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Stretch bending defects control of L-section aluminum components with variable curvatures

机译:L型截面曲率可变的铝型材拉伸弯曲缺陷控制

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摘要

To achieve high-precision bent components for rail vehicles, the stretch bending properties of the common L-section aluminum extrusions with variable contour curvatures were investigated by simulation. The causes of the defects, such as bad die fittingness, cross-section distortion of horizontal plate sagging and low contour accuracy, were analyzed, and the corresponding control methods were proposed. The simulation results demonstrate that die fittingness could be significantly improved by increasing the die elongation. The horizontal plate sagging distortion of L-section aluminum components could be eliminated by modifying the die supporting surface curve, i.e., to reduce the depth from the die's outer surface according to the shrinkage of the profile's vertical wall. By applying suitable springback compensation to the bending die geometry, the contour accuracy could be enhanced exponentially. Using the optimal process parameters and defect controlling methods, the stretch bending tests were then carried out, and results indicate that the proposed controlling methods were quite effective and the scale production of high-precision bent parts has been achieved.
机译:为了获得用于铁路车辆的高精度弯曲部件,通过模拟研究了具有可变轮廓曲率的普通L型截面铝型材的拉伸弯曲性能。分析了模具装配不良,水平板下垂截面变形,轮廓精度低等缺陷的原因,并提出了相应的控制方法。仿真结果表明,通过提高模具伸长率,可以显着提高模具装配性。可以通过修改模具支撑表面曲线来消除L型截面铝部件的水平板下垂变形,即根据轮廓垂直壁的收缩程度减小从模具外表面开始的深度。通过对弯模的几何形状施加适当的回弹补偿,轮廓精度可以成倍提高。利用最佳工艺参数和缺陷控制方法进行了拉伸弯曲试验,结果表明所提出的控制方法是有效的,并且可以实现高精度弯曲零件的规模生产。

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