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Experimental and Numerical Study of Curved SFRC and ECC composite beams with Various Connectors

机译:各种连接器曲线SFRC和ECC复合梁的实验性和数值研究

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In order to investigate the cracking behavior of curved steel-concrete composite mechanical behavior under a hogging moment, two composite box girders with a central angle of 9 were designed and tested under static loads. In the reported test program, the CCB-1 was designed with steel fiber reinforced concrete (SFRC) slab and shear studs. In contrast, the CCB-2 was designed with Engineered Cementitious Composites (ECC) and Uplift-Restricted and Slip-Permitted (URSP) connectors for enhanced crack resistance. The load-displacement curve, strength and displacement ductility, failure mode, and strain distribution were reported in detail. For the tests of small curvature beams loaded under the hogging moment, the flexural critical failure mode was observed for both specimens, which was governed by compressive yielding of the top steel plate and tensile yielding of the concrete slab. The URSP connectors in CCB-2 effectively released the interface slip of composite girders, enhanced the interface slip capacity, and reduced the crack width of concrete compared with traditional shear studs in CCB-1. Besides, the nonlinear elaborate finite element (FE) models of two specimens were developed, and the modeling scheme and the material constitutive model were reported in detail. The developed nonlinear FE model well predicted the test results in terms of load-displacement curve, initial stiffness, failure mode, and strain distribution of concrete slab and steel beam. Both test results and FE results showed that the shear lag behavior of the concrete slab was insignificant, while the steel flange plates showed a notable shear lag effect. Therefore, the performance of the URSP connectors is well validated.
机译:为了探讨摇动力矩下弯曲钢混凝土复合力学机械行为的开裂行为,在静载荷下设计并测试了具有9的中央角度的两个复合盒梁。在报告的测试程序中,CCB-1采用钢纤维钢筋混凝土(SFRC)板和剪切螺柱设计。相比之下,CCB-2设计成具有工程化的水泥复合材料(ECC)和升压限制和滑动允许的(URSP)连接器,用于增强抗裂性。详细报道了负载 - 位移曲线,强度和位移延性,故障模式和应变分布。对于在摇动时刻装载的小曲率梁的测试,对于两个标本观察到弯曲临界失效模式,该样本由顶部钢板的压缩屈服和混凝土板的拉伸屈服来控制。 CCB-2中的URSP连接器有效地发布了复合梁的界面滑动,增强了界面滑移容量,与CCB-1中的传统剪切螺柱相比,减少了混凝土的裂缝宽度。此外,开发了两种样本的非线性精细化有限元(Fe)模型,并详细介绍了建模方案和材料本构模型。开发的非线性Fe模型良好地预测了在负载 - 位移曲线,初始刚度,故障模式和混凝土板和钢梁的应变分布方面的测试结果。测试结果和Fe结果都表明混凝土板的剪切滞后行为是微不足道的,而钢制凸缘板显示出显着的剪切滞后效果。因此,URSP连接器的性能良好验证。

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