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The Fire Performance of Timber-Concrete Composite Floors

机译:木材-混凝土复合地板的防火性能

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摘要

Timber-concrete composite floors are a combination of timber joists and concrete topping, creating a flooring system to best utilise the advantages each material has to offer. Timber is used as the main tensile load bearing material due to its high strength-to-weight ratio, while concrete is used in floor slabs for its advantages in stiffness and acoustic separation. The strength of the system is dependent on the connection between timber and concrete, thus the connection must be strong, stiff, and economical to manufacture, to ensure that the flooring system is economically viable.This research investigated the fire performance and failure behaviour of timber-concrete composite floor systems currently under development in New Zealand, resulting in a calculation method for evaluating the fire resistance of these floors. Furnace tests were performed on two full-size floor specimens at the Building Research Association of New Zealand (BRANZ). Both floor specimens were 4 m long and 3 m wide, consisting of 65 mm concrete topping on plywood formwork, connected to double LVL floor joists. They were tested over a 4 m span, subjected to a nominal design live load of 2.5 kPa. Both floors were subjected to the ISO 834 test fire for over 60 minutes. Two separate connection types were tested; concrete notches cut into the timber beams with an incorporated shear key, and metal toothed plates pressed between the double beams. It was found that the reduction in section size of the timber beams due to the fire governed the failure mode of the floors. Due to the composite action achieved by the connections, the floor units were able to withstand prolonged exposure to the test fire, well exceeding one hour. The test data and visual observations aided in the development of a numerical model for evaluating the fire resistance of the floors. This was developed in a spreadsheet that is able to predict the expected fire resistance of these floors, taking into account some major time dependent variable properties that can have an effect on the overall performance. Load-span tables have been produced to give the estimated fire resistance of floors with differing floor dimensions, span lengths and applied loads.
机译:木材-混凝土复合地板是木托梁和混凝土饰面的结合,创建了一种地板系统,以充分利用每种材料必须提供的优势。木材因其高的重量比而被用作主要的抗拉承载材料,而混凝土由于其在刚度和隔音方面的优势而被用于楼板。该系统的强度取决于木材与混凝土之间的连接,因此该连接必须牢固,牢固且经济实惠,以确保地板系统在经济上可行。本研究调查了木材的防火性能和破坏行为新西兰目前正在开发的混凝土复合地板系统,导致了一种用于评估这些地板的耐火性的计算方法。在新西兰建筑研究协会(BRANZ)的两个全尺寸地板样本上进行了炉子测试。两个地板样本的长度均为4 m,宽度为3 m,由胶合板模板上的65 mm混凝土浇筑物组成,并连接到双LVL地板托梁。他们在4 m跨度上进行了测试,承受了2.5 kPa的标称设计活荷载。两层地板均经过ISO 834测试火焰超过60分钟。测试了两种独立的连接类型;用内置的剪切键将混凝土切口切成木梁,并在双梁之间压制金属齿板。发现由于火灾而导致的木梁截面尺寸的减小决定了地板的破坏模式。由于这些连接实现了复合作用,因此地板单元能够承受长时间暴露于测试火灾的影响,远远超过一小时。测试数据和视觉观察有助于开发用于评估地板耐火性的数值模型。这是在电子表格中开发的,该电子表格可以预测这些地板的预期耐火性,同时考虑到一些可能影响整体性能的主要时间相关变量属性。制作了载荷跨度表,以估算具有不同地板尺寸,跨度长度和施加载荷的地板的耐火性。

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    ONeill James William;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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