首页> 外文期刊>Construction and Building Materials >Design method for concrete columns strengthened with prestressed CFRP sheets
【24h】

Design method for concrete columns strengthened with prestressed CFRP sheets

机译:预应力碳纤维布加固混凝土柱的设计方法

获取原文
获取原文并翻译 | 示例
           

摘要

To improve upon the bearing capacities of short circular concrete columns strengthened with carbon fiber reinforced polymer (CFRP) sheets, this paper conducted experimental and numerical investigations to study the influencing factors on the compressive strength of CFRP-strengthened concrete columns, including the preloading of columns, the prestressing applied to CFRP sheets and the number of layers of CFRP sheets. The test columns consisted of an un-strengthened control column in addition to 10 pre loaded and non-preloaded columns strengthened in compression with one or two CFRP layers at prestress levels of either 300 MPa or 600 MPa. These columns were tested under an axial load. The failure modes, stress changes, bearing capacities and load-longitudinal displacement behaviors of the tested specimens were recorded and discussed. Furthermore, the finite element models (FEM) of 10 strengthened columns were developed and validated by comparing the load-longitudinal displacement curves obtained through finite element analysis (FEA) with those retrieved experimentally. A parametric study was subsequently performed using the validated FEM to investigate the effects of preloading, prestressing and the number of CFRP layers. The parametric study demonstrated that the strain lag caused by preloading was negatively related to the compressive strength of the CFRP-strengthened columns. In addition, prestressing could reduce the negative effects of preloading and could improve on the utilization of CFRP tensile strength. Furthermore, the yield load of CFRP-strengthened concrete columns was improved correlative with an increment of the number of layers and the prestress levels of the CFRP sheets. Conversely, whereas the ultimate load only improved with an increment of the number of layers of CFRP sheets, it had no obvious relationship with the prestress levels of the CFRP sheets and was instead related to their ultimate tensile strength. Based on the test data, the bearing capacity formulas for pre loaded and non-preloaded short circular concrete columns strengthened with prestressed CFRP sheets were proposed. Subsequently, the presented formulas were confirmed to be reasonably accurate by comparing the bearing capacities calculated numerically with those measured experimentally. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了提高碳纤维增强聚合物(CFRP)片加固圆形混凝土短柱的承载能力,本文进行了实验和数值研究,以研究影响CFRP增强混凝土柱抗压强度的因素,包括柱的预载。 ,预应力应用于CFRP板以及CFRP板的层数。除10个预加载和非预加载柱外,测试柱还包括一个未加强的控制柱,这些预加载柱和非预加载柱在300 MPa或600 MPa的预应力水平下通过一层或两层CFRP层进行了压缩加固。这些柱子在轴向载荷下进行了测试。记录并讨论了试样的破坏模式,应力变化,承载力和纵向载荷位移行为。此外,通过将通过有限元分析(FEA)获得的载荷-纵向位移曲线与通过实验获得的载荷-纵向位移曲线进行比较,开发并验证了10个加强柱的有限元模型(FEM)。随后使用经过验证的FEM进行参数研究,以研究预加载,预应力和CFRP层数的影响。参数研究表明,预紧力引起的应变滞后与CFRP加固柱的抗压强度负相关。另外,预应力可以减少预加载的负面影响,并可以提高CFRP拉伸强度的利用率。此外,CFRP加固混凝土柱的屈服荷载随着层数和CFRP板预应力水平的增加而提高。相反,虽然极限载荷仅随着CFRP板层数的增加而改善,但它与CFRP板的预应力水平没有明显关系,而是与其极限抗拉强度有关。根据试验数据,提出了用预应力CFRP片加固的预应力和非预应力圆形混凝土短柱的承载力公式。随后,通过将数值计算的承载能力与实验测得的承载能力进行比较,证实了所给出的公式是合理准确的。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号