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引用次数: 1

摘要

公路和铁路桥梁由于受到交通荷载的循环应力,因此必须对其进行疲劳评估。在大多数情况下,疲劳评估是根据欧洲规范3第1-9部分的名义应力进行的。为了应用这种名义应力方法,需要一个详细的目录,根据疲劳对所有相关的结构细节进行分类。不幸的是,现有的欧洲规范3第1-9部分的细节目录反映了20世纪90年代的技术水平,而忽略了对当今桥梁设计至关重要的结构细节。作为一个例子,推导了一个新的细节,即所谓的片层接头。此外,对于两种新型的创新钢桥,其中欧洲规范3第1-9部分尚未规定能够评估这些桥梁特征的规则,研究结果显示。这些是由厚壁圆形空心截面(CHS)制成的厚板槽桥和桁架桥。本文首先概述了欧洲规范的最新发展,更具体地讨论了根据en1993 -1-9进行的疲劳验证和疲劳试验数据的统计分析。在下面,提供了一些最近的研究项目的结果,这些项目旨在扩大欧洲规范3第1-9部分的应用范围。最后的结论,尽管有各种不同,但显示了一个共同的趋势。
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Fatigue of steel bridges
Highway and railway bridges are exposed to cyclic stressing due to traffic loads and, therefore, have to be evaluated concerning fatigue. In most cases the fatigue evaluation is performed according to Eurocode 3 Part 1-9 on nominal stresses. To apply this nominal stress approach a detail catalogue is required classifying all relevant constructional details in terms of fatigue. Unfortunately, the existing detail catalogue of Eurocode 3 Part 1-9 reflects the state of the art of the 1990s and misses constructional details being important for today’s bridge design. As an example the derivation of a new detail, the so-called lamellae joint, is presented. Furthermore, for two new types of innovative steel bridges, where Eurocode 3 Part 1-9 does not yet specify rules able to evaluate the characteristics of these bridges, research results are shown. These are the thick-plate trough bridges and truss bridges made of thick-walled circular hollow sections (CHS). The paper starts with an overview on the recent Eurocode developments, addressing more specific the fatigue verification according to EN 1993-1-9 and the statistical analysis of fatigue test data. In the following, information is given on the outcome of some recent research projects striving to extend the application range of Eurocode 3 Part 1-9. The final conclusion, in spite of all differences, show a common tendency.  
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