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Optimization design of a novel X-type six-high rolling mill based on maximum roll system stiffness

机译:基于最大辊系统刚度的新型X型六高轧机优化设计

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The present investigation devices a novel X-type six-high (X-6h) mill. In addition, parametric models of different roll layouts such as the four-high (4-h), I-type six-high (I-6h), and X-6h mills are established. Three-dimensional (3D) finite element (FE) contact analysis for a strip rolling process is conducted when the mills are subjected to a constant vertical load of 65 kN. Through comparative analysis of von Mises stress, contact stress and elastic deformation displacement in three roll layouts, the rigidity characteristic of each is obtained, and it is found that the proposed X-6h mill has the largest roll gap stiffness. The influence of different roll diameter ratios on the roll gap stiffness of the roll system is investigated, based on which an optimization design model is built. Further, by taking into account the roll gap stiffness of the roll system as the optimization objective, the optimum diameter ratios of backup roll (BUR) to work roll (WR) of the X-6h rolling mill is achieved via the genetic algorithm (GA) optimization method, obtaining the optimum structural parameters of BUR and WR as well. The reliability of the proposed design is verified by manufacturing a prototype mill which produced magnesium alloy and aluminum alloy strips of high quality.
机译:本发明的研究装置是一种新型X型六高(X-6H)磨机。另外,建立了不同辊布局的参数模型,例如四高(4小时),I型六高(I-6H)和X-6H米尔。当研磨机经受65kN的恒定载荷恒定的垂直载荷时,进行三维(3D)有限元(Fe)接触分析。通过对Von Mises应力的比较分析,三个辊布局中的接触应力和弹性变形位移,获得每个刚度特性,发现所提出的X-6H磨机具有最大的辊间隙刚度。研究了不同辊直径比对辊系统的辊间隙刚度的影响,基于建立了优化设计模型。此外,通过考虑辊系统的辊间隙刚度作为优化目标,通过遗传算法实现X-6H轧机的工作辊(WR)的最佳直径比(GA )优化方法,获得Bur和WR的最佳结构参数。通过制造原型轧机来验证所提出的设计的可靠性,该原型轧机产生高质量的镁合金和铝合金条带。

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