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Engineering properties of controlled low-strength materials containing co-fired fly ash

机译:含有共射粉煤灰的控制低强度材料的工程性能

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In this study, it investigated the effects of adding a mixture of circulating fluidized bed co-fired fly ash and bottom ash on controlled low-strength material (CLSM). Experiment variables were as follows: (1) mixing of co-fired fly ash, cement, and pulverized coal fly ash in various proportions to evaluate the effectiveness of using co-fired fly ash as cementitious material in CLSM; (2) mixing of bottom ash and natural fine aggregate in various proportions to evaluate the effectiveness of using bottom ash mixture as aggregates in CLSM. The water-cement ratio of CLSM was fixed at 0.85. Assessments were conducted using a lump flow test, flow consistency test, ball drop test, chloride ion measurement, compression strength test, and length change test. Test results indicate the following: (1) increasing the replacement ratio of co-fired fly ash and bottom ash decreases flowability; (2) the addition of co-fired ash (containing chlorine), with bottom ash increases the amount of chloride ions in CLSM; (3) the addition of co-fired fly ash reduces setting time; (4) the CaO, SiO2, and Al2O3 in co-fired fly ash and bottom ash increase the compressive strength of CLSM; (5) the CaO contained in the mixture of co-fired fly ash and bottom ash causes CLSM to expand.
机译:在这项研究中,它研究了在受控低强度材料(CLSM)上加入循环流化床共烧粉煤灰和底灰混合物的效果。实验变量如下:(1)混合共烧粉煤灰,水泥和煤粉粉煤灰的各种比例,以评估使用共用粉煤灰作为CLSM中水泥材料的有效性; (2)在各种比例中混合底灰和天然精细聚集体,评价使用底部灰分混合物作为CLSM聚集体的有效性。 CLSM的水水柱比固定在0.85。使用块状物流测试进行评估,流动稠度试验,滚珠滴测试,氯离子测量,压缩强度试验和长度变化试验。测试结果表明以下:(1)增加共烧粉煤灰和底灰的更换比率降低流动性; (2)添加共烧灰(含氯),底部灰分增加了CLSM中的氯离子量; (3)加入共烧粉煤灰减少设定时间; (4)CAO,SiO2和Al2O3在共烧粉煤灰和底部灰分中增加了CLSM的抗压强度; (5)共烧粉煤灰和底灰混合物中含有的CaO导致CLSM扩张。

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