An overview of laser-based multiple metallic material additive manufacturing: from macro- to micro-scales

Обзор лазерного аддитивного производства из нескольких металлических материалов: от макро- до микромасштаба
Zhe Sun, Li Lin, Chao Wei, Zhizhou Zhang, Dongxu Cheng, Menghui Zhu
2020-11-25

laser powder bed fusionlaser powder directed energy depositionlaser-induced forward transfermetallic componentsmulti-material additive manufacturing
Abstract Additive manufacturing (AM) is an emerging customized three-dimensional (3D) functional product fabrication technology. It provides a higher degree of design freedom, reduces manufacturing steps, cost and production cycles. However, existing metallic component 3D printing techniques are mainly for the manufacture of single material components. With the increasing commercial applications of AM technologies, the need for 3D printing of more than one type of dissimilar materials in a single component increases. Therefore, investigations on multi-material AM (MMAM) emerge over the past decade. Lasers are currently widely used for the AM of metallic components where high temperatures are involved. Here we report the progress and trend in laser-based macro- and micro-scale AM of multiple metallic components. The methods covered in this paper include laser powder bed fusion, laser powder directed energy deposition, and laser-induced forward transfer for MMAM applications. The principles and process/material characteristics are described. Potential applications and challenges are discussed. Finally, future research directions and prospects are proposed.
1
It summarizes the principles and process/material characteristics governing laser-based multi-metal additive manufacturing.
2
Laser-based multi-material additive manufacturing enables fabrication of single components containing multiple dissimilar metallic materials.
3
Potential applications, current challenges, and future research directions for laser-based multi-material metallic fabrication are identified.
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The review covers macro- and micro-scale methods including laser powder bed fusion, laser powder directed energy deposition, and laser-induced forward transfer.

Laser-based multi-material additive manufacturing of multiple metallic components at macro- and micro-scales

Principles, process and material characteristics, applications, challenges, progress, and future directions of laser-based multi-material additive manufacturing

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2020-11-25
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Zhe Sun
Li Lin
Chao Wei
Zhizhou Zhang
Dongxu Cheng
Menghui Zhu
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