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Creep of recycled aggregate concrete: Experimental database and creep prediction model according to the fib Model Code 2010

机译:再生骨料混凝土的蠕变:根据fib模型代码2010的实验数据库和蠕变预测模型

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Recycled aggregate concrete (RAC) is a promising solution to addressing the sustainability issues raised by concrete production. However, its long-term properties are not fully characterised, especially creep behaviour, which is significant for the design of RAC structures. This study presents the results of a meta-analysis of previously published research on the creep behaviour of recycled aggregate concrete (RAC). The main goal of the study is to formulate an analytic expression for the creep coefficient of RAC as an extension of the fib Model Code 2010 creep prediction model. A database of experimental results on the creep of RAC and companion natural aggregate concrete (NAC), produced with the same effective water-cement ratio, was compiled from available literature and using strict selection criteria. The database is comprised of results from 10 studies, 46 creep curves (14 NAC and 32 RAC) and 233 data points. Compared with companion NAC, RAC displays a larger creep coefficient; the difference between RAC and NAC increases with increasing recycled concrete aggregate (RCA) content and decreases with increasing RAC compressive strength. When predicting the creep coefficient of RAC using the fib Model Code 2010's creep prediction model, relative to the model's performance on companion NAC, the creep coefficient of RAC is underestimated. A correction coefficient for the creep coefficient of RAC, xi(cc.RAC), is proposed for use with the fib Model Code 2010 model, dependent on RAC compressive strength and RCA replacement ratio. (C) 2018 Elsevier Ltd. All rights reserved.
机译:再生骨料混凝土(RAC)是解决混凝土生产引起的可持续性问题的有前途的解决方案。但是,它的长期特性尚未完全表征,尤其是蠕变行为,这对于RAC结构的设计很重要。这项研究提出了对再生骨料混凝土(RAC)蠕变行为先前发表的研究的荟萃分析的结果。这项研究的主要目的是为RAC的蠕变系数建立解析表达式,作为fib Model Code 2010蠕变预测模型的扩展。根据现有文献并使用严格的选择标准,建立了以相同有效水灰比生产的RAC和伴生天然骨料混凝土(NAC)蠕变实验结果的数据库。该数据库由10个研究的结果,46个蠕变曲线(14个NAC和32个RAC)和233个数据点组成。与同伴NAC相比,RAC显示出更大的蠕变系数。 RAC和NAC之间的差异随再生混凝土骨料(RCA)含量的增加而增加,而随RAC抗压强度的增加而减小。当使用fib Model Code 2010的蠕变预测模型预测RAC的蠕变系数时,相对于该模型在同伴NAC上的性能,RAC的蠕变系数被低估了。提议将RAC蠕变系数的校正系数xi(cc.RAC)与fib Model Code 2010模型一起使用,具体取决于RAC的抗压强度和RCA替代率。 (C)2018 Elsevier Ltd.保留所有权利。

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