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- W2188226384 abstract "The current economic situation, characterized by high requirements on cost as well as resource efficiency, puts strong pressure on the fabricators of infrastructure projects, e.g. bridges. These arising needs on efficiency and lower cost in fabrication, while simultaneously maintaining the safety and structural design requirements of bridges, are more than challenging. But in addition to these financial aspects, also life-cycle cost, sustainability and environmental impact are progressively becoming a major issue in the building sector and make great demands on the constructor, fabricator as well as on material. On the material side, the high recyclability of steel fits very well to such sustainable constructions and therefore it leads to steel being the favourable solution in sustainable bridge building. The steel making industry is continuously trying to support the fabricator following these economic and ecologic challenges by developing more and more sophisticated steel. This leads on one hand to improved material as such and additionally cuts down on the cost and energy consumption of the subsequent processing steps in fabrication. Thermomechanically rolled higher strength steels serve as a good example for such an economical consumption of raw material. With its excellent weldability and outstanding toughness properties, the application of such higher strength steel grades can significantly reduce the statically claimed plate thickness in a certain construction aspect. Beside reduced general material costs this concurrently causes reduced transport energy as well as transport cost. The presented report will show some of these modern steel developments and its bridge applications (e.g. thermomechanically rolled steels, high strength steels, longitudinally profiled plates, weathering steels or thick plates (thickness t > 80 mm)) as well as it will demonstrate the prospects these modern steels offer in reducing the cost of a steel construction and simultaneously its environmental impact, mainly by lowering the energy consumption of its fabrication." @default.
- W2188226384 created "2016-06-24" @default.
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- W2188226384 date "2014-01-01" @default.
- W2188226384 modified "2023-09-27" @default.
- W2188226384 title "HOW MODERN STEEL DEVELOPMENTS CAN HELP OPTIMIZING COST AND SUSTAINABILITY OF BRIDGE CONSTRUCTIONS" @default.
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