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用于钢筋混凝土结构抗弯加固的含高比例废旧轮胎材料的混凝土

Concrete with a High Content of End-of-Life Tire Materials for Flexural Strengthening of Reinforced Concrete Structures.

作者信息

Polydorou Thomaida, Kyriakides Nicholas, Lampropoulos Andreas, Neocleous Kyriacos, Votsis Renos, Tsioulou Ourania, Pilakoutas Kypros, Hadjimitsis Diofantos G

机构信息

Department of Civil Engineering and Geomatics, Cyprus University of Technology, Limassol 3036, Cyprus.

ERATOSTHENES Centre of Excellence, Limassol 3012, Cyprus.

出版信息

Materials (Basel). 2022 Sep 5;15(17):6150. doi: 10.3390/ma15176150.

Abstract

This research investigates the performance of Steel Fiber Reinforced Rubberized Concrete (SFRRC) that incorporates high volumes of End-of-life tire materials, (i.e., both rubber particles and recycled tire steel fibers) in strengthening existing reinforced concrete (RC) beams. The mechanical and durability properties were determined for an environmentally friendly SFRRC mixture that incorporates a large volume (60% by volume aggregate replacement) of rubber particles and is solely reinforced by recycled tire steel fibers. The material was assessed experimentally under flexural, compressive and impact loading, and thus results led to the development of a numerical model using the Finite Element Method. Furthermore, a numerical study on full-scale structural members was conducted, focusing on conventional RC beams strengthened with SFRRC layers. This research presents the first study where SFRRC is examined for structural strengthening of existing RC beams, aiming to enable the use of such novel materials in structural applications. The results were compared to respective results of beams strengthened with conventional RC layers. The study reveals that incorporation of End-of-life tire materials in concrete not only serves the purpose of recycling End-of-life tire products, but can also contribute to unique properties such as energy dissipation not attained by conventional concrete and therefore leading to superior performance as flexural strengthening material. It was found that by incorporating 60% by volume rubber particles in combination with recycled steel fibers, it increased the damping ratio of concrete by 75.4%. Furthermore, SFRRC was proven effective in enhancing the energy dissipation of existing structural members.

摘要

本研究调查了掺入大量废旧轮胎材料(即橡胶颗粒和再生轮胎钢纤维)的钢纤维增强橡胶混凝土(SFRRC)在加固现有钢筋混凝土(RC)梁方面的性能。对一种环保型SFRRC混合料的力学性能和耐久性进行了测定,该混合料掺入了大量(占集料体积的60%)橡胶颗粒,且仅由再生轮胎钢纤维增强。通过对该材料在弯曲、压缩和冲击荷载作用下进行实验评估,结果促使使用有限元法开发了一个数值模型。此外,还对全尺寸结构构件进行了数值研究,重点关注用SFRRC层加固的传统RC梁。本研究首次对SFRRC用于现有RC梁的结构加固进行了研究,旨在使这种新型材料能够应用于结构领域。将结果与用传统RC层加固的梁的相应结果进行了比较。研究表明,在混凝土中掺入废旧轮胎材料不仅有助于废旧轮胎产品的回收利用,还能赋予混凝土一些独特性能,如传统混凝土所不具备的能量耗散能力,从而使其作为抗弯加固材料具有卓越性能。研究发现,掺入60%体积的橡胶颗粒并结合再生钢纤维,可使混凝土的阻尼比提高75.4%。此外,SFRRC被证明能有效提高现有结构构件的能量耗散能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9985/9457986/912139bb083e/materials-15-06150-g001.jpg

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