Experimental Investigation on Lightweight Composite Slab for Floating Structures

Jun Xiu Low, P. Shek, M. Tahir
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Abstract

Composite slabs are gaining wide acceptance in many countries as they lend themselves to faster, lighter and more economic in construction buildings. The strength of composite slabs system relies on the bonding action between the concrete and the steel deck, the shear connections and the cross-sectional resistance of steel beam. However, structural behaviour of composite slab is a complex phenomenon and therefore experimental study is often conducted to establish the actual strength of the structure under ultimate load capacity. The main objective of this study is to determine the structural behaviour of composite slab system until ultimate limit state. Total of two specimens are examined in order to obtain failure mechanism of the composite structure under full load capacity. A new design approach of composite slab for roofing system are proposed in this study to construct a composite slab system that can float in the water but not wash away by flood. The lightweight materials in this composite construction are cold-formed steel and foam concrete. The system focuses on the concept of Industrialised building system (IBS) to reduce the cost and construction time.
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浮动结构轻量组合楼板试验研究
复合板在许多国家得到了广泛的接受,因为它们在建筑中更快、更轻、更经济。组合板体系的强度主要取决于混凝土与钢板的粘结作用、剪力连接和钢梁的截面阻力。然而,叠合板的结构性能是一个复杂的现象,因此经常进行试验研究,以确定结构在极限承载能力下的实际强度。本研究的主要目的是确定组合板体系在极限状态前的结构性能。为了得到复合结构在全荷载作用下的破坏机理,共对两个试件进行了试验。本文提出了一种新的屋面系统复合楼板设计方法,构建一种既能浮在水中又不被洪水冲走的复合楼板系统。这种复合结构的轻质材料是冷弯型钢和泡沫混凝土。该系统着重于工业化建筑系统(IBS)的概念,以减少成本和施工时间。
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