...
首页> 外文期刊>Construction and Building Materials >Understanding the acting mechanism of NaOH adjusting the transformation of viscoelastic properties of alkali activated phosphorus slag
【24h】

Understanding the acting mechanism of NaOH adjusting the transformation of viscoelastic properties of alkali activated phosphorus slag

机译:理解NaOH调节碱活性磷渣粘弹性转化的作用机理

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The transformation of the viscoelastic properties of alkali activated phosphorus slag fresh pastes (AAPS) from the viewpoints of both dispersion effect and hydration was investigated by the in-situ measurement of a microrheology analyzer basing on the measurement of the mean square displacement of particles (MSD). Measurements on microrheological properties, zeta potential, X-ray diffraction, calorimetric response, infrared spectroscopy, SEM and thermogravimetric analysis of AAPS, were carried out. Corresponding parameters (that is Elasticity index (EI), Macroscopic viscosity index (MVI), storage modulus (G'), loss modulus (G '')) were extracted from the MSD curves to quantitatively analyze the changes of viscoelastic properties of AAPS with different NaOH content. Results shown that different NaOH content can lead to notable changes on the viscoelastic properties of AAPS on the base of the various dispersion degree and hydration process of pastes. With the increasing of NaOH content (S1-S5), the transformation of the viscoelastic properties on the AAPS was delayed in terms of the evolution of microrheological parameters with escape time, which owed to the low hydration rate of AAPS merely generating the small quantity of hydration products. In addition to this, electrostatic repulsive force between particles was enhanced promoting the dispersion effect. On the contrary, when the concentration of NaOH reached a threshold (S6-S8), the transformation rate of the viscoelastic properties on the AAPS pastes significantly accelerated. The result was attributed to that higher hydration rate led to more hydration products and stronger cross-linking for inter-particles, together with the decreasing electrostatic repulsive force. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过原位测量对粒子均方位移的测量的微孔分析仪的原位测量研究了碱活性磷渣新鲜浆料(AAP)的粘弹性特性的转化,从而进行了微观分析仪的均方向均方位位移的测量(MSD )。进行了微生物学性质,Zeta电位,X射线衍射,量热响应,红外光谱,SEM和热重分析AAP的测量。相应的参数(即弹性指数(EI),宏观粘度指数(MVI),储存模量(G'),从MSD曲线中提取损耗模量(G''),以定量分析AAP的粘弹性性能的变化不同的NaOH内容。结果表明,不同的NaOH含量可能导致浆料的各种分散度和水合过程的基础上AAP的粘弹性变化。随着NaOH含量的增加(S1-S5),在逃避时间的微流学参数的演变方面延迟了AAP上的粘弹性的转化,这欠AAP的低水合速率仅产生少量水合产物。除此之外,颗粒之间的静电排斥力提高了促进分散效果。相反,当NaOH的浓度达到阈值时(S6-S8),粘弹性的变化率在AAPS浆料上显着加速。结果归因于更高的水合速率导致更多的水合产物和颗粒间的交联,以及静电排斥力的降低。 (c)2020 elestvier有限公司保留所有权利。

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