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Shear and bending performance of a novel wood-concrete composite system

机译:新型木 - 混凝土复合系统的剪切和弯曲性能

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摘要

This paper introduces a new, structural wood–concrete composite system. The system is formed by joining a wood component, such as a floor beam or laminated plate, to a concrete slab utilizing a continuous steel mesh of which one half is glued into a slot in the wood while the other half is embedded into the concrete. Two series of tests were performed and are presented: static push-out tests (to establish shear properties of the connector) and a full scale bending test with a span of approximately 10m . Test results reveal that the steel mesh performs favorably—as a stiff yet ductile shear connector between the wood and the concrete. Design equations, per European standards (in absence of North American standards) are described and used to predict the failure load of the bending test. Calculations indicate that the tested beam performs with near full composite action—specifically, 97% effective stiffness and 99% strength of that of a beam with full composite action. This is a marked improvement in the efficiency of wood–concrete systems developed to date. The system shows itself to be superior to alternative systems in its high structural efficiency as well as being relatively easy to install and economic.
机译:本文介绍了一种新的结构性木材-混凝土复合系统。该系统是通过使用连续钢网将木材部件(例如地板梁或层压板)连接到混凝土板上而形成的,该钢网的一半被粘在木材的缝隙中,而另一半则被嵌入混凝土中。进行并进行了两个系列的测试:静态推出测试(以建立连接器的剪切特性)和跨度约为10m的满刻度弯曲测试。测试结果表明,钢网作为木材和混凝土之间的坚硬而易延展的剪切连接器,性能良好。根据欧洲标准(不存在北美标准)描述设计方程,并将其用于预测弯曲测试的失败载荷。计算表明,被测试的梁具有几乎完全复合作用的性能,特别是具有完全复合作用的梁的有效刚度为97%,强度为99%。这是迄今为止开发的木材混凝土系统效率的显着提高。该系统以其高的结构效率以及相对易于安装和经济的优势表现出优于替代系统的优势。

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    Schreyer, Alexander C.;

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  • 年度 2005
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