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Experimental study of moment sharing in multi-joist timber-concrete composite floors from zero load up to failure

机译:从零负荷到破坏的多梁木塑复合地板弯矩分配试验研究

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The critical T-sections of multi-joist timber-concrete composite (TCC) floors must be designed at ultimate for support shear force and midspan moment, both of which are influenced by transverse sharing, but to different extents. Prior experimental work has investigated only support reaction sharing and only up to serviceability loads. The present experimental study builds on that status quo by quantifying also moment sharing, via strain gauge layouts at quarter-span and midspan, along with reaction sharing via load cells at the supports of a multi-joist TCC specimen, over the entire load range up to failure. Use of steel mesh connectors bonded into hardwood laminated veneer lumber joists, and near geometric resemblance to a real building TCC floor recently built in London, were novel features of the specimen. The results show that midspan moment and reaction sharing both vary nonlinearly with load, but in distinctly different ways from each other (with up to almost 20% difference observed between them), in the progression between the uncracked, cracked and connection ductility regimes. In this approach reliable assessment of moment sharing depends on the quality of the recorded strains. Accordingly, the strain data were shown to be of high quality by converting these data to internal stress resultants that were then found to satisfy longitudinal equilibrium. It is concluded that this strain gauge layout is useful for future work aimed at building a database of transverse sharing of moments in TCCs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:多托木木材混凝土复合材料(TCC)地板的关键T型截面必须设计为极限,以承受剪切力和中跨弯矩,这两个因素均受横向共享的影响,但程度不同。先前的实验工作仅调查了支持反应共享,并且仅调查了可使用性负载。本实验研究建立在这种现状的基础上,通过在四分之一跨度和中跨的应变仪布局中量化力矩共享,以及在整个负载范围内,通过多梁TCC试样的支撑处的称重传感器进行反应共享。失败。标本的新颖之处在于,使用钢网连接器结合到硬木层压单板木材托梁中,并且与最近在伦敦建造的真实TCC地板的几何形状相似。结果表明,在未破裂,破裂和连接延性体系之间的进展中,中跨力矩和反应份额均随载荷非线性变化,但彼此之间以明显不同的方式(彼此之间观察到近20%的差异)。在这种方法中,力矩共享的可靠评估取决于所记录应变的质量。相应地,通过将​​这些数据转换为内部应力结果,从而发现其满足纵向平衡,从而显示出了高质量的应变数据。结论是,这种应变仪的布局对于未来旨在建立TCC中矩的横向共享数据库的工作很有用。 (C)2019 Elsevier Ltd.保留所有权利。

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