Micromechanical finite element analysis of the effects of martensite morphology on the overall mechanical behavior of dual phase steel

被引:36
|
作者
Abid, Najmul H. [1 ]
Abu Al-Rub, Rashid K. [1 ]
Palazotto, Anthony N. [2 ]
机构
[1] Masdar Inst Sci & Technol, Mech & Mat Engn Dept, Inst Ctr Energy, Abu Dhabi, U Arab Emirates
[2] Air Force Inst Technol, Dept Aeronaut & Astronaut, Wright Patterson AFB, OH 45433 USA
关键词
Dual phase steel; Microstructural modeling; Finite element analysis; Martensite morphology; Strength and ductility; HIGH-STRENGTH STEELS; GRADIENT PLASTICITY; FAILURE INITIATION; DEFORMATION-BEHAVIOR; TENSILE PROPERTIES; VOLUME FRACTION; FERRITE CONTENT; GRAIN-SIZE; MICROSTRUCTURE; TRANSFORMATION;
D O I
10.1016/j.ijsolstr.2016.11.005
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Strong and ductile dual-phase (DP) steels are an important class of advanced high strength steels that are commonly used by the automotive industry. Micromechanical computational modeling is imperative for guiding the material design of DP steels with simultaneous enhancements in strength and ductility. In this study, the effect of the morphology of the martensite hard phase on the overall stress-strain response of DP steels is studied. Through generating realistic virtual representative volume elements (RVEs) and adapting a microstructural-based approach using a finite deformation elastic-viscoplastic constitutive model, it was possible to conduct various parametric studies of the effects of martensite phase on the strength and ductility of DP steel. Morphological parameters of the martensite phase that are studied include (1) effect of aspect ratio (equiaxed versus elongated), (2) effects of the combination of various aspect ratio within an RVE, and (3) effect of interconnectivity between martensite particles and its thickness. It is shown that elongated martensite particles lead to a better overall performance than that of equiaxed martensite particles. It is found that by having the martensite phase interconnected, both strength and ductility increase. Furthermore, it is shown that the increase in the volume fraction of equiaxed martensite particles within microstructures of elongated particles reduces the strength and ductility simultaneously. Overall, it is concluded that the morphology of the martensite phase in DP steels impacts more the ductility than strength. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:8 / 24
页数:17
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