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Improving cracking behaviour with recycled steel fibres targeting specific applications - analysis according to fib Model Code 2010

机译:使用针对特定应用的再生钢纤维改善开裂行为-根据fib型号代码2010进行分析

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摘要

A new and appealing mean of improving the cracking behaviour of RC elements is the combined use of rebars and fibres. Previous research has shown that steel fibres recycled from end-of-life tyres are effective for this purpose. This paper presents and discusses practical applications that would benefit from the use of this technique. Firstly, two previously published examples of crack width calculation according to fib Model Code 2010 are expanded to the case under study. These practical applications show how a fibre-reinforced concrete (FRC) with a rather poor post-peak behaviour can exhibit large improvements in cracking behaviour while being economically attractive, too. The case of jointless structures is then considered, and the improvements in terms of maximum achievable length are presented and discussed. Finally, an analysis regarding the effectiveness of this solution as a function of the reinforcement ratio is discussed for both tension and bending. The main objective of this paper is to encourage the use of recycled steel fibres as an effective and sustainable mean of dealing with cracking behaviour for specific applications.
机译:提高钢筋混凝土构件开裂性能的一种新的吸引人的手段是钢筋和纤维的结合使用。先前的研究表明,从报废轮胎中回收的钢纤维可有效用于此目的。本文介绍并讨论了将从该技术的使用中受益的实际应用。首先,将两个先前发布的根据fib模型代码2010计算裂缝宽度的示例扩展到正在研究的案例中。这些实际应用表明,峰后性能相当差的纤维增强混凝土(FRC)如何在抗裂性能上大幅度提高,同时在经济上也具有吸引力。然后考虑无接缝结构的情况,并提出和讨论最大可达到长度的改进。最后,讨论了关于该解决方案的有效性与受拉比和弯曲率的关系,该分析与增强比有关。本文的主要目的是鼓励使用再生钢纤维作为处理特定应用中开裂行为的有效且可持续的手段。

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