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Influence of a multi-step process on the thickness reduction error of sheet metal in a flexible rolling process

机译:多步工艺对柔性轧制工艺厚度减小误差的影响

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摘要

Flexible rolling is a forming process based on thickness reduction, and the precision of thickness reduction is the key factor affecting bending deformation. The major purpose of the present work is to solve the problem of bending deformation error caused by insufficient thickness reduction. Under the condition of different rolling reductions with the same sheet thickness and the same thickness reduction with different sheet thicknesses, the thickness reduction error of sheet metal is analyzed. In addition, the bending deformation of sheet metal under the same conditions is discussed and the influence of the multi-step forming process on the thickness reduction error is studied. The results show that, under the condition of the same sheet thickness, the thickness reduction error increases with increasing rolling reduction because of an increase in work hardening. As rolling reduction increases, the longitudinal bending deformation decreases because of the decrease of the maximum thickness difference. Under the condition with the same thickness reduction, the thickness reduction error increases because of the decrease of the rolling force with increasing sheet thickness. As the sheet thickness increases, the longitudinal bending deformation increases because of the increase in the maximum thickness difference. A larger bending deformation is divided into a number of small bending deformations in a multi-step forming process, avoiding a sharp increase in the degree of work hardening; the thickness reduction error is effectively reduced in the multi-step forming process. Numerical simulation results agree with the results of the forming experiments.
机译:柔性轧制是基于厚度减小的成型过程,厚度降低的精度是影响弯曲变形的关键因素。本作工作的主要目的是解决由于厚度不足引起的弯曲变形误差的问题。在具有相同卷材厚度的不同轧制的条件下,分析了金属板的厚度减小误差。另外,讨论了金属板在相同条件下的弯曲变形,并研究了多步形成过程对厚度减小误差的影响。结果表明,在相同的片材厚度的条件下,由于工作硬化的增加,厚度降低误差随着轧制的增加而增加。由于轧制减小增加,由于最大厚度差的降低,纵向弯曲变形降低。在厚度厚度厚度相同的条件下,由于轧制厚度的轧制力减小,厚度减小误差增加。随着片材厚度的增加,由于最大厚度差的增加,纵向弯曲变形增加。更大的弯曲变形在多步成型过程中分为多个小弯曲变形,避免了硬化的工作度急剧增加;在多步骤成形过程中有效地降低了厚度降低误差。数值模拟结果与成形实验的结果一致。

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