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首页> 外文期刊>Steel & Composite Structures: An International Journal >Non-linear analysis of composite steel-concrete beams with incomplete interaction
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Non-linear analysis of composite steel-concrete beams with incomplete interaction

机译:相互作用不完全的钢-混凝土组合组合梁的非线性分析

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The flexibility of the connection between steel and concrete largely influences the global behaviour of the composite beam. Therefore the way the connection is modelled is the key issue in its structural analysis. Here we present a new strain-based finite element formulation in which we consider nonlinear material and contact models. The computational efficiency and accuracy of the formulation is proved with the comparison of our numerical results with the experimental results of Abdel Aziz (1986) obtained in a full-scale laboratory test. The shear connectors are assumed to follow a non-linear load-slip relationship proposed by Ollgaard et cil. (1971). We introduce the notion of the generalized slip, which offers a better physical interpretation of the behaviour of the contact and gives an additional material slip parameter. An excellent agreement of experimental and numerical results is obtained, using only a few finite elements. This demonstrates that the present numerical approach is appropriate for the evaluation of behaviour of planar composite beams and perfect for practical calculations.
机译:钢与混凝土之间连接的灵活性在很大程度上影响了复合梁的整体性能。因此,连接的建模方式是其结构分析中的关键问题。在这里,我们提出了一种新的基于应变的有限元公式,其中考虑了非线性材料和接触模型。通过将我们的数值结果与在全面实验室测试中获得的Abdel Aziz(1986)的实验结果进行比较,证明了该制剂的计算效率和准确性。假定剪切连接器遵循Ollgaard等人提出的非线性载荷-滑动关系。 (1971)。我们介绍了广义滑移的概念,它提供了对接触行为的更好的物理解释,并提供了附加的材料滑移参数。仅使用几个有限元即可获得实验和数值结果的极佳一致性。这表明当前的数值方法适合于平面复合梁的性能评估,并且非常适合实际计算。

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