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The engineering properties of high performance concrete with HCWA-DSF supplementary binder

机译:HCWA-DSF辅助粘结剂的高性能混凝土的工程性能

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High calcium wood ash (HCWA) and densified silica fume (DSF) exhibit good cementitious properties and has a great potential as supplementary binder material for the concrete production industry. The experimental investigation was conducted to study the properties of HCWADSF cement and the mechanical behaviour of HCWA-DSF high performance mortar. A total of twelve different blended cement pastes and mortar mixes were fabricated with the use of HCWA at various cement replacement levels of 0% to 20% in combination with 7.5% densified silica fume (DSF) by total binder weight and subjected to rhe-ological and mechanical strength tests. The rheological properties of blended cement paste studied are standard consistency, initial setting time and final setting time. The mechanical strength parameters of mortar covered in the study are compressive strength, flexural strength, static modulus of elasticity and dynamic modulus of elasticity. Experimental results indicated that the inclusion of HCWA at the content of 2-20% by binder weight does not have significant influence on the standard consistency of HCWA-DSF blended cement but significantly prolonged the setting times of the blended cement paste. The combined use of HCWA (2-6% by binder weight) and DSF (7.5% by binder weight) as supplementary binder material produced mortar mixes which exhibited compressive and flexure strengths which are 2.4-31.2% higher than equivalent ordinary Portland cement (OPC) mortar. Besides, the use of HCWA at cement replacement levels between 2% and 12% with 7.5% DSF by weight of binder was found to enhance the static and dynamic modulus of Portland cement mortar by 1.9-24.7%. The observed improvement in the mechanical properties is due to a significant densification in the microstructure of cement paste matrix in the presence of HCWA and DSF hybrid supplementary binder as observed from micrographs obtained in the study.
机译:高钙木灰(HCWA)和致密硅粉(DSF)表现出良好的胶凝性能,作为混凝土生产行业的辅助粘合剂材料具有很大的潜力。进行了实验研究,以研究HCWADSF水泥的性能和HCWA-DSF高性能砂浆的力学性能。通过使用HCWA,以0%至20%的各种水泥替代量与7.5%的致密硅粉(DSF)结合使用,制造了总共十二种不同的水泥浆和砂浆混合物,并进行了流变和机械强度测试。研究的混合水泥浆的流变特性为标准稠度,初始凝固时间和最终凝固时间。研究中所覆盖的砂浆的机械强度参数为抗压强度,抗弯强度,静态弹性模量和动态弹性模量。实验结果表明,以粘结剂重量计,含量为2-20%的HCWA不会对HCWA-DSF掺和水泥的标准稠度产生明显影响,但会显着延长掺和水泥浆的凝固时间。混合使用HCWA(粘合剂重量的2-6%)和DSF(粘合剂重量的7.5%)制成的砂浆混合物,其抗压和挠曲强度比同等的普通硅酸盐水泥(OPC)高2.4-31.2% )砂浆。此外,发现在水泥置换量为2%至12%的情况下使用HCWA,粘结剂的重量百分比为7.5%时,硅酸盐水泥砂浆的静态和动态模量提高了1.9-24.7%。从研究中获得的显微照片观察到,观察到的机械性能改善是由于在存在HCWA和DSF杂化补充粘合剂的情况下水泥浆基质的微观结构显着致密化。

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