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Emerging metallic systems for additive manufacturing: In-situ alloying and multi-metal processing in laser powder bed fusion

机译:添加剂制造的新兴金属系统:激光粉床融合中原位合金化和多金属加工

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While significant progress has been made in understanding laser powder bed fusion (L-PBF) as well as the fabrication of various materials using this technology, there is still limited adoption in the industry. One of the key obstacles identified is the lack of materials that can truly manufacture functional parts directly with L-PBF. This paper covers the emerging research on in-situ alloying and multi-metal processing. A comprehensive overview of the underlying scientific topics behind them is presented. The current state of research and progress from different perspectives (the materials and L-PBF processing parameters) are reviewed in order to provide a basis for follow-up research and development of these approaches. Defects, especially those associated with these two material processing routes, are also elucidated by discussing the mechanisms of their formation, including the main influencing factors, and the tendency for them to occur. Future research trends and potential topics are illustrated. The final part of this paper summarizes findings from this review and outlines the possibility of in-situ alloying and multi-metal processing using L-PBF.
机译:虽然在了解激光粉末融合(L-PBF)以及使用该技术的各种材料的制造方面取得了重大进展,但在该行业仍有有限的采用。确定的关键障碍之一是缺乏可以直接用L-PBF制造功能性部位的材料。本文涵盖了原位合金化和多金属加工的新兴研究。介绍了它们背后的基础科学主题的全面概述。综述目前的研究和进展(材料和L-PBF处理参数)的进步,以便为这些方法的后续研发提供基础。通过讨论其形成的机制,包括主要影响因素,以及它们发生的趋势,还通过讨论其形成的机制以及它们发生的趋势来阐明缺陷,尤其是与这两个材料加工途径相关的缺陷。未来的研究趋势和潜在主题是说明的。本文的最后一部分总结了本综述的结果,并概述了使用L-PBF的原位合金化和多金属加工的可能性。

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