Research Progress on Mechanical Properties and Frost Resistance of Rubber Recycled Concrete

Li Wang
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Abstract

The use of recycled waste tires and construction and demolition wastes as aggregates in concrete after treatment as required not only contributes to environmental sustainability, but also alleviates the growing demand for natural aggregates in concrete production. This paper focuses on the mechanical properties and frost resistance of rubberized recycled concrete, including the effects of rubber and recycled aggregates on the mechanical properties and frost resistance of concrete, as well as measures to improve the mechanical properties and frost resistance of rubberized recycled concrete. Existing studies show that the mechanical properties of concrete gradually decrease with the increase of rubber and recycled aggregate admixture. Due to the high number of defects in recycled aggregate, it has a negative effect on the frost resistance of concrete. Rubber particles have air-entraining properties and can be incorporated into concrete to enhance the frost resistance of concrete. The frost resistance of rubber recycled concrete can be improved by mixing appropriate amount of fiber, rubber or rubber modification treatment.
橡胶再生混凝土力学性能和抗冻性研究进展
将回收的废轮胎和建筑及拆除废料按要求处理后用作混凝土骨料,不仅有助于环境的可持续发展,还能缓解混凝土生产中对天然骨料日益增长的需求。本文主要研究橡胶再生混凝土的力学性能和抗冻性,包括橡胶和再生骨料对混凝土力学性能和抗冻性的影响,以及改善橡胶再生混凝土力学性能和抗冻性的措施。现有研究表明,混凝土的力学性能随着橡胶和再生骨料掺量的增加而逐渐降低。由于再生骨料中的缺陷较多,对混凝土的抗冻性有负面影响。橡胶颗粒具有引气性能,掺入混凝土中可增强混凝土的抗冻性。通过掺入适量的纤维、橡胶或橡胶改性处理剂,可提高橡胶再生混凝土的抗冻性。
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