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首页> 外文期刊>Journal of Composites for Construction >Laboratory and Field Performance of Cellular Fiber-Reinforced Polymer Composite Bridge Deck Systems
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Laboratory and Field Performance of Cellular Fiber-Reinforced Polymer Composite Bridge Deck Systems

机译:蜂窝纤维增强聚合物复合桥面系统的实验室和现场性能

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This paper addresses the laboratory and field performance of multicellular fiber-reinforced polymer (FRP) composite bridge deck systems produced from adhesively bonded pultrusions. Two methods of deck contact loading were examined: a steel patch dimensioned according to the AASHTO Bridge Design Specifications, and a simulated tire patch constructed from an actual truck tire reinforced with silicon rubber. Under these conditions, deck stiffness, strength, and failure characteristics of the cellular FRP decks were examined. The simulated tire loading was shown to develop greater global deflections given the same static load. The failure mode is localized and dominated by transverse bending failure of the composites under the simulated tire loading as opposed to punching shear for the AASHTO recommended patch load. A field testing facility was designed and constructed in which FRP decks were installed, tested, and monitored to study the decks' in-service field performance. No significant loss of deck capacity was observed after more than one year of field service. However, it was shown that unsupported edges (or free edges) are undesirable due to transitional stiffness from approach to the unsupported deck edge.
机译:本文介绍了由粘合拉挤成型生产的多细胞纤维增强聚合物(FRP)复合桥面板系统的实验室和现场性能。检验了两种接触甲板载荷的方法:根据AASHTO桥梁设计规范确定尺寸的钢补片,以及用硅橡胶增强的卡车轮胎构造的模拟轮胎补片。在这些条件下,检查了蜂窝FRP甲板的甲板刚度,强度和破坏特性。在给定相同静态载荷的情况下,模拟轮胎载荷显示出更大的整体挠度。失效模式是局部的,主要受复合材料在模拟轮胎载荷下的横向弯曲破坏的影响,这与AASHTO建议的修补载荷下的冲剪相反。设计和建造了一个现场测试设施,在其中安装,测试和监视了FRP甲板,以研究甲板的在役现场性能。超过一年的现场服务后,没有发现甲板容量的重大损失。然而,已经表明,由于从接近到无支撑甲板边缘的过渡刚度,无支撑边缘(或自由边缘)是不希望的。

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