Microstructure-based model for the stress-strain relationship of hot-rolled dual-phase steel
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摘要: 利用掃描電子顯微鏡和透射電子顯微鏡對熱軋后雙相鋼的微觀組織進行分析,用Image-Pro Plus軟件測定雙相鋼微觀組織中各獨立相的體積分數.根據多相材料中間混合法則和Swift方程,建立熱軋雙相鋼微觀應力-應變模型,并用DP590和DP780鋼單向拉伸曲線進行驗證.結果表明,該應力-應變關系微觀模型基本闡明熱軋雙相鋼微觀組織參數與宏觀力學性能的內在聯系,能夠準確地描述材料的變形行為,同時很好地預測熱軋雙相鋼宏觀的拉伸曲線.Abstract: The microstructure of hot-rolled dual-phase steel was studied by scanning electron microscopy(SEM) and transmission electron microscopy(TEM). The volume fraction of each phase in the dual-phase steel was determined by Image-Pro Plus software. A microstructure-based model was deduced for the stress-strain relationship of the dual-phase steel according to the mixing rule of multiphase materials and the Swift equation. Then the model was verified by the strain-stress curves of DP590 and DP780 steels obtained from uniaxial tensile testing. The results show that the model expounds the relationship between the microstructural parameters and macroscopic mechanical properties,and it is able to accurately describe the deformation behavior of materials and well predict the tensile curve of hot rolled dual-phase steel.
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