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首页> 外文期刊>Engineering Structures >Timber-to-timber and steel-to-timber screw connections: Derivation of the slip modulus via beam on elastic foundation model
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Timber-to-timber and steel-to-timber screw connections: Derivation of the slip modulus via beam on elastic foundation model

机译:木材到木材和钢到木材螺钉连接:通过梁在弹性基础模型上衍生

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The aim of this paper is to propose formulations for the slip modulus prediction of timber-to-timber connections (TTC) and steel-to-timber connections (STC) with inclined screws and possible interlayers. The beam on elastic foundation model, previously developed for timber-to-concrete connections, was extended to consider the flexibility of both media where the screw is inserted. Since a significant influence of the fastener diameter on the foundation modulus was observed in tests, an interpolating formula correlating the foundation modulus with timber density and the fastener diameter was derived. The exact solution of the timber-to-timber analytical model was found to agree well with experimental results for total and double thread screws. A parametric study was undertaken to prove that connections with inclined screws have significantly higher slip modulus and lower degradation of performance as the diameter decreases or the thickness of the intermediate layer increases compared to connections with screws perpendicular to the sliding plane. Furthermore, the slip modulus of inclined screws was found to be limited by the weakest timber layer. Closed form expressions for the prediction of the slip modulus were derived by interpolation for the most important cases of technical interest. These formulas can be proposed for the implementations in codes of practice such as the Eurocode 5, since simplified formulas of the slip modulus are currently missing for connections with inclined fasteners and interlayers.
机译:本文的目的是提出用于木材到木材连接(TTC)和钢到木材连接(STC)的滑动模量预测与倾斜螺钉和可能的中间层的配方。以前用于木到混凝土连接的弹性基础模型上的光束延伸,以考虑插入螺钉的两个介质的灵活性。由于在测试中观察到紧固件直径对基础模量的显着影响,因此推导了与木质密度和紧固件直径相关的内插配方。发现木对木材分析模型的精确解决方案与总和双螺纹螺钉的实验结果很好。采取参数研究以证明与倾斜螺钉的连接具有显着更高的滑动模量,并且随着直径的降低或与与滑动平面的螺钉的连接相比,中间层的厚度增加的性能的较低降低。此外,发现倾斜螺钉的滑动模量受到最弱的木材层的限制。通过内插对最重要的技术兴趣案件的插值来推导出预测的闭合形式表达。这些公式可以提出用于在诸如欧元造码5的实践代码中的实现,因为目前缺少与倾斜紧固件和中间层的连接的简化公式。

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