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Rotational behavior and modeling of bolted glulam beam-to-column connections with slotted-in steel plate

机译:与钢板钢板螺栓胶梁到柱连接的旋转行为和建模

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摘要

In this article, the rotational behavior of typical bolted glulam beam-to-column connections with slotted-in steel plate was studied in the numerical method. In order to describe the complicated behavior of wood more closely, an elastic-plastic damage constitutive law combining the Hill yielding criterion and a modified Hashin failure criterion was embedded in the commercial ABAQUS software in the form of a VUMAT subroutine. Subsequently, a three-dimensional finite element model based on the constitutive law proposed was established, with the failure mode and moment-rotation curve compared to some similar experiments. Based on this finite element model, a parametric study concentrating on the influence of the width of the beam, bolt diameter, and assembly clearance was carried out. It was found that the numerical method using the proposed constitutive law showed a good capacity to study the rotational behavior of the connections. Besides, the initial rotational stiffness increased with the increase in beam width and bolt diameter, and the assembly clearances between bolts and bolt holes would affect the initial rotational stiffness while the assembly clearance between beam and column affected little.
机译:在本文中,在数值方法中研究了与开槽钢板的典型螺栓胶束到柱连接的旋转行为。为了更仔细地描述木材的复杂行为,将山丘的弹性塑料损坏组成型术语和改进的Hashin故障标准嵌入了vumat子程序的形式的商业Abaqus软件中。随后,建立了基于构成术语的三维有限元模型,与一些类似的实验相比,失效模式和力矩旋转曲线。基于该有限元模型,进行了集中于梁,螺栓直径和组装间隙的影响的参数研究。发现,使用所提出的本构规律的数值方法表明了研究连接的旋转行为的良好能力。此外,初始旋转刚度随着光束宽度和螺栓直径的增加而增加,螺栓和螺栓孔之间的组装间隙会影响初始旋转刚度,而梁和柱之间的组装间隙影响很少。

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