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Experimental and numerical investigation of strengthened deficient steel SHS columns under axial compressive loads

机译:SHS强度不足的钢筋混凝土轴压试验与数值研究。

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摘要

In past years, numerous problems have vexed engineers with regard to buckling, corrosion, bending, and overloading in damaged steel structures. This article sets out to investigate the possible effects of carbon fiber reinforced polymer (CFRP) and steel plates for retrofitting deficient steel square hollow section (SHS) columns. The effects of axial loading, stiffness, axial displacement, the position and shape of deficient region on the length of steel SHS columns, and slenderness ratio are examined through a detailed parametric study. A total of 14 specimens was tested for failure under axial compression in a laboratory and simulated using finite element (FE) analysis based on a numerical approach. The results indicate that the application of CFRP sheets and steel plates also caused a reduction in stress in the damaged region and prevented or retarded local deformation around the deficiency. The findings showed that a deficiency leads to reduced load-carrying capacity of steel SHS columns and the retrofitting method is responsible for the increase in the load-bearing capacity of the steel columns. Finally, this research showed that the CFRP performed better than steel plates in compensating the axial force caused by the cross-section reduction due to the problems associated with the use of steel plates, such as in welding, increased weight, thermal stress around the welding location, and the possibility of creating another deficiency by welding.
机译:在过去的几年中,工程师在损坏的钢结构中的屈曲,腐蚀,弯曲和过载方面困扰着许多问题。本文着手研究碳纤维增强聚合物(CFRP)和钢板对不足的钢制方型空心截面(SHS)柱的改造可能产生的影响。通过详细的参数研究,研究了轴向载荷,刚度,轴向位移,缺陷区域的位置和形状对SHS钢柱长度以及细长比的影响。在实验室中对总共14个样品进行了轴向压缩下的破坏测试,并使用了基于数值方法的有限元(FE)分析进行了模拟。结果表明,CFRP板和钢板的应用还可以减少损坏区域的应力,并防止或延迟缺陷附近的局部变形。研究结果表明,缺乏会导致SHS钢柱的承载能力下降,而改型方法导致钢柱的承载能力增加。最后,这项研究表明,CFRP在补偿由于使用钢板带来的问题(如焊接,重量增加,焊接周围的热应力)而引起的横截面减小方面的效果优于钢板。位置,以及通过焊接产生另一个缺陷的可能性。

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