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Experiments and design of edge-stiffened plates under stress gradient

机译:应力梯度下加筋板的试验与设计

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摘要

The behaviour of thin steel plates fall into three general classes, unstiffened (no edge-stiffener), stiffened (adequate sized edge-stiffener) and partially stiffened (inadequate sized edge-stiffener). When used in cold-formed steel sections they may elastically buckle when subjected to either uniform compression or stress gradient. There are thus six possible combinations of element class and loading condition. All except the class of partially stiffened elements under stress gradient has been investigated experimentally, and design equations developed. This paper presents experiments of edge-stiffened plates under stress gradient, where the edge-stiffener size was increased from zero to a size sufficient to create a stiffened element. Edge-stiffener types investigated are simple lips and complex lips. Design solutions for partially stiffened elements under stress gradient using the effective width concept are presented. A generalised effective width design model is developed to account for all classes of elements under any loading condition.
机译:薄钢板的性能可分为三大类:未加强(无边缘加强件),加强(充分尺寸的边缘加强件)和部分加强(尺寸不足的边缘加强件)。当用于冷弯型钢时,它们在受到均匀压缩或应力梯度作用时可能会弹性变形。因此,元素类别和加载条件有六种可能的组合。通过实验研究了除应力梯度作用下的部分加筋单元类别以外的所有类别,并开发了设计方程。本文介绍了在应力梯度下边缘加劲板的实验,其中边缘加劲器的大小从零增加到足以创建加劲元素的大小。所研究的边缘加强板类型为简单的嘴唇和复杂的嘴唇。提出了使用有效宽度概念对应力梯度下的部分加筋元件进行设计的解决方案。开发了一种通用的有效宽度设计模型,以考虑任何载荷条件下所有类别的元件。

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