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Bending analysis and control of rolled plate during snake hot rolling

机译:蛇形热轧过程中轧制板的弯曲分析与控制

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In order to study the bending behavior of aluminum alloy 7050 thick plate during snake hot rolling, several coupled thermo-mechanical finite element (FE) models were established. Effects of different initial thicknesses, pass reductions, speed ratios and offset distances on the bending value of the plate were analyzed. ‘Quasi smooth plate’ and optimum offset distance were defined and quasi smooth plate could be acquired by adjusting offset distance, and then bending control equation was fitted. The results show that bending value of the plate as well as the extent of the increase grows with the increase of pass reduction and decrease of initial thickness; the bending value firstly increases and then keeps steady with the ascending speed ratio; the bending value can be reduced by enlarging the offset distance. The optimum offset distance varies for different rolling parameters and it is augmented with the increase of pass reduction and speed ratio and the decrease of initial thickness. A proper offset distance for different rolling parameters can be calculated by the bending control equation and this equation can be a guidance to acquire a quasi smooth plate. The FEM results agree well with experimental results.
机译:为了研究蛇形热轧铝合金7050厚板的弯曲行为,建立了几种热力学耦合有限元模型。分析了不同初始厚度,通过量减少,速度比和偏移距离对板的弯曲值的影响。定义了“准光滑板”和最佳偏移距离,通过调整偏移距离可以获得准光滑板,然后拟合弯曲控制方程。结果表明,随着通过量的减少和初始厚度的减小,钢板的弯曲值以及增加的程度增加。弯曲值先增大,然后以上升速度比保持稳定。弯曲值可以通过增大偏移距离来减小。最佳偏移距离随轧制参数的不同而变化,并且随着道次减小率和速比的增加以及初始厚度的减小而增加。可以通过弯曲控制方程式计算出不同轧制参数的合适偏移距离,该方程式可以作为获取准光滑板的指导。有限元结果与实验结果吻合良好。

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