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Through-thickness shear strain control in cold rolled silicon steel by the coupling effect of roll gap geometry and friction

机译:辊缝几何形状与摩擦力的耦合效应控制冷轧硅钢的全厚度剪切应变

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摘要

Through-thickness shear strain distribution in cold rolled non-oriented silicon steel under different roll gap geometries and friction coefficients was analyzed by finite element method (FEM). Cold rolling textures were also investigated quantitatively to validate the calculated shear strain distribution. The results showed that both direction and magnitude of shear strain through thickness depend sensitively on the two rolling parameters. The coupling effect of roll gap geometry and friction was satisfactorily explained based on their contributions to shear strain and the involved mechanisms. A shear strain distribution diagram (SSDD), which can clearly characterize the shear strain state with roll gap geometry, friction and through-thickness position as variables, was proposed to serve as a convenient tool for through-thickness shear strain control.
机译:采用有限元方法分析了不同辊隙几何形状和摩擦系数条件下冷轧无取向硅钢的全厚度剪切应变分布。还对冷轧织构进行了定量研究,以验证计算出的剪切应变分布。结果表明,通过厚度的剪切应变的方向和大小都敏感地取决于两个轧制参数。基于辊缝几何形状和摩擦对剪切应变的贡献和所涉及的机理,可以令人满意地解释辊缝几何形状和摩擦的耦合作用。提出了一种剪切应变分布图(SSDD),它可以清晰地描述以辊缝几何形状,摩擦力和贯穿厚度位置为变量的剪切应变状态,可以作为控制贯穿厚度剪切应变的方便工具。

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