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多材料零件的增材制造——激光粉末床熔融中316L/CuCrZr制造的设计指南

Additive manufacturing of multi-material parts - Design guidelines for manufacturing of 316L/CuCrZr in laser powder bed fusion.

作者信息

Meyer Ina, Oel Marcus, Ehlers Tobias, Lachmayer Roland

机构信息

Institute of Product Development (IPeG), Gottfried Wilhelm Leibniz Universität Hannover, An der Universität 1, 30823 Garbsen, Germany.

出版信息

Heliyon. 2023 Jul 26;9(8):e18301. doi: 10.1016/j.heliyon.2023.e18301. eCollection 2023 Aug.

Abstract

Additive manufacturing (AM) can be used to produce multi-material parts in which the material can be varied voxel-wise in all three spatial directions. This means that the paradigm of the homogeneous material can be abandoned and local effects such as heat conduction or damping can be selectively adjusted in the part. Recently, continuous development of machine technology has allowed the production of multi-metal materials in laser powder bed fusion (PBF-LB/MM). Compared to other additive manufacturing processes for multi-material production, this allows greater design freedom and detail accuracy to be realized. However, due to the novel character of multi-material manufacturing in PBF-LB, the process knowledge for successful and reproducible fabrication is currently lacking. This paper focuses on establishing design guidelines for manufacturing the material pairing of stainless steel 316L (1.4404) and copper alloy CuCrZr (CW106C). The article is accompanied by the development of a specific process chain. As a result of this work, design guidelines for multi-material parts are available for the first time, in regard to arrangement, size, overhangs, economy, powder quality and laser scanning.

摘要

增材制造(AM)可用于生产多材料部件,其中材料可以在所有三个空间方向上按体素进行变化。这意味着可以摒弃均质材料的范式,并且可以在部件中选择性地调整诸如热传导或阻尼等局部效应。最近,机器技术的不断发展使得在激光粉末床熔融(PBF-LB/MM)中能够生产多金属材料。与用于多材料生产的其他增材制造工艺相比,这能够实现更大的设计自由度和细节精度。然而,由于PBF-LB中多材料制造的新颖特性,目前缺乏成功且可重复制造的工艺知识。本文着重于建立制造不锈钢316L(1.4404)和铜合金CuCrZr(CW106C)材料配对的设计指南。本文还伴随着特定工艺链的开发。这项工作的结果是,首次提供了关于多材料部件在排列、尺寸、悬垂、经济性、粉末质量和激光扫描方面的设计指南。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/621d/10404880/7b9b01382fab/gr1.jpg

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