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Bending collapse analysis for thin and medium-thin-walled square and rectangular hollow shapes

机译:薄膜中围墙和矩形空心形状的弯曲塌陷分析

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Thin-walled hollow shapes are of great interest in many industries with weight constraints due to their availability, low price, and strength to weight ratio. However, they are also prone to localized bending collapse, which can be used as an energy absorption mechanism during deformation. Up until now, industrial applications have relied on numerical simulations, non-standardized tests, and a handful of theories to address the bending collapse behavior. In this paper, a modification to the most widely used theory is presented and adapted for hollow shapes with greater thickness that cannot be considered "thick''. To verify the accuracy of the proposed modification, a comparison with a detailed FEM model, validated through various three-point bending collapse experimental tests, has been performed. The results seem to show that the proposed modifications can predict the maximum load and collapse stage behavior of hollow shapes with more accuracy than the original analytical model. Thus, the proposed modification may be used to predict the collapse behavior of commercially available square and rectangular hollow shapes in different fields of application.
机译:由于其可用性,低价格和重量比,薄壁空心形状对许多具有权重约束的行业非常感兴趣。然而,它们也容易发生局部弯曲塌陷,其可在变形期间用作能量吸收机制。到目前为止,工业应用依赖于数值模拟,非标准化测试和少数理论来解决弯曲崩溃行为。在本文中,给出了对最广泛使用的理论的修改,并适用于具有更大厚度的空心形状,不能被认为是“厚”的。为了验证所提出的修改的准确性,与详细的FEM模型进行比较,通过已经进行了各种三点弯曲折叠实验测试。结果似乎表明,所提出的修改可以预测空心形状的最大负载和折叠阶段行为,比原始分析模型更精确。因此,所提出的修改可能是用于预测不同应用领域市售正方形和矩形空心形状的塌陷行为。

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