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Materials Science

D-Index
53
Citations
8241
World Ranking
9344
National Ranking
2664

Overview

Weijie Lu is affiliated with Shanghai Jiao Tong University in China and conducts research primarily in the fields of Engineering and Materials Science. Their work encompasses multiple subfields including Mechanical Engineering, Materials Chemistry, Biomedical Engineering, Mechanics of Materials, and Automotive Engineering.

The scientist's research focuses heavily on titanium alloys, composite materials, and additive manufacturing technologies. Key topics in their work include:

  • Titanium Alloys Microstructure and Properties
  • Aluminum Alloys Composites Properties
  • Advanced Materials and Composites
  • Additive Manufacturing Materials and Processes
  • High Entropy Alloys Studies
  • Microstructure and Mechanical Properties
  • Additive Manufacturing and 3D Printing Technologies

Lu has published extensively in a number of frequent venues such as:

  • Composites Part B Engineering
  • Materials Science and Engineering A
  • Scripta Materialia
  • Materials Characterization
  • SSRN Electronic Journal

Some recent papers include:

  • "Embedding boron into Ti powder for direct laser deposited titanium matrix composite: Microstructure evolution and the role of nano-TiB network structure," 2021, Composites Part B Engineering
  • "A Review on Design and Mechanical Properties of Additively Manufactured NiTi Implants for Orthopedic Applications," 2021, International Journal of Bioprinting
  • "Evading the strength and ductility trade-off dilemma in titanium matrix composites through designing bimodal grains and micro-nano reinforcements," 2023, Scripta Materialia
  • "Superelastic response of low-modulus porous beta-type Ti-35Nb-2Ta-3Zr alloy fabricated by laser powder bed fusion," 2020, Additive Manufacturing
  • "Towards high strengthening efficiency by in-situ planting nano-TiB networks into titanium matrix composites," 2022, Composites Part B Engineering

Frequent co-authors in Lu's collaborative network include Yuanfei Han, Guangfa Huang, Jianwen Le, Liqiang Wang, and Shaopeng Li. These collaborations indicate a strong presence within research groups focusing on materials engineering and additive manufacturing.

Best Publications

  • Effects of degree of deformation on the microstructure, mechanical properties and texture of hybrid-reinforced titanium matrix composites

    Xianglong Guo;Liqiang Wang;Minmin Wang;Jining Qin

  • Microstructural characterization of TiB in in situ synthesized titanium matrix composites prepared by common casting technique

    Weijie Lu;Di Zhang;Xiaonong Zhang;Renjie Wu

  • Variant selection by dislocations during α precipitation in α/β titanium alloys

    D. Qiu;D. Qiu;R. Shi;D. Zhang;W. Lu

  • Influence of oxygen content on microstructure and mechanical properties of Ti–Nb–Ta–Zr alloy

    Qianqian Wei;Liqiang Wang;Yuanfei Fu;Jining Qin

  • Microstructure evolution and superelastic behavior in Ti-35Nb-2Ta-3Zr alloy processed by friction stir processing

    Liqiang Wang;Lechun Xie;Yuting Lv;Lai Chang Zhang

  • HREM study of TiB/Ti interfaces in a TiB-TiC in situ composite

    Weijie Lu;Di Zhang;Xiaonong Zhang;Renjie Wu

  • Microstructure and mechanical properties of cold-rolled TiNbTaZr biomedical β titanium alloy

    Liqiang Wang;Weijie Lu;Jining Qin;Fan Zhang

  • Microstructure and mechanical properties of investment casted titanium matrix composites with B4C additions

    Jiheng Wang;Jiheng Wang;Xianglong Guo;Jining Qin;Di Zhang

  • Embedding boron into Ti powder for direct laser deposited titanium matrix composite: Microstructure evolution and the role of nano-TiB network structure

    Minhan Fang;Yuanfei Han;Zhusheng Shi;Guangfa Huang

  • Mechanical properties and strengthening effects of in situ (TiB+TiC)/Ti-1100 composite at elevated temperatures

    Fengcang Ma;Tianran Wang;Ping Liu;Wei Li

  • Creep rupture life of in situ synthesized (TiB+TiC)/Ti matrix composites

    Weijie Lu;Di Zhang;Xiaonong Zhang;Renjie Wu

  • A Review on Design and Mechanical Properties of Additively Manufactured NiTi Implants for Orthopedic Applications

    Yintao Zhang;Shokouh Attarilar;Liqiang Wang;Weijie Lu

  • Mechanical behavior and phase transformation of β-type Ti-35Nb-2Ta-3Zr alloy fabricated by 3D-Printing

    Noman Hafeez;Shifeng Liu;Eryi Lu;Liqiang Wang

  • Microstructure evolution and superelasticity of layer-like NiTiNb porous metal prepared by eutectic reaction

    Liqiang Wang;Lechun Xie;Lai-Chang Zhang;Liangyu Chen

  • Effect of volume fraction of reinforcement on room temperature tensile property of in situ (TiB + TiC)/Ti matrix composites

    Min-min Wang;Wei-jie Lu;Jining Qin;Fengcang Ma

  • Investigation of microstructure and mechanical properties of hot worked NiAl bronze alloy with different deformation degree

    Yuting Lv;Liqiang Wang;Yuanfei Han;Xiaoyan Xu

  • Microstructure evolution and mechanical properties of a Ti-35Nb-3Zr-2Ta biomedical alloy processed by equal channel angular pressing (ECAP).

    Zhengjie Lin;Liqiang Wang;Liqiang Wang;Xiaobing Xue;Weijie Lu

  • Effect of β heat treatment temperature on microstructure and mechanical properties of in situ titanium matrix composites

    Zhengui Zhang;Jining Qin;Zhiwei Zhang;Yifei Chen

  • Effect of reinforcements on high temperature mechanical properties of in situ synthesized titanium matrix composites

    Lu Xiao;Weijie Lu;Zhifeng Yang;Jining Qin

  • Influence of cold deformation on martensite transformation and mechanical properties of Ti–Nb–Ta–Zr alloy

    Liqiang Wang;Weijie Lu;Jining Qin;Fan Zhang

Frequent Co-Authors

Di Zhang
Di Zhang Tohoku University
Lai-Chang Zhang
Lai-Chang Zhang Edith Cowan University
Yunzhi Wang
Yunzhi Wang The Ohio State University
Jiajun Gu
Jiajun Gu Shanghai Jiao Tong University
Hirotaro Mori
Hirotaro Mori Osaka University
Gang Sha
Gang Sha Nanjing University of Science and Technology
Hidemi Kato
Hidemi Kato Tohoku University
Zhi Yang
Zhi Yang Shanghai Jiao Tong University
Tongxiang Fan
Tongxiang Fan Shanghai Jiao Tong University
Wei Pan
Wei Pan Tsinghua University

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