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Structural reliability of bridges realized with reinforced concretes containing electric arc furnace slag aggregates

机译:含电弧炉矿渣骨料的钢筋混凝土实现桥梁的结构可靠性

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The development of sustainable concretes is becoming an emerging issue in civil construction sector. The use of recycled aggregates is one way to fulfill sustainability goals in concrete industry, and among others, the use of Electric Arc Furnace (EAF) slag aggregates has been proven to be promising in the construction of sustainable reinforced concrete structures. Past research demonstrated a significant increase of mechanical properties of EAF concretes when compared with ones made with natural aggregates (NA); however, at the same time, their use implies also an increase of self-weight loads. The present contribution aims to investigate the reliability of structural systems realized with EAF concretes, with special emphasis to bridge structures. A wide dataset of 172 experimental tests for mechanical characterization of EAF concretes is built up and subsequently used to analyze the increment in concrete compressive strength and self-weight loads for three different EAF concrete classes (i.e. C1, C2, A). Two different bridge types, considered as case-study examples, are designed considering ordinary concrete mixes, and subsequently, a reliability analysis is run for each EAF concrete class in order to investigate the variation of structural safety margins related to the use of the sustainable EAF concretes in replacement to the ordinary NA concrete mix. Results show how structural safety of the analyzed bridges built up with sustainable EAF concretes is characterized by similar levels of structural reliability, in particular evidencing higher values for EAF concrete classes C1 and C2 with respect to those computed for NA concretes.
机译:可持续混凝土的发展正成为民用建筑领域的一个新兴问题。再生骨料的使用是实现混凝土行业可持续性目标的一种方法,其中,电弧炉(EAF)矿渣骨料的使用已被证明在可持续钢筋混凝土结构的建设中很有前途。过去的研究表明,与天然骨料(NA)相比,EAF混凝土的机械性能有了显着提高。然而,与此同时,它们的使用也意味着自重负载的增加。本文稿旨在研究用EAF混凝土实现的结构系统的可靠性,特别强调桥梁结构。建立了172个EAF混凝土力学特性试验测试的广泛数据集,随后用于分析三种不同EAF混凝土类别(即C1,C2,A)的混凝土抗压强度和自重载荷的增量。设计了两种不同的桥梁类型,作为案例研究的例子,考虑了普通混凝土的配合比,随后,针对每种EAF混凝土类别进行了可靠性分析,以研究与使用可持续EAF相关的结构安全裕度的变化混凝土代替普通的NA混凝土混合物。结果表明,采用可持续电弧炉混凝土建造的分析桥梁的结构安全性如何以相似的结构可靠性来表征,尤其是对于EAF混凝土等级C1和C2而言,其数值要比NA混凝土更高。

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