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首页> 外文期刊>Journal of Composites for Construction >Hybrid Confinement of Concrete by Fiber-Reinforced Polymer Sheets and Fiber Ropes under Cyclic Axial Compressive Loading
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Hybrid Confinement of Concrete by Fiber-Reinforced Polymer Sheets and Fiber Ropes under Cyclic Axial Compressive Loading

机译:循环轴向压缩载荷下纤维增强聚合物片和纤维绳对混凝土的混合约束

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摘要

This study looks into the mechanical behavior of concrete lightly confined by fiber-reinforced polymer (FRP) sheets made with glass fibers and by polypropylene fiber ropes (PPFRs). PPFRs have ultrahigh deformation at failure. The hybrid confining technique suggests applying the fiber rope on already cured FRP jackets as external unbonded reinforcement. No impregnation or gluing resins are necessary for the fiber rope (FR) application. The technique uses mechanical anchorage for the ends of the FR. Sixteen confined standard concrete cylinders, in two series and with different concrete qualities, were tested under repeated axial compression cycles of increasing displacement. They included confinement of one layer of glass FRP and FR confinement in different volumetric ratios. The investigation also compares columns confined only by glass fiber-reinforced polymer (GFRP) jackets or only by PPFR wrapping. The elaboration evaluates the axial stress versus axial and lateral strain behavior of the columns. Proper design of the hybrid confinement utilizes further the confining effects of the FRP sheet up to its multiple fracture. Then, FR ensures increased axial strain (higher than 5%) and dissipated energy of concrete. The load presents a temporary yet controlled loss, followed by an increase for further loading.
机译:这项研究探讨了由玻璃纤维制成的纤维增强聚合物(FRP)板和聚丙烯纤维绳(PPFR)轻微限制的混凝土的机械性能。 PPFR破坏时变形极高。混合约束技术建议将纤维绳应用到已固化的FRP护套上,作为外部无粘结增强材料。纤维绳(FR)的应用无需浸渍或粘合树脂。该技术在FR的末端使用机械锚固。在重复增加的位移的轴向压缩循环下,测试了十六个密闭的标准混凝土圆柱体(两个系列,具有不同的混凝土质量)。它们包括以不同的体积比限制一层玻璃纤维和FR的限制。该研究还比较了仅由玻璃纤维增​​强的聚合物(GFRP)夹套或仅由PPFR包裹的色谱柱。细化评估了圆柱的轴向应力与轴向和横向应变行为。混合隔离的正确设计可以进一步利用FRP片的多重破裂的限制作用。然后,FR确保增加的轴向应变(高于5%)和耗散的混凝土能量。负载呈现暂时但可控制的损耗,随后增加以进一步负载。

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