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首页> 外文期刊>Canadian Journal of Civil Engineering >Static and fatigue investigation of innovative second-generation steel-free bridge decks
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Static and fatigue investigation of innovative second-generation steel-free bridge decks

机译:创新的第二代无钢桥面板的静疲劳研究

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This paper outlines the static and fatigue behavior of cast-in-place, second-generation steel-free bridge decks. Although cast monolithically, the first bridge deck was divided into three segments. The first segment was reinforced with steel, according to conventional design. The other two segments were steel-free designs with internal crack-control grids, one consisting of carbon-fibre-reinforced polymer (CFRP) and the other consisting of glass-fibre-reinforced polymer (GFRP). This hybrid CFRP or GFRP and steel strap design is called the second generation of the steel-free concrete bridge deck. The hybrid system limits the width of any longitudinal cracks that develop and eliminates corrosion from within the deck slab. All three segments were tested under cyclic loads of 222 and 588 kN to investigate fatigue behavior. The second bridge deck comprises an internal panel and two cantilevers and also incorporates a complete civionics system. The static tests outlined in this paper are useful in the development of the fatigue theory, which was derived from the fatigue testing of the first bridge deck.
机译:本文概述了现浇的第二代无钢桥梁桥面的静力和疲劳性能。尽管是整体浇铸的,但第一座桥面板却被分为三个部分。根据常规设计,第一部分用钢加固。其他两个部分是无钢设计,带有内部裂缝控制网格,一个由碳纤维增强聚合物(CFRP)组成,另一个由玻璃纤维增​​强聚合物(GFRP)组成。这种CFRP或GFRP与钢带的混合设计被称为第二代无钢混凝土桥面板。混合系统限制了产生的纵向裂缝的宽度,并消除了楼板内部的腐蚀。所有这三个部分均在222 kN和588 kN的循环载荷下进行了测试,以研究疲劳行为。第二个桥面甲板包括一个内部面板和两个悬臂,并且还包含一个完整的Civionics系统。本文概述的静态测试可用于疲劳理论的发展,该理论是从第一座桥面板的疲劳测试中得出的。

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