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Numerical Simulation of Rotational Behavior of Bolted Glulam Beam-to-Column Connections with Slotted-In Steel Plates

机译:用钢板钢板螺栓孔梁与柱连接旋转行为的数值模拟

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This paper presents the results of a numerical study on rotational behavior of bolted glulam beam-to-column connections. Since wood often exhibited complex failure behavior under different loading states, a three dimensional anisotropic damage analysis model of wood was initially developed based on continuum damage mechanics theory for progressive failure analysis of wood. The damage model basically consisted of two ingredients: the failure criterion proposed by Sandhaas was chosen to capture the damage onset; three independent damage variables were adopted to control the ductile and brittle damage evolution process of wood. This material model was implemented in a commercial available finite element method based code using a user-material subroutine. Finite element model of bolted connection coupled with the proposed material model was established to further investigate the failure modes and moment resistance of such connections. It was found that the damage evolution progress was very similar to the crack development from experimental tests. By comparing the experimental results and numerical predictions, a fair agreement of the initial stiffness and moment resistance was found with modeling error less than 3%, which implied that the finite element model was suitable to simulate the rotational behavior of such connections. This research could provide the reference for the design of bolted glulam connections in heavy timber structures.
机译:本文介绍了螺栓胶束到柱连接的旋转行为数值研究的结果。由于木材经常在不同的装载状态下表现复杂的失效行为,因此最初基于木材的渐进式故障分析的连续破坏力学理论,最初开发了一种三维各向异性损伤分析模型。损伤模型基本上由两种成分组成:选择Sandhaas提出的故障标准以捕获损伤爆发;采用了三种独立的损伤变量来控制木材的韧性和脆性损伤进化过程。使用用户材料子程序以商业可用的有限元方法以商业可用的有限元方法实现该材料模型。建立了与所提出的材料模型耦合的螺栓连接的有限元模型,以进一步研究这种连接的故障模式和力矩阻力。结果发现,损害进化进展与实验测试的裂纹发展非常相似。通过比较实验结果和数值预测,发现初始刚度和力矩阻力的公平协议,模拟误差小于3%,这暗示有限元模型适合模拟这种连接的旋转行为。该研究可以为重型木结构中的螺栓胶石连接设计提供参考。

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