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首页> 外文期刊>Trends in Ecology & Evolution >Experimental study on steel-concrete composite beams with Uplift-restricted and slip-permitted screw-type (URSP-S) connectors
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Experimental study on steel-concrete composite beams with Uplift-restricted and slip-permitted screw-type (URSP-S) connectors

机译:用升压和滑动允许螺杆型(URSP-S)连接器的钢混凝土复合梁的实验研究

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摘要

In steel-concrete composite beams, to improve the cracking resistance of the concrete slab in the hogging moment region, a new type of connector in the interface, named uplift-restricted and slip-permitted screw-type (URSP-S) connector has been proposed. This paper focuses on the behavior of steel-concrete composite beams with URSP-S connectors. A total of three beam specimens including a simply supported beam with URSP-S connectors and two continuous composite beams with different connectors arrangements were designed and tested. More specifically, one continuous composite beam was equipped with URSP-S connectors in negative moment region and traditional shear studs in other regions. For comparison, the other one was designed with only traditional shear studs. The failure modes, crack evolution process, ultimate capacities, strain responses at different locations as well as the interface slip of the three tested specimens were measured and evaluated in-depth. Based on the experimental study, the research findings indicate that the larger slip deformation is allowed while using URSP-S connectors. Meanwhile, the tensile stress reduces and the cracking resistance of the concrete slab improves accordingly. In addition, the overall stiffness and strength of the composite beam become slightly lower than those of the composite beam using traditional shear studs. Moreover, the arrangement suggestion of URSP-S connectors in the composite beam is discussed in this paper for its practical design and application.
机译:在钢混凝土复合梁中,为了提高摇动力矩区域中混凝土板的裂缝电阻,界面中的新型连接器,名为隆起限制和滑动允许的螺旋型(URSP-S)连接器已经存在建议的。本文重点介绍钢混凝土复合梁与URSP-S连接器的行为。设计并设计了三种光束标本,包括简单地支撑的梁和具有不同连接器布置的两个连续复合梁的连续复合梁。更具体地,一个连续的复合梁配备有ursp-S连接器,在负矩区域和其他区域中的传统剪切螺柱。相比之下,另一个是仅设计传统剪切螺柱。测量和评估了不同位置的故障模式,裂纹演化过程,极限容量,不同位置的应变响应,并进行了深入评估。基于实验研究,研究结果表明,使用URSP-S连接器时允许较大的滑动变形。同时,拉伸应力降低,混凝土板的裂缝电阻相应地改善。另外,复合梁的总刚度和强度变得略低于使用传统剪切螺柱的复合梁的强度。此外,本文讨论了复合光束中URSP-S连接器的布置建议,以实现其实用的设计和应用。

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