Statistical analysis of serrated flows in CoNiV medium-entropy alloy

Author:

Liu Bohao12ORCID,Wang Zhong3ORCID,Lan Aidong1,Yang Huijun1ORCID,Liaw Peter K.4ORCID,Qiao Junwei12ORCID

Affiliation:

1. Laboratory of High-Entropy Alloys, College of Materials Science and Engineering, Taiyuan University of Technology 1 , Taiyuan 030024, China

2. Key Laboratory of Interface Science and Engineering in Advanced Materials, Ministry of Education, Taiyuan University of Technology 2 , Taiyuan 030024, China

3. College of Mechanical and Vehicle Engineering, Taiyuan University of Technology 3 , Taiyuan 030024, China

4. Department of Materials Science and Engineering, The University of Tennessee 4 , Knoxville, Tennessee 37996-2200, USA

Abstract

The Portevin–Le Chatelier (PLC) effect induced by dynamic strain aging is commonly observed in various alloys. The stress-drop magnitude of serrations and the critical strain at which serrations occur are two pivotal features characterizing serrated flow. This study investigates the temperature (160–460 °C) and strain rate (6 × 10−4 s−1–2 × 10−2 s−1) dependence of the serrated flow behavior in the CoNiV medium-entropy alloy through uniaxial tensile tests. Under the guidance of the mean-field theory, a scale theory has been applied to derive a scale function and scale indices that can be used to predict the distribution of stress drops. A normal PLC behavior of critical strain is fitted using the dislocation pinning model, demonstrating the presence of specific solute atoms conforming to the dislocation pinning model within medium-entropy alloys.

Funder

National Natural Science Foundation of China

Research Project of Shanxi Council of China

Key Research and Development Program of Shanxi Provence

Publisher

AIP Publishing

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