首站-论文投稿智能助手
典型文献
Synchrotron Characterisation of Ultra-Fine Grain TiB2/Al-Cu Composite Fabricated by Laser Powder Bed Fusion
文献摘要:
Isotropy in microstructure and mechanical properties remains a challenge for laser powder bed fusion (LPBF) processed materials due to the epitaxial growth and rapid cooling in LPBF.In this study,a high-strength TiB2/Al-Cu composite with random texture was successfully fabricated by laser powder bed fusion (LPBF) using pre-doped TiB2/Al-Cu composite powder.A series of advanced characterisation techniques,including synchrotron X-ray tomography,correlative focussed ion beam-scanning electron microscopy (FIB-SEM),scanning transmission electron microscopy (STEM),and synchrotron in situ X-ray diffraction,were applied to investigate the defects and microstructure of the as-fabricated TiB2/Al-Cu composite across multiple length scales.The study showed ultra-fine grains with an average grain size of about 0.86 μm,and a random texture was formed in the as-fabricated condition due to rapid solidification and the TiB2 particles promoting heterogeneous nucleation.The yield strength and total elongation of the as-fabricated composite were 317 MPa and 10%,respectively.The contributions of fine grains,solid solutions,dislocations,particles,and Guinier-Preston (GP) zones were calculated.Failure was found to be initiated from the largest lack-of-fusion pore,as revealed by in situ synchrotron tomography during tensile loading.In situ synchrotron diffraction was used to characterise the lattice strain evolution during tensile loading,providing important data for the development of crystal-plasticity models.
文献关键词:
作者姓名:
Sheng Li;Biao Cai;Ranxi Duan;Lei Tang;Zihan Song;Dominic White;Oxana V.Magdysyuk;Moataz M.Attallah
作者机构:
School of Metallurgy and Materials,University of Birmingham,Edgbaston,Birmingham B 152TT,UK;Department of Materials Science and Engineering,Southern University of Science and Technology,Shenzhen 518055,China;ZEISS House,Building 1030,Cambourne Business Park,Cambourne,Cambridge CB236DW,UK;Diamond Light Source Ltd,Harwell Science and Innovation Campus,Didcot OX110DE,Oxfordshire,UK
引用格式:
[1]Sheng Li;Biao Cai;Ranxi Duan;Lei Tang;Zihan Song;Dominic White;Oxana V.Magdysyuk;Moataz M.Attallah-.Synchrotron Characterisation of Ultra-Fine Grain TiB2/Al-Cu Composite Fabricated by Laser Powder Bed Fusion)[J].金属学报(英文版),2022(01):78-92
A类:
Isotropy,focussed
B类:
Synchrotron,Characterisation,Ultra,Fine,Grain,TiB2,Composite,Fabricated,by,Laser,Powder,Bed,Fusion,microstructure,mechanical,properties,remains,challenge,laser,powder,bed,fusion,LPBF,processed,materials,due,epitaxial,growth,rapid,cooling,In,this,study,high,strength,composite,random,texture,was,successfully,fabricated,using,pre,doped,series,advanced,characterisation,techniques,including,synchrotron,ray,tomography,correlative,beam,scanning,electron,microscopy,FIB,transmission,STEM,situ,diffraction,were,applied,investigate,defects,across,multiple,length,scales,showed,ultra,fine,grains,average,size,about,formed,condition,solidification,particles,promoting,heterogeneous,nucleation,yield,total,elongation,respectively,contributions,solutions,dislocations,Guinier,Preston,GP,zones,calculated,Failure,found,initiated,from,largest,lack,pore,revealed,during,tensile,loading,used,characterise,lattice,strain,evolution,providing,important,data,development,crystal,plasticity,models
AB值:
0.585186
相似文献
Origin of non-uniform plasticity in a high-strength Al-Mn-Sc based alloy produced by laser powder bed fusion
Dina Bayoumy;Kwangsik Kwak;Torben Boll;Stefan Dietrich;Daniel Schliephake;Jie Huang;Junlan Yi;Kazuki Takashima;Xinhua Wu;Yuman Zhu;Aijun Huang-Monash Centre for Additive Manufacturing,15-17 Normanby Rd,Notting Hill,VIC 3168,Australia;Department of Materials Science and Engineering,Monash University,Clayton,VIC 3800,Australia;Department of Materials Science and Engineering,Kumamoto University,2-39-1 Kurokami,Chuo-ku,Kumamoto 860-8555,Japan;Karlsruhe Nano Micro Facility(KNMF),Karlsruhe Institute of Technology(KIT),Hermann-von-Helmholtz-Platz 1,76344,Eggenstein-Leopoldshafen,Germany;Institute for Applied Materials(IAM-WK),Karlsruhe Institute of Technology(KIT),Engelbert-Arnold-Stra?e 4,76131 Karlsruhe,Germany;Aeronautical Manufacturing Technology Institute,Shanghai Aircraft Manufacturing Co.,Ltd.,Shanghai 201324,China
In situ neutron diffraction unravels deformation mechanisms of a strong and ductile FeCrNi medium entropy alloy
L.Tang;F.Q.Jiang;J.S.Wróbel;B.Liu;S.Kabra;R.X.Duan;J.H.Luan;Z.B.Jiao;M.M.Attallah;D.Nguyen-Manh;B.Cai-School of Metallurgy and Materials,University of Birmingham,B15 2TT,United Kingdom;Institute of Metal Research,Chinese Academy of Sciences,Shenyang 110016,China;Faculty of Materials Science and Engineering,Warsaw University of Technology,ul.Wo?oska 141,Warsaw 02-507,Poland;State Key Laboratory for Powder Metallurgy,Central South University,Changsha 410083,China;Rutherford Appleton Laboratory,ISIS Facility,Didcot OX11 0QX,United Kingdom;Department of Materials Science and Engineering,City University of Hong Kong,Kowloon,Hong Kong,China;Department of Mechanical Engineering,The Hong Kong Polytechnic University,Hung Hom,Hong Kong,China;CCFE,United Kingdom Atomic Energy Authority,Abingdon,Oxfordshire OX14 3DB,United Kingdom
Additive manufacturing of a Co-Cr-W alloy by selective laser melting:In-situ oxidation,precipitation and the corresponding strengthening effects
Kefeng Li;Zhi Wang;Kaikai Song;Khashayar Khanlari;Xu-Sheng Yang;Qi Shi;Xin Liu;Xinhua Mao-Institute of New Materials,Guangdong Academy of Sciences,Guangzhou 510650,China;National Engineering Research Center of Powder Metallurgy of Titanium and Rare Metals,Guangzhou 510650,China;Guangdong Key Laboratory for Advanced Metallic Materials Processing,South China University of Technology,Guangzhou 510641,China;School of Mechanical,Electrical and Information Engineering,Shandong University,Weihai 264209,China;Advanced Manufacturing Technology Research Center,Department of Industrial and Systems Engineering,The Hong Kong Polytechnic University,Hung Hom,Kowloon,Hong Kong,China;Hong Kong Polytechnic University Shenzhen Research Institute,Shenzhen 518000,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。