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Performance of Superplasticizers in Blended Cement Systems

机译:高效减水剂在水泥混合体系中的性能

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The combination of different type of blending materials with portland cement such as natural pozzolans, fly ashes, and slags provides high flexibility in designing concrete mixtures with several technical advantages and low cost. However, their addition influences the properties of fresh concrete and causes problems of compatibility in blended cement systems containing superplasticizers that are usually used either for reduction of water demand or for increase of workability.rnIn this study, two of the widely used type of superplasticizers, one based on sulphonated naphthalene formaldehyde condensate (SNF) and another based on polycarboxylate polymers (PC), were tested with ten blended cement mixtures containing 20, 30, 50, or 80% portland cement replacement with one or more of the above-mentioned supplementary cementitious materials.rnThe action of superplasticizer on cement pastes was monitored by making zeta potential, pH, and temperature measurements as well as by using DTA-TG method for determining the hydration and hardening process. Porosity and strength development were also measured at different ages. The aim of the research work was to find which type of superplasticizer was more suitable for each type of binder system.rnThe highest reduction of water demand was achieved with polycarboxylate polymer superplasticizer. Results show that compared to the plain portland cement system, the decrease of water/binder ratio with superplasticizer addition was lower in blended cements.
机译:不同类型的掺合材料与波特兰水泥(例如天然火山灰,粉煤灰和矿渣)的结​​合为设计混凝土混合物提供了高度的灵活性,同时具有多种技术优势和低成本。但是,它们的加入会影响新拌混凝土的性能,并在含有减水剂的掺混水泥体系中引起相容性问题,而该增塑剂通常用于减少需水量或提高可加工性。在这项研究中,两种广泛使用的减水剂类型为:一种是基于磺化萘甲醛缩合物(SNF)的,另一种是基于聚羧酸盐聚合物(PC)的,用含20%,30%,50%或80%波特兰水泥替代品的十种混合水泥混合物进行了测试,其中一种或多种上述补充剂通过测量Zeta电位,pH和温度以及使用DTA-TG方法确定水化和硬化过程来监测高效减水剂对水泥浆的作用。还测量了不同年龄的孔隙率和强度发展。研究工作的目的是发现哪种类型的高效减水剂更适合每种粘合剂体系。rn聚羧酸盐聚合物高效减水剂实现了最高的需水量减少。结果表明,与普通硅酸盐水泥体系相比,掺加高效减水剂的水灰比降低幅度较小。

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