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用于铝锂合金的电弧增材制造:综述

Wire Arc Additive Manufacturing (WAAM) for Aluminum-Lithium Alloys: A Review.

作者信息

Rodríguez-González Paula, Ruiz-Navas Elisa María, Gordo Elena

机构信息

Departamento de Ciencia e Ingeniería de Materiales e Ingeniería Química, IAAB, Universidad Carlos lll de Madrid, Avda. De la Universidad 30, 38911 Leganés, Spain.

出版信息

Materials (Basel). 2023 Feb 6;16(4):1375. doi: 10.3390/ma16041375.

Abstract

Out of all the metal additive manufacturing (AM) techniques, the directed energy deposition (DED) technique, and particularly the wire-based one, are of great interest due to their rapid production. In addition, they are recognized as being the fastest technique capable of producing fully functional structural parts, near-net-shape products with complex geometry and almost unlimited size. There are several wire-based systems, such as plasma arc welding and laser melting deposition, depending on the heat source. The main drawback is the lack of commercially available wire; for instance, the absence of high-strength aluminum alloy wires. Therefore, this review covers conventional and innovative processes of wire production and includes a summary of the Al-Cu-Li alloys with the most industrial interest in order to foment and promote the selection of the most suitable wire compositions. The role of each alloying element is key for specific wire design in WAAM; this review describes the role of each element (typically strengthening by age hardening, solid solution and grain size reduction) with special attention to lithium. At the same time, the defects in the WAAM part limit its applicability. For this reason, all the defects related to the WAAM process, together with those related to the chemical composition of the alloy, are mentioned. Finally, future developments are summarized, encompassing the most suitable techniques for Al-Cu-Li alloys, such as PMC (pulse multicontrol) and CMT (cold metal transfer).

摘要

在所有金属增材制造(AM)技术中,定向能量沉积(DED)技术,尤其是基于线材的技术,因其快速生产而备受关注。此外,它们被认为是能够生产全功能结构部件、具有复杂几何形状和几乎不受限制尺寸的近净形产品的最快技术。根据热源的不同,有几种基于线材的系统,如等离子弧焊和激光熔敷。主要缺点是缺乏商业上可获得的线材;例如,没有高强度铝合金线材。因此,本综述涵盖了传统和创新的线材生产工艺,并总结了具有最大工业兴趣的Al-Cu-Li合金,以促进和推动最合适的线材成分的选择。每种合金元素的作用对于WAAM中特定线材的设计至关重要;本综述描述了每种元素的作用(通常通过时效硬化、固溶强化和细化晶粒来强化),特别关注锂。同时,WAAM部件中的缺陷限制了其适用性。因此,提到了与WAAM工艺相关的所有缺陷以及与合金化学成分相关的缺陷。最后,总结了未来的发展,包括最适合Al-Cu-Li合金的技术,如PMC(脉冲多控)和CMT(冷金属过渡)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b0d/9959163/9318fe86927b/materials-16-01375-g001.jpg

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