Experimental-numerical study on strain and stress partitioning in bainitic steels with martensite-austenite constituents

被引:54
|
作者
Fujita, Noriki [1 ]
Ishikawa, Nobuyuki [1 ]
Roters, Franz [2 ]
Tasan, Cemal Cem [3 ]
Raabe, Dierk [2 ]
机构
[1] JFE Steel Corp, Steel Res Lab, Kawasakidori 1 Chome, Kurashiki, Okayama 7128511, Japan
[2] Max Planck Inst Eisenforsch GmbH, Dusseldorf, Germany
[3] MIT, Dept Mat Sci & Engn, Cambridge, MA 02139 USA
关键词
Microstructures; Crystal plasticity; Plates; Electron microscopy; Digital image correlation; DUAL-PHASE STEELS; DIGITAL IMAGE CORRELATION; HEAT-AFFECTED ZONE; CRYSTAL PLASTICITY; MICROSTRUCTURE EVOLUTION; DEFORMATION-BEHAVIOR; ROLLING TEXTURES; SINGLE-CRYSTALS; BCC METALS; SLIP;
D O I
10.1016/j.ijplas.2018.01.012
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
To achieve safety and reliability in pipelines installed in seismic and permafrost regions, it is necessary to use linepipe materials with high strength and ductility. The introduction of dual-phase steels, e.g., with a bainite and dispersed martensite-austenite (MA) constituent, would provide the necessary ingredients for the improvement of the strain capacity (as required by a new strain-based linepipe design approach) and toughness. To fine-tune the alloy design and ensure these dual-phase steels have the required mechanical properties, an understanding of the governing deformation micromechanisms is essential. For this purpose, a recently developed joint numerical experimental approach that involves the integrated use of microscopic digital image correlation analysis, electron backscatter diffraction, and multiphysics crystal plasticity simulations with a spectral solver was employed in this study. The local strain and stress evolution and microstructure maps of representative microstructural patches were captured with a high spatial resolution using this approach. A comparison of these maps provides new insights into the deformation mechanism in dual-phase microstructures, especially regarding the influence of the bainite and MA grain size and the MA distribution on the strain localization behavior.
引用
收藏
页码:39 / 53
页数:15
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