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Hysteretic Behavior of Korean Traditional Wooden Frames

机译:韩国传统木制框架的滞后行为

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The objective of this paper is to provide basic information on structural behavior of Korea traditional wooden frames under earthquake loading. One of prototype wooden frames for this study was chosen from a designated national treasure in Korea. A series of experimental work were prepared to investigate the behavior and hysteresis characteristics of traditional wooden frames under cyclic lateral loading. Three test specimens of a full scale were performed for cyclic hysteretic behaviors based on one static test specimen as a pilot test. The experimental observation showed stiffness degradations and slips after experiencing initial yield point and the first cycle at a new larger displacement due to inherent gaps in connections between columns and connection parts of beams and a gradual indentation of interfaces under pull and push. Addition of structural components such as an upper beam and clay-filled wall to the basic beam and columns increased the initial stiffness, strength and energy dissipation than those of basic frames. The behaviors of the wooden frames were simulated by DRAIN-2DX program for the dynamic analysis of an entire wooden frame system. Comparison between analysis models and the experimental behaviors showed that the behavior of wooden frames under consideration could be represented by a combination of link and truss elements. The maximum response of a wooden frame system under three earthquakes showed a safe behavior for a potential earthquake.
机译:本文的目的是提供有关韩国传统木制框架在地震作用下的结构性能的基本信息。本研究的原型木框之一是从韩国指定的国宝中选取的。准备了一系列实验工作,以研究传统木制框架在周期性横向载荷下的行为和滞后特性。基于一个静态测试样本作为中试,对三个完整的测试样本进行了循环滞后行为的测试。实验观察表明,由于梁和连接部分之间的连接处固有的缝隙以及在拉力和推力作用下界面的逐渐压痕,在经历较大的新位移后,在经历了初始屈服点和第一个循环之后,刚度下降和滑移。与基础框架相比,在基础梁和柱子上增加了上部梁和粘土填充墙等结构部件,增加了初始刚度,强度和能量耗散。通过DRAIN-2DX程序模拟了木制框架的行为,以对整个木制框架系统进行动态分析。分析模型与实验行为之间的比较表明,所考虑的木制框架的行为可以通过链接和桁架元素的组合来表示。木制框架系统在三级地震下的最大响应表明了潜在地震的安全行为。

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