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Materials Science

D-Index
45
Citations
7498
World Ranking
11755
National Ranking
3239

Overview

Sheng-Nian Luo is affiliated with Southwest Jiaotong University in China. Their research focuses primarily on engineering and materials science, with a significant number of publications in the intersecting subfields of mechanical engineering, materials chemistry, and mechanics of materials. Additional areas of specialization include aerospace engineering and atomic and molecular physics, and optics.

The scientist's work covers a broad range of topics related to materials behavior and engineering, such as:

  • High Entropy Alloys Studies
  • High-Velocity Impact and Material Behavior
  • Microstructure and Mechanical Properties
  • High-Temperature Coating Behaviors
  • Metal and Thin Film Mechanics
  • Additive Manufacturing Materials and Processes
  • Advanced Materials and Composites

Among Luo's recent papers are several publications from 2022 and earlier years. Notable titles include:

  • "Shock compression and spallation damage of high-entropy alloy Al0.1CoCrFeNi" (2022), published in Journal of Material Science and Technology
  • "Dynamic mechanical properties, deformation and damage mechanisms of eutectic high-entropy alloy AlCoCrFeNi21 under plate impact" (2022), Journal of Material Science and Technology
  • "Microstructural characterization and constitutive modeling of deformation of closed-cell foams based on in situ x-ray tomography" (2020), International Journal of Plasticity
  • "Ballistic impact experiments and modeling on impact cratering, deformation and damage of 2024-T4 aluminum alloy" (2022), International Journal of Mechanical Sciences
  • "Dynamically evolving piezoelectric nanocomposites for antibacterial and repair-promoting applications in infected wound healing" (2022), Acta Biomaterialia

Luo frequently collaborates with other researchers. Regular co-authors include Y. Cai, N.B. Zhang, L. Lu, Yanlei Shang, and Xiaojun Zhao.

Their publications often appear in key venues specialized in materials science and mechanical sciences. These venues include:

  • Materials Science and Engineering A
  • Journal of Alloys and Compounds
  • International Journal of Mechanical Sciences
  • SSRN Electronic Journal
  • Physical Chemistry Chemical Physics

Luo's research contributions span a considerable number of works, especially in engineering (278 publications) and materials science (172 publications), with a strong emphasis on mechanical engineering (134 publications) and materials chemistry (129 publications).

Best Publications

  • Experimental demonstration of terahertz metamaterial absorbers with a broad and flat high absorption band

    Li Huang;Dibakar Roy Chowdhury;Suchitra Ramani;Matthew T. Reiten

  • Impact of resonator geometry and its coupling with ground plane on ultrathin metamaterial perfect absorbers

    Li Huang;Dibakar Roy Chowdhury;Suchitra Ramani;Matthew T. Reiten

  • Powerful and Tunable THz Emitters Based on the Fe/Pt Magnetic Heterostructure

    Dewang Yang;Jianhui Liang;Chao Zhou;Lu Sun

  • Shock-induced spall in solid and liquid Cu at extreme strain rates

    Sheng-Nian Luo;Qi An;Timothy C. Germann;Li-Bo Han

  • Macrodeformation Twins in Single-Crystal Aluminum

    F. Zhao;L. Wang;D. Fan;B. X. Bie

  • Effect of Pressure and Temperature on Structural Stability of MoS2

    Nirup Bandaru;Ravhi S. Kumar;Daniel Sneed;Oliver Tschauner

  • Dynamic response of Cu 46 Zr 54 metallic glass to high-strain-rate shock loading: Plasticity, spall, and atomic-level structures

    Bedri Arman;Bedri Arman;Sheng-Nian Luo;Timothy C. Germann;Tahir Çağın

  • Elucidation of the Dynamics for Hot-Spot Initiation at Nonuniform Interfaces of Highly Shocked Materials

    Qi An;Sergey V. Zybin;William A. Goddard;Andres Jaramillo-Botero

  • Particle breakage and energy dissipation of carbonate sands under quasi-static and dynamic compression

    Yang Xiao;Zhengxin Yuan;Jian Chu;Hanlong Liu

  • Melting of Cu under hydrostatic and shock wave loading to high pressures

    Qi An;Sheng-Nian Luo;Li-Bo Han;Lianqing Zheng

  • Shock response of Cu/graphene nanolayered composites

    X.J. Long;X.J. Long;B. Li;L. Wang;J.Y. Huang

  • Laser-launched flyer plate and confined laser ablation for shock wave loading: validation and applications.

    Dennis L. Paisley;Sheng-Nian Luo;Scott R. Greenfield;Aaron C. Koskelo

  • Spall damage of copper under supported and decaying shock loading

    Sheng-Nian Luo;Timothy C. Germann;Davis L. Tonks

  • Experimental assessment of fracture of individual sand particles at different loading rates

    Niranjan D. Parab;Benjamin Claus;Matthew C. Hudspeth;John T. Black

  • Laser-launched flyer plates for shock physics experiments

    Damian C. Swift;Johnathan G. Niemczura;Dennis L. Paisley;Randall P. Johnson

  • Shock wave loading and spallation of copper bicrystals with asymmetric Σ3⟨110⟩ tilt grain boundaries

    Sheng-Nian Luo;Timothy C. Germann;Davis L. Tonks;Qi An

  • Spall damage of a mild carbon steel: Effects of peak stress, strain rate and pulse duration

    C. Li;C. Li;B. Li;J.Y. Huang;H.H. Ma

  • Unraveling Photoinduced Spin Dynamics in the Topological Insulator Bi(2)Se(3).

    M. C. Wang;S. Qiao;S. Qiao;Z. Jiang;S. N. Luo

  • Homogeneous nucleation and growth of melt in copper.

    Lianqing Zheng;Qi An;Yun Xie;Zehui Sun

  • Grain Boundary Energy and Grain Size Dependences of Thermal Conductivity of Polycrystalline Graphene

    H. K. Liu;Y. Lin;S. N. Luo

  • Dynamic fracture of carbon nanotube/epoxy composites under high strain-rate loading

    B.X. Bie;J.H. Han;L. Lu;X.M. Zhou

Frequent Co-Authors

Tao Sun
Tao Sun University of Virginia
HengAn Wu
HengAn Wu University of Science and Technology of China
Timothy C. Germann
Timothy C. Germann Los Alamos National Laboratory
William A. Goddard
William A. Goddard California Institute of Technology
Hou-Tong Chen
Hou-Tong Chen Los Alamos National Laboratory
Xinglong Gong
Xinglong Gong University of Science and Technology of China
Minhao Zhu
Minhao Zhu Southwest Jiaotong University
Antoinette J. Taylor
Antoinette J. Taylor Los Alamos National Laboratory
Weinong Chen
Weinong Chen Purdue University West Lafayette
Thomas J. Ahrens
Thomas J. Ahrens California Institute of Technology

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