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A new ultra long-spanning, combined steel formwork and reinforcement hybrid decking system using cold-formed components

机译:新型超长跨度,组合钢模板和加固混合甲板系统,使用冷弯型构件

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A new ultra long-spanning, combined steel formwork and reinforcement system designed to span up to 6 or 7 metres (20.7 or 23 feet) without propping has been under development for nearly a decade in Australia. The steel decking system includes a number of innovative features that make it adaptable to almost any type of building construction ranging from conventional, shallow one-way composite slabs in steel-frame buildings to deep two-way post-tensioned slabs in concrete-frame buildings. The hybrid system comprises a number of distinctly-different cold-formed steel components, which have efficient shapes and utilize different thicknesses, steel grades and coatings. The overall height of the main decking panel can vary from 90 to 260 mm (3.54 to 10.24 in) with an additional three intermediate sizes, despite the components being made from the same roll-forming equipment. The panel has a closed cellular section and is precambered to limit the final deflection under wet-concrete conditions. These panels can be interconnected for maximum spanning capability, or else different types of infill panels can be fitted between them to form composite slabs with a variety of cross-sectional shapes and features. Slabs of minimum overall depth or minimum weight can be constructed using the system. The cellular section can form a void in the concrete, or it can have holes pre-punched in its webs allowing it to be filled with concrete either partially or completely along its length. Prestressing cables and reinforcing bars can be fitted longitudinally and if need be transversely in the slab, even in the soffit region. Comprehensive sets of structural tests, some quite innovative, are currently being performed to thoroughly investigate the behaviour of the system for both the formwork and composite states. In particular, this involves developing a complete understanding of the complex behaviour of the main decking panel and its different cold-formed components under a variety of loading conditions that induce vertical and longitudinal shear, longitudinal and transverse bending, and torsion. The behaviour of the mechanical connection between the elements is being closely investigated experimentally, allowing the moment capacity of potentially critical cross-sections with partial shear connection to be accurately predicted and the spacing between connections optimised.
机译:一种新的超大跨度,组合式钢模板和加固系统设计了长达6或7米(20.7或23英尺)的无支撑结构,在澳大利亚已经开发了近十年。钢甲板系统具有许多创新功能,使其几乎适用于任何类型的建筑,从钢结构建筑物中的常规浅单向复合板到混凝土框架建筑物中的深双向后张拉板,不一而足。混合系统包括许多明显不同的冷弯钢部件,这些部件具有有效的形状并利用不同的厚度,钢种和涂层。主面板的总高度可以在90至260毫米(3.54至10.24英寸)之间变化,另外还有三个中间尺寸,尽管这些组件是由相同的辊压成型设备制成的。面板有一个封闭的蜂窝状部分,并进行了预加弧度以限制在湿混凝土条件下的最终挠度。这些面板可以互连以实现最大的扩展能力,或者可以在它们之间安装不同类型的填充面板以形成具有各种横截面形状和特征的复合板。可以使用该系统构造最小总深度或最小重量的平板。蜂窝状部分可以在混凝土中形成空隙,或者可以在其腹板上预先打孔,从而可以沿其长度部分或全部填充混凝土。预应力电缆和钢筋可以纵向安装,如果需要,也可以横向安装在平板中,甚至在拱腹区域。目前正在执行全面的结构测试集,其中一些创新性很强,以彻底调查系统在模板状态和复合状态下的行为。特别是,这涉及对主面板及其不同冷成型部件在各种载荷条件下的复杂行为有完整的了解,这些载荷条件会引起垂直和纵向剪切,纵向和横向弯曲以及扭转。元素之间的机械连接行为正在通过实验进行仔细研究,从而可以准确预测具有部分剪力连接的潜在关键横截面的弯矩承载力,并优化连接之间的间距。

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