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Materials Science

D-Index
85
Citations
22261
World Ranking
2196
National Ranking
645

Overview

Yunzhi Wang is affiliated with The Ohio State University in the United States. Their research primarily spans the fields of Engineering and Materials Science, with a significant focus on subfields including Materials Chemistry, Mechanical Engineering, Aerospace Engineering, Biomedical Engineering, and Electronic, Optical and Magnetic Materials.

The core topics of Yunzhi Wang's work cover various aspects of advanced materials and alloys. These include:

  • Titanium Alloys Microstructure and Properties
  • Shape Memory Alloy Transformations
  • Intermetallics and Advanced Alloy Properties
  • High Temperature Alloys and Creep
  • High Entropy Alloys Studies
  • Aluminum Alloy Microstructure Properties
  • Microstructure and mechanical properties

Yunzhi Wang has contributed to numerous academic publications. Some of their recent papers are:

  • "In situ design of advanced titanium alloy with concentration modulations by additive manufacturing" (2021), published in Science
  • "Blood molecular markers associated with COVID-19 immunopathology and multi-organ damage" (2020), published in The EMBO Journal
  • "Heterostructures enhance simultaneously strength and ductility of a commercial titanium alloy" (2023), published in Acta Materialia
  • "Influence of Ni4Ti3 precipitation on martensitic transformations in NiTi shape memory alloy: R phase transformation" (2021), published in Acta Materialia
  • "Can experiment determine the stacking fault energy of metastable alloys?" (2020), published in Materials & Design

The scientist frequently publishes in the following venues, reflecting the areas of their expertise and research interests:

  • Acta Materialia
  • SSRN Electronic Journal
  • arXiv (Cornell University)
  • Scripta Materialia
  • Physical Review. B./Physical Review. B

Frequent collaborators include:

  • Dong Wang
  • Michael J. Mills
  • Kamalnath Kadirvel
  • Xiaobing Ren
  • Chuanxin Liang

Best Publications

  • Three-dimensional field model and computer modeling of martensitic transformations

    Y. Wang;A.G. Khachaturyan

  • Phase field modeling of defects and deformation

    Yunzhi Wang;Ju Li

  • Microtwinning and other shearing mechanisms at intermediate temperatures in Ni-based superalloys

    L. Kovarik;R.R. Unocic;Ju Li;P. Sarosi

  • Development of low-alloyed and rare-earth-free magnesium alloys having ultra-high strength

    Hucheng Pan;Gaowu Qin;Yunmiao Huang;Yuping Ren

  • In situ design of advanced titanium alloy with concentration modulations by additive manufacturing.

    Tianlong Zhang;Tianlong Zhang;Zhenghua Huang;Tao Yang;Haojie Kong

  • Field kinetic model and computer simulation of precipitation of L12 ordered intermetallics from f.c.c. solid solution

    Y. Wang;D. Banerjee;C.C. Su;A.G. Khachaturyan

  • Kinetics of strain-induced morphological transformation in cubic alloys with a miscibility gap

    Y. Wang;L.-Q. Chen;A.G. Khachaturyan

  • Role of ω phase in the formation of extremely refined intragranular α precipitates in metastable β-titanium alloys

    Yufeng Zheng;Robert E.A. Williams;Dong Wang;Rongpei Shi

  • Giant strain with low hysteresis in A-site-deficient (Bi0.5Na0.5)TiO3-based lead-free piezoceramics

    Tangyuan Li;Xiaojie Lou;Xiaoqin Ke;Shaodong Cheng

  • Three-dimensional phase field model and simulation of martensitic transformation in multilayer systems under applied stresses

    Andrei Artemev;Y. Wang;A. G. Khachaturyan

  • Phase field modeling of simultaneous nucleation and growth by explicitly incorporating nucleation events

    J.P Simmons;C Shen;Y Wang

  • Grain growth in anisotropic systems: comparison of effects of energy and mobility

    A. Kazaryan;Y. Wang;S.A. Dregia;B.R. Patton

  • Variant selection of grain boundary α by special prior β grain boundaries in titanium alloys

    R. Shi;V. Dixit;H.L. Fraser;Y. Wang

  • Effect of Ni4Ti3 precipitation on martensitic transformation in Ti-Ni

    N. Zhou;C. Shen;M.F.-X. Wagner;G. Eggeler

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

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

  • Quantitative phase field modeling of diffusion-controlled precipitate growth and dissolution in Ti–Al–V

    Qing Chen;Ning Ma;Kaisheng Wu;Yunzhi Wang

  • A simulation study of the shape of β′ precipitates in Mg–Y and Mg–Gd alloys

    H. Liu;H. Liu;Y. Gao;J.Z. Liu;Y.M. Zhu

  • Predicting equilibrium shape of precipitates as function of coherency state

    R. Shi;N. Ma;Y. Wang

  • Variant selection during α precipitation in Ti–6Al–4V under the influence of local stress – A simulation study

    R. Shi;Y. Wang

  • Dislocation decorrelation and relationship to deformation microtwins during creep of a γ′ precipitate strengthened Ni-based superalloy

    Raymond R Unocic;Raymond R Unocic;Ning Zhou;Libor Kovarik;Libor Kovarik;Chen Shen

  • Shape instability during precipitate growth in coherent solids

    Y. Wang;A.G. Khachaturyan

  • Strain glass in Fe-doped Ti–Ni

    Dong Wang;Dong Wang;Zhen Zhang;Jian Zhang;Yumei Zhou

  • The continuum field approach to modeling microstructural evolution

    Long Qing Chen;Yunzhi Wang

Frequent Co-Authors

Michael J. Mills
Michael J. Mills The Ohio State University
Xiaobing Ren
Xiaobing Ren National Institute for Materials Science
Hamish L. Fraser
Hamish L. Fraser The Ohio State University
Armen G. Khachaturyan
Armen G. Khachaturyan Rutgers, The State University of New Jersey
Jian Feng Nie
Jian Feng Nie Monash University
Long Qing Chen
Long Qing Chen Pennsylvania State University
Xiangdong Ding
Xiangdong Ding Xi'an Jiaotong University
Levente Vitos
Levente Vitos Royal Institute of Technology
Rajarshi Banerjee
Rajarshi Banerjee University of North Texas

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