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首页> 外文期刊>Advances in Structural Engineering >Shear behavior of large stud shear connectors embedded in ultra-high-performance concrete
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Shear behavior of large stud shear connectors embedded in ultra-high-performance concrete

机译:大型螺旋剪切连接器嵌入超高性能混凝土的剪切行为

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摘要

In this article, the static shear behavior of large-headed studs embedded in ultra-high-performance concrete was investigated by push-out test and numerical analysis. A total of nine push-out specimens with single and grouped studs embedded in ultra-high-performance concrete and normal strength concrete slabs were tested. In the testing process, only shank failure appeared without cracks occurring on the surface of ultra-high-performance concrete slab when the steel–ultra-high-performance concrete specimens reached ultimate shear capacity. The shear capacity of specimens with large studs embedded in ultra-high-performance concrete slab increased by 10.6% compared those in normal concrete, and the current design codes such as Eurocode4, AASHTO LFRD 2014, and GB50017-2003 all underestimate the shear capacity of such kind of steel–ultra-high-performance concrete composite structures according to experimental results. Numerical models were established using ABAQUS with introducing damage plasticity material model. The influence of stud diameter, concrete strength, thickness of clear cover, and spacing of studs on the static shear behavior was thoroughly investigated via parametric analysis. Based on the experimental and numerical analysis, the existence of wedge block and the decrease of axis force are beneficial for improving the shear capacity of stud shear connectors.
机译:在本文中,通过推出测试和数值分析研究了嵌入超高性能混凝土中的大头螺柱的静态剪切行为。测试了嵌入超高性能混凝土和正常强度混凝土板的单一和分组螺柱的九个推出标本。在测试过程中,当钢超高性能混凝土样品达到极限剪切容量时,刚刚在超高性能混凝土板表面上出现柄突发故障而没有裂缝。具有超高性能混凝土板的大型螺柱的标本的剪切能力增加了10.6%,比较普通混凝土,以及欧元码4,艾索斯4,AASHTO LFRD 2014等当前设计代码,所有这些代码都低估了剪切能力根据实验结果,这种钢超高性能混凝土结构。使用ABAQUS建立了数值模型,引入损伤塑性材料模型。通过参数分析彻底研究了螺柱直径,混凝土强度,透明覆盖厚度,透明覆盖厚度和螺柱上的间距。基于实验性和数值分析,楔形块的存在和轴力减小有利于提高螺旋剪切连接器的剪切容量。

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