首页> 外文会议>3rd international RILEM symposium on rheology of cement suspensions such as fresh concrete >EFFECTS OF DIFFERENT VISCOSITY MODIFYING ADMIXTURES ON RHEOLOGY OF CEMENT PASTE MATRIX OF SELF- CONSOLIDATING
【24h】

EFFECTS OF DIFFERENT VISCOSITY MODIFYING ADMIXTURES ON RHEOLOGY OF CEMENT PASTE MATRIX OF SELF- CONSOLIDATING

机译:不同粘度改性剂对自固结水泥浆体流变学的影响

获取原文
获取原文并翻译 | 示例

摘要

Better characterization of the rheological behavior of cement pastes is a first step to study the rheological properties of self-consolidating concrete (SCC). Cement paste has to be sufficiently fluid to ensure the fluidity of the SCC itself and sufficiently viscous to support the coarse aggregates. Viscosity modifying admixtures (VMAs) along with adequate superplasticizer content has proved to be very effective in these two properties (high deformability, a good resistance to segregation and consistency) of SCC. However, little is known about the interactions between superplasticizers, VMAs and pastes. The major aim of this paper is to study the role and the influence of VMAs. Pastes were made with cement containing limestone filler and fly ash following the formulation of paste of self-consolidating concrete. Superplasticizers and different type and dosage of VMAs were incorporated in the study.rnThe influence of different type and dosage of VMAs; inorganic VMAs (e.g. microsilica) and organic VMAs (based on polysaccharide, starch and cellulose derivatives) combined with superplasticizer on the flow properties and the rheology of cement paste was studied and assessed. The effect of water/cement ratio (W/C) on the early hydration of cement pastes and on the development of mortar strength was also in the focus of this study. The paste measurements were conducted both on empirical tests, namely mini-slump and rheometer. At constant water-to-binder ratio, the increase of viscosity modifying admixtures (VMA) cause decrease of flow and increase of yield stress and plastic viscosity. It was found that polysaccharide based VMA is the most effective one. Yield stress of cement paste changes with time due to the hydration reaction. Cement hydration was monitored by isothermal calorimetry and thermogravimetry (TGA). The organic VMA show almost no influence on early cement hydration and the development of compressive strength. However, the inorganic VMA cause an acceleration of cement hydration and a higher compressive strength at the age of 1 day.
机译:更好地表征水泥浆的流变性能是研究自固结混凝土(SCC)流变性能的第一步。水泥浆必须具有足够的流动性以确保SCC本身的流动性,并具有足够的粘性以支撑粗骨料。事实证明,增粘剂(VMA)和适当的高效减水剂含量在SCC的这两个特性(高变形性,良好的抗偏析性和稠度)方面非常有效。但是,对于高效减水剂,VMA和糊剂之间的相互作用了解甚少。本文的主要目的是研究VMA的作用和影响。在配制自固结混凝土浆后,用含石灰石填料和粉煤灰的水泥制成浆。本研究纳入了高效减水剂和不同种类,不同用量的VMA。研究和评估了无机VMA(例如微二氧化硅)和有机VMA(基于多糖,淀粉和纤维素衍生物)与高效减水剂的结合对水泥浆的流动性和流变性的影响。水灰比(W / C)对水泥浆早期水化和砂浆强度发展的影响也是本研究的重点。糊剂的测量均基于经验测试,即最小坍落度和流变仪。在水与粘合剂的比率恒定的情况下,粘度调节剂(VMA)的增加会导致流量减少,屈服应力和塑性粘度也会增加。发现基于多糖的VMA是最有效的一种。由于水合反应,水泥浆的屈服应力随时间变化。通过等温量热法和热重法(TGA)监测水泥的水合作用。有机VMA对早期水泥水化和抗压强度的发展几乎没有影响。但是,无机VMA在1天的使用期限内会加速水泥的水合作用和更高的抗压强度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号