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Structural mechanism of traditional wooden frames by dynamic and static tests

机译:传统木框架结构机理的动态和静态测试

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摘要

This paper deals with the structural mechanism of traditional wood frames to evaluate the seismic performance of wooden buildings like Japanese temples. The outline of shaking table tests and static tests using several scale models is described and typical experimental results are discussed. From experiments, it is found that the horizontal restoring force of wooden frame without walls depends mainly on the bending moment resistance from tie beams and the restoring force due to column rocking. The equilibrium relationship between the total restoring force and all the bending moments involved is established and verified. Using this equilibrium relationship, it is possible to evaluate the restoring force due to column rocking. The restoring force due to column rocking is the major part of the total restoring force when the frame deformation is small. The bending moments from tie beams become dominant as the deformation increases. The traditional wooden frame has the large flexibility and deformability. It is essential to take advantage of the structural mechanisms found from this study in the seismic and enhancement design of traditional wooden buildings. Copyright © 2005 John Wiley & Sons, Ltd.
机译:本文探讨了传统木结构的结构机理,以评估日本寺庙等木结构建筑的抗震性能。描述了使用几种比例模型的振动台测试和静态测试的概述,并讨论了典型的实验结果。从实验中发现,没有墙的木制框架的水平恢复力主要取决于连接梁的抗弯矩性和柱摇摆引起的恢复力。建立并验证了总恢复力与所涉及的所有弯矩之间的平衡关系。使用这种平衡关系,可以评估由于柱摇摆引起的恢复力。当框架变形较小时,由柱摇摆引起的恢复力是总恢复力的主要部分。随着变形的增加,拉杆的弯矩变得占主导。传统的木制框架具有较大的柔韧性和变形性。在传统的木制建筑的抗震和加固设计中,必须充分利用本研究中发现的结构机制。版权所有©2005 John Wiley&Sons,Ltd.

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