Heredity and evolution laws of flatness defects in steel strip temper rolling processes
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摘要: 應用ABAQUS有限元軟件對平整軋制過程進行三維彈塑性建模及仿真研究,通過溫度場模擬入口帶鋼的初始板形缺陷,利用剛性工作輥的輥形變化綜合表達各板形控制手段對承載輥縫形狀的調控功效.基于以上力學模型,針對具有初始板形缺陷的帶鋼,仿真研究平整軋制后帶鋼的板形缺陷及其與初始板形缺陷及平整工藝條件的關系,揭示帶鋼平整軋制過程中板形缺陷的遺傳與演變的規律.仿真計算結果表明,承載輥縫形狀是決定帶鋼板形缺陷遺傳和演變的最主要因素,軋前帶鋼的初始板形缺陷的程度,即最大縱向延伸差的大小,對平整后帶鋼的板形缺陷僅有一定程度的遺傳性影響.Abstract: Three-dimensional temper rolling processes are simulated by nonlinear elastoplastic finite element software called ABAQUS. In this simulation, the initial flatness defects of steel strips are modeled by the temperature field, and the adjustment effect of flatness control methods on the support roll gap shape is comprehensively expressed by the contour change of rigid work rolls. Based on the above mechanical model, flatness defects after temper roiling and their dependency on initial flatness defects and temper rolling conditions are numerically studied for steel strips with initial flatness defects, and moreover, the heredity and evolution laws of flatness defects in the temper rolling process are presented. Simulation results show that the support roll gap shape is the most important factor deciding the heredity and evolution of flatness defects, and the initial flatness defect level of entry strips has some effect on the flatness of exported strips.
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Key words:
- temper rolling /
- flatness /
- elastoplasticity /
- finite element method
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