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Strength models for fiber-reinforced plastic-confined concrete

机译:纤维增强塑料约束混凝土的强度模型

摘要

Many theoretical and experimental studies have been carried out on fiber-reinforced plastic (FRP)-confined circular concrete specimens, leading to a variety of models for predicting their axial compressive strengths. In this paper, a large test database assembled from an extensive survey of existing studies is presented and employed to assess available axial strength models for FRP-confined concrete. The test database is also deployed to examine the effect of various factors on the performance of FRP-confined concrete. This study shows that the confinement effectiveness of FRP based on reported test results depends little on unconfined concrete strength, size, and length-to-diameter ratio of test specimens and FRP type, but depends significantly on the accuracy of the reported tensile strength of the FRP. The inherent variation of unconfined concrete strength also causes some scatter of data at low confinement ratios. Using those test data with accurate FRP tensile strengths, only two of the nine existing models are found to give close predictions. A new simple model is finally proposed, based on the observation that a linear relationship exists between the confined concrete strength and the lateral confining pressure from the FRP.
机译:对纤维增强塑料(FRP)约束的圆形混凝土标本进行了许多理论和实验研究,从而建立了多种预测其轴向抗压强度的模型。在本文中,提出了一个由对现有研究进行的广泛调查构成的大型测试数据库,并将其用于评估FRP约束混凝土的可用轴向强度模型。还部署了测试数据库,以检查各种因素对FRP约束混凝土性能的影响。这项研究表明,根据报告的测试结果得出的FRP的约束效果几乎不取决于无侧限的混凝土强度,尺寸,试样的长径比和FRP类型,而很大程度上取决于所报道的FRP拉伸强度的准确性。玻璃钢。无约束混凝土强度的内在变化也会在低约束比率下导致数据分散。使用具有准确的FRP抗拉强度的那些测试数据,仅发现九个现有模型中的两个可以提供精确的预测。最终,基于观察到的约束混凝土强度与FRP的侧向约束压力之间存在线性关系,最终提出了一个新的简单模型。

著录项

  • 作者

    Lam L; Teng JG;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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