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Numerical Simulation on Failure Process of Rubber-sleeved Headed Stud Shear Connector

机译:橡胶套头螺栓剪切连接器破坏过程的数值模拟

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Rubber-sleeved headed stud shear connector is flexible shear connector used in steel-concrete composite structures. In this work, nonlinear finite element model has been developed to simulate the failure process of the shear connector under shear loading. The stress distribution, deformation, crack propagation and failure mode were analyzed. The material nonlinearities of rubber, headed stud, concrete were considered in the material model. The rubber was assumed as a perfect material with no defect, and a modified reduced polynomial form of strain energy including an energy limiter and a new constant was introduced into the user material subroutine VUANISOHYPER-INV of ABAQUS software. Damaged plasticity model was used to model the concrete material. A tri-linear elastic-plastic curve was used in stud material model. Comparing the results obtained from the finite element analysis with those from push-out test, good agreement is highlighted in the capacity, ductility and failure mode of rubber-sleeved headed stud shear connector.
机译:橡胶套筒头螺栓剪切连接器是用于钢混凝土复合结构的柔性剪切连接器。在这项工作中,开发了非线性有限元模型来模拟剪切连接器在剪切载荷作用下的破坏过程。分析了应力分布,变形,裂纹扩展和破坏模式。在材料模型中考虑了橡胶,带头螺栓,混凝土的材料非线性。假定橡胶是无缺陷的理想材料,并且将包括能量限制器和新常数的变形能量的简化折衷多项式形式引入了ABAQUS软件的用户材料子例程VUANISOHYPER-INV中。损坏的可塑性模型用于对混凝土材料进行建模。在立柱材料模型中使用了三线性弹塑性曲线。将有限元分析的结果与推出试验的结果进行比较,在橡胶套头双头螺栓剪切连接器的容量,延展性和破坏模式方面取得了很好的一致性。

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