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Strength and serviceability of continuous composite slabs with deep trapezoidal steel decking and steel fibre reinforced concrete

机译:深梯形钢甲板与钢纤维混凝土连续复合板的强度和使用寿命

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An experimental study is described of the behaviour of short-term static load tests on two-span composite slabs fabricated with deep trapezoidal decks and steel fibre reinforced concrete. The aim was to study the effects of varying the steel fibre dosage on the cracking behaviour at the negative moment region, on the redistribution of moments, on the end slip between the decking and the concrete, and on the load carrying capacity of the slabs. In total, 8 two-span composite slab specimens were cast and moist cured for a period of 14 days and then loaded monotonically to failure at an age of at least 28 days. In addition to the steel decking, one of the specimens contained no reinforcing steel and no steel fibres, four of the specimens were reinforced only with steel fibres in the concrete (with nominal fibre contents of either 20, 30 and 40 kg/m~3). In the other three specimens, welded wire-mesh was included over the interior support, one with plain concrete and two with steel fibres in the concrete. The concrete properties, including compressive strength, tensile strength, modulus of elasticity and fracture energy, were measured on companion specimens for every test slab. Compared to the plain concrete composite slab and the slab containing SL62 welded wire mesh in the negative moment region over the interior support, the slabs containing steel fibres in excess of 20 kg/m~3 provided significant improvements in the slip load and the peak load. In addition, at service load levels the fibres provided crack control that was of similar effectiveness to that provided by the SL62 mesh.
机译:实验研究描述了用深梯形甲板和钢纤维增强混凝土制造的两跨复合板的短期静载荷试验性能。目的是研究改变钢纤维用量对负弯矩区域的开裂行为,弯矩的重新分布,铺面和混凝土之间的端滑以及板的承载能力的影响。总共浇铸了8个两跨复合板样品,并进行了14天的湿固化,然后在至少28天的年龄单调加载直至失效。除钢面板外,其中一个试样不含钢筋和钢纤维,其中四个试样仅用混凝土中的钢纤维(标称纤维含量为20、30和40 kg / m〜3)进行了加强。 )。在其他三个样本中,内部支架上还包括焊接网,一个是普通混凝土,另一个是混凝土中的钢纤维。在每块试验板的伴侣试样上测量了混凝土的性能,包括抗压强度,抗张强度,弹性模量和断裂能。与普通混凝土复合板和内部支撑负向力矩区域中包含SL62焊接丝网的平板相比,包含钢纤维超过20 kg / m〜3的平板在滑移载荷和峰值载荷方面均具有显着改善。此外,在工作负载水平下,纤维提供的裂缝控制效果与SL62网格提供的效果类似。

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