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Static and Fatigue Performance of a Square Tube and Plate Type Fiberglass Composite Bridge Deck System

机译:方管和板式玻璃纤维复合桥甲板系统的静态和疲劳性能

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An experimental composite bridge deck system assembled from glass/polyester pultruded components has been developed. This system utilizes square tubes running transverse to the traffic direction and flat cover plates bonded together with an epoxy transverse to the traffic direction and flat cover plates bonded together with an epoxy adhesive. A 14' x 4' section of the deck system integrally connected to the superstructure was tested to failure under a single patch loading. The deck was connected to steel girder supports spaced 4' apart using standard steel bolts. The results indicate a factor of safety of 3 on strength and a deflection to span ratio of L / 270 (without impact factor). Another section of the deck was fatigued to 3 million cycles under service loading, a load ratio of R = 0.1, and a nominal frequency of 3 Hz. Stiffness changes were monitored by periodically interrupting the run to perform a quasi-static test to service load. Results from these tests indicate no loss in modulus up to 3 million cycles. Following the fatigue testing, this section was also tested to failure; no loss in strength was observed. In both failure tests, a shearing "punch-through" failure mechanism was observed.
机译:已经开发出由玻璃/聚酯拉挤成分组装的实验性复合桥甲板系统。该系统利用横向于交通方向运行的方形管和与横向于交通方向的环氧树脂粘合在一起的扁平盖板和与环氧粘合剂一起结合在一起的扁平盖板。在单个贴剂加载下,测试了一体连接到上层结构的甲板系统的14'x 4'部分。甲板连接到钢梁,支撑在使用标准钢螺栓的间隔4'。结果表明,安全性为3强度和L / 270(不受影响因子)的横向的偏转。甲板的另一部分在服务负载下疲劳至300万个循环,r = 0.1的负载比,标称频率为3 hz。通过定期中断运行来监测刚度更改以对服务负载执行准静态测试。这些测试的结果表明模量的损失高达300万次循环。在疲劳测试之后,该部分也测试失败;没有观察到强度损失。在两个故障测试中,观察到剪切“穿透”故障机制。

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