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Materials Science

D-Index
42
Citations
8242
World Ranking
12513
National Ranking
2872

Research.com Recognitions

  • 2015 - ASM Fellow "For scientific leadership, management, and advocacy of the U.S. Army materials research efforts, and in particular for the development and support of new advanced lightweight metals and bulk nanostructured materials."

Overview

Suveen N. Mathaudhu is affiliated with the Colorado School of Mines in the United States. Their research primarily focuses on engineering and materials science, with an emphasis on mechanical engineering and materials chemistry. Within these fields, their work covers several distinct subfields including mechanics of materials, aerospace engineering, and ceramics and composites.

Their research topics prominently include microstructure and mechanical properties, aluminum alloys composites properties, aluminum alloy microstructure properties, metallurgy and material forming, advanced materials and composites, metal and thin film mechanics, and metal forming simulation techniques.

Suveen N. Mathaudhu has contributed to multiple recent publications. Notable papers include:

  • Heterostructured materials: superior properties from hetero-zone interaction, 2020, Materials Research Letters
  • Effect of loading path on grain misorientation and geometrically necessary dislocation density in polycrystalline aluminum under reciprocating shear, 2022, Computational Materials Science
  • Extreme shear-deformation-induced modification of defect structures and hierarchical microstructure in an Al-Si alloy, 2020, Communications Materials
  • Unraveling the Role of Interfaces on the Spall Failure of Cu/Ta Multilayered Systems, 2020, Scientific Reports
  • Effect of grain structure and strain rate on dynamic recrystallization and deformation behavior: A phase field-crystal plasticity model, 2020, Computational Materials Science

Their work has been published across various venues, with frequent contributions to:

  • SSRN Electronic Journal
  • Materialia
  • arXiv (Cornell University)
  • Acta Materialia
  • Journal of Materials Science

Coauthorship is a significant aspect of their research. Frequent collaborators include:

  • Arun Devaraj
  • Bharat Gwalani
  • Matthew J. Olszta
  • Cynthia A. Powell
  • Joshua Silverstein

Suveen N. Mathaudhu was named an ASM Fellow in 2015, recognized for scientific leadership, management, and advocacy of U.S. Army materials research efforts, particularly in the development and support of new advanced lightweight metals and bulk nanostructured materials.

Best Publications

  • Heterostructured materials: superior properties from hetero-zone interaction

    Yuntian Zhu;Kei Ameyama;Peter M. Anderson;Irene J. Beyerlein

  • Processing and properties of magnesium containing a dense uniform dispersion of nanoparticles

    Lian-Yi Chen;Jia-Quan Xu;Hongseok Choi;Marta Pozuelo

  • Dislocation-twin interactions in nanocrystalline fcc metals

    Y.T. Zhu;X.L. Wu;X.Z. Liao;J. Narayan

  • Ultrastrong Mg Alloy via Nano-spaced Stacking Faults

    Unknown

  • Generalized stacking fault energy, ideal strength and twinnability of dilute Mg-based alloys: A first-principles study of shear deformation

    S.L. Shang;W.Y. Wang;B.C. Zhou;Y. Wang

  • Grain size stabilization of nanocrystalline copper at high temperatures by alloying with tantalum

    K.A. Darling;A.J. Roberts;Y. Mishin;S.N. Mathaudhu

  • Effect of grain size on prismatic slip in Mg-3Al-1Zn alloy

    S.M. Razavi;D.C. Foley;I. Karaman;K.T. Hartwig

  • First-principles Calculations of Twin-boundary and Stacking-fault Energies in Magnesium

    Y. Wang;L.-Q. Chen;Z.-K. Liu;S.N. Mathaudhu

  • Stabilized nanocrystalline iron-based alloys: Guiding efforts in alloy selection

    K.A. Darling;B.K. VanLeeuwen;J.E. Semones;C.C. Koch

  • Microstructure and mechanical properties of tantalum after equal channel angular extrusion (ECAE)

    Q. Wei;T. Jiao;S.N. Mathaudhu;E. Ma

  • Deformation twinning in a nanocrystalline hcp Mg alloy

    X.L. Wu;K.M. Youssef;C.C. Koch;S.N. Mathaudhu

  • Essential Readings in Magnesium Technology

    Suveen N. Mathaudhu;Alan A. Luo;Neale R. Neelameggham;Eric A. Nyberg

  • In-situ atomic-scale observation of irradiation-induced void formation

    Weizong Xu;Yongfeng Zhang;Guangming Cheng;Weiwei Jian

  • An integrated fast Fourier transform-based phase-field and crystal plasticity approach to model recrystallization of three dimensional polycrystals

    L. Chen;J. Chen;R.A. Lebensohn;Y.Z. Ji

  • Twinning partial multiplication at grain boundary in nanocrystalline fcc metals

    Y. T. Zhu;X. L. Wu;X. Z. Liao;J. Narayan

  • Grain boundary segregation and intermetallic precipitation in coarsening resistant nanocrystalline aluminum alloys

    A. Devaraj;W. Wang;R. Vemuri;L. Kovarik

  • Grain refinement vs. crystallographic texture: Mechanical anisotropy in a magnesium alloy

    D.C. Foley;M. Al-Maharbi;K.T. Hartwig;I. Karaman

  • Microstructure, crystallographic texture, and plastic anisotropy evolution in an Mg alloy during equal channel angular extrusion processing

    Majid Al-Maharbi;Ibrahim Karaman;Irene J. Beyerlein;David Foley

  • Synergetic strengthening far beyond rule of mixtures in gradient structured aluminum rod

    Jordan Moering;Xiaolong Ma;Jacob Malkin;Muxin Yang

  • Effects of Alloying Elements on Stacking Fault Energies and Electronic Structures of Binary Mg Alloys: A First-Principles Study

    William Yi Wang;Shun Li Shang;Yi Wang;Zhi Gang Mei

  • Effect of Ag on interfacial segregation in Mg–Gd–Y–(Ag)–Zr alloy

    H. Zhou;H. Zhou;G.M. Cheng;X.L. Ma;W.Z. Xu

Frequent Co-Authors

Laszlo J. Kecskes
Laszlo J. Kecskes Johns Hopkins University
Yuntian Zhu
Yuntian Zhu City University of Hong Kong
Zi-Kui Liu
Zi-Kui Liu Pennsylvania State University
Shun-Li Shang
Shun-Li Shang Pennsylvania State University
Qiuming Wei
Qiuming Wei University of North Carolina at Charlotte
Yi Wang
Yi Wang Pennsylvania State University
Xidong Hui
Xidong Hui University of Science and Technology Beijing
Bharat Gwalani
Bharat Gwalani North Carolina State University
Ibrahim Karaman
Ibrahim Karaman Texas A&M University
Enrique J. Lavernia
Enrique J. Lavernia Texas A&M University

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