首页> 外文会议>World conference on timber engineering;WCTE 2012 >DYNAMIC STIFFNESS AND DAMPING OF DOWEL-TYPE CONNECTIONS FOR TIMBER STRUCTURES UNDER SERVICE CONDITIONS
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DYNAMIC STIFFNESS AND DAMPING OF DOWEL-TYPE CONNECTIONS FOR TIMBER STRUCTURES UNDER SERVICE CONDITIONS

机译:维修条件下木结构的道式连接的动态刚度和阻尼

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When a dowel-type joint is part of a vibrating system, the connecters exert cycles of load on the timber in embedment at various angles to the grain. Where timber is used in long, tall and light structures, the dynamic response to wind load and human-induced vibration can be critical and joints contribute significantly, in terms of damping and stiffness, to the way the structure as a whole behaves. An experimental study is presented here into the behaviour of timber subject to embedment perpendicular to the grain by a dowel-type connector. It examines the energy dissipation and dynamic stiffness in a single dowel embedding into a tight-fitting half-hole in a piece of Douglas Fir softwood. Its conclusions give an insight into the behaviour under dynamic service loads of this basic element of a dowel-type connection. This work contributes to a more thorough understanding of the damping and stiffness characteristics of timber, which can lead to more accurate estimation of the dynamic response of timber structures.
机译:当销钉式接头是振动系统的一部分时,连接器以与谷物不同的角度将载荷循环施加在嵌入的木材上。在长,高,轻的结构中使用木材的情况下,对风荷载和人为振动的动态响应可能至关重要,并且关节在阻尼和刚度方面对整个结构的行为起着重要作用。此处进行了一项实验研究,研究了通过销钉连接器垂直于谷物嵌入木材的行为。它检查了嵌在一块道格拉斯冷杉(Douglas Fir)软木中的紧密配合的半孔中的单个销钉中的能量耗散和动态刚度。其结论提供了对销类型连接的此基本元素在动态服务负载下的行为的了解。这项工作有助于更全面地了解木材的阻尼和刚度特性,从而可以更准确地估计木材结构的动力响应。

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