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Design Optimization and Structural Performance Evaluation of Plate Girder Bridge Constructed Using a Turn-Over Process

机译:翻板法建造板梁桥的设计优化与结构性能评估。

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摘要

A recent trend in bridge construction has been the optimization of the cost-to-performance ratio. The most effective way to optimize the cost-to-performance ratio is to maximize the efficiency of the superstructure. Currently, many bridge engineers and designers favor two- or three- girder plate superstructures, due to their cost advantages. However, research on the performance enhancements of the I-type girder in two- or three- girder plate bridges is lacking. One of the most important performance improvement technologies for the I-type girder is the “preflex” method. In the preflex method, the specimen is inverted during the construction process to apply prestressed cambering to the specimen by using self-weight. However, a problem with the preflex construction method is difficulty with inverting the girder/plate system during the concrete curing process. Therefore, a new inverting system called Turn-Over (TO) wheel was proposed. Using TO wheels, wider variations to the I-type girder design can be achieved. Using this TO construction method, various cross sectional designs of girder plate systems can be considered due to its easiness in inverting the girder/plate system. In this study, the location of concrete confinement sections between the steel I-beams and concrete plates was varied in an I-girder cross-sectional design. Design parameters included effective height, flange thickness, flange width, confining concrete section width, etc. From this study, the optimum cross-sectional design of the I-girder/concrete plate system was achieved. Then, a single 20 m TO girder/plate system and two 20 m TO girder bridges were constructed and tested to evaluate their performance. From the test, failure behavior, load carrying capacity, crack pattern, etc., are obtained. The results are discussed in detail in this paper.
机译:桥梁建设的最新趋势是优化性价比。优化性价比的最有效方法是最大化上层建筑的效率。目前,由于桥梁的成本优势,许多桥梁工程师和设计师偏爱两梁或三梁的上部结构。但是,缺乏关于在两梁或三梁板桥中提高I型梁性能的研究。 I型梁最重要的性能改进技术之一是“ preflex”方法。在预弯法中,在施工过程中将样品倒转,以通过使用自重对样品施加预应力弯度。然而,预弯曲施工方法的问题在于在混凝土固化过程中难以使梁/板系统倒置。因此,提出了一种称为翻转(TO)轮的新型逆变系统。使用TO轮,可以实现I型大梁设计的更大变化。使用这种TO构造方法,由于其易于将梁/板系统倒置,因此可以考虑对梁板系统进行各种横截面设计。在这项研究中,在工字钢横截面设计中,钢工字钢和混凝土板之间的混凝土约束区域的位置发生了变化。设计参数包括有效高度,翼缘厚度,翼缘宽度,承压混凝土截面宽度等。通过这项研究,获得了工字钢/混凝土板系统的最佳截面设计。然后,构建并测试了一个20 m TO的大梁/板系统和两个20 m TO的大梁桥,以评估其性能。通过该测试,可以获得破坏行为,载荷承载能力,裂纹模式等。本文对结果进行了详细讨论。

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