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橡胶化地质聚合物混凝土的力学性能

Mechanical Properties of Rubberised Geopolymer Concrete.

作者信息

Hassan Md Kamrul, Ibrahim Mohammed Irfan, Shill Sukanta Kumer, Al-Deen Safat

机构信息

School of Engineering and Technology, University of New South Wales, Canberra, ACT 2600, Australia.

出版信息

Materials (Basel). 2024 Feb 23;17(5):1031. doi: 10.3390/ma17051031.

Abstract

The environmental impact of non-biodegradable rubber waste can be severe if they are buried in moist landfill soils or remain unused forever. This study deals with a sustainable approach for reusing discarded tires in construction materials. Replacing ordinary Portland cement (OPC) with an environmentally friendly geopolymer binder and integrating crumb rubber into pre-treated or non-treated geopolymer concrete as a partial replacement of natural aggregate is a great alternative to utilise tire waste and reduce CO emissions. Considering this, two sets of geopolymer concrete (GPC) mixes were manufactured, referred to as core mixes. Fine aggregates of the core geopolymer mixes were partially replaced with pre-treated and non-treated rubber crumbs to produce crumb rubber geopolymer concrete (CRGPC). The mechanical properties, such as compressive strength, stress-strain relationship, and elastic modulus of a rubberised geopolymer concrete of the reference GPC mix and the CRGPC were examined thoroughly to determine the performance of the products. Also, the mechanical properties of the CRGPC were compared with the existing material models. The result shows that the compressive strength and modulus of elasticity of CRGPC decrease with the increase of rubber content; for instance, a 33% reduction of the compressive strength is observed when 25% natural fine aggregate is replaced with crumb rubber. However, the strength and elasticity reduction can be minimised using pre-treated rubber particles. Based on the experimental results, stress-strain models for GPC and CRGPC are developed and proposed. The proposed models can accurately predict the properties of GPC and CRGPC.

摘要

如果不可生物降解的橡胶废料被埋在潮湿的垃圾填埋场土壤中或永远闲置不用,其对环境的影响可能会很严重。本研究探讨了一种在建筑材料中再利用废弃轮胎的可持续方法。用环保的地质聚合物粘结剂替代普通硅酸盐水泥(OPC),并将橡胶颗粒掺入经过预处理或未经过预处理的地质聚合物混凝土中,作为天然骨料的部分替代品,是利用轮胎废料和减少二氧化碳排放的一个很好的选择。考虑到这一点,制备了两组地质聚合物混凝土(GPC)混合物,称为核心混合物。核心地质聚合物混合物的细骨料部分被预处理和未处理的橡胶颗粒替代,以生产橡胶颗粒地质聚合物混凝土(CRGPC)。对参考GPC混合物和CRGPC的橡胶化地质聚合物混凝土的力学性能,如抗压强度、应力 - 应变关系和弹性模量进行了全面研究,以确定产品的性能。此外,还将CRGPC的力学性能与现有的材料模型进行了比较。结果表明,CRGPC的抗压强度和弹性模量随橡胶含量的增加而降低;例如,当用橡胶颗粒替代25%的天然细骨料时,抗压强度降低了33%。然而,使用预处理的橡胶颗粒可以将强度和弹性的降低最小化。基于实验结果,开发并提出了GPC和CRGPC的应力 - 应变模型。所提出的模型可以准确预测GPC和CRGPC的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c50/10934896/bde2140528b8/materials-17-01031-g001.jpg

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本文引用的文献

1
Experimental Study on the Mechanical Properties of Crumb Rubber Concrete after Elevated Temperature.
Polymers (Basel). 2023 Jul 20;15(14):3102. doi: 10.3390/polym15143102.
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Mechanical properties of concrete containing a high volume of tire-rubber particles.
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