Strain induced grain boundary migration effects on grain growth of an austenitic stainless steel during static and metadynamic recrystallization

被引:52
|
作者
Paggi, A. [1 ]
Angella, G. [2 ]
Donnini, R. [2 ]
机构
[1] Dalmine SpA, Tenaris Dalmine R&D, I-24044 Dalmine, Italy
[2] Inst Energet & Interphases IENI, Natl Res Council CNR, I-20125 Milan, Italy
关键词
Stainless steel; Recrystallization; Strain induced grain boundary migration; Double hit test; SEM; EBSD; HIGH-TEMPERATURE; AISI; 316L; DEFORMATION; TORSION; MICROSTRUCTURE; COMPRESSION; NUCLEATION; EVOLUTION; BEHAVIOR; KINETICS;
D O I
10.1016/j.matchar.2015.07.003
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Static and metadynamic recrystallization of an AISI 304L austenitic stainless steel was investigated at 1100 degrees C and 10(-2) s(-1) strain rate. The kinetics of recrystallization was determined through double hit compression tests. Two strain levels were selected for the first compression hit: epsilon(f) = 0.15 for static recrystallization (SRX) and 0.25 for metadynamic recrystallization (MDRX). Both the as-deformed and the recrystallized microstructures were investigated through optical microscopy and electron back-scattered diffraction (EBSD) technique. During deformation, strain induced grain boundary migration appeared to be significant, producing a square-like grain boundary structure aligned along the directions of the maximum shear stresses in compression. EBSD analysis revealed to be as a fundamental technique that the dislocation density was distributed heterogeneously in the deformed grains. Grain growth driven by surface energy reduction was also investigated, finding that it was too slow to explain the experimental data. Based on microstructural results, it was concluded that saturation of the nucleation sites occurred in the first stages of recrystallization, while grain growth driven by strain induced grain boundary migration (SIGBM) dominated the subsequent stages. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:174 / 181
页数:8
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