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Bidirectional Cyclic Loading Experiment on a 3D Beam-Column Joint Designed for Damage Avoidance

机译:为避免损坏而设计的3D梁柱节点的双向循环荷载试验

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摘要

A near full-scale three-dimensional jointed precast prestressed concrete beam-to-column connection designed and constructed in accordance with an emerging damage avoidance design philosophy is tested under displacement-controlled quasistatic reverse cyclic loading. The performance of the subassembly is assessed under unidirectional loading along both orthogonal directions as well as under concurrent bidirectional loading. The specimen is shown to perform well up to a 4% column drift with only some minor flexural cracking in the precast beams, while the precast column remains uncracked and damage free. This superior performance is attributed to steel armoring of the beam ends to mitigate the potential for concrete crushing. Under bidirectional loading a tapered shear-key layout is used to effectively protect the beams against adverse torsional movements. A three-phase force-displacement relationship is proposed that gives due consideration to the prerocking flexural deformation of the beam; the rigid body kinematics during the rocking phase; and the yielding of the external dissipaters and posttensioning tendons. Good agreement is demonstrated between the proposed theoretical model and experimental observation. An equivalent viscous damping model is also proposed to represent both change in the prestress force in the subassembly and yielding of the supplemental energy dissipaters in the rocking connection.
机译:在位移控制的准静态反向循环载荷下,测试了根据新兴的避免损伤设计原理设计和建造的近乎全尺寸的三维节理预制预应力混凝土梁柱连接。子组件的性能在沿两个正交方向的单向载荷以及同时的双向载荷下进行评估。结果表明,样品在高达4%的柱位移下表现良好,并且预制梁仅有一些轻微的挠曲开裂,而预制柱则保持不开裂和无损伤。优异的性能归因于梁端的钢铠装,以减轻混凝土压碎的可能性。在双向载荷下,采用锥形剪键布局可有效保护梁免受不利的扭转运动。提出了一种三相力-位移关系,该关系充分考虑了梁的预摇摆弯曲变形。摇摆阶段的刚体运动学;以及外部耗材和后张肌腱的屈服。所提出的理论模型与实验观察结果表明了良好的一致性。还提出了等效的粘性阻尼模型来表示子组件中预应力的变化和摇摆连接中辅助耗能器的屈服。

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