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粒径对在不同电解质溶液中的钙矾石与分散梳型聚合物相互作用的影响。

Impact of particle size on interaction forces between ettringite and dispersing comb-polymers in various electrolyte solutions.

机构信息

Chryso, 7 rue de l'Europe, 45300 Sermaises, France; Empa, Swiss Federal Laboratories for Materials Testing and Research, Laboratory for Concrete/Construction Chemistry, Ueberlandstr. 129, 8600 Duebendorf, Switzerland.

Empa, Swiss Federal Laboratories for Materials Testing and Research, Laboratory for Concrete/Construction Chemistry, Ueberlandstr. 129, 8600 Duebendorf, Switzerland.

出版信息

J Colloid Interface Sci. 2014 Apr 1;419:17-24. doi: 10.1016/j.jcis.2013.12.041. Epub 2013 Dec 24.

Abstract

The inter-particle forces play a fundamental role for the flow properties of a particle suspension in response to shear stresses. In concrete applications, cement admixtures based on comb-polymers like polycarboxylate-ether-based superplasticizer (PCE) are used to control the rheological behavior of the fresh mixtures, as it is negatively impacted by certain early hydration products, like the mineral ettringite. In this work, dispersion forces due to PCE were measured directly at the surface of ettringite crystals in different electrolyte solutions by the means of atomic force microscopy (AFM) applying spherical and sharp silicon dioxide tips. Results show an effective repulsion between ettringite surface and AFM tips for solutions above the IEP of ettringite (pH∼12) and significant attraction in solution at lower pH. The addition of polyelectrolytes in solution provides dispersion forces exclusively between the sharp tips (radius ≈ 10 nm) and the ettringite surface, whereas the polymer layer at the ettringite surface results to be unable to disperse large colloidal probes (radius ≈ 10 μm). A simple modeling of the inter-particle forces explains that, for large particles, the steric hindrance of the studied PCE molecules is not high enough to compensate for the Van der Waals and the attractive electrostatic contributions. Therefore, in cement suspensions the impact of ettringite on rheology is probably not only related to the particle charge, but also related to the involved particle sizes.

摘要

颗粒间的相互作用力对颗粒悬浮液在剪切应力作用下的流动性能起着重要作用。在混凝土应用中,基于梳状聚合物的水泥外加剂,如聚羧酸醚基超塑化剂(PCE),被用于控制新拌混合物的流变性,因为它受到某些早期水化产物(如矿物钙矾石)的负面影响。在这项工作中,通过原子力显微镜(AFM),使用球形和尖锐的二氧化硅探针,直接测量了不同电解质溶液中 PCE 在钙矾石晶体表面的分散力。结果表明,对于高于钙矾石等电点(pH∼12)的溶液,钙矾石表面和 AFM 探针之间存在有效的排斥力,而在较低 pH 值的溶液中存在显著的吸引力。溶液中添加的聚电解质仅在尖锐的探针(半径≈10nm)和钙矾石表面之间提供分散力,而钙矾石表面的聚合物层则无法分散大的胶体探针(半径≈10μm)。颗粒间相互作用力的简单建模表明,对于大颗粒,研究的 PCE 分子的空间位阻不足以补偿范德华力和静电吸引力的贡献。因此,在水泥悬浮液中,钙矾石对流变学的影响可能不仅与颗粒电荷有关,还与涉及的颗粒尺寸有关。

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