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首页> 外文期刊>Steel & Composite Structures: An International Journal >Compressive and flexural behaviors of ultra-high strength concrete encased steel members
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Compressive and flexural behaviors of ultra-high strength concrete encased steel members

机译:超高强度混凝土封装钢构件的压缩和弯曲行为

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摘要

One way to achieve sustainable construction is to reduce concrete consumption by use of more sustainable and higher strength concrete. Modern building codes do not cover the use of ultra-high strength concrete (UHSC) in the design of composite structures. Against such background, this paper investigates experimentally the mechanical properties of steel fibre-reinforced UHSC and then the structural behaviors of UHSC encased steel (CES) members under both concentric and eccentric compressions as well as pure bending. The effects of steel-fibre dosage and spacing of stirrups were studied, and the applicability of Eurocode 4 design approach was checked. The test results revealed that the strength of steel stirrups could not be fully utilized to provide confinement to the UHSC. The bond strength between UHSC and steel section was improved by adding the steel fibres into the UHSC. Reducing the spacing of stirrups or increasing the dosage of steel fibres was beneficial to prevent premature spalling of the concrete cover thus mobilize the steel section strength to achieve higher compressive capacity. Closer spacing of stirrups and adding 0.5% steel fibres in UHSC enhanced the post-peak ductility of CES columns. It is concluded that the code-specified reduction factors applied to the concrete strength and moment resistance can account for the loss of load capacity due to the premature spalling of concrete cover and partial yielding of the encased steel section.
机译:实现可持续结构的一种方法是利用更可持续和更高的强度混凝土减少混凝土消耗。现代建筑码不包括在复合结构设计中使用超高强度混凝土(UHSC)。在这种背景下,本文研究了钢纤维增强UHSC的力学性能,然后在同心和偏心按压下的钢(CES)构件的结构行为以及纯弯曲。研究了钢纤维剂量和搅拌的间距的影响,检查了欧元建4个设计方法的适用性。测试结果表明,钢箍筋的强度无法充分利用,以便为UHSC提供限制。通过将钢纤维添加到UHSC中,改善了UHSC和钢部分之间的键合强度。减少搅拌的间距或增加钢纤维的剂量有利于防止混凝土罩的过早剥落,从而调动钢截面强度以实现更高的压缩容量。在UHSC中更接近马镫并加入0.5%钢纤维增强了CES柱的后峰值延展性。结论是,应用于混凝土强度和力矩阻力的守则指定的降低因素可以解释由于混凝土盖的过早剥落和包装钢部的过早剥落,因此损失负载能力。

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