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Laboratory Tests and Numerical Analyses of Prefabricated Timber-Concrete Composite Floors

机译:预制木材-混凝土复合地板的实验室测试和数值分析

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摘要

This paper describes tests on a novel composite floor system constructed by connecting prefabricated concrete slabs to timber joists. Seven types of shear connectors have been developed and tested: lag screws, either alone or combined with a notch cut from each timber joist; metal plates embedded in the concrete slab and either nailed or glued to the joists; dowels embedded in the concrete and glued to the timber; and toothed metal plates embedded in the concrete and pressed into the timber. Four-point bending tests to failure were performed on five, full-scale, 4.8 m long specimens connected with lag screws or metal plates nailed to the timber. Values of deflection and relative slip between the concrete slab and the timber obtained in these tests showed high correspondence with values obtained from a uniaxial finite element model developed for nonlinear analyses of composite beams. The model was also used to perform a numerical analysis to failure of composite beams with the other four connection systems that were developed but not tested on full-scale specimens. The outcomes of the experimental tests and numerical analyses show that the newly developed system can provide good structural performance, especially if connections with coach screws and notches in the timber are used. The economic advantages of prefabrication and the possibility to disassemble the structure and reuse the timber beams and concrete panels at the end of the service life make the proposed floor system very promising.
机译:本文介绍了一种通过将预制混凝土板连接到木托梁上构建的新型复合地板系统的测试。已经开发并测试了七种类型的剪切连接器:单独或与从每个木托梁上切下的缺口组合的方头螺钉;嵌在混凝土板上的金属板,用钉子或胶粘在托梁上;嵌在混凝土中并用胶粘到木材上的销钉;以及嵌在混凝土中并压入木材的带齿金属板。在五个全尺寸,4.8 m长的标本上进行了四点弯曲试验,这些标本用方头螺钉或钉在木材上的金属板连接。在这些测试中获得的混凝土板和木材之间的挠度和相对滑移值与从为复合梁的非线性分析开发的单轴有限元模型获得的值高度一致。该模型还用于与其他四个已开发但未在全尺寸样本上测试的连接系统进行复合梁破坏的数值分析。实验测试和数值分析的结果表明,新开发的系统可以提供良好的结构性能,尤其是如果使用木材中的教练螺钉和缺口连接。预制的经济优势以及在使用寿命结束时可以拆卸结构并重新使用木梁和混凝土板的可能性使拟议的地板系统非常有前途。

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