Ling Wang

University of Tennessee, Knoxville - Department of Materials Science and Engineering

TN

United States

SCHOLARLY PAPERS

1

DOWNLOADS

206

TOTAL CITATIONS

0

Scholarly Papers (1)

1.

Remarkable High-Cycle Fatigue Resistance of the TiZrNbHfTa High-Entropy Alloy and Associated Mechanisms

Number of pages: 43 Posted: 12 Oct 2020
University of Tennessee, Knoxville - Department of Materials Science and Engineering, University of Tennessee, Knoxville - Department of Material Science and Engineering, University of Tennessee, Knoxville - Department of Materials Science and Engineering, Ohio University- Department of Industrial and Systems Engineering, Oak Ridge National Laboratory- Division of Materials Science and Technology, National Tsing Hua University- High Entropy Materials Center- Department of Materials Science and Engineering, High Entropy Materials Center, National Tsing Hua University, Tohoku University- WPI Advanced Institute for Materials Research, Government of the United States of America - Physical and Computational Sciences Directorate, Yantai University- Institute for Advanced Studies in Precision Materials, University of Pittsburgh- Department of Mechanical Engineering and Materials Science and University of Tennessee, Knoxville - Department of Material Science and Engineering
Downloads 206 (318,126)

Abstract:

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High-Cycle Fatigue, Fatigue Mechanisms, Intrinsic Toughening, Extrinsic Toughening, Probabilistic Prediction, Necking