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Effect of Width-Thickness and Depth-Thickness on the Cyclic Flexural Buckling Behavior of Hollow Structural Sections

机译:宽度和深度对空心结构截面循环弯曲屈曲行为的影响

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HSS members are desirable for structural applications due to their flexural, compression, and torsional resistance. To allow for increased utilization of hollow structural sections (HSS) in cyclic bending applications, their cyclic flexural stability and local buckling behavior under large rotations must be understood. Experimental tests of HSS with width-thickness (b/t) and depth-thickness (h/t) ratios of 8.46 to 31.3 and 19.9 to 48.5, respectively, show their suitability for cyclic bending applications provided b/t and h/t are limited. The effect of the b/t and h/t ratios are found to be interdependent and correlate with the occurrence of local buckling and loss of moment capacity with cycling to increased deformation levels. In order to better understand the behavior of HSS beam members under cyclic loads, a finite element model (FEM) that accounts for localized material properties and local buckling behavior is developed and correlated to experimental results. Geometric perturbations of the section geometry are introduced based on an eigenvalue buckling analysis to approximate observed experimental local buckling behavior. From the correlated model, 133 sections are analyzed, with the section sizes spanning from HSS 152.4x50.8x4.8 to HSS 508.0x304.8x15.9, allowing a wide range of b/t and h/t ratios to be considered. The results confirm the interdependence of b/t and h/t on the local buckling behavior and provide a basis for defining limiting values to prevent local buckling and subsequent loss of moment capacity under cyclic bending loads.
机译:HSS构件因其抗弯,抗压和抗扭转性能而非常适合结构应用。为了在循环弯曲应用中增加空心结构截面(HSS)的利用率,必须了解它们在大旋转下的循环弯曲稳定性和局部屈曲行为。 HSS的宽度-厚度(b / t)和深度-厚度(h / t)之比分别为8.46至31.3和19.9至48.5的实验测试表明,只要b / t和h / t为有限的。发现b / t和h / t比的影响是相互依存的,并且与局部屈曲的发生和随着循环到变形量增加的弯矩能力的损失相关。为了更好地了解高速钢梁构件在循环载荷下的行为,建立了考虑局部材料特性和局部屈曲行为的有限元模型(FEM),并将其与实验结果相关联。基于特征值屈曲分析引入截面几何的几何扰动,以近似观察到的实验局部屈曲行为。从相关模型中,分析了133个截面,截面尺寸从HSS 152.4x50.8x4.8到HSS 508.0x304.8x15.9,可以考虑宽范围的b / t和h / t比。结果证实了b / t和h / t对局部屈曲行为的相互依赖性,并为定义极限值提供了基础,以防止在周期性弯曲载荷下局部屈曲和随后的弯矩能力损失。

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