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Modelling of fastener flexibility in CFRP strengthened timber-framed walls using modified γ-method

机译:使用改进的γ方法对CFRP加固木结构墙的紧固件柔性建模

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The paper provides semi-analytical modelling for prefabricated timber-framed walls using the modified γ-method. The walls are composed of a timber frame and gypsum plasterboards (GPB) which are flexibly connected to the timber frame. Because the tensile strength of the GPB is approximately 10-times lower than the compressive one, it is convenient to strengthen the boards in their tensile diagonal direction with carbon fibre-reinforced polymer (CFRP) strips, which are glued to the boards. Additionally, in the proposed mathematical model the classical beam theory is used taking into account a fasteners' flexibility in the timber frame - GPB connecting area, as well as crack appearing in the GPB and an influence of the inserted CFRP strips. Therefore the CFRP strip contribution is considered with a modified slip modulus which results in the fictive increased stiffness coefficient of the fasteners (γ_(yi)).
机译:本文使用改进的γ方法为预制木结构墙提供了半分析模型。墙壁由木构架和石膏石膏板(GPB)组成,它们可以灵活地连接到木构架。由于GPB的抗拉强度比抗压板低约10倍,因此可以使用粘合在板上的碳纤维增强聚合物(CFRP)条在板的拉伸对角线方向上增强板的强度。此外,在提出的数学模型中,考虑到紧固件在木构架中的柔韧性-GPB连接区域,以及GPB中出现的裂纹和插入的CFRP条的影响,使用了经典的梁理论。因此,考虑到CFRP条带贡献具有改进的滑动模量,从而导致紧固件的刚度系数(γ_(yi))的假想增加。

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