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Prediction of camber formation, suppression and control of wedge-shaped hot rolled slabs by analytical concepts and finite elements

机译:分析概念和有限元预测副格形成,抑制和控制楔形热轧板块

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For today's process automation systems for hot strip mills, wedge reduction without generating camber is still a big challenge. By utilizing suitably positioned edging rolls, the corresponding side force acting on the strip induces a lateral material flow inside the roll gap, leading to stress-redistributions such that the outgoing camber is drastically reduced. Systematic parameter studies performed so far by utilizing the commercial FEM-package Abaqus Explicit revealed the dependence of the lateral edging force and the resulting strip centerline-curvature on characteristic rolling parameters, such as slab width, thickness, initial wedge and thickness reduction. To understand the underlying highly non-linear elasto-viscoplastic forming processes inside the strip or slab in more detail, and to develop fast simulation tools, semi-analytical model reduction approaches were developed. This enables a quantitative analysis of the induced lateral material flow and the occurring stress-redistributions inside the roll bite. By introducing a lateral material transfer parameter directly correlated to the centerline-curvature, an analytical relation could be derived for the bending moment, respectively for the external work, that has to be applied to eliminate the camber of the strip or slab. These analytical predictions, although based on rough simplifications, correspond quite satisfactorily with those attained by 3D-FE simulations.
机译:对于今天的热连轧机过程自动化系统,没有发生外倾角的楔形减少仍然是一个很大的挑战。通过利用适当定位磨边辊,作用在条带相应的侧向力引起的辊缝内的横向材料流动,从而导致应力再分配使得输出弯度急剧降低。系统参数的研究进行到目前为止通过利用商业FEM-包的Abaqus明确揭示的横向边缘力的依赖性和特性轧制参数,如板坯宽度,厚度,初始楔和厚度压下所得到的带材中心线的曲率。要了解更详细的带材或板坯内部底层高度非线性弹粘塑性成形工艺,和快速发展的仿真工具,半解析模型还原方法被开发出来。这使得诱导横向材料流动的定量分析和辊缝内的发生应力再分配。通过引入直接相关于中心线曲率侧向材料转移参数,分析关系可推导出的弯曲力矩,分别为外部工作,即必须施加以消除带材或板坯的弯度。这些分析预测,尽管基于粗糙简化,对应相当令人满意地那些由3D-FE模拟实现。

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