首页|Performance-control-orientated hybrid metal additive manufacturing technologies:state of the art,challenges,and future trends

Performance-control-orientated hybrid metal additive manufacturing technologies:state of the art,challenges,and future trends

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Metal additive manufacturing(AM)technologies have made significant progress in the basic theoretical field since their invention in the 1970s.However,performance instability during continuous processing,such as thermal history,residual stress accumulation,and columnar grain epitaxial growth,consistently hinders their broad application in standardized industrial production.To overcome these challenges,performance-control-oriented hybrid AM(HAM)technologies have been introduced.These technologies,by leveraging external auxiliary processes,aim to regulate microstructural evolution and mechanical properties during metal AM.This paper provides a systematic and detailed review of performance-control-oriented HAM technology,which is categorized into two main groups:energy field-assisted AM(EFed AM,e.g.ultrasonic,electromagnetic,and heat)technologies and interlayer plastic deformation-assisted AM(IPDed AM,e.g.laser shock peening,rolling,ultrasonic peening,and friction stir process)technologies.This review covers the influence of external energy fields on the melting,flow,and solidification behavior of materials,and the regulatory effects of interlayer plastic deformation on grain refinement,nucleation,and recrystallization.Furthermore,the role of performance-control-oriented HAM technologies in managing residual stress conversion,metallurgical defect closure,mechanical property improvement,and anisotropy regulation is thoroughly reviewed and discussed.The review concludes with an analysis of future development trends in EFed AM and IPDed AM technologies.

hybrid additive manufacturingin-situ/interlayer plastic deformationauxiliary energy fieldsmicrostructure customizationmechanical properties enhancement

Jiming Lv、Yuchen Liang、Xiang Xu、Gang Xu、Hongmei Zhang、Haifei Lu、Kaiyu Luo、Jie Cai、Jinzhong Lu

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School of Mechanical Engineering,Jiangsu University,Zhenjiang 212013,People's Republic of China

School of Mechanical Engineering,Jiangsu University of Science and Technology,Zhenjiang 212003,People's Republic of China

National Natural Science Foundation of ChinaNational Natural Science Foundation of ChinaNational Natural Science Foundation of ChinaJiangsu Provincial Science and Technology Projects in ChinaJiangsu Provincial Science and Technology Projects in ChinaNatural Science Foundation of Jiangsu ProvinceGraduate Research Innovation Program of Jiangsu Province in China

523350085217540952305469BE2023026BE2022069BK20220530KYCX23_3723

2024

极端制造(英文)

极端制造(英文)

CSTPCDEI
ISSN:
年,卷(期):2024.6(3)
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