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A design method for prediction of dimensions of rectangular hollow sections formed in stretch bending

机译:预测弯曲弯曲矩形空心截面尺寸的设计方法

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摘要

Local deformation of individual cross-sectional members is of great interest in bending of aluminium alloy extrusions for tight tolerance production such as automotive components. The primary concern is the impact of such distortions on manufacturability as well as the dimensional tolerances of the component. This paper presents analytical models for the determination of local post-buckling and suck-in deformations in stretch bending. The models are based on the deformation theory of plasticity combined with an energy method using appropriate shape functions. The analytical predictions are being verified with experimental results. Based on the present findings, a simplified design method for evaluation of bendability of sections in industrial forming operations is being proposed. The results show that the slenderness (b/t) and the width of the flange are the main parameters related to the bending radius at the onset of plastic buckling and the magnitude of local deformations, respectively. Material parameters have proven to be relatively more important to the former than to the latter. Although there is some discrepancy at tight nominal bend radii, the overall correlation between the experimental and theoretical results is surprisingly good. It is therefore concluded that the present method provides to be an efficient means to the evaluation of bendability of rectangular hollow sections.
机译:单个横截面部件的局部变形在用于精密公差生产(例如汽车零部件)的铝合金型材的弯曲中引起了极大的兴趣。主要问题是这种变形对可制造性以及零件尺寸公差的影响。本文介绍了用于确定拉伸弯曲中局部后屈曲和吸入变形的分析模型。这些模型基于可塑性变形理论,结合了使用适当形状函数的能量方法。分析预测正在得到实验结果的验证。基于目前的发现,正在提出一种简化的设计方法,用于评估工业成形操作中的截面的可弯曲性。结果表明,细长度(b / t)和凸缘的宽度分别是与塑性屈曲开始时的弯曲半径和局部变形量有关的主要参数。事实证明,材料参数对前者比对后者更为重要。尽管在严格的名义弯曲半径上存在一些差异,但是实验结果和理论结果之间的总体相关性令人惊讶地良好。因此得出的结论是,本方法提供了一种有效的手段来评估矩形中空部分的可弯曲性。

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