Digital materials design by thermal-fluid science for multi-metal additive manufacturing

Acta Materialia 210 巻 2021-05-15 発行
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ファイル情報(添付)
タイトル
Digital materials design by thermal-fluid science for multi-metal additive manufacturing
著者
Chinnapat Panwisawas
収録物名
Acta Materialia
210
収録物識別子
ISSN 1359-6454
内容記述
その他
Metal additive manufacturing is promising for designing advanced metallic parts of complex geometries. The challenge lies in process control on melt flow dynamics, alloy mixing and vapour mass loss, which is significantly vital for the final quality. A high-fidelity thermal-solutal-fluid modelling approach including accurate tracking of surface shape, thermo-capillary dynamics and vaporisation has been developed. Multi-species formulations are also included for multi-metal simulation. Using this method, the physical link between metal vapour mass loss and melt flow process for 21 transition metals and 3 binary alloys is investigated. The mass loss rate is governed by a fluid dynamic parameter of Reynolds number with a simple proportional correlation linked with thermal-fluid behavior of the melt pool, and convective mixing further complicates the behaviour in in-situ binary alloying. The digital materials approach is effective in understanding complex interdependent thermal-fluid flow dynamics and can advance process-based materials design.
主題
Thermal-solutal-fluid modeling
Vapor mass loss
Multi-metal additive manufacturing
Melt flow process
言語
英語
資源タイプ 学術雑誌論文
出版者
Elsevier Ltd.
発行日 2021-05-15
出版タイプ Accepted Manuscript(出版雑誌の一論文として受付されたもの。内容とレイアウトは出版社の投稿様式に沿ったもの)
アクセス権 オープンアクセス
関連情報
[DOI] 10.1016/j.actamat.2021.116825