首页> 外文期刊>World Journal of Engineering and Technology >Properties of Rapid Hardening Controlled Low Strength Material Made of Recycled Fine Aggregate from Urban Red Brick Construction Waste
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Properties of Rapid Hardening Controlled Low Strength Material Made of Recycled Fine Aggregate from Urban Red Brick Construction Waste

机译:快速硬化控制低强度材料由城市红砖建筑垃圾的再生精细骨料制成

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摘要

In some cases of emergency backfill engineering projects, traditional backfill materials cannot meet the requirements of fast construction due to their long curing time. This study presents a new kind of rapid hardening controlled low strength material, which utilizes both rapid hardening sulphoaluminate cement and recycled fine aggregate from urban red brick construction waste. Totally, sixteen mixtures were prepared for the experiment with different cement-to-sand ratios and water-to-solid ratios. The flowability and bleeding rate of fresh mixture were measured to evaluate its workability, and the compressive strength of hardened mixture was tested to evaluate its rapid hardening and mechanical properties. Test results indicate that rapid hardening controlled low strength material containing recycled fine aggregate from urban red brick construction waste can achieve the desirable flowability, but the bleeding rate increases with the increase of flowability. In addition, 2-hour compressive strength can reach 0.08 - 0.12 MPa, and 4-hour compressive strength is 0.32 - 1.54 MPa, which can meet the requirements of emergency backfill construction. At last, based on the derived compressive strength, a fitting model for predicting compressive strength evolution of this new rapid hardening backfill material is developed, which fits accurately with these experimental data.
机译:在一些紧急回填工程项目的情况下,传统的回填材料由于其长期固化时间而无法满足快速结构的要求。本研究介绍了一种新型的快速硬化控制的低强度材料,其利用快速硬化硫代铝酸盐水泥和来自城市红砖建筑垃圾的再循环细骨料。完全,为具有不同水泥 - 砂比和水 - 固体比例的实验制备了十六个混合物。测量新鲜混合物的流动性和出血率以评估其可加工性,并测试硬化混合物的抗压强度,评价其快速硬化和机械性能。测试结果表明,从城市红砖建筑废物中含有再生精细骨料的快速硬化控制的低强度材料可以达到所需的流动性,但随着流动性的增加,出血率增加。此外,2小时的抗压强度可达到0.08-0.12MPa,4小时的抗压强度为0.32 - 1.54MPa,可以满足紧急回填结构的要求。最后,基于衍生的抗压强度,开发了一种用于预测这种新的快速硬化回填材料的抗压强度演化的拟合模型,这与这些实验数据准确拟合。

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