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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Asymmetric Rolling of Interstitial-Free Steel Using Differential Roll Diameters. Part I: Mechanical Properties and Deformation Textures
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Asymmetric Rolling of Interstitial-Free Steel Using Differential Roll Diameters. Part I: Mechanical Properties and Deformation Textures

机译:无间隙钢的不对称轧制使用不同的轧制直径。第一部分:机械性能和变形纹理

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摘要

IF steel sheets were processed by conventional symmetric and asymmetric rolling (ASR) at ambient temperature. The asymmetry was introduced in a geometric way using differential roll diameters with a number of different ratios. The material strength was measured by tensile testing and the microstructure was analyzed by optical and transmission electron microscopy as well as electron backscatter diffraction (EBSD) analysis. Texture was also successfully measured by EBSD using large surface areas. Finite element (FE) simulations were carried out for multiple passes to obtain the strain distribution after rolling. From the FE results, the velocity gradient along selected flow lines was extracted and the evolution of the texture was simulated using polycrystal plasticity modeling. The best mechanical properties were obtained after ASR using a roll diameter ratio of 2. The textures appeared to be tilted up to 12 deg around the transverse direction, which were simulated with the FE-combined polycrystal plasticity modeling in good agreement with measurements. The simulation work revealed that the shear component introduced by ASR was about the same magnitude as the normal component of the rolling strain tensor.
机译:在环境温度下,IF钢板通过常规对称和非对称轧制(ASR)进行处理。使用具有许多不同比率的差分辊直径以几何方式引入不对称性。通过拉伸测试来测量材料强度,并且通过光学和透射电子显微镜以及电子背散射衍射(EBSD)分析来分析微观结构。 EBSD还使用大表面积成功地测量了质地。对多道次进行有限元(FE)模拟,以获得轧制后的应变分布。从有限元结果中,提取沿选定流线的速度梯度,并使用多晶塑性模型模拟纹理的演变。 ASR后使用2的辊径比可获得最佳的机械性能。织构似乎在横向方向上倾斜多达12度,这是通过FE组合多晶塑性模型进行模拟的,与测量结果吻合良好。仿真工作表明,ASR引入的剪切分量与滚动应变张量的法向分量大致相同。

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