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首页> 外文期刊>Engineering Structures >Stress-laminated timber decks in bridges: Friction between lamellas, butt joints and pre-stressing system
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Stress-laminated timber decks in bridges: Friction between lamellas, butt joints and pre-stressing system

机译:桥梁压力层压木材甲板:薄片,对接接头和预应力系统之间的摩擦

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摘要

Stress-laminated timber (SLT) decks in bridges are popular structural systems in bridge engineering. SLT decks are made from parallel timber beams placed side by side and pre-stressed together by means of steel rods. SLT decks can be in any length by just using displaced butt joints. The paper presents results from friction experiments performed in both grain and transverse direction with different levels of pre-stress. Numerical simulations of these experiments in addition to comparisons to full-scale experiments of SLT decks presented in literature verified the numerical model approach. Furthermore, several alternative SLT deck configurations with different amounts of butt joints and pre-stressing rod locations were modelled to study their influence on the structural properties of SLT decks. Finally, some recommendations on design of SLT bridge decks are given.
机译:桥梁中压力层压木材(SLT)甲板是桥梁工程中的流行结构系统。 SLT甲板由并联木梁制成,并通过钢杆将其放置在一起并通过钢棒预应在一起。只需使用位移的对接关节即可,SLT甲板可以任何长度。本文提出了在晶粒和横向的摩擦实验中具有不同水平的预应力。这些实验的数值模拟除了对文献中呈现的SLT甲板的全规模实验进行比较,验证了数值模型方法。此外,建模具有不同量的对接接头和预应力杆位置的几种替代SLT甲板配置,以研究它们对SLT甲板结构性能的影响。最后,给出了关于SLT桥式甲板设计的一些建议。

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