A microstructure-based multiscale approach to predict the formability of multiphase steels

Author:

Zhang TaoORCID,Xie Haibo,Huo Mingshuai,Jia Fanghui,Li Lianjie,Pan Di,Wu Hui,Liu Jingbao,Yang Ting,Zhang Xi,Jiang Feng,Jiang Zhengyi

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,Civil and Structural Engineering,Ocean Engineering,Aerospace Engineering,Applied Mathematics

Reference70 articles.

1. Crystal plasticity modeling of 3rd generation multi-phase AHSS with martensitic transformation;Park;Int J Plast,2019

2. On the mechanical heterogeneity in dual phase steel grades: activation of slip systems and deformation of martensite in DP800;Tian;Acta Mater,2019

3. Relation between microstructure and formability of quenching-partitioning-tempering martensitic steel;Hao;Mater Sci Eng A,2016

4. Formability limits, fractography and fracture toughness in sheet metal forming;Magrinho;Materials (Basel),2019

5. Characterisation of formability behaviour of multiphase steels by micromechanical modelling;Uthaisangsuk;Int J Fract,2009

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