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Structural behaviour of a prefabricated composite wall system made from rigid polyurethane foam and Magnesium Oxide board

机译:由硬质聚氨酯泡沫和氧化镁板制成的预制复合墙系统的结构性能

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摘要

This paper presents the structural behaviour of an emerging prefabricated wall system made up of glass fibre reinforced rigid polyurethane foam (PUF) and Magnesium Oxide (MgO) board. Full-scale wall specimens were prepared and tested under transverse bending, compression and shear. The results of the experimental investigation showed that the behaviour of the composite walls is governed by the strength of the MgO board. A complete interaction between the rigid PUF and MgO board was achieved using epoxy adhesives. In compression, a 17% lower failure load was measured for wall specimen with the MgO board attached to the wall frame with a 10 mm offset from the bottom plate than the wall with the sheathing flushed to the bottom plate. Under in-plane shear test, the single and two-panel composite wall systems exhibited similar shear stiffness and strength. The provision of tie-down anchor bolts increased the shear strength by almost 15% but has no significant contribution to the shear stiffness. Finally, the results confirmed the potential of this composite wall system in residential modular construction.
机译:本文介绍了由玻璃纤维增​​强的硬质聚氨酯泡沫(PUF)和氧化镁(MgO)板组成的新兴预制墙系统的结构性能。制备了全尺寸的墙试样,并在横向弯曲,压缩和剪切下进行了测试。实验研究的结果表明,复合墙体的行为受MgO板强度的支配。使用环氧粘合剂可以在硬质PUF和MgO板之间实现完全的相互作用。在压缩状态下,将MgO板固定在墙架上,墙体距底板偏移10毫米,而墙体冲刷到底板上时,墙体的破坏载荷降低了17%。在面内剪切试验下,单板和两板复合墙系统显示出相似的剪切刚度和强度。系紧地脚螺栓的提供使剪切强度提高了近15%,但对剪切刚度没有显着贡献。最后,结果证实了这种复合墙系统在住宅模块化建筑中的潜力。

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