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Influence of carbon fibre-reinforced polymers reinforcing on the seismic behaviour of timber-framed walls with fibre-plaster sheathing boards

机译:碳纤维增强聚合物加强纤维 - 石膏护套板木框架壁抗震性能的影响

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This paper provides an experimental analysis of timber-framed walls, coated with carbon fibre-reinforced polymers (CFRP) strengthened fibre-plaster boards. The presented wall elements are usually used as main bearing capacity elements in the construction of prefabricated multi-level timber residential buildings. Since the tensile strength of fibre-plaster sheathing boards (FPB) is approximately 10 times lower than the compressive strength, cracks in the tensile diagonal board's direction usually appear in tall buildings in heavy seismic areas. Therefore, in such cases, it is convenient to strengthen boards with high-strength materials in order to gain a higher capacity. It has been experimentally shown that the inclusion of CFRP diagonal strip reinforcement on the load-carrying capacity can be quite high and that it is maximized when the carbon strips are connected to the timber frame. On the other hand, the ductility itself was not significantly improved. Finally, a numerical study for FPB, which are glued to the timber frame and strengthened with CFRP strips, is preliminary presented for possible new technological solutions for treated wall elements in heavy seismic areas in the future.
机译:本文提供了木材框架壁的实验分析,涂有碳纤维增强聚合物(CFRP)强化纤维 - 石膏板。所提出的墙壁元件通常用作预制多级木材住宅建筑的施工中的主轴承容量元件。由于纤维 - 石膏护套板(FPB)的拉伸强度约为抗压强度的10倍,因此拉伸对角线板的方向上的裂缝通常出现在重型地震区域的高层建筑中。因此,在这种情况下,利用高强度材料加强板是方便的,以获得更高的容量。已经通过实验表明,将CFRP对角线带增强件上包含在承载能力上可以非常高,并且当碳条连接到木材框架时,它最大化。另一方面,延展性本身没有显着改善。最后,对木材框架粘合到木材框架并用CFRP条加强的FPB的数值研究是为了在未来的重型地震区域的处理墙体元件的可能新技术解决方案初步介绍。

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