Research status and prospect of laser additive manufacturing technology for high performance gradient functional materials

Among the manufacturing methods of high performance gradient functional materials, laser additive manufacturing technology can achieve the materials with gradient microstructure and property through precisely controlling the powder feeding and corresponding process adjustment, providing a new way to...

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Main Authors: CUI Xue, ZHANG Song, ZHANG Chun-hua, WU Chen-liang, WANG Qiang, DONG Shi-yun
Format: Article
Language:zho
Published: Journal of Materials Engineering 2020-09-01
Series:Cailiao gongcheng
Subjects:
Online Access:http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.001156
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author CUI Xue
ZHANG Song
ZHANG Chun-hua
WU Chen-liang
WANG Qiang
DONG Shi-yun
author_facet CUI Xue
ZHANG Song
ZHANG Chun-hua
WU Chen-liang
WANG Qiang
DONG Shi-yun
author_sort CUI Xue
collection DOAJ
description Among the manufacturing methods of high performance gradient functional materials, laser additive manufacturing technology can achieve the materials with gradient microstructure and property through precisely controlling the powder feeding and corresponding process adjustment, providing a new way to prepare high performance gradient functional materials more conveniently and efficiently. The basic principles and classification of laser additive manufacturing technology for high performance gradient functional materials were introduced in this paper, and the research progress in manufacturing high performance gradient functional materials by laser additive manufacturing technology at home and abroad was summarized. Furthermore, the shortcomings of this research field in material selection, process optimization and process monitoring were proposed, and its future research directions, such as the establishment of standard systems, in-depth theoretical research and the development of new manufacturing systems, were prospected, which provide guidance for the research of laser additive manufacturing technology for high performance gradient functional materials.
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spelling doaj.art-6e8dfe09e8614d7cb005c79e6a70532e2023-01-02T13:24:39ZzhoJournal of Materials EngineeringCailiao gongcheng1001-43811001-43812020-09-01489132310.11868/j.issn.1001-4381.2019.00115620200902Research status and prospect of laser additive manufacturing technology for high performance gradient functional materialsCUI Xue0ZHANG Song1ZHANG Chun-hua2WU Chen-liang3WANG Qiang4DONG Shi-yun5School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, ChinaSchool of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, ChinaSchool of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, ChinaSchool of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, ChinaSchool of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, ChinaNational Key Laboratory for Remanufacturing, Army Academy of Armored Forces, Beijing 100072, ChinaAmong the manufacturing methods of high performance gradient functional materials, laser additive manufacturing technology can achieve the materials with gradient microstructure and property through precisely controlling the powder feeding and corresponding process adjustment, providing a new way to prepare high performance gradient functional materials more conveniently and efficiently. The basic principles and classification of laser additive manufacturing technology for high performance gradient functional materials were introduced in this paper, and the research progress in manufacturing high performance gradient functional materials by laser additive manufacturing technology at home and abroad was summarized. Furthermore, the shortcomings of this research field in material selection, process optimization and process monitoring were proposed, and its future research directions, such as the establishment of standard systems, in-depth theoretical research and the development of new manufacturing systems, were prospected, which provide guidance for the research of laser additive manufacturing technology for high performance gradient functional materials.http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.001156high performance gradient functional materiallaser additive manufacturingresearch sta-tusdevelopment trend
spellingShingle CUI Xue
ZHANG Song
ZHANG Chun-hua
WU Chen-liang
WANG Qiang
DONG Shi-yun
Research status and prospect of laser additive manufacturing technology for high performance gradient functional materials
Cailiao gongcheng
high performance gradient functional material
laser additive manufacturing
research sta-tus
development trend
title Research status and prospect of laser additive manufacturing technology for high performance gradient functional materials
title_full Research status and prospect of laser additive manufacturing technology for high performance gradient functional materials
title_fullStr Research status and prospect of laser additive manufacturing technology for high performance gradient functional materials
title_full_unstemmed Research status and prospect of laser additive manufacturing technology for high performance gradient functional materials
title_short Research status and prospect of laser additive manufacturing technology for high performance gradient functional materials
title_sort research status and prospect of laser additive manufacturing technology for high performance gradient functional materials
topic high performance gradient functional material
laser additive manufacturing
research sta-tus
development trend
url http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2019.001156
work_keys_str_mv AT cuixue researchstatusandprospectoflaseradditivemanufacturingtechnologyforhighperformancegradientfunctionalmaterials
AT zhangsong researchstatusandprospectoflaseradditivemanufacturingtechnologyforhighperformancegradientfunctionalmaterials
AT zhangchunhua researchstatusandprospectoflaseradditivemanufacturingtechnologyforhighperformancegradientfunctionalmaterials
AT wuchenliang researchstatusandprospectoflaseradditivemanufacturingtechnologyforhighperformancegradientfunctionalmaterials
AT wangqiang researchstatusandprospectoflaseradditivemanufacturingtechnologyforhighperformancegradientfunctionalmaterials
AT dongshiyun researchstatusandprospectoflaseradditivemanufacturingtechnologyforhighperformancegradientfunctionalmaterials