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Evaluation of wearing surface systems for the orthotropic steel deck of the San Mateo Hayward Bridge.

机译:圣马特奥海沃德大桥正交异性钢桥面的磨损面系统评估。

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摘要

Performance under static and fatigue loads are evaluated for two different wearing surfaces for possible use on the steel orthotropic deck of San Mateo Hayward Bridge in the bay area of California. The two wearing surface materials studied include a 2" thick (nominal) premixed polyester concrete (PC) and a 2" thick (nominal) epoxy asphalt concrete (EAC). Flexural specimens that comprise a “steel-plate - wearing surface” composite simulating the surfacing system and geometry specific to the orthotropic steel deck of the San Mateo Hayward Bridge are used for the static and fatigue tests. Flexural tests were conducted at different dynamic loading frequencies (0.0167, 1.0, 2.5, 5.0, 7.5, 10.0 and 15.0 Hz) and at several different temperatures (20°F- 120°F) to study the temperature dependency and loading rate effects. Following these tests, the fatigue tests were conducted on replicate EAC and PC composite specimens at each of room (70°F), cold (32°F) and hot (120°F) temperatures.;Both wearing surface systems performed well at the cold temperatures, surviving 10 million fatigue cycles. Both wearing surfaces experienced cracking at the room and hot temperatures prior to 10 million cycles and these cracks did not result in wearing surface delamination or local debonding. The comparative study in this exhaustive laboratory investigation has shown that the 2" thick PC material could perform equally well as the original EAC wearing surface existing on San Mateo Hayward Bridge.
机译:对两种不同的磨损表面在静态和疲劳载荷下的性能进行了评估,可用于加利福尼亚湾区圣马特奥海沃德大桥的正交异性钢甲板上。研究的两种耐磨表面材料包括2“厚(名义)的预混合聚酯混凝土(PC)和2”厚(名义)的环氧沥青混凝土(EAC)。包含“钢板-磨损表面”复合材料的挠性试样用于模拟静压和疲劳测试,该复合材料模拟了表面布置系统和特定于圣马特奥海沃德大桥正交各向异性钢桥面的几何形状。在不同的动态加载频率(0.0167、1.0、2.5、5.0、7.5、10.0和15.0 Hz)和几个不同的温度(20°F-120°F)下进行了弯曲测试,以研究温度依赖性和加载速率的影响。经过这些测试之后,在室温(70°F),低温(32°F)和高温(120°F)的每个温度下对重复的EAC和PC复合材料样品进行了疲劳测试;两种磨损表面系统在低温,可以承受1000万次疲劳循环。在1000万次循环之前,两个磨损表面在室温和高温下都发生了开裂,并且这些开裂并没有导致磨损表面分层或局部剥离。在详尽的实验室研究中进行的比较研究表明,这种2英寸厚的PC材料的性能与San Mateo Hayward桥上原有的EAC耐磨表面相当。

著录项

  • 作者

    Chamarthi, Ravi Sankar.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Chemistry Polymer.;Engineering Civil.
  • 学位 M.S.
  • 年度 2012
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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