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Experimental Investigation of Utilizing Industrial Waste and Byproduct Materials in Controlled Low Strength Materials (CLSM)

机译:控制低强度材料中工业废物和副产品材料的实验研究(CLSM)

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Laboratory experiments were conducted in this study to investigate the suitability and applicability of incorporating fly ash, bottom ash and paper sludge with various contents into CLSM mixtures. Fly ash was used as a substitute for Portland cement, bottom ash was added by partially replacing fine aggregate, while paper sludge was treated as a fibrous admixture. Physical and mechanically properties of the CLSM mixtures were examined through flowability, compressive strength, and splitting tensile strength tests. The test results indicated that both fly ash and bottom ash can be potentially used as basic materials for CLSM mixtures with desirable performances, and by limiting the amount of cement used in the mixture, the ultimate strength of CLSM could be easily controlled available for excavation. The strength of the CLSM mixtures were reduced to some extent by incorporating high content of fly ash, while the strength were significantly increased with high content of natural sand replaced by bottom ash. Due to the high water absorption of the paper sludge, the mixture with paper sludge added exhibited relatively low flowability, and it showed no benefits on enhancing compressive and splitting tensile strengths as common fibrous materials.
机译:在该研究中进行了实验室实验,研究了将粉煤灰,底灰和纸质污泥与各种内容物掺入Clsm混合物中的适用性和适用性。粉煤灰被用作替代波特兰水泥的替代品,通过部分更换精细聚集体添加底灰,而纸污泥被视为纤维化混合物。通过流动性,抗压强度和分裂拉伸强度试验检查CLSM混合物的物理和机械性质。测试结果表明,粉煤灰和底部灰部可以潜在地用作Clsm混合物的基本材料,具有期望的性能,并且通过限制混合物中使用的水泥量,CLSM的极限强度可以很容易地控制可用于开挖。通过掺入高含量的粉煤灰在一定程度上减少了Clsm混合物的强度,而强度随底灰替换的高含量高含量显着增加。由于纸污泥的高吸水性,加入的纸污泥的混合物表现出相对低的流动性,并且它没有对增强压缩和分裂拉伸强度作为普通纤维材料的抗粘附性没有益处。

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