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Materials Science

D-Index
68
Citations
14567
World Ranking
4940
National Ranking
1303

Overview

T. E. Mitchell is affiliated with Los Alamos National Laboratory in the United States. Their research spans multiple disciplines, primarily focusing on Engineering, Physics and Astronomy, and Materials Science. The subfields of their work include Mechanical Engineering, Atomic and Molecular Physics and Optics, and Materials Chemistry.

Their recent publication record includes a paper titled MECHANICAL BEHAVIOR OF MOLYBDENUM DISILICIDE-BASED ALLOYS, published in 2024 within the venue OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information). This work has garnered citations, indicating engagement within the scientific community.

The scientist collaborates frequently with several co-authors. Notably, their frequent co-authors include:

  • Amit Misra
  • A.A. Sharif
  • J. J. Petrovic

Their research covers multiple topics, with a particular focus on material properties and interfaces. Key topics associated with their work are:

  • Intermetallics and Advanced Alloy Properties
  • Semiconductor materials and interfaces
  • MXene and MAX Phase Materials

Regarding publication venues, their contributions appear primarily in OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information).

Best Publications

  • Structure and mechanical properties of Cu-X (X = Nb,Cr,Ni) nanolayered composites

    A Misra;M Verdier;Y.C Lu;H Kung

  • Microstructure of cryogenic treated M2 tool steel

    J.Y Huang;Y.T Zhu;X.Z Liao;I.J Beyerlein

  • The role of nonstoichiometry in 180° domain switching of LiNbO3 crystals

    Venkatraman Gopalan;Terence E. Mitchell;Y. Furukawa;K. Kitamura

  • Transient oxidation of Single-Crystal β-NiAl

    J. Doychak;J. Doychak;J. L. Smialek;T. E. Mitchell;T. E. Mitchell

  • Crystal growth and low coercive field 180° domain switching characteristics of stoichiometric LiTaO3

    Kenji Kitamura;Yasunori Furukawa;Kazuo Niwa;Venkatraman Gopalan

  • Enhanced hardening in Cu/330 stainless steel multilayers by nanoscale twinning

    X. Zhang;A. Misra;H. Wang;T.D. Shen

  • On the strengthening effects of interfaces in multilayer fcc metallic composites

    R. G. Hoagland;T. E. Mitchell;J. P. Hirth;H. Kung

  • Nanoscale-twinning-induced strengthening in austenitic stainless steel thin films

    X. Zhang;A. Misra;H. Wang;M. Nastasi

  • Displacement threshold energy for type IIa diamond

    J. Koike;D. M. Parkin;T. E. Mitchell

  • Slip and Twinning in Sapphire (α-Al2O3)

    K. Peter D. Lagerlöf;Arthur H. Heuer;Jacques Castaing;Jean P. Rivière

  • Work-hardening in niobium single crystals

    T. E. Mitchell;R. A. Foxall;P. B. Hirsch

  • β→α Transformation in Polycrystalline SiC: I, Microstructural Aspects

    A. H. Heuer;G. A. Fryburg;L. U. Ogbuji;T. E. Mitchell

  • The dependence of cross-slip on stacking-fault energy in face-centred cubic metals and alloys

    P. R. Thornton;T. E. Mitchell;P. B. Hirsch

  • Three-stage hardening in tantalum single crystals.

    T.E Mitchell;W.A Spitzig;W.A Spitzig

  • The β→αTransformation in Poly crystalline SiC: III, The Thickening of α Plates

    L. U. Ogbuji;T. E. Mitchell;Arthur Heuer

  • STAGE II WORK HARDENING IN CRYSTALS

    P. B. Hirsch;T. E. Mitchell

  • The work-hardening characteristics of Cu and α-brass single crystals between 4•2 and 500°K

    T. E. Mitchell;P. R. Thornton

  • Impurity Phases in Hot-Pressed Si3N4

    L. K. V. Lou;T. E. Mitchell;A. H. Heuer

  • Wall velocities, switching times, and the stabilization mechanism of 180° domains in congruent LiTaO3 crystals

    Venkatraman Gopalan;Terence E. Mitchell

  • Microstructures of Y2O3-Stabilized ZrO2 Electron Beam-Physical Vapor Deposition Coatings on Ni-Base Superalloys

    Ozer Unal;Terrence E. Mitchell;Arthur H. Heuer

Frequent Co-Authors

Arthur H. Heuer
Arthur H. Heuer Case Western Reserve University
J.D. Embury
J.D. Embury McMaster University
Michael Nastasi
Michael Nastasi Texas A&M University
Amit Misra
Amit Misra University of Michigan–Ann Arbor
James L. Smialek
James L. Smialek Glenn Research Center
William E. Lee
William E. Lee Imperial College London
Richard G. Hoagland
Richard G. Hoagland Los Alamos National Laboratory
Xinghang Zhang
Xinghang Zhang Purdue University West Lafayette
Xiaozhou Liao
Xiaozhou Liao University of Sydney
Irene J. Beyerlein
Irene J. Beyerlein University of California, Santa Barbara

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