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A novel procedure for evaluating the rotational stiffness of traditional timber joints in Taiwan

机译:一种评价台湾传统木材关节旋转刚度的新方法

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The timber joint is one of the most important factors that affect the global behavior of timber structures in all over the world. This paper aims at proposing a new procedure for evaluating the rotational stiffness of timber joints found in Taiwan. Firstly, dismantled surveys were conducted on five historic timber structures; the results showed that three various types of timber joints can be found in beam-to-column timber joints; a nondestructive testing method was proposed and applied on a total of 72 full-scale specimens to propose a method to classify the timber joints. The results showed that stress wave velocity and amplitude transmission ratios are feasible for distinguishing the joint types. Thirdly, bending tests were applied on these 72 specimens to obtain the bending slip characteristics and rotational stiffness of these timber joints. Statistical approach was employed to analyze the data and propose models to estimate the bending slip characteristics and initial rotational stiffness for each joint type. The results showed that the bending slip characteristics could be estimated by using slip due to rigid body motion, whereas dimensions and material properties of timber joints can help to predict initial rotational stiffness. Lastly, from the discussion previously, a reliable procedure for evaluation of rotational stiffness of beam-to-column timber joints was proposed.
机译:木材联合是影响世界各地木结构全球行为的最重要因素之一。本文旨在提出一种评估台湾发现的木材关节旋转刚度的新程序。首先,在五个历史木结构上进行了拆除调查;结果表明,在光束到柱木接头中可以找到三种各种类型的木材关节;提出了一种非破坏性检测方法,并施加了总共72个全尺寸试样,提出了一种分类木材关节的方法。结果表明,应力波速度和幅度传动比可用于区分关节类型。第三,施加在这些72样本上的弯曲试验,以获得这些木材接头的弯曲滑动特性和旋转刚度。采用统计方法来分析数据并提出模型来估计每个关节型的弯曲滑动特性和初始旋转刚度。结果表明,由于刚体运动,可以通过使用滑动来估计弯曲滑移特性,而木材接头的尺寸和材料特性可以有助于预测初始旋转刚度。最后,从讨论之前,提出了一种用于评估光束到柱木材关节的旋转刚度的可靠方法。

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