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Aerodynamic load characteristics evaluation and tri-axial performance testing on fiber reinforced polymer connections and metal fasteners to promote hurricane damage mitigation.

机译:在纤维增强的聚合物连接件和金属紧固件上进行气动载荷特性评估和三轴性能测试,以促进减轻飓风的破坏。

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摘要

Damages during extreme wind events highlight the weaknesses of mechanical fasteners at the roof-to-wall connections in residential timber frame buildings. The allowable capacity of the metal fasteners is based on results of unidirectional component testing that do not simulate realistic tri-axial aerodynamic loading effects. The first objective of this research was to simulate hurricane effects and study hurricane-structure interaction at full-scale, facilitating better understanding of the combined impacts of wind, rain, and debris on inter-component connections at spatial and temporal scales. The second objective was to evaluate the performance of a non-intrusive roof-to-wall connection system using fiber reinforced polymer (FRP) materials and compare its load capacity to the capacity of an existing metal fastener under simulated aerodynamic loads.;The Wall of Wind (WoW) testing performed using FRP connections on a one-story gable-roof timber structure instrumented with a variety of sensors, was used to create a database on aerodynamic and aero-hydrodynamic loading on roof-to-wall connections tested under several parameters: angles of attack, wind-turbulence content, internal pressure conditions, with and without effects of rain. Based on the aerodynamic loading results obtained from WoW tests, sets of three force components (tri-axial mean loads) were combined into a series of resultant mean forces, which were used to test the FRP and metal connections in the structures laboratory up to failure. A new component testing system and test protocol were developed for testing fasteners under simulated triaxial loading as opposed to uni-axial loading. The tri-axial and uni-axial test results were compared for hurricane clips. Also, comparison was made between tri-axial load capacity of FRP and metal connections.;The research findings demonstrate that the FRP connection is a viable option for use in timber roof-to-wall connection system. Findings also confirm that current testing methods of mechanical fasteners tend to overestimate the actual load capacities of a connector. Additionally, the research also contributes to the development a new testing protocol for fasteners using tri-axial simultaneous loads based on the aerodynamic database obtained from the WoW testing.
机译:极端风灾期间的损坏凸显了住宅木结构建筑屋顶到墙壁连接处机械紧固件的弱点。金属紧固件的允许容量基于单向组件测试的结果,该测试未模拟实际的三轴空气动力学载荷效应。这项研究的第一个目标是模拟飓风的影响并全面研究飓风与结构的相互作用,以便更好地理解风,雨和碎屑对空间和时间尺度上的组件间连接的综合影响。第二个目标是评估使用纤维增强聚合物(FRP)材料的非侵入式屋顶到墙壁连接系统的性能,并将其承载能力与模拟气动载荷下现有金属紧固件的承载能力进行比较。使用FRP连接对装有各种传感器的一层山墙屋顶木结构进行的风(WoW)测试用于创建有关在数个参数下测试的屋顶到墙连接的空气动力学和空气流体动力载荷的数据库:迎角,湍流含量,内部压力条件,有无降雨。根据从WoW测试获得的空气动力学载荷结果,将三个力分量(三轴平均载荷)组合成一系列合力平均力,这些力用于测试结构实验室中的FRP和金属连接直至失效。开发了一种新的组件测试系统和测试协议,用于在模拟三轴负载(而不是单轴负载)下测试紧固件。比较了飓风夹的三轴和单轴测试结果。并且,比较了玻璃钢和金属连接的三轴承载能力。研究结果表明,玻璃钢连接是木材屋顶到墙连接系统的可行选择。研究结果还证实,目前对机械紧固件的测试方法往往会高估连接器的实际负载能力。此外,该研究还有助于开发新的基于三轴同时载荷的紧固件测试协议,该协议基于从WOW测试获得的空气动力学数据库。

著录项

  • 作者

    Canino-Vazquez, Ivan R.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Civil.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 291 p.
  • 总页数 291
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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