粉体および粉末冶金
Online ISSN : 1880-9014
Print ISSN : 0532-8799
ISSN-L : 0532-8799
T20: Materials Characterization of AM Materials
Additively Manufactured Sustainable 8xxx-series Aluminum and an In-situ TEM Observation
Shao-Pu TsaiJi-Yun WangTzu-Ching TsaoMing-Hao LeeMing-Wen ChuZhongji Sun
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2025 年 72 巻 Supplement 号 p. S171-S178

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Fe has been identified as a detrimental element in Al alloy systems due to its proclivity to co-precipitate with other elements. The formation of brittle intermetallic phases by Fe impedes the sustainable utilization of Al. Nevertheless, the role of Fe in laser-powder bed fusion (LPBF) processes requires reconsideration. It is noteworthy that the rapid cooling rate (on the order of 105 K/s) provided by LPBF facilitates both the freezing of doping elements and the formation of well-dispersed cellular structures and precipitates. Despite the numerous advantages offered by these sub-structures, the precise microstructure evolution during the LPBF process remains unclear. In order to gain a comprehensive understanding of the phenomenon in question, we first designed and tested several 8xxx series Al alloys with the objective of exploring the ability of these materials to resist high-temperature softening. The second part of the study involved conducting in-situ TEM heating experiments on the LPBF-built AlFeMoSiZr system.

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© 2025 by Japan Society of Powder and Powder Metallurgy

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