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首页> 外文期刊>International journal of structural stability and dynamics >Cyclic Performance Evaluation of Hollow Structural Section (HSS) and Concrete-Filled Tube (CFT) Braces
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Cyclic Performance Evaluation of Hollow Structural Section (HSS) and Concrete-Filled Tube (CFT) Braces

机译:中空结构部分(HSS)和混凝土管(CFT)支架的循环性能评估

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摘要

Hollow structural sections (HSS) are widely used as braces because they have inherent axial, flexural, and torsional capacities. Delaying or preventing local buckling is accomplished by concrete infill in HSS braces to improve their cyclic response heavily relying upon three key parameters: (1) presence of concrete infill, (2) width (diameter)-to-thickness ratio, and (3) length-to-width (diameter) ratio impress the cyclic response of HSS braces. Nevertheless, it is not clear that based on which parameter, concrete infill can significantly enhance the peak compressive strength and energy dissipation capacity of HSS braces. This paper aims to investigate this concern while presenting a numerical study on the cyclic response of 120 HSS and Concrete-Filled Tubes (CFT) braces with various geometric characteristics. Square and circular cross-sections, 10, 12, 13.33, 20, 30, 33.33, and 50 width (diameter)-to-thickness ratios and 10, 15, 20, 25, 30, 37.5, 45, 50, 75, and 112.5 length-to-width (diameter) ratios are selected for the numerical investigation. Obtained results indicated that concrete infill can increase peak compressive and post-buckling strengths and energy dissipation capacity of HSS braces around 81%, 43%, and 73%, respectively. It was found that concrete infill and parameters of width (diameter)-to-thickness ratio and length-to-width (diameter) ratio influence the cyclic response of HSS braces differently. On the other hand, concrete infill noticeably enhances the peak compressive strength of HSS braces with larger values of width (diameter)-to-thickness ratio and energy dissipation capacity of such braces with lower values of length-to-width (diameter) ratio.
机译:中空结构部分(HSS)被广泛用作牙套,因为它们具有固有的轴向,弯曲和扭转能力。延迟或防止局部屈曲是通过HSS括号中的混凝土填写来实现的,以改善其循环响应,严重依赖于三个关键参数:(1)混凝土填料的存在,(2)宽度(直径) - 厚度比,(3)长度到宽度(直径)比例给HSS括号的循环响应印象深刻。然而,目前尚不清楚,基于哪个参数,混凝土填料可以显着提高HSS括号的峰值抗压强度和能量耗散能力。本文旨在调查这一问题,同时提出了对具有各种几何特征的120 HSS和混凝土管(CFT)支架的循环响应的数值研究。方形和圆形横截面,10,12,1333,20,30,33.33和50宽度(直径) - 厚度比和10,15,20,25,30,37.5,45,50,75和112.5选择长度宽度(直径)比率用于数值调查。获得的结果表明,混凝土填料可分别提高HSS支架的峰值压缩和后屈曲强度和能量耗散量,分别为81%,43%和73%。结果发现,宽度(直径) - 厚度比和长度为宽度(直径)比的混凝土填充物和宽度(直径)比例不同。另一方面,混凝土填充显着提高了HSS支架的峰值抗压强度,其具有较大值的宽度(直径) - 厚度比和能量耗散能力,其这种支架具有较低的长度为宽度(直径)比值。

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