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Tensile-Flexural Behaviour of Carbon-Fibre Reinforced Polymer (CFRP) Prestressing Tendons Subjected to Harped Profiles

机译:碳纤维增强聚合物(CFRP)的预应力筋受竖纹影响的拉伸-弯曲行为

摘要

External post-tensioning can provide an effective structural reinforcement system for the design of new concrete structures and for the strengthening of existing structures. In most cases, the structural effectiveness of the external tendon is increased by using a deviated or harped tendon profile. Carbon-fibre reinforced polymer (CFRP) reinforcement has emerged as an alternative to steel because it is non-corroding and fatigue resistant. However, its use in external post-tensioning has been limited due to a lack of knowledge regarding the tensile-flexural behaviour of the tendons under typical harped profiles. Limited test data has shown a reduction in the tendon capacity resulting from the combination of tensile and flexural stresses at the deviator locations. Existing models for predicting the capacity of a deviated tendon appear to be either unconservative or excessively conservative, limiting the application of CRFP tendons as external post-tensioning.This thesis describes an experimental research study of the tensile-flexural behaviour of post-tensioned CFRP tendons subjected to harped profiles. The program studied the effect of tendon size, deviator size and harping angle on thetendon behaviour. The tendons were loaded to failure in a specially designed tension frame that accommodated a range of harped configurations. Both the flexural and overall behaviour of the tendon were observed and recorded throughout the tests. The experimental data illustrates the effect of harping variables on the tendon response and capacity, and reveals the potential for different failure modes dependent on the combination of variables. A comparison of the testdata with existing analytical and design equations shows poor correlation betweenthe predicted and measured values. The research program clearly points out the inadequacies of the current analytical models and the need for an analytical model that more accurately predicts the tensile capacity of deviated CFRP tendons.A primary and an extended model were developed within the research program based on the material properties and geometry of the tendon and structural mechanics. The new models were found to perform very well and were used to develop design equations for the reduced tensile strength of harped CFRP tendons as well as failure mode control guidelines for the avoidance of undesirable failure modes.
机译:外部后张紧可以为新混凝土结构的设计和现有结构的加固提供有效的结构加固系统。在大多数情况下,通过使用偏斜或竖向的肌腱轮廓可以提高外部肌腱的结构有效性。碳纤维增强聚合物(CFRP)增强已经成为钢的替代品,因为它不腐蚀且耐疲劳。但是,由于缺乏有关典型竖向轮廓下的腱的拉伸-弯曲行为的知识,其在外部后张拉中的使用受到了限制。有限的测试数据表明,由于偏斜位置处的拉伸应力和弯曲应力的组合,导致腱能力降低。现有的预测偏斜肌腱容量的模型似乎不保守或过于保守,从而限制了CRFP肌腱在外部后张拉中的应用。本文描述了对后张CFRP肌腱的拉伸-弯曲行为进行实验研究。受到竖琴的影响。该程序研究了肌腱大小,偏斜大小和竖向角度对肌腱行为的影响。将筋腱加载到专门设计的拉力框架中,使其失效,该拉力框架可适应各种竖琴构造。在整个测试过程中,均观察并记录了肌腱的弯曲和整体行为。实验数据说明了竖起变量对肌腱反应和能力的影响,并揭示了取决于变量组合的不同破坏模式的可能性。测试数据与现有分析和设计方程的比较表明,预测值和测量值之间的相关性很差。该研究计划明确指出了当前分析模型的不足之处,并且需要一种能够更准确地预测CFRP变形筋的抗拉强度的分析模型。肌腱的几何形状和结构力学。发现新模型的性能非常好,并用于开发设计公式以减少竖立的CFRP筋的抗拉强度,以及用于避免不良破坏模式的破坏模式控制准则。

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    Quayle Trevor George;

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  • 年度 2005
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  • 正文语种 en
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