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A Study on the Quality Control of Concrete during the Slip Form Erection of Pylon

机译:塔架滑模安装过程中混凝土质量控制的研究

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The construction market of super-high-rise buildings and long-span bridges has recognized unprecedented expansion owing to the development of high performance and high strength materials and the advances achieved in the design and construction technologies. In parallel to the lengthening and enlargement in scale of the structures, securing quality control technology of concrete while reducing the construction duration using improved construction methods emerges as a critical problem for concrete structures. In the erection of concrete pylons, slip forming represents the latest method offering the advantage of reducing drastically the construction duration compared to other methods by adopting automated slip-up of the forms and enabling 24-hour continuous placing. This study determines the slip-up time of the slip form by evaluating the early strength through the surface wave velocity and develops lightweight GFRP form in order to secure the quality of concrete during the slip form erection of pylons. A slip form system is fabricated and mockup test is conducted to verify the performances of the developed techniques through the construction of 10 m-high pylon with a hollow section.
机译:由于高性能和高强度材料的发展以及设计和建筑技术的进步,超高层建筑和大跨度桥梁的建筑市场已经认识到前所未有的扩展。与结构的尺寸的增加和扩大同时,使用改进的施工方法来确保混凝土的质量控制技术同时减少施工时间成为混凝土结构的关键问题。在混凝土塔架的安装中,滑移成型代表了最新的方法,与其他方法相比,滑移成型通过采用模板的自动滑移并可以24小时连续放置而大大减少了施工时间。这项研究通过评估表面波速度的早期强度来确定滑模的滑脱时间,并开发出轻质的GFRP形式,以确保在吊塔的滑模安装过程中确保混凝土的质量。制作了滑模系统,并进行了模型测试,以通过建造带有空心截面的10 m高的塔架来验证所开发技术的性能。

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