首站-论文投稿智能助手
典型文献
Application of Synchrotron X-Ray Imaging and Diffraction in Additive Manufacturing:A Review
文献摘要:
Additive manufacturing (AM) is a rapid prototyping technology based on the idea of discrete accumulation which offers an advantage of economically fabricating a component with complex geometries in a rapid design-to-manufacture cycle.However,various internal defects,such as balling,cracks,residual stress and porosity,are inevitably occurred during AM due to the complexity of laser/electron beam-powder interaction,rapid melting and solidification process,and microstructure evolution.The existence of porosity defects can potentially deteriorate the mechanical properties of selective laser melting(SLM) components,such as material stiffness,hardness,tensile strength,and fatigue resistance performance.Synchrotron X-ray imaging and diffraction are important non-destructive means to elaborately characterize the internal defect charac-teristics and mechanical properties of AM parts.This paper presents a review on the application of synchrotron X-ray in identifying and verifying the quality and requirement of AM parts.Defects,microstructures and mechanical properties of printed components characterized by synchrotron X-ray imaging and diffraction are summarized in this review.Subsequently,this paper also elaborates on the online characterization of the evolution of the microstructure during AM using synchrotron X-ray imaging,and introduces the method for measuring AM stress by X-ray diffraction (XRD).Finally,the future applica-tion of synchrotron X-ray characterization in the AM is prospected.
文献关键词:
作者姓名:
Naying An;Sansan Shuai;Tao Hu;Chaoyue Chen;Jiang Wang;Zhongming Ren
作者机构:
State Key Laboratory of Advanced Special Steels,School of Materials Science and Engineering,Shanghai University,Shanghai 200444,China
引用格式:
[1]Naying An;Sansan Shuai;Tao Hu;Chaoyue Chen;Jiang Wang;Zhongming Ren-.Application of Synchrotron X-Ray Imaging and Diffraction in Additive Manufacturing:A Review)[J].金属学报(英文版),2022(01):25-48
A类:
balling
B类:
Application,Synchrotron,Ray,Imaging,Diffraction,Additive,Manufacturing,Review,manufacturing,AM,rapid,prototyping,technology,idea,discrete,accumulation,which,offers,advantage,economically,fabricating,geometries,design,manufacture,cycle,However,various,internal,defects,such,cracks,residual,stress,porosity,are,inevitably,occurred,during,due,complexity,laser,electron,beam,powder,interaction,melting,solidification,process,evolution,existence,can,potentially,deteriorate,mechanical,properties,selective,SLM,components,material,stiffness,hardness,tensile,strength,fatigue,resistance,performance,ray,imaging,diffraction,important,destructive,means,elaborately,teristics,parts,This,paper,presents,review,application,synchrotron,identifying,verifying,quality,requirement,Defects,microstructures,printed,characterized,by,summarized,this,Subsequently,also,elaborates,online,characterization,using,introduces,method,measuring,Finally,future,prospected
AB值:
0.575328
相似文献
Additive manufacturing of metals:Microstructure evolution and multistage control
Zhiyuan Liu;Dandan Zhao;Pei Wang;Ming Yan;Can Yang;Zhangwei Chen;Jian Lu;Zhaoping Lu-Additive Manufacturing Institute,College of Mechatronics and Control Engineering,Shenzhen University,Shenzhen 518060,China;Department of Materials Science and Engineering,Southern University of Science and Technology,Shenzhen 518055,China;Sino-German College of Intelligent Manufacturing,Shenzhen Technology University,Shenzhen 518118,China;CityU-Shenzhen Futian Research Institute,Shenzhen 518045,China;Hong Kong Branch of National Precious Metals Material Engineering Research Center(NPMM),City University of Hong Kong,Hong Kong,China;Beijing Advanced Innovation Center for Materials Genome Engineering,State Key Laboratory for Advanced Metals and Materials,University of Science and Technology Beijing,Beijing 100083,China
Selective laser melted high Ni content TiNi alloy with superior superelasticity and hardwearing
Hui Shen;Qingquan Zhang;Ying Yang;Yang Ren;Yanbao Guo;Yafeng Yang;Zhonghan Li;Zhiwei Xiong;Xiangguang Kong;Zhihui Zhang;Fangmin Guo;Lishan Cui;Shijie Hao-State Key Laboratory of Heavy Oil Processing,China University of Petroleum,Beijing 102249,China;The Key Laboratory of Bionic Engineering(Ministry of Education)and the College of Biological and Agricultural Engineering,Jilin University,Changchun 130025,China;Department of Physics,City University of Hong Kong,Kowloon,Hong Kong,China;College of Mechanical and Transportation Engineering,China University of Petroleum,Beijing 102249,China;State Key Laboratory of Multiphase Complex Systems,Institute of Process Engineering,Chinese Academy of Sciences,Beijing 100190,China
High-Throughput Powder Diffraction Using White X-Ray Beam and a Simulated Energy-Dispersive Array Detector
Xiaoping Wang;Weiwei Dong;Peng Zhang;Haoqi Tang;Lanting Zhang;Tieying Yang;Peng Liu;Hong Wang;X.-D.Xiang-Materials Genome Initiative Center&School of Materials Science and Engineering,Shanghai Jiao Tong University,Shanghai 200240,China;Institute of High Energy Physics,Chinese Academy of Sciences,Beijing 100049,China;Academy for Advanced Interdisciplinary Studies,Southern University of Science and Technology,Shenzhen 518055,China;Shanghai Advanced Research Institute,Chinese Academy of Sciences,Shanghai 201204,China;Department of Materials Science and Engineering&Department of Physics,Southern University of Science and Technology,Shenzhen 518055,China;Guangdong Provincial Key Laboratory of Energy Materials for Electric Power,Southern University of Science and Technology,Shenzhen 518055,China;Guangdong-Hong Kong-Macao Joint Laboratory for Photonic-Thermal-Electrical Energy Materials and Devices,Southern University of Science and Technology,Shenzhen 518055,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。