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The analysis, design and optimisation of an advanced composite bridge deck

机译:先进复合桥甲板的分析,设计与优化

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The following were concluded from the experimental, numerical and theoretical work described in this paper: 1. To create a competitive, structurally efficient advanced composite deck profile, an optimised fibre architecture consisting of uni-directional and off-axis fibres was required. 2. FE analysis using shell elements with 'average' properties satisfactorily modelled the global behaviour of the ASSET profile and bridge deck. 3. To obtain detailed data on the local effects on the ASSET profile, a more complex, layered shell element model is applicable. 4. Deflection (a serviceability limit state) governs the design, as opposed to strength (an ultimate limit state). 5. The level of composite action between the longitudinal box beams and ASSET profile bridge deck was significant. With further research and data, use can be made of this composite action. 6. Advanced composite components provide a lightweight, durable solution for replacement bridge decks and new-build. In addition, the lightweight nature of the material allows for swift and easy installation.
机译:从本文中描述的实验,数值和理论工作中结束了以下内容:1。为了创建竞争,结构有效的先进复合甲板轮廓,需要由单向和轴外纤维组成的优化光纤架构。 2.使用“平均”属性的壳元素的FE分析令人满意地建模了资产配置文件和桥牌甲板的全局行为。 3.要在资产配置文件上获取本地效果的详细数据,适用更复杂的分层外壳元素模型。 4.偏转(可维护性限制状态)控制设计,而不是强度(终极限制状态)。 5.纵向箱梁和资产桥梁甲板之间的复合行动水平显着。通过进一步的研究和数据,可以使用这种复合动作。 6.先进的复合部件为更换桥式甲板和新建提供轻量级,耐用的解决方案。此外,材料的轻质性质允许Swift和易于安装。

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