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Non-linear analysis of the low-cycle fracture behaviour of isolated Tee stub connections

机译:隔离三通短管连接的低周断裂行为的非线性分析

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摘要

The present work deals with the numerical analysis of the low-cycle fracture behaviour of isolated Tee stub connections with partial fillet welds. The overall objective of the research is to assess the seismic performance of bolted partial strength beam-to-column joints under seismic loading; but first, the complexity of these joints is approached after understanding the behaviour of more simple geometries which govern the response. In fact, the study focuses on the low-cycle fracture behaviour of Tee stub connections that are elemental components of extended end plate connections with partial fillet welds. First, the general experimental program dealing with bolted end plate joints and component parts is presented. The program comprises sets of constant and variable displacement amplitude cyclic tests both on complete specimens and on components. Test results have shown good performance of bolted extended end plate moment joints under cyclic loading as well as that of fillet welds that represent an economic solution for thin and moderate extended end plates. Then, the connection material is characterized from a microstructural and fracture mechanics standpoint. Successively, detailed three-dimensional non-linear finite element analyses are carried out in order to tune model material parameters; whilst two-dimensional inelastic analyses are performed in a monotonic and cyclic loading regime to validate connection finite element models. Lastly, a parametric study is conducted in order to define details able to reduce loading-induced toughness demands. Analyses have inferred that fracture driving force demands, quantified in terms of crack tip opening displacements, are reduced by using fillet welds matching the end plate material, by limiting welding-induced residual stresses and by increasing the yield-to-ultimate strength ratio compatibly with plastic analysis requirements.
机译:目前的工作是对孤立Tee短管与部分角焊缝的低周断裂行为进行数值分析。该研究的总体目标是评估地震作用下螺栓部分强度梁-柱节点的抗震性能。但是首先,在了解了控制响应的更简单几何形状的行为之后,才解决了这些接头的复杂性。实际上,该研究集中在Tee短管接头的低周破坏行为,Tee短管接头是带有部分角焊缝的扩展端板连接的基本组成部分。首先,介绍了有关螺栓端板接头和零件的一般实验程序。该程序包括完整样本和组件上的一组恒定和可变位移幅度循环测试。测试结果表明,在循环载荷下,螺栓连接的延伸端板弯矩接头具有良好的性能,而角焊缝则表现出良好的性能,对于薄而中等的延伸端板而言,这是一种经济的解决方案。然后,从微观结构和断裂力学的角度对连接材料进行表征。为了进行模型材料参数的微调,相继进行了详细的三维非线性有限元分析。同时在单调和循环载荷方案中进行二维非弹性分析以验证连接有限元模型。最后,进行参数研究以定义能够降低加载引起的韧性要求的细节。分析推断,通过使用与端板材料匹配的角焊缝,通过限制焊接引起的残余应力以及通过适当地增加屈服强度与最终强度的比值,可以降低裂缝驱动力的需求(以裂纹尖端开口位移来量化)。塑性分析要求。

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