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Experimental and numerical investigation of steel-ultra-high-performance concrete continuous composite beam behavior

机译:钢超高性能混凝土连续复合梁行为的实验与数值研究

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This article proposes a new kind of continuous composite beam that consists of steel box-girder and ultra-high-performance concrete waffle slab. The ultra-high-performance concrete helps increase the ultimate capacity and span of structure while reducing the risk of cracking that occurs with ordinary concrete. In order to investigate the mechanical properties of this new type of composite structure, two scaled specimens were designed and tested. One was a steel-ultra-high-performance concrete continuous composite beam, whereas the other, as a control specimen, was a prestressed steel-concrete continuous composite beam. The test results indicate that the bending capacity of steel-ultra-high-performance concrete continuous composite beam is 1.2 times that of steel-concrete continuous composite beam; the cracking strength of steel-ultra-high-performance concrete continuous composite beam is larger than 20 MPa, much higher than the conventional one; the crack development pattern of steel-ultra-high-performance concrete continuous composite beam has its own characteristics, and the cracks appeared in ultra-high-performance concrete slab dominated by micro-cracks with smaller length are numerous and intensive. A finite element model was developed to predict the behavior of steel-ultra-high-performance concrete continuous composite beam. Comparing the numerical and experimental results indicates that, generally, the numerical model can simulate the structural behavior of steel-ultra-high-performance concrete continuous composite beam reasonably. Based on the numerical model, a series of parameter analyses were performed, which indicate that the strength grade of steel, web, and bottom plate thickness play an important role in improving the bending capacity of steel-ultra-high-performance concrete continuous composite beam; the axial tensile strength of ultra-high-performance concrete, rib, and top plate height of ultra-high-performance concrete slab can enhance the bending capacity to a certain extent.
机译:本文提出了一种新型连续复合梁,由钢箱 - 梁和超高性能混凝土奶粉板组成。超高性能混凝土有助于增加结构的最终能力和跨度,同时降低普通混凝土发生的破裂风险。为了研究这种新型复合结构的机械性能,设计并测试了两种缩放标本。一个是钢超高性能混凝土连续复合梁,而另一种是作为对照样品,是预应力钢混凝土连续复合梁。测试结果表明,钢 - 超高性能混凝土连续复合梁的弯曲能力为钢混凝土连续复合梁的1.2倍;钢超高性能混凝土连续复合梁的开裂强度大于20MPa,远高于传统的MPa;钢超高性能混凝土连续复合梁的裂纹开发模式具有自己的特点,并且在超高性能混凝土板上出现的裂缝,其微裂缝较小,具有较小的长度和密集。开发了有限元模型以预测钢超高性能混凝土连续复合梁的行为。比较数值和实验结果表明,通常,数值模型可以合理地模拟钢超高性能混凝土连续复合梁的结构行为。基于数值模型,进行了一系列参数分析,表明钢,网和底板厚度的强度等级在提高钢超高性能混凝土连续复合梁的弯曲能力方面发挥着重要作用;超高性能混凝土板的超高性能混凝土,肋和顶板高度的轴向拉伸强度可以在一定程度上提高弯曲能力。

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