Review on field assisted metal additive manufacturing

IF 14 1区 工程技术 Q1 ENGINEERING, MANUFACTURING International Journal of Machine Tools & Manufacture Pub Date : 2023-06-01 DOI:10.1016/j.ijmachtools.2023.104032
Chaolin Tan , Runsheng Li , Jinlong Su , Dafan Du , Yang Du , Bonnie Attard , Youxiang Chew , Haiou Zhang , Enrique J. Lavernia , Yves Fautrelle , Jie Teng , Anping Dong
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引用次数: 14

Abstract

Additive manufacturing (AM) offers unprecedented design freedom and manufacturing flexibility for processing complex components. Despite the numerous advantages of AM over conventional manufacturing methods, there are still some issues and bottlenecks that hinder the wide-scale industrial adaptation of AM techniques. The emerging field-assisted additive manufacturing (FAAM) is a designation that combines different auxiliary energy fields (e.g., ultrasound, magnetism, etc.) to overcome limitations in AM by benefiting from the intrinsic advantages of auxiliary fields. This work provides an up-to-date and dedicated review of FAAM in metallic materials, assisted by mainstream auxiliary magnetic, acoustic, mechanical, and thermal fields, as well as some emerging fields. The work principle and interaction mechanism between the field and the deposited metallic materials are elucidated. FAAM processes simulation and modelling are also reviewed. The auxiliary fields can affect the melt pool convection and dynamics, alter the temperature profile and thermal history during material solidification and induce stress or plastic deformation to the deposited materials. Hence, the effects of the auxiliary fields on the melt pool dynamics, solidification kinetics, densification behaviour, microstructure and texture, mechanical properties and fatigue performance are reviewed and discussed in detail. The perspectives on the research gap and further development trends of FAAM are also discussed.

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现场辅助金属增材制造研究进展
增材制造(AM)为复杂部件的加工提供了前所未有的设计自由度和制造灵活性。尽管增材制造与传统制造方法相比具有许多优势,但仍然存在一些问题和瓶颈,阻碍了增材制造技术的大规模工业应用。新兴的场辅助增材制造(FAAM)是一种结合不同辅助能量场(例如,超声波,磁性等)的名称,通过利用辅助场的固有优势来克服AM的局限性。在主流的辅助磁场、声学、机械和热场以及一些新兴领域的帮助下,本工作提供了金属材料中FAAM的最新和专门的综述。阐明了磁场与沉积金属材料的工作原理和相互作用机理。本文还对FAAM过程的仿真和建模进行了综述。辅助场可以影响熔池对流和动力学,改变材料凝固过程中的温度分布和热历史,并引起沉积材料的应力或塑性变形。因此,对辅助场对熔池动力学、凝固动力学、致密化行为、显微组织和织构、力学性能和疲劳性能的影响进行了详细的评述和讨论。最后对FAAM的研究差距和未来发展趋势进行了展望。
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来源期刊
CiteScore
25.70
自引率
10.00%
发文量
66
审稿时长
18 days
期刊介绍: The International Journal of Machine Tools and Manufacture is dedicated to advancing scientific comprehension of the fundamental mechanics involved in processes and machines utilized in the manufacturing of engineering components. While the primary focus is on metals, the journal also explores applications in composites, ceramics, and other structural or functional materials. The coverage includes a diverse range of topics: - Essential mechanics of processes involving material removal, accretion, and deformation, encompassing solid, semi-solid, or particulate forms. - Significant scientific advancements in existing or new processes and machines. - In-depth characterization of workpiece materials (structure/surfaces) through advanced techniques (e.g., SEM, EDS, TEM, EBSD, AES, Raman spectroscopy) to unveil new phenomenological aspects governing manufacturing processes. - Tool design, utilization, and comprehensive studies of failure mechanisms. - Innovative concepts of machine tools, fixtures, and tool holders supported by modeling and demonstrations relevant to manufacturing processes within the journal's scope. - Novel scientific contributions exploring interactions between the machine tool, control system, software design, and processes. - Studies elucidating specific mechanisms governing niche processes (e.g., ultra-high precision, nano/atomic level manufacturing with either mechanical or non-mechanical "tools"). - Innovative approaches, underpinned by thorough scientific analysis, addressing emerging or breakthrough processes (e.g., bio-inspired manufacturing) and/or applications (e.g., ultra-high precision optics).
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