World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
67
Citations
15533
World Ranking
466
National Ranking
67

Materials Science

D-Index
67
Citations
15470
World Ranking
5135
National Ranking
1574

Overview

Guozheng Kang is affiliated with Southwest Jiaotong University in China. Their research spans significant areas within engineering and materials science, with a strong focus on mechanical and materials chemistry subfields.

The scientist's primary fields of study include:

  • Engineering
  • Materials Science

Subfields of study cover:

  • Mechanical Engineering
  • Materials Chemistry
  • Mechanics of Materials
  • Civil and Structural Engineering
  • Biomedical Engineering

Research topics prominently addressed by Guozheng Kang include:

  • Shape Memory Alloy Transformations
  • Aluminum Alloys Composites Properties
  • Microstructure and mechanical properties
  • Magnesium Alloys: Properties and Applications
  • Fatigue and fracture mechanics
  • Aluminum Alloy Microstructure Properties
  • High Temperature Alloys and Creep

Recent published papers demonstrate the range and focus of their work:

  • Recent Progress on Wear-Resistant Materials: Designs, Properties, and Applications, 2021, Advanced Science
  • The effect of manufacturing defects on the fatigue life of selective laser melted Ti-6Al-4V structures, 2020, Materials & Design
  • A machine-learning fatigue life prediction approach of additively manufactured metals, 2020, Engineering Fracture Mechanics
  • A novel method of multiaxial fatigue life prediction based on deep learning, 2021, International Journal of Fatigue
  • Geometrically necessary dislocations and related kinematic hardening in gradient grained materials: A nonlocal crystal plasticity study, 2023, International Journal of Plasticity

Frequent publication venues indicate where their research is commonly disseminated:

  • International Journal of Fatigue
  • SSRN Electronic Journal
  • International Journal of Mechanical Sciences
  • International Journal of Plasticity
  • Engineering Fracture Mechanics

Guozheng Kang also has contributions in book publications, including:

  • Thermo-Mechanically Coupled Cyclic Deformation and Fatigue Failure of NiTi Shape Memory Alloys, 2023, published by Springer Science+Business Media

Their frequent co-authors include:

  • Qianhua Kan (111 coauthored works)
  • Chao Yu (66 coauthored works)
  • Xu Zhang (53 coauthored works)
  • Bo Xu (30 coauthored works)
  • Shengchuan Wu (24 coauthored works)

Best Publications

  • Recent Progress on Wear-Resistant Materials: Designs, Properties, and Applications.

    Wenzheng Zhai;Lichun Bai;Runhua Zhou;Xueling Fan

  • Ratchetting: Recent progresses in phenomenon observation, constitutive modeling and application

    Guozheng Kang

  • The effect of manufacturing defects on the fatigue life of selective laser melted Ti-6Al-4V structures

    Y.N. Hu;S.C. Wu;S.C. Wu;P.J. Withers;J. Zhang

  • A machine-learning fatigue life prediction approach of additively manufactured metals

    Hongyixi Bao;Shengchuan Wu;Shengchuan Wu;Zhengkai Wu;Guozheng Kang

  • Time-dependent ratchetting experiments of SS304 stainless steel

    Guozheng Kang;Qianhua Kan;Juan Zhang;Yafang Sun

  • Uniaxial ratcheting and fatigue failure of tempered 42CrMo steel : Damage evolution and damage-coupled visco-plastic constitutive model

    Guozheng Kang;Yujie Liu;Jun Ding;Qing Gao

  • A visco–plastic constitutive model incorporated with cyclic hardening for uniaxial/multiaxial ratcheting of SS304 stainless steel at room temperature

    Guozheng Kang;Qing Gao;Xianjie Yang

  • High-Speed 3D Printing of High-Performance Thermosetting Polymers via Two-Stage Curing.

    Xiao Kuang;Zeang Zhao;Zeang Zhao;Kaijuan Chen;Kaijuan Chen;Daining Fang

  • Constitutive modeling of strain range dependent cyclic hardening

    Guozheng Kang;Nobutada Ohno;Akira Nebu

  • A visco-plastic constitutive model for ratcheting of cyclically stable materials and its finite element implementation

    Guozheng Kang

  • Fabrication of tough epoxy with shape memory effects by UV-assisted direct-ink write printing.

    Kaijuan Chen;Kaijuan Chen;Xiao Kuang;Vincent Li;Guozheng Kang

  • Ratchetting deformation of super-elastic and shape-memory NiTi alloys

    Guozheng Kang;Qianhua Kan;Linmao Qian;Yujie Liu

  • Experimental study on uniaxial and nonproportionally multiaxial ratcheting of SS304 stainless steel at room and high temperatures

    Guozheng Kang;Qing Gao;Lixun Cai;Yafang Sun

  • Constitutive model for uniaxial transformation ratchetting of super-elastic NiTi shape memory alloy at room temperature

    Qianhua Kan;Guozheng Kang

  • Dislocation mechanism based size-dependent crystal plasticity modeling and simulation of gradient nano-grained copper

    Xiaochong Lu;Xu Zhang;Xu Zhang;Xu Zhang;Mingxing Shi;Franz Roters

  • Experimental study on ratchetting-fatigue interaction of SS304 stainless steel in uniaxial cyclic stressing

    Guozheng Kang;Yujie Liu;Zhao Li

  • A novel method of multiaxial fatigue life prediction based on deep learning

    Jingye Yang;Guozheng Kang;Yujie Liu;Qianhua Kan

  • Crystal plasticity based constitutive model of NiTi shape memory alloy considering different mechanisms of inelastic deformation

    Chao Yu;Guozheng Kang;Qianhua Kan

  • Oliver-Pharr indentation method in determining elastic moduli of shape memory alloys-A phase transformable material

    Qianhua Kan;Wenyi Yan;Guozheng Kang;Qingping Sun

  • Uniaxial ratchetting and low-cycle fatigue failure of the steel with cyclic stabilizing or softening feature

    Guozheng Kang;Yujie Liu

  • Uniaxial ratcheting and failure behaviors of two steels

    G.Z. Kang;Y.G. Li;J. Zhang;Y.F. Sun

Frequent Co-Authors

Wenyi Yan
Wenyi Yan Monash University
Chuanzeng Zhang
Chuanzeng Zhang University of Siegen
Kun Zhou
Kun Zhou Nanyang Technological University
Ralf Müller
Ralf Müller BI Norwegian Business School
Daining Fang
Daining Fang Beijing Institute of Technology
Qingping Sun
Qingping Sun Hong Kong University of Science and Technology
Michael Zaiser
Michael Zaiser University of Erlangen-Nuremberg
Weiqiu Chen
Weiqiu Chen Zhejiang University
Xiao Kuang
Xiao Kuang University of Wisconsin–Madison
Linmao Qian
Linmao Qian Southwest Jiaotong University

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