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Tianyi Chen

Oregon State University - School of Nuclear Science and Engineering

SCHOLARLY PAPERS

3

DOWNLOADS

289

TOTAL CITATIONS

3

Scholarly Papers (3)

1.

The Correlation between Microstructure and Nanoindentation Property of Neutron-Irradiated Advanced Austenitic Alloy D9

Number of pages: 44 Posted: 06 Feb 2020
Oregon State University - School of Nuclear Science and Engineering, Government of the United States of America - Idaho National Laboratory, Oregon State University, Oregon State University, Boise State University, Boise State University - Micron School of Materials Science & Engineering and Government of the United States of America - Oak Ridge National Laboratory
Downloads 110 (640,165)
Citation 3

Abstract:

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radiation damage, TEM, precipitation, hardness, radiation hardening

2.

Microstructure and Micromechanical Responses Of Bulk Nanostructured High Entropy Alloy after Heavy-Ion Irradiation at 500ºC

Number of pages: 12 Posted: 07 Feb 2023
Oregon State University - School of Nuclear Science and Engineering, Alfred University - New York State College of Ceramics, University of North Carolina (UNC) at Charlotte - Department of Mechanical Engineering, Oregon State University - School of Mechanical, Industrial and Manufacturing Engineering, University of Houston - Department of Physics & Texas Center for Superconductivity, Alfred University - New York State College of Ceramics, University of North Carolina (UNC) at Charlotte - Department of Mechanical Engineering, Oregon State University - School of Mechanical, Industrial and Manufacturing Engineering and Oregon State University - School of Nuclear Science and Engineering
Downloads 91 (736,406)

Abstract:

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Nanocrystalline materials, nanostructure, coarsening, Severe plastic deformation, High entropy alloys

Chromium Enhances the Mechanical Performance of 3d Transition Metal High Entropy Alloys

Number of pages: 26 Posted: 20 May 2025
Oregon State University, Government of the United States of America - Idaho National Laboratory, Government of the United States of America - Idaho National Laboratory, Clemson University, Oregon State University, Clemson University - Department of Materials Science and Engineering, Oregon State University - School of Nuclear Science and Engineering and Government of the United States of America - Idaho National Laboratory
Downloads 71 (879,563)

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Nanoindentation, High entropy alloys, Compositional complexity, Stress relaxation, Creep, Density functional theory, Deformation microstructure

Chromium Enhances the Mechanical Performance of 3d Transition Metal High Entropy Alloys

Number of pages: 26 Posted: 20 May 2025
Oregon State University, Government of the United States of America - Idaho National Laboratory, Government of the United States of America - Idaho National Laboratory, Clemson University, Oregon State University, Clemson University - Department of Materials Science and Engineering, Oregon State University - School of Nuclear Science and Engineering and Government of the United States of America - Idaho National Laboratory
Downloads 17 (1,537,408)

Abstract:

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Nanoindentation, High entropy alloys, Compositional complexity, Stress relaxation, Creep, Density functional theory, Deformation microstructure