Evolution of Grain Boundary Character Distribution in B10 Alloy from Friction Stir Processing to Annealing Treatment

Author:

Feng Wen12,Zhou Junjie1,Wang Shihao3,Sun Ting1,Zhao Tianyu1,Jiang Yingying1

Affiliation:

1. School of Mechanical Engineering, Jiangsu Ocean University, Lianyungang 222005, China

2. Jiangsu Institute of Marine Resources Development, Lianyungang 222005, China

3. Makarov College of Marine Engineering, Jiangsu Ocean University, Lianyungang 222005, China

Abstract

In this study, the grain boundary character distribution (GBCD) of a B10 alloy was optimized, employing thermomechanical processing consisting of friction stirring processing (FSP) and annealing treatment. Using electron backscatter diffraction, the effects of rotational speed of FSP and annealing time on the evolution of GBCD were systematically investigated. The GBCD evolution was analyzed concerning various parameters, such as the fraction of low-Σ coincidence site lattice (CSL) boundaries, the average number of grains per twin-related domain (TRD), the length of longest chain (LLC), and the triple junction distribution. The experimental results revealed that the processing of a 1400 rpm rotational speed of FSP followed by annealing at 750 °C for 60 min resulted in the optimum grain boundary engineering (GBE) microstructure with the highest fraction of low-Σ CSL boundaries being 82.50% and a significantly fragmented random boundary network, as corroborated by the highest average number of grains per TRD (14.73) with the maximum LLC (2.14) as well as the highest J2/(1 − J3) value (12.76%). As the rotational speed of FSP increased from 600 rpm to 1400 rpm, the fraction of low-Σ CSL boundaries monotonously increased. The fraction of low-Σ CSL boundaries first increased and then decreased with an increase in annealing time. The key to achieving GBE lies in inhibiting the recrystallization phenomenon while stimulating abundant multiple twinning events through strain-induced boundary migration.

Funder

The Natural Science Foundation of the Jiangsu Higher Education Institutions of China

Open-end Funds of Jiangsu Key Laboratory of Function Control Technology for Advanced Materials

Research and Practice Innovation for Postgraduate in Jiangsu Ocean University

Publisher

MDPI AG

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