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A simplified 2D model to study the contact-friction at the interfaces of steel-concrete composite beam-to-beam joint

机译:简化的二维模型用于研究钢-混凝土复合梁对梁节点界面的接触摩擦

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This paper deals with a numerical investigation of the behavior of a new joint typology to connect continuously composite beams in bridges. This beam-to-beam joint consists of butt-plates and headed stud anchors connected to a transverse concrete beam. It has been designed and tested under fatigue and monotonic loading. To describe the joint behavior, a general 3D model is required. However, due to the nonlinearities involved (plasticity, cracking, contact, friction, etc.) the convergence of the iterative process is very difficult to reach with such a model. For an accurate interpretation of the test results and a better understanding of specific local behavior, not accessible to measurement, an equivalent 2D finite element model has been proposed to approach the actual 3D problem. After calibration against experimental data, performances of this 2D model have been illustrated through two studies: the parametric influence of the butt-plate thickness and the internal force transfer mechanism in the joint.
机译:本文处理了一种新的节点类型的行为的数值研究,该类型用于连接桥梁中的连续组合梁。该梁对梁节点由对接板和带头的双头螺栓组成,这些螺栓与横向混凝土梁连接。它已经过疲劳和单调加载的设计和测试。为了描述关节行为,需要一个通用的3D模型。但是,由于所涉及的非线性(可塑性,破裂,接触,摩擦等),使用这种模型很难实现迭代过程的收敛。为了准确解释测试结果并更好地理解无法访问的特定局部行为,已提出了等效的2D有限元模型来解决实际的3D问题。在根据实验数据进行校准之后,已通过两项研究说明了此二维模型的性能:对接板厚度的参数影响和接头中的内力传递机制。

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