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首页> 外文期刊>Latin American Journal of Solids and Structures >Some Aspects of Numerical Modeling of Steel-Concrete Composite Beams with Prestressed Tendons
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Some Aspects of Numerical Modeling of Steel-Concrete Composite Beams with Prestressed Tendons

机译:预应力筋混凝土组合梁数值建模的某些方面

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Abstract Aspects about the numerical modeling of three-dimensional prestressed steel-concrete composite beams by using the finite element (FE) method are highlighted and commented in this work. Emphasis is given to the numerical treatment of bonded and unbonded tendons. The proposed modeling technique uses curved beam and catenary elements for simulating internal and external tendons, respectively. Other issues such as the constitutive model for shear connectors, steel beam and concrete are also discussed. Several numerical examples with experimental and numerical results are presented. It is encountered that a faster numerical convergence is achieved when the tendon stiffness is included in the overall stiffness of the structure, even when the unbonded internal situation is addressed. Moreover, omitting slipping at the deviator device may lead to inaccurate results in the evaluation of tendon forces for external prestressing. Favourable agreement is encountered for all studied examples.
机译:摘要本文对有限元(FE)法进行三维预应力钢-混凝土组合梁数值建模的各个方面进行了综述和评论。重点是粘结和未粘结的筋的数值处理。所提出的建模技术使用弯曲梁和悬链线分别模拟内部和外部钢筋束。还讨论了其他问题,例如剪切连接器的本构模型,钢梁和混凝土。给出了带有实验和数值结果的几个数值示例。遇到的问题是,即使在解决未粘结内部情况的情况下,将腱刚度包括在结构的整体刚度中,也可以实现更快的数值收敛。而且,忽略在偏斜装置处的打滑可能导致在评估用于外部预应力的肌腱力时结果不准确。对于所有研究的实例都遇到了有利的共识。

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