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Moment-Curvature Model for Steel Plate-Concrete Composite Beams

机译:钢板混凝土复合梁的力矩曲率模型

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The rapid development of composite structures has led to a new design concept of the steel plate-concrete composite beam in which a thin steel plate is attached to the reinforced concrete beam. The shear connection is established by the use of headed studs and the joined parts can act as a unit due to the adequate bond between the steel and concrete. The behavior of this type of structures can be classified as intermediate between composite and reinforced concrete structures. The experimental studies have shown that the methods described in standard codes allow to determine the ultimate load of the structure, while the structure's deflection is underdetermined. More sophisticated analyses of beams are more accurate but they are used in practical design rather reluctantly. The purpose of this paper is to present a moment-curvature model which can be used in simplified calculation of deflection of steel plate-concrete composite beams. Instead of adopting the complex theoretical analysis, a trilinear model is represented by pre-cracking, post-crack and post-yielding stages. The additional deflection due to shear slip at the interface plane is taken into account. The slip effect always exists both in fully and partially composite beams and experimental studies have shown that it has a significant impact on the response of the structure. Tension stiffening effects are also considered since beam rigidity is reduced when cracking is developing due to an increase of the applied load. For validation purposes a theoretical analysis based on the presented model was performed and compared with the experimental results. The predicted results of the analytical studies were compared with the measurements of the tested beam to confirm the validity of the proposed method. It was confirmed that including the shear slip effect has significantly improved the accuracy of prediction.
机译:复合结构的快速发展导致了钢板 - 混凝土复合梁的新设计概念,其中薄钢板附着在钢筋混凝土梁上。通过使用头螺柱建立剪切连接,并且连接部件可作为钢和混凝土之间的足够粘合来充当单元。这种类型的结构的行为可以被分类为复合材料和钢筋混凝土结构之间的中间。实验研究表明,标准码中描述的方法允许确定结构的最终负荷,而结构的偏转是未确定的。更复杂的光束分析更准确,但它们在实际设计中相当不情愿地使用。本文的目的是提出一种力矩曲率模型,可用于钢板混凝土复合梁的简化计算。而不是采用复杂的理论分析,三线性模型由预开裂,裂缝和产后阶段表示。考虑到界面平面上引起的剪切滑动引起的附加偏转。防滑效果始终存在于全部和部分复合梁和实验研究中,表明它对结构的响应产生了重大影响。由于施加载荷的增加,当裂缝开发时,也考虑了张力加强效果,因为当施加的载荷的增加时,裂缝开发。为了验证目的,进行基于所呈现的模型的理论分析并与实验结果进行比较。将分析研究的预测结果与测试光束的测量进行了比较,以确认所提出的方法的有效性。确认包括剪切滑动效果显着提高了预测的准确性。

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