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Post buckling deformations of rectangular hollow sections in bending

机译:弯曲矩形空心部分的屈曲变形

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Local deformation of individual cross-sectional members is of great interest in bending of aluminium alloy extrusions for automotive applications. The primary concern is the impact of such distortions on the manufacturability of components as well as the dimensional tolerances of the final build. This paper presents analytical models for the determination of local post buckling and suck-in deformations in 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, an approximate design method for evaluation of the 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 buckling radius than to deformation of individual cross-sectional members. Although there is some discrepancy between the experimental and theoretical results at tight nominal bend radii, the overall correlation is surprisingly good. It is therefore concluded that the present approach provides an efficient method to the evaluation of bendability of rectangular hollow sections.
机译:各个横截面构件的局部变形对汽车应用的铝合金挤出弯曲具有很大的兴趣。主要关注的是这种扭曲对组件的可制造性以及最终构建的尺寸公差的影响。本文提出了分析模型,用于确定局部屈曲和弯曲中的吮吸变形。该模型基于可塑性的变形理论与使用适当形状功能的能量法结合。通过实验结果验证了分析预测。基于本发明的研究结果,提出了一种近似设计用于评估产业形成操作中的截面的弯曲性的设计方法。结果表明,狭窄(B / T)和法兰的宽度是与塑料屈曲的弯曲半径相关的主要参数,以及局部变形的大小。已经证明材料参数比屈曲半径比变形是相对更重要的,而不是单个横截面构件的变形。虽然在紧密标称弯曲半径的实验和理论结果之间存在一些差异,但总相关性令人惊讶的是。因此,本方法得出结论,本方法为评估矩形中空部分的可弯曲性提供了一种有效的方法。

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