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首页> 外文期刊>International journal of structural integrity >Strength model of FRP confined concrete columns based on analytical analysis and experimental test
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Strength model of FRP confined concrete columns based on analytical analysis and experimental test

机译:基于分析和试验的玻璃钢承压混凝土柱强度模型

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Purpose - Covering a fiber-reinforced concrete column (fiber reinforced plastic (FRP)) improves the performance of the column primarily. The purpose of this paper is to investigate the behavior of small FRP concrete columns that are subject to axial pressure loading, in order to study the effect of many parameters on the effectiveness of FRP couplings on circular and square concrete columns. Design/methodology/approach - These parameters include the shape of the browser (circular and square), whole core and cavity, square radius of square columns, concrete strength (low strength, normal and high), type of FRP (carbon and glass) and number of FRP (1-3) layers. The effective fibrillation failure strain was investigated and the effect of effective lateral occlusion pressure. Findings - The results of the test showed that the FRP-coated columns improved significantly the final conditions of both the circular and square samples compared to the unrestricted columns; however, improvement of square samples was not as prominent as improvement in circular samples. The results indicated that many parameters significantly affected the behavior of FRP-confined columns. A new model for predicting compressive force and the corresponding strain of FRP is presented. A good relationship is obtained between the proposed equations and the current experimental results. Originality/value - The average hoop strain in FRP wraps at rupture in FRP-confined concrete specimens can be much lower than that given by tensile coupon tests, meaning the theoretical assumption that the FRP-confined concrete cylinder ruptures when the FRP material tensile strength attained at its maximum is not suitable. Based on this observation, the effective peak strength and corresponding strain formula for FRP concrete confined columns must be based on the effective hoop rupture strain composite materials.
机译:目的-覆盖纤维增强混凝土柱(纤维增强塑料(FRP))主要可以提高柱的性能。本文的目的是研究承受轴向压力的小型FRP混凝土柱的性能,以研究许多参数对圆形和方形混凝土柱上FRP联轴器有效性的影响。设计/方法/方法-这些参数包括浏览器的形状(圆形和正方形),整个核心和空腔,方柱的平方半径,混凝土强度(低强度,普通和高),FRP的类型(碳和玻璃)和FRP(1-3)层数。研究了有效的颤动失败应变以及有效的横向咬合压力的影响。结果-测试结果表明,与无限制色谱柱相比,FRP涂层色谱柱显着改善了圆形和方形样品的最终条件;然而,方形样品的改善不如圆形样品的改善显着。结果表明,许多参数显着影响了FRP约束柱的行为。提出了预测FRP压缩力和相应应变的新模型。所提出的方程与当前的实验结果之间获得了良好的关系。独创性/价值-FRP约束混凝土试样断裂时FRP包裹的平均环向应变可能远低于拉伸试块测试所给出的平均应变,这意味着理论上的假设是,当FRP材料达到抗拉强度时,FRP约束混凝土圆柱体会破裂最大程度是不合适的。基于此观察,FRP混凝土约束柱的有效峰值强度和相应的应变公式必须基于有效的环向断裂应变复合材料。

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