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An efficient and novel strategy for control of cracking, creep and shrinkage effects in steel-concrete composite beams

机译:控制钢 - 混凝土复合梁的开裂,蠕变和收缩效应的有效和新的策略

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摘要

Steel-concrete composition is widely used in the construction due to efficient utilization of materials. The service load behavior of composite structures is significantly affected by cracking, creep and shrinkage effects in concrete. In order to control these effects in concrete slab, an efficient and novel strategy has been proposed by use of fiber reinforced concrete near interior supports of a continuous beam. Numerical study is carried out for the control of cracking, creep and shrinkage effects in composite beams subjected to service load. A five span continuous composite beam has been analyzed for different lengths of fiber reinforced concrete near the interior supports. For this purpose, the hybrid analytical-numerical procedure, developed by the authors, for service load analysis of composite structures has been further improved and generalized to make it applicable for composite beams having spans with different material properties along the length. It is shown that by providing fiber reinforced concrete even in small length near the supports; there can be a significant reduction in cracking as well as in deflections. It is also observed that the benefits achieved by providing fiber reinforced concrete over entire span are not significantly more as compared to the use of fiber reinforced concrete in certain length of beam near the interior supports in continuous composite beams.
机译:由于高效利用材料,钢混凝土组合物广泛用于施工。复合结构的服务负荷行为受混凝土中的开裂,蠕变和收缩效应的显着影响。为了控制混凝土板中的这些效果,通过在连续梁的内部支撑附近使用纤维增强混凝土提出了一种有效和新的策略。进行数值研究,用于控制经受服务负荷的复合梁中的裂化,蠕变和收缩效应。已经分析了五个跨度连续复合梁,用于在内部支撑件附近的不同长度的纤维钢筋混凝土。为此目的,由作者开发的混合分析 - 数值程序,用于复合结构的服务负荷分析并推广,以使其适用于沿着长度具有不同材料特性的跨越具有不同材料特性的复合梁。结果表明,即使在靠近支撑件的小长度的小长度上也提供纤维增强混凝土;裂缝和偏转可能会显着降低。还观察到,与在连续复合梁附近的一定长度的光束中使用纤维增强混凝土,通过在内部支撑梁附近的一定长度的梁中使用纤维增强混凝土,通过在整个横梁上的使用的比较,通过提供纤维增强混凝土所实现的益处并不明显。

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