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Manifested flatness defect prediction in cold rolling of thin strips

机译:薄带冷轧中表现出的平直度缺陷预测

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摘要

Flatness defects in thin strip cold rolling are a consequence of roll thermo-elastic deformation, from which heterogeneous strip plastic deformation results. When flatness defects manifest on line, buckling reorganizes the stress field in the pre- and post-bite areas. Comparison with flatness roll measurement requires this effect to be taken into account. A coupled Finite Element Method (FEM) approach is used here to compute stresses and strains in-bite as well as out-of-bite. The detection of buckled (non-flat) areas is demonstrated for a very thin strip cold rolling case. The model is then applied here to two questions, namely the impact on flatness of the heterogeneous temperature field and the effect of friction on optimal setting of a flatness actuator, Work Roll Bending.
机译:薄带冷轧的平直度缺陷是辊热弹性变形的结果,由此导致异质带塑性变形。当平整度缺陷在线上出现时,屈曲会重新组织咬合前后区域的应力场。与平整度辊测量的比较要求考虑这种影响。这里使用耦合有限元方法(FEM)来计算咬合和咬合外的应力和应变。演示了在非常薄的带钢冷轧箱中检测到弯曲(非平坦)区域的情况。然后将模型应用于两个问题,即对非均质温度场的平整度的影响以及摩擦对平整度执行器的最佳设置(工作辊弯曲)的影响。

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