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Effects of wrap thickness and ply configuration on composite-confined concrete cylinders

机译:包裹层厚度和层构形对复合约束混凝土圆筒的影响

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摘要

The behavior of small-scale fiber reinforced polymer (FRP) wrapped concrete cylinders under uniaxial compressive loading was investigated through nonlinear finite element analysis. Two parameters were considered for this numerical study: the FRP wrap thickness, and the ply configuration. Performances of numerical models with "hoop-angle-hoop" and "angle-hoop-angle" ply configurations were compared, where the terms "hoop" and "angle" indicate that wraps were oriented at an angle of 0°and 45°in reference to circumferential direction, respectively. The finite element analysis results showed substantial increase in the axial compressive strength and ductility of the FRP confined concrete cylinders as compared to the unconfined ones. The cylinders with "hoop-angle-hoop" ply configuration in general exhibited higher axial stress and strain capacities as compared to the cylinders with the "angle-hoop-angle" ply configuration. The increase in wrap thickness also resulted in enhancement of axial strength and ductility of the concrete cylinders.
机译:通过非线性有限元分析,研究了小型纤维增强聚合物(FRP)包裹的混凝土圆柱在单轴压缩载荷下的行为。对于此数值研究,考虑了两个参数:FRP缠绕厚度和板层构型。比较了具有“箍角-箍-箍”和“角箍-箍-角”帘布层构型的数值模型的性能,其中术语“箍”和“角”表示卷材的取向为0°和45°分别参考圆周方向。有限元分析结果表明,FRP约束混凝土圆柱的轴向抗压强度和延展性与无约束圆柱相比显着提高。与具有“角-箍-角-角”帘布层结构的气缸相比,具有“角-箍-角-箍”帘布层结构的气缸通常表现出更高的轴向应力和应变能力。包裹厚度的增加还导致混凝土圆筒的轴向强度和延展性的增强。

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