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Push-out tests of concrete-filled stainless steel SHS tubes

机译:钢管混凝土SHS管的推出测试

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A total of 32 push-out tests were conducted in this paper on concrete-filled stainless steel square hollow section (SHS) tubes with different values of height-to-width ratio, width-to-thickness ratio and concrete strength. The bond-slip behaviour of all specimens and the strain distribution on the exterior of stainless steel tubes along the longitudinal height direction were carefully investigated. Shear failure loads of bonding slip and the interface friction resistance generally decreased with more loading cycles of the repeated push-out test employed in the same direction. It can be concluded that 70% of the bonding strength at the interface was taken by the friction force of the interface elements, while the remaining 30% of the bonding strength at the interface was sustained by the chemical adhesive force and the mechanical interlock force. Furthermore, the strains at the locations close to the free end and loading end of the specimens increased with the increase of the axial load, in which the increase of the strains at the location close to the free end is much greater. On the other hand, it is demonstrated that the height-to-width ratio and the width-to-thickness ratio of the stainless steel SHS tube have insignificant influence on the shear resistance of the bonding strength of the interface elements, which generally decreased with the increase of the concrete strength. In addition, the current design rules of concrete-filled carbon steel SHS tubes were found to be inapplicable to the shear resistance of the bonding strength of concrete-filled stainless steel SHS tubes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文对高高宽比,宽厚比和混凝土强度值不同的钢管混凝土方形空心截面(SHS)管进行了总共32次推出测试。仔细研究了所有试样的粘结滑动行为以及沿纵向高度方向在不锈钢管外部的应变分布。粘结滑移的剪切破坏载荷和界面摩擦阻力通常随着在相同方向上进行的重复推出试验的更多载荷循环而降低。可以得出结论,界面处的结合强度的70%是通过界面元件的摩擦力获得的,而界面处剩余的30%的结合强度是通过化学粘合力和机械互锁力维持的。此外,随着轴向载荷的增加,试样的靠近自由端和加载端的位置处的应变增加,其中靠近自由端的位置处的应变的增加更大。另一方面,证明了不锈钢SHS管的高宽比和宽厚比对界面元件的结合强度的抗剪切力影响不显着,通常随着混凝土强度的增加。另外,发现现行的混凝土填充碳钢SHS管的设计规则不适用于混凝土填充不锈钢SHS管的粘结强度的抗剪强度。 (C)2018 Elsevier Ltd.保留所有权利。

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