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Mode-I fatigue fracture of interface for fiber-reinforced polymer composite bonded to wood.

机译:木材粘合的纤维增强聚合物复合材料界面的I型疲劳断裂。

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摘要

For applications in civil infrastructure rehabilitation and new construction, wood is being reinforced with externally bonded laminates and fabrics of fiber-reinforced polymer (FRP) composites. The potential benefits of external reinforcement with bonded FRP composites have been demonstrated through several studies, and the field implementation of this technology has been successfully proven in numerous projects. However, there is a concern with the long-term performance of the interface bond, since an inadequate bond strength and integrity can render the reinforcement ineffective and lead to premature failure of the structure. The performance of FRP-wood bonded interfaces under static and environmental loads have been explored extensively at WVU, and as an extension of this effort, present study will examine, for the first time, the fatigue behavior of FRP-wood bonded interfaces.; The objective of this study is to develop a combined analytical and experimental fracture mechanics method to evaluate the fatigue behavior of phenolic FRP-red maple wood bonded interfaces under constant cyclic load conditions. The possible effect of loading variables (load ratio, waveform and frequency) on crack propagation rate is studied. The fatigue threshold is determined at the conclusion of this project, and the possible load ratio effect on fatigue threshold is investigated. The study of constant amplitude fatigue on bonded interfaces provides valuable insights into the mechanical processes by which fatigue failure can occur for actual structures or member under varying amplitude cyclic loading.; Fatigue failure of materials and bonded interfaces is a very complex topic, and yet a quite important issue in engineering practices. The application of linear elastic fracture mechanics concepts has resulted in some reasonable and useful explanations of fatigue failure. By modifying the original Paris Law equation, we can efficiently evaluate the fatigue behavior of FRP-wood interface bond-line, and this method can further be used for other similar studies of interface fracture of dissimilar materials. Thus, the findings of this study can eventually lead to the development of guidelines for hybrid material bonded interface design under constant cyclic loading conditions.
机译:对于在民用基础设施修复和新建建筑中的应用,使用外部粘合的层压板和纤维增强聚合物(FRP)复合材料增强木材的强度。通过多项研究证明了用粘结的FRP复合材料进行外部加固的潜在好处,并且该技术的现场实施已在众多项目中得到成功证明。但是,由于粘结强度和完整性不足会导致增强材料失效并导致结构过早破坏,因此人们担心界面粘结的长期性能。 WVU广泛研究了FRP-木材粘合界面在静态和环境载荷下的性能,作为这项工作的延伸,本研究将首次检查FRP-木材粘合界面的疲劳性能。这项研究的目的是开发一种结合分析和实验的断裂力学方法来评估酚醛玻璃钢-红枫木粘合界面在恒定循环载荷条件下的疲劳行为。研究了载荷变量(载荷比,波形和频率)对裂纹扩展速率的可能影响。在该项目结束时确定疲劳阈值,并研究可能的负载比对疲劳阈值的影响。对键合界面上的恒定振幅疲劳的研究提供了对机械过程的有价值的见解,通过这些机械过程,在变化的振幅循环载荷下,实际结构或构件可能发生疲劳破坏。材料和粘结界面的疲劳失效是一个非常复杂的话题,但在工程实践中却是一个非常重要的问题。线性弹性断裂力学概念的应用为疲劳破坏提供了一些合理而有用的解释。通过修改原始的巴黎定律方程,我们可以有效地评估FRP-木材界面粘结层的疲劳行为,该方法还可以用于其他类似材料的界面断裂研究。因此,这项研究的发现最终可以导致在恒定循环载荷条件下开发混合材料粘结界面设计的准则。

著录项

  • 作者

    Jia, Junhui.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 290 p.
  • 总页数 290
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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