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首页> 外文期刊>Journal of structural engineering >Connection and System Ductility Relationship for Braced Timber Frames
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Connection and System Ductility Relationship for Braced Timber Frames

机译:支撑木材框架的连接和系统延性关系

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Braced timber frames (BTFs) are an efficient lateral load-resisting system for wind and seismic loads. This paper derived a relationship between the connection ductility and the system ductility of concentric BTFs based on engineering principles. The system ductility is a function of the connection ductility, the stiffness ratio of the connection to the diagonal brace, and the number of tiers and story. The proposed relationship was verified against the pushover analysis results of single-story and multistory BTF buildings. The verified relationship was used to investigate the influence of connection ductility, stiffness ratio, and number of tiers and stories on the system ductility of BTFs. It is recommended, if possible, that the BTFs be designed in such a way that the connections at both ends of diagonal braces can yield simultaneously, so that a higher system ductility can be achieved. It was found that for moderately ductile BTFs according to National Building Code of Canada, the minimum brace connection ductility of 11.5 is needed when only one end connection is yielding and exhibiting significant nonlinear behavior, and the other connection remains linear elastic. If both end connections of each diagonal brace yield, the minimum connection ductility needed is 6.3. In the case of limited-ductility BTFs, the minimum connection ductility needed is 5.4 when yielding in a single connection occurs and 3.2 when yielding in both end connections occurs. The derived relationship will help researchers and engineers to predict the system ductility of BTFs with different connections. DOI: 10.1061/(ASCE)ST.1943-541X.0002839. (c) 2020 American Society of Civil Engineers.
机译:支撑木材框架(BTFS)是一种有效的风和地震载荷的有效横向载荷系统。本文基于工程原理推出了连接延展性与同心BTFS的系统延展性之间的关系。系统延展性是连接延展性的函数,连接到对角线支撑的刚度比以及层数和故事的数量。拟议的关系是针对单层和多层BTF建筑物的推送分析结果验证的。经过验证的关系用于研究连接延展性,刚度比和层数和故事对BTFS的系统延性的影响。如果可能的话,建议使用BTFS以这样的方式设计,使得对角线支架两端的连接可以同时产生,从而可以实现更高的系统延展性。结果发现,对于根据加拿大国家建筑码的适度延性BTF,当仅一个端部连接产生并表现出显着的非线性行为时,需要11.5的最小支架连接延展性,而另一个连接保持线性弹性。如果两个对角支撑率的终端连接,所需的最小连接延展性是6.3。在有限延展性BTF的情况下,所需的最小连接延展性是5.4当在单个连接中产生时,并且在两个结束连接中产生时的屈服时。派生关系将帮助研究人员和工程师预测BTFS具有不同连接的系统延展性。 DOI:10.1061 /(asce)st.1943-541x.0002839。 (c)2020年美国土木工程师协会。

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