电子束粉末床熔合过程参数-熔池关系的高通量数值研究

Christoph Breuning, Jonas Böhm, M. Markl, C. Körner
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引用次数: 1

摘要

具有预定均匀性的复杂几何形状的可靠和可重复的制造仍然是电子束粉末床熔合(PBF-EB)的主要挑战。尽管之前的研究确定了各种工艺参数-性能关系,但直接将工艺参数与材料性能联系起来的潜在端到端方法忽略了潜在的热条件。由于局部特性是由熔池的局部热条件决定的,端到端方法不足以将预定特性转移到复杂的几何形状和不同的加工条件中。这项工作利用高通量热模拟来确定PBF-EB中基于线的孵化策略准平稳状态下工艺参数、加工条件和最终熔池几何形状之间的基本关系。通过对光束功率、速度、线偏、预热温度和光束直径等25000多个参数组合的综合研究,建立了工艺参数与熔池的关系,确定了工艺边界,并推导出了在不同工艺条件下实现所需性能的工艺参数选择指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-Throughput Numerical Investigation of Process Parameter-Melt Pool Relationships in Electron Beam Powder Bed Fusion
The reliable and repeatable fabrication of complex geometries with predetermined homogeneous properties is still a major challenge in electron beam powder bed fusion (PBF-EB). Although previous research identified a variety of process parameter–property relationships, the underlying end-to-end approach, which directly relates process parameters to material properties, omits the underlying thermal conditions. Since the local properties are governed by the local thermal conditions of the melt pool, the end-to-end approach is insufficient to transfer predetermined properties to complex geometries and different processing conditions. This work utilizes high-throughput thermal simulation for the identification of fundamental relationships between process parameters, processing conditions, and the resulting melt pool geometry in the quasi-stationary state of line-based hatching strategies in PBF-EB. Through a comprehensive study of over 25,000 parameter combinations, including beam power, velocity, line offset, preheating temperature, and beam diameter, process parameter-melt pool relationships are established, processing boundaries are identified, and guidelines for the selection of process parameters to the achieve desired properties under different processing conditions are derived.
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