回收废医用玻璃作为细骨料用于普通强度混凝土的可能性

Huynh Thi Hoang Dung, H. V. Hiep, H. T. Phuoc
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引用次数: 2

摘要

研究了回收废医用玻璃骨料作为细骨料用于生产中强混凝土的可能性。研究了RGA作为破碎砂在0 ~ 100%(间隔20%)的不同体积水平(按体积)替换对混凝土工程性能和耐久性的影响。结果表明,用RGA替代CS对新拌混凝土的和易性和单位质量影响不显著。此外,用RGA代替20 ~ 60%的CS,在抗压强度、干燥收缩率和超声脉冲速度(UPV)方面都有显著的改善。在这些替代水平下,干密度值增加,吸水值也减少。然而,用高达80%和100%的RGA代替CS会导致混凝土的抗压强度、干密度和UPV降低,吸水率和干收缩率增加。本研究还发现上述混凝土性能之间存在密切的相关性。所有混凝土试样抗压强度均高于目标强度(≥25 MPa), UPV值在4100 m/s以上,均为优质混凝土。试验结果表明,用RGA细骨料部分或全部替代CS生产标准强度混凝土的可能性很大。这也为建筑材料中废弃医用玻璃的回收利用提供了一个环保的解决方案,实现可持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Possibility of using recycled waste medical-glass as fine aggregate in normal-strength concrete
The possibility of using recycled waste medical-glass aggregate (RGA) as a fine aggregate in the production of normal-strength concrete was investigated in this study. The influence of RGA as crushed sand (CS) replacement at different levels (by volume) of 0 – 100% (an interval of 20%) on the engineering properties and durability of concrete was also studied. Results show that the replacement of CS by RGA insignificantly affected the workability and unit weight of fresh concrete mixtures. Besides, using RGA to replace 20 – 60% CS was beneficial in terms of compressive strength, drying shrinkage, and ultrasonic pulse velocity (UPV). At these replacement levels, the dry density values were found to increase and the water absorption values were reduced as well. However, replacing CS with RGA up to 80% and 100% caused a reduction in compressive strength, dry density, and UPV and an increase in water absorption and drying shrinkage of concretes. Closed correlations among the above-mentioned concrete properties were also found in this study. All of the concrete samples obtained compressive strength values higher than the target strength (≥ 25 MPa) and they were classified as very good quality concretes with UPV values of above 4100 m/s. The experimental results demonstrate a high possibility of producing normal-strength concrete with a fine aggregate of RGA as either partially or fully replacement of CS. This also provides an environmentally-friendly solution for recycling waste medical glass in construction materials for sustainable development.
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