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Feasibility Tests on Concrete with Very-High-Volume Supplementary Cementitious Materials

机译:具有非常大容量补充胶凝材料的混凝土的可行性测试

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摘要

The objective of this study is to examine the compressive strength and durability of very high-volume SCM concrete. The prepared 36 concrete specimens were classified into two groups according to their designed 28-day compressive strength. For the high-volume SCM, the FA level was fixed at a weight ratio of 0.4 and the GGBS level varied between the weight ratio of 0.3 and 0.5, which resulted in 70–90% replacement of OPC. To enhance the compressive strength of very high-volume SCM concrete at an early age, the unit water content was controlled to be less than 150 kg/m3, and a specially modified polycarboxylate-based water-reducing agent was added. Test results showed that as SCM ratio (RSCM) increased, the strength gain ratio at an early age relative to the 28-day strength tended to decrease, whereas that at a long-term age increased up toRSCMof 0.8, beyond which it decreased. In addition, the beneficial effect of SCMs on the freezing-and-thawing and chloride resistances of the concrete decreased atRSCMof 0.9. Hence, it is recommended thatRSCMneeds to be restricted to less than 0.8–0.85 in order to obtain a consistent positive influence on the compressive strength and durability of SCM concrete.
机译:本研究的目的是检查非常大容量的SCM混凝土的抗压强度和耐久性。根据其所设计的28天的抗压强度,将制备的36个混凝土标本分为两组。对于大容量SCM,FA水平以0.4的重量比固定,GGBS水平变化为0.3和0.5的重量比,导致OPC的70-90%。为了在早期增强非常大容量的SCM混凝土的抗压强度,将单位水含量控制为小于150kg / m 3,并加入特异性改性的多羧酸盐水还原剂。测试结果表明,随着SCM比率(RSCM)的增加,相对于28天强度的休假比率的强度增益比趋于下降,而在长期年龄增加0.8的躯干增加0.8,超出其降低。此外,SCM对混凝土冻结和氯化物电阻的有益效果减少了0.9。因此,建议将该频率限制为小于0.8-0.85,以获得对SCM混凝土的抗压强度和耐久性的一致正影响。

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