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首页> 外文期刊>Advances in Structural Engineering >Fatigue strength application of fracture mechanics to orthotropic steel decks
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Fatigue strength application of fracture mechanics to orthotropic steel decks

机译:断裂力学在正交异性钢甲板上的疲劳强度应用

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摘要

Modern fatigue design in civil constructions is mainly limited to the use of S-N curves and the hypothesis of Palmgren-Miner, as described in design standards and Eurocode. While using the latter, the fatigue evaluation may be conservative, since the outdated S-N curves are compared to current construction technology and weld properties. This shortcoming has a direct influence on the current design of orthotropic steel decks. To increase the understanding of the fatigue behaviour, an improved analysing tool using linear elastic fracture mechanics and extended finite element model is proposed. As a result, thickness effects are evaluated for both the longitudinal stiffener and the deck plate. These calculations indicated that increasing the thickness of the deck plate and the longitudinal stiffener increases the fatigue life of the structure. However, the thickness should be limited to maintain the advantage of a light-weighted construction.
机译:如设计标准和欧洲规范中所述,民用建筑中的现代疲劳设计主要限于使用S-N曲线和Palmgren-Miner假设。在使用后者时,疲劳评估可能是保守的,因为将过时的S-N曲线与当前的施工技术和焊接性能进行了比较。该缺点直接影响了正交异性钢甲板的当前设计。为了增加对疲劳行为的理解,提出了一种使用线性弹性断裂力学和扩展有限元模型的改进分析工具。结果,对纵向加强件和盖板的厚度影响进行了评估。这些计算表明,增加盖板和纵向加劲肋的厚度会增加结构的疲劳寿命。但是,应限制厚度以保持轻质结构的优点。

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