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Application of Composite Structures in Bridge Engineering. Problems of Construction Process and Strength Analysis

机译:复合结构在桥梁工程中的应用。施工过程中的问题及强度分析

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Steel-concrete composite structures have been used in bridge engineering from decades. This is due to rational utilisation of the strength properties of the two materials. At the same time, the reinforced concrete (or prestressed) deck slab is more favourable than the orthotropic steel plate used in steel bridges (higher mass, better vibration damping, longer life).The most commonly found in practice are composite girder bridges, particularly in highway bridges of small and medium spans, but the spans may reach over 200 m. In larger spans steel truss girders are applied. Bridge composite structures are also employed in cable-stayed bridge decks of the main girder spans of the order of 600, 800 m. The aim of the article is to present the cionstruction process and strength analysis problems concerning of this type of structures. Much attention is paid to the design and calculation of the shear connectors characteristic for the discussed objects. The authors focused mainly on the issues of single composite structures. The effect of assembly states on the stresses and strains in composite members are highlighted. A separate part of problems is devoted to the influence of rheological factors, i.e. concrete shrinkage and creep, as well as thermal factors on the stresses and strains and redistribution of internal forces.
机译:钢-混凝土复合结构已经在桥梁工程中使用了数十年。这是由于合理利用了两种材料的强度特性。同时,钢筋混凝土(或预应力)桥面板比钢桥中使用的正交异性钢板更有利(质量更高,振动阻尼更好,寿命更长)。实践中最常见的是复合梁桥,特别是在中小跨度的公路桥梁中,但跨度可能会超过200 m。大跨度使用钢桁架梁。在主梁跨度为600、800 m的斜拉桥桥面中也采用了桥梁复合结构。本文的目的是介绍与此类结构有关的施工过程和强度分析问题。对于所讨论对象的剪切连接器特性的设计和计算给予了很多关注。作者主要关注单一复合结构的问题。突出了装配状态对复合材料构件中应力和应变的影响。问题的另一部分专门讨论流变因素(即混凝土的收缩和蠕变)以及热因素对应力,应变和内力重新分布的影响。

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