样品,建立了纯Ta的粉末分辨计算流体动力学(CFD)模型,研究了熔池内的传热和流体流动特性。系统分析了工艺参数变化对缺陷类型和数量的影响,并结合不同参数下熔池演化的模拟结果揭示了缺陷的形成机理。结果表明,增大激光能量密度可以提高熔池内的温度场和速度场。在高温场作用下,Ta液的扩散速度快于Ta液的凝固速度,粉末的熔体更充分,导致凝固后钥匙孔较少。在高速场下,马兰戈尼对流强烈,气泡难以逸出,气孔增多。熔池中温度场和速度场的协调决定了LPBF样品中缺陷的类型和数量。未熔化的Ta粉在不同的熔化状态下起到阻碍晶粒外延生长的作用。本文对LPBF的工艺参数、缺陷、熔池、微观结构变化进行了深入的分析,期望为探索LPBF的工艺参数以及LPBF样品微观结构和性能变化的原因提供科学和理论支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unveiling the molten pool evolution and defects under different processing parameters in pure tantalum fabricated via laser powder bed fusion
Tantalum (Ta) is an important biomedical material for the preparation of implants due to its excellent mechanical and biological properties. However, the presence of defects has a significant impact on the implantation effect. The stability and flow state of the molten pool, which is controlled by processing parameters, are of great significance for the formation of defect-free components fabricated by laser powder bed fusion (LPBF). To date, the relationship among processing parameters, molten pool evolution, and defects has not been established yet. In this paper, single-track and bulk samples of pure Ta were fabricated using LPBF technology, and a powder-resolved computational fluid dynamics (CFD) model of pure Ta was established to study heat transfer and fluid flow characteristics in the molten pool. The effects of processing parameter variations on the types and quantities of defects were systematically analyzed, and the formation mechanisms of defects were revealed by combining simulation results of molten pool evolution under different parameters. The results show that increasing the laser energy density would promote higher temperature and faster velocity fields within the molten pool. Under the elevated temperature field, the spreading speed was faster than the solidification speed of the molten Ta, and the melt of powders was more sufficient, resulting in fewer keyholes after solidification. Under the rapid velocity field, the Marangoni convection was intense, which would lead to difficulty for bubbles to escape and an increase in gas pores. The coordination of temperature and velocity fields in the molten pool determined the types and quantities of defects in LPBF samples. Unmelted Ta powders acted as barriers to prevent the epitaxial growth of grains, depending on the melting state. This article presents a profound analysis of processing parameters, defects, molten pools, and microstructure changes, and is expected to provide scientific and theoretical support for the exploration of LPBF processing parameters and the causes of changes in the microstructure and properties of LPBF samples.
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来源期刊
Journal of Manufacturing Processes
Journal of Manufacturing Processes ENGINEERING, MANUFACTURING-
CiteScore
10.20
自引率
11.30%
发文量
833
审稿时长
50 days
期刊介绍: The aim of the Journal of Manufacturing Processes (JMP) is to exchange current and future directions of manufacturing processes research, development and implementation, and to publish archival scholarly literature with a view to advancing state-of-the-art manufacturing processes and encouraging innovation for developing new and efficient processes. The journal will also publish from other research communities for rapid communication of innovative new concepts. Special-topic issues on emerging technologies and invited papers will also be published.
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