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A novel approach to investigate surface roughness evolution in asymmetric rolling based on three dimensional real surface

机译:基于三维真实表面的不对称轧制表面粗糙度演变的新方法

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摘要

Surface roughness affects the friction behaviour, stress distribution and surface quality; moreover this influence is more significant when scaling down the strip size. A novel approach has been proposed to investigate the surface roughness in asymmetric rolling based on Finite Element Analysis (FEA). Evolution of asperity flattening, contact area ratio and surface roughness is investigated under various simulation rolling conditions. The model reviewed numerical solutions for real surfaces with asperities of arbitrary shape and varying size and height distributions. The rolling characterization has also been identified for asymmetric rolling. The difference of change in surface roughness for upper and lower strip surface is large during rolling. The effect of the speed asymmetry factor on strip bending has been established. An increase of the speed asymmetry factor causes an increase in the strip curvature, while the force parameters decrease with increasing asymmetry factor. The speed asymmetric factor influences the strip bending significantly. It is the first attempt to carry out this kind of research in surface roughness based on real surface during asymmetric rolling of thin strip. 2013 Elsevier B.V.
机译:表面粗糙度会影响摩擦性能,应力分布和表面质量;此外,当缩小带钢尺寸时,这种影响更为显着。提出了一种基于有限元分析(FEA)的非对称轧制表面粗糙度研究方法。研究了在各种模拟轧制条件下粗糙化平坦度,接触面积比和表面粗糙度的演变。该模型审查了具有任意形状的凹凸,尺寸和高度分布变化的真实表面的数值解。还已经确定了非对称轧制的轧制特性。上下带材表面的表面粗糙度变化的差异在轧制期间较大。已经建立了速度不对称因素对带钢弯曲的影响。速度不对称因子的增加导致带材曲率的增加,而力参数随不对称因子的增加而减小。速度不对称因素显着影响带钢弯曲。这是在薄带不对称轧制过程中基于真实表面对表面粗糙度进行此类研究的首次尝试。 2013 Elsevier B.V.

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