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Investigation on Corner Filling Process in Hydroforming of Thin-Walled Aluminum Alloy Tubular Part with Polygonal Sections

机译:多边形截面薄壁铝合金管状件液压成形角填充工艺的研究

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摘要

Bursting at the corner during calibration stage is a popular failure mode in hydroforming process of tubular part with polygonal sections. Bending of thin-walled tube is also a big obstacle for hydroforming process, especially for aluminum alloy tube. In this paper, a thin-walled aluminum alloy tubular part with polygonal sections was hydroformed with the step of hydro-bending, preforming and hydroforming. The influence of internal pressure during bending was discussed. Corner filling process of a symbol section was analyzed, such as filling sequence, comer shape changing and thickness distribution. The comer with less expansion ratio contacted the die first and thickness reduction is smaller. Bursting occurred in the comer with big expansion ratio. If the comer is located in the outer side of bending arc, danger of bursting is more severe. The key factor is-maintain a sound shape for the section before calibration-keep the expansion distribution evenly.
机译:在标定阶段拐角处的爆裂是具有多边形截面的管状零件的液压成型过程中的常见失效模式。薄壁管的弯曲也是液压成形工艺的一大障碍,特别是对于铝合金管。在本文中,通过液压弯曲,预成型和液压成型的步骤对具有多边形截面的薄壁铝合金管状部件进行了液压成型。讨论了弯曲过程中内部压力的影响。分析了符号部分的角填充过程,如填充顺序,拐角形状变化和厚度分布。具有较小膨胀率的拐角首先接触模具并且厚度减小较小。角部发生爆裂,膨胀率大。如果拐角位于弯曲弧的外侧,则爆裂的危险更加严重。关键因素是在校准前保持截面的声音形状,并保持扩展分布均匀。

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