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Numerical Solution of Thin-walled Tube Bending Springback with Exponential Hardening Law

机译:指数硬化规律的薄壁管弯回弹数值解

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摘要

The process of manufacturing thin-walled tubes which show exponential hardening is investigated. The analysis is based on the feedback analysis of bending springback tests. The springback angle is calculated using a formula which is derived from numerical methods. The experiments and finite element calculations prove that the formula agrees well with the test results. However, for tubes with strong hardening characteristics, certain discrepancies exist. The springback angle increases linearly with the ratio of plastic and elastic modulus, and decreases nonlinearly with increasing hardening index. The larger the ratio of plastic and elastic modulus, the greater the amount of reduction as the hardening index increases. The amount of increment in the springback angle incurred by the increase of the normalized bending radius is greater for smaller hardening index values. For thin-walled tubes, after unloading, the elastic component takes a higher percentage in the total deformation as the relative wall thickness increases, causing the springback angle to increase slightly. However, when the growth rate of the cross section inertia moment is greater than that of the proportion of elastic deformation, the springback angle tends to decrease slightly as the normalized wall thickness increases. The formula will be applied to promote the technical development in springback prediction, control and compensation.
机译:研究了显示出指数硬化的薄壁管的制造过程。该分析基于弯曲回弹测试的反馈分析。回弹角是使用从数值方法得出的公式计算的。实验和有限元计算证明该公式与试验结果吻合良好。但是,对于具有强硬化特性的管子,存在某些差异。回弹角随塑性模量和弹性模量的比线性增加,而随硬化指数的增加而非线性减小。塑性模量与弹性模量之比越大,随着硬化指数的增加,减少量越大。对于较小的硬化指数值,归一化弯曲半径的增加引起的回弹角的增加量更大。对于薄壁管,在卸载后,随着相对壁厚的增加,弹性组件在总变形中所占的百分比更高,从而导致回弹角略有增加。但是,当截面惯性矩的增长率大于弹性变形比例的增长率时,回弹角往往会随着归一化壁厚的增加而略微减小。该公式将用于促进回弹预测,控制和补偿的技术发展。

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