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Experimental investigation of a prefabricated timber-concrete composite floor structure: Notched-slab approach

机译:预制木材混凝土复合地板结构的实验研究:缺口板方法

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This study presents the experimental performance of a high ductility and energy dissipation capacity connector named notched-slab fastener, which is developed for timber-concrete composite floor structures. Notched-slab fastener is unique because the notch was left in the concrete slab instead of a timber beam for the first time. In this way, cross-section loss in the timber beam is prevented. This is one of the most important benefits of the proposed connector. Experimental performance of the purposed connector was investigated with two test methods: push-out test and bending test. For comparison purposes, a notched fastener was also produced and tested as reference sample. Test results showed that notched-slab fastener has stable load carrying behavior under push-out loading with high-energy dissipation and no sudden strength degradation. In addition, notched slab design provided moment arm to the fastener and the damage is concentrated in the connector instead of concrete.
机译:本研究介绍了名为Notched-Slab紧固件的高延展性和能量耗散容量连接器的实验性能,这是为木材混凝土复合地板结构开发的。 缺口板紧固件是独一无二的,因为凹口留在混凝土板中,而不是首次留在木梁中。 以这种方式,防止了木梁中的横截面损耗。 这是所提出的连接器最重要的益处之一。 用两种测试方法研究了所用连接器的实验性能:推出测试和弯曲试验。 为了比较目的,还产生缺口紧固件并作为参考样品进行测试。 试验结果表明,缺口板紧固件具有稳定的负载承载行为,在推出负载下具有高耗能,无突发强度降解。 此外,缺口板设计提供了紧固件的力矩臂,并且损坏集中在连接器中而不是混凝土。

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