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Comparitive study on the flexural behaviour of glulam built-up beams based on ambient and standard fire tests

机译:基于环境和标准火灾试验的胶水内置光束弯曲行为的比较研究

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摘要

The experimental study presented in this paper proposes a type of glulam beam with a hollow cross-section that can further optimise solid glulam beams. The study investigated the structural behaviour of glulam built-up box section beams under four-point flexural bending at both ambient and elevated temperatures. A total of eleven 3100-mm long simply supported beam assemblies were experimentally examined: seven beams were tested at ambient temperature; and four beams were subjected to CAN/ULC-S101 standard fire. Five of the seven beam assemblies tested at ambient temperature were fabricated using self-tapping screws, while the other two assemblies were built using industrial polyurethane adhesive. Each built-up beam assembly was made of four glulam panels, all of 44 mm thickness except the bottom flange panel which had 86 mm thickness. Through ambient testing, it was concluded that when the spacing of the screws connecting the top and bottom flange panels of the built-up section to its web panels was decreased from 800 to 200 mm, the flexural resistance of the beam assembly was increased by about 45%. Whereas further reduction of the spacing from 200 to 100 mm for the screws connecting the bottom flange panel to the web panels over a distance equals to one-third of the span length of the beam from both supports, where shear stresses are maximum, increased the flexural resistance of the beam additionally by 10%. However, the experimental results of the glued beam assemblies show significantly high flexural strength that was almost equal to the calculated strength of an equivalent hollow-section glulam beam. In a subsequent phase, only the strongest beam assemblies (two screwed and two glued) were tested under the effect of standard fire while subjected to monotonic loading that caused a bending moment that is equivalent to the beam full resistance moment calculated for ambient condition. Fire tests' results show that both screwed and glued glulam built-up box-section beams can sustain the applied design load under standard fire exposure for more than 30 min without any fire protection.
机译:本文提出的实验研究提出了一种具有中空横截面的胶石束,其可以进一步优化固体胶水束。该研究调查了胶石内置箱截面梁在环境和升高的温度下的四点弯曲弯曲下的结构行为。实验检查了总共11100毫米长的支撑梁组件:在环境温度下测试七梁;和四个光束进行CAN / ULC-S101标准火灾。在环境温度下测试的七个梁组件中的五种使用自攻螺钉制造,而另外两个组件采用工业聚氨酯粘合剂制造。每个内置光束组件由四个胶水板制成,除底部法兰面板外,厚度为44毫米,厚度为86毫米。通过环境测试,得出结论是,当连接到其网板上的顶部和底部法兰面板的螺钉的间距从800〜200mm降低时,梁组件的抗弯曲电阻由约45%。虽然将间距从200至100mm的螺钉进一步减小到将底部法兰面板连接到网板的距离等于来自两个支架的光束的跨度长度的三分之一,其中剪切应力最大,增加光束的弯曲阻力另外10%。然而,胶合梁组件的实验结果显示出显着高的弯曲强度,其几乎等于相同的中空部分胶石束的计算强度。在随后的阶段中,在标准火灾的效果下仅测试最强的光束组件(两个拧紧和两个胶合),同时进行单调负载,导致弯曲力矩等同于为环境条件计算的束充分电阻时刻。消防试验结果表明,螺纹和胶合的胶石内置箱段梁可以在标准火灾暴露下维持应用的设计负载超过30分钟,而无需任何防火。

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