Choi Hong-Beom, Park Jin-O, Kim Tae-Hyun, Lee Kyeo-Re
Construction Test & Assessment Center, Construction Test & Certification Department, Korea Institute of Civil Engineering and Building Technology, Goyang-si 10223, Korea.
Materials (Basel). 2021 Sep 19;14(18):5429. doi: 10.3390/ma14185429.
Recycled aggregate is essential to protect Jeju Island's natural environment, but waste concrete, including porous basalt, is a factor that lowers the quality of recycled aggregate. Therefore, an experiment was conducted to analyze the properties of concrete application of basalt-based recycled aggregate (B-RA) through quality improvement. The absorption of the B-RA ranged from 3-5%; restricting its absorption to less than 3% was challenging owing to its porosity and irregular shape. However, the increase in the solid volume percentage of the concrete when replacing 25 or 50% of fresh basalt aggregate with recycled basalt aggregate improved the mechanical performance of the concrete, especially at 25%, for which a compressive strength of 55.9 MPa and modulus of elasticity of 25.9 GPa exceeded those of concrete with fresh basalt aggregate. Moreover, increasing the replacement ratio of the fresh basalt with recycled aggregate reduced the slump and decreased the air content, consequently increasing the concrete drying shrinkage. However, the replacement of fresh basalt aggregate with recycled basalt aggregate unaltered the mechanical performance of the concrete. The results indicate that efficient use of recycled aggregates can yield superior performance to that of fresh basalt, irrespective of aggregate quality.
再生骨料对于保护济州岛的自然环境至关重要,但包括多孔玄武岩在内的废弃混凝土是降低再生骨料质量的一个因素。因此,开展了一项实验,通过质量改进来分析玄武岩基再生骨料(B-RA)在混凝土应用中的性能。B-RA的吸水率在3%-5%之间;由于其孔隙率和不规则形状,将其吸水率限制在3%以下具有挑战性。然而,当用再生玄武岩骨料替代25%或50%的新鲜玄武岩骨料时,混凝土固体体积百分比的增加改善了混凝土的力学性能,尤其是在替代率为25%时,其抗压强度为55.9MPa,弹性模量为25.9GPa,超过了含有新鲜玄武岩骨料的混凝土。此外,用再生骨料增加新鲜玄武岩的替代率会降低坍落度并减少含气量,从而增加混凝土干燥收缩。然而,用再生玄武岩骨料替代新鲜玄武岩骨料并未改变混凝土的力学性能。结果表明,无论骨料质量如何,高效利用再生骨料都能产生优于新鲜玄武岩的性能。