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Experimental and Numerical Investigation of Steel-Concrete Composite Waffle Slab Behavior

机译:钢-混凝土复合华夫格平板行为的实验与数值研究

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摘要

This paper proposes a new kind of composite waffle slab that consists of orthogonal steel girders and flat RC slab. The steel beams help decrease the cracking that occurs with concrete, and using prefabricated RC slabs reduces the framework and speeds up the construction. An experimental investigation of steel-concrete composite waffle slabs is conducted, and the specimens are proved to have excellent ductility and load-bearing capacity. Then a mixed finite-element (FE) model combining the beam elements and shell elements is proposed to predict the behavior of composite waffle slab. Based on the numerical model, a series of parameter analyses are conducted, and the influences of different parameters on the mechanical behavior of the composite waffle slab are intensively investigated. Simplified formulas for the ultimate capacity of the composite waffle slab are derived based on the test observations and numerical analysis. Reasonable recommendations are proposed to help engineers design the composite waffle slab effectively. (C) 2015 American Society of Civil Engineers.
机译:本文提出了一种由正交钢梁和扁平RC板组成的新型复合华夫饼平板。钢梁有助于减少混凝土产生的开裂,并且使用预制的RC板可以减少框架并加快施工速度。进行了钢-混凝土复合华夫饼平板的实验研究,并证明了这些试样具有出色的延展性和承重能力。然后提出了结合梁单元和壳单元的混合有限元模型来预测复合华夫饼平板的性能。在数值模型的基础上,进行了一系列的参数分析,并深入研究了不同参数对复合华夫饼平板力学性能的影响。基于试验观察和数值分析,得出了复合华夫饼平板的极限承载力的简化公式。提出合理的建议,以帮助工程师有效地设计复合华夫饼平板。 (C)2015年美国土木工程师学会。

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