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Effect of PCE superplasticizers on Theological and strength properties of high strength self-consolidating concrete

机译:PCE高效减水剂对高强度自固结混凝土的流变和强度特性的影响

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A variety of polycarboxylate ether (PCE)-based superplasticizers are commercially available. Their influence on the rheological retention and slump loss in respect of concrete differ considerably. Fluidity and slump loss are the cardinal features responsible for the quality of concrete. These are related to the dispersion of cement particles and the hydration process which are greatly influenced by type of polycarboxylate ether (PCE)-based superplasticizers. On the backdrop of relatively less studies in the context of rheological retention of high strength self-consolidating concrete (HS-SCC), the experimental investigations were carried out aiming at quantifying the effect of the six different PCE polymers (PCE 1-6) on the rheological retention of HS-SCC mixes containing two types of Ordinary Portland Cements (OPC) and unwashed crushed sand as the fine aggregate. The tests that were carried out included T-500, V-Funnel, yield stress and viscosity retention tests. The supplementary cementitious materials such as fly ash (FA) and micro-silica (MS) were also used in ternary blend keeping the mix paste volume and flow of concrete constant. Low water to binder ratio was used. The results reveal that not only the PCEs of different polymer groups behave differently, but even the PCEs of same polymer groups also behave differently. The study also indicates that the HS-SCC mixes containing PCE 6 and PCE 5 performed better as compared to the mixes containing PCE 1, PCE 2, PCE 3 and PCE 4 in respect of all the rheological tests. The PCE 6 is a new class of chemical admixtures known as Polyaryl Ether (PAE) developed by BASF to provide better rheological properties in even in HS-SCC mixes at low water to binder mix. In the present study, the PCE 6, is found to help not only in reduction in the plastic viscosity and yield stress, but also provide good rheological retention over the period of 180 minutes. Further, the early compressive strength properties (one day compressive strength) highly depend on the type of PCE polymer. The side chain length of PCE polymer and the fineness of the cement considerably affect the early strength gain.
机译:各种基于聚羧酸醚(PCE)的高效减水剂是可商购的。它们对混凝土的流变性和坍落度损失的影响差异很大。流动性和坍落度损失是决定混凝土质量的主要特征。这些与水泥颗粒的分散和水化过程有关,而水化过程受聚羧酸醚(PCE)类高效减水剂类型的影响很大。在高强度自固结混凝土(HS-SCC)流变保留背景下研究相对较少的背景下,进行了实验研究,目的是量化六种不同的PCE聚合物(PCE 1-6)对混凝土的影响。 HS-SCC混合物的流变性保留,其中包含两种类型的普通波特兰水泥(OPC)和未经洗涤的碎砂作为细骨料。进行的测试包括T-500,V型漏斗,屈服应力和粘度保持率测试。三元掺合料中还使用了粉煤灰(FA)和微硅粉(MS)等辅助胶凝材料,以保持混合浆的体积和混凝土流量恒定。使用低的水与粘合剂的比率。结果表明,不仅不同聚合物基团的PCE表现不同,甚至相同聚合物基团的PCE表现也不同。该研究还表明,就所有流变测试而言,包含PCE 6和PCE 5的HS-SCC混合物比包含PCE 1,PCE 2,PCE 3和PCE 4的混合物表现更好。 PCE 6是由巴斯夫开发的一类新型化学外加剂,称为聚芳醚(PAE),即使在低水与粘合剂混合物的HS-SCC混合物中也能提供更好的流变性。在本研究中,发现PCE 6不仅有助于降低塑料粘度和屈服应力,还可以在180分钟的时间内提供良好的流变性。此外,早期抗压强度特性(一天的抗压强度)高度取决于PCE聚合物的类型。 PCE聚合物的侧链长度和水泥的细度极大地影响了早期强度的提高。

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