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Dynamic Testing of Structures with Ductile Anchorages: A Comparison of Superstructure and Base Connection Plasticity

机译:具有延性锚固结构的动态测试:上部结构与基础连接可塑性的比较

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Current design philosophy is predicated on the assumption of significant inelastic behavior of the superstructure. Examples include elongation of bracing elements or plastic rotation of beam-column elements in a moment frame. However, designing for such behavior may necessitate repair or replacement of these elements following even a moderate earthquake. Designing for plasticity at strategically designed concrete anchorages is an appealing alternative, achieving the same basic objectives as superstructure plasticity while concentrating damage in ductile concrete anchors. Such anchors can be relatively cheap, accessible, and easy to replace. This paper presents recent shake-table testing of four miniature steel buildings designed to elicit behaviors ranging from superstructure-dominated to base-connection dominated. In these experiments, the base ductility is invoked via the concrete anchorage. The measured local response of superstructure hinge elements and base connection elements, as well as their contributions to overall structural behavior, are compared for the various systems. Improvements to overall structural behavior, including up to 25% reduction in total base shear, are observed with the proposed base-dominated system. The feasibility of replacing damaged anchors after the seismic event is also demonstrated.
机译:当前的设计理念是基于上层建筑显着的非弹性行为的假设。例子包括在力矩框架中支撑元件的伸长或梁柱元件的塑性旋转。但是,针对这种行为进行设计可能甚至在中度地震后也有必要修理或更换这些元件。在经过战略设计的混凝土锚固上进行塑性设计是一种吸引人的选择,它可以实现与上层建筑可塑性相同的基本目标,同时又可以将韧性混凝土锚固集中在破坏上。这样的锚可以相对便宜,容易获得并且易于更换。本文介绍了最近对四座微型钢结构建筑物的振动台测试,这些建筑物旨在引起从上层建筑为主到基础连接为主的各种行为。在这些实验中,基础延性是通过混凝土锚固来调用的。对于各种系统,比较了上层建筑铰链元件和基础连接元件的实测局部响应,以及它们对整体结构性能的贡献。所建议的以碱为主导的系统可观察到整体结构性能的改善,包括总基础剪切力降低多达25%。还证明了地震事件后更换损坏的锚的可行性。

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