Dynamic Elastic Modulus of Cement Paste at Early Age based on Nondestructive Test and Multiscale Prediction Model

被引:0
|
作者
赵海涛 [1 ]
黄冬辉 [2 ]
WANG Xiaojun [3 ,4 ]
CHEN Xudong [1 ]
机构
[1] College of Civil and Transportion Engineering, Hohai University
[2] China Three Gorges Corporation
[3] City College of City University of New York
[4] Ammann&Whitney
基金
美国国家科学基金会; 中国国家自然科学基金;
关键词
dynamic elastic modulus; nondestructive test; viscosity modifying admixture; silica fume; shrinkage-reducing admixture; multiscale model;
D O I
暂无
中图分类号
TQ172.1 [基础理论];
学科分类号
0805 ; 080502 ;
摘要
This paper introduced a nondestructive testing method to evaluate the dynamic elastic modulus of cement paste. Moreover, the effect of water-cement ratio and conventional admixtures on the dynamic elastic modulus of cement paste was investigated, in which three kinds of admixtures were taken into account including viscosity modifying admixture(VMA), silica fume(SF), and shrinkage-reducing admixture(SRA). The experimental results indicate that the dynamic elastic modulus of cement paste increases with decreasing water-cement ratio. The addition of SF increases the dynamic elastic modulus, however, the overdosage of VMA causes its reduction. SRA reduces the dynamic elastic modulus at early age without affecting it in later period. Finally, a multiscale micromechanics approach coupled with a hydration model CEMHYD3D and percolation theory is utilized to predict the elastic modulus of cement paste, and the predictive results by the model are in accordance with the experimental data.
引用
收藏
页码:321 / 328
页数:8
相关论文
共 50 条
  • [21] Effects of strain reversal on elastic and viscoelastic properties of early age cement paste beams
    Christopher Galitz
    Zachary Grasley
    Materials and Structures, 2016, 49 : 1285 - 1297
  • [22] Effects of strain reversal on elastic and viscoelastic properties of early age cement paste beams
    Galitz, Christopher
    Grasley, Zachary
    MATERIALS AND STRUCTURES, 2016, 49 (04) : 1285 - 1297
  • [23] Simulating hydration of cement paste based on a kinetics model modified by nanoindentation modulus
    Wang, Wei
    Yao, Wu
    Liang, Kang
    ADVANCES IN CEMENT RESEARCH, 2015, 27 (02) : 98 - 106
  • [24] Microstructure-based micromechanical prediction of elastic properties in hydrating cement paste
    Smilauer, Vit
    Bittnar, Zdenek
    CEMENT AND CONCRETE RESEARCH, 2006, 36 (09) : 1708 - 1718
  • [25] Multiscale micromechanical damage model for compressive strength based on cement paste microstructure
    Hlobil, M.
    Smilauer, V.
    Chanvillard, G.
    CONCREEP 10: MECHANICS AND PHYSICS OF CREEP, SHRINKAGE, AND DURABILITY OF CONCRETE AND CONCRETE STRUCTURES, 2015, : 1211 - 1218
  • [26] Influence of Temperature in the Early-age Elastic Modulus Evolution of Cement Pastes and Concrete
    Granja, Jose
    Ribeiro, Renan Rocha
    Russo, Thomas
    Lameiras, Rodrigo
    Azenha, Miguel
    JOURNAL OF ADVANCED CONCRETE TECHNOLOGY, 2023, 21 (10) : 803 - 820
  • [27] Spherical and acicular representation of hydrates in a micromechanical model for cement paste: prediction of early-age elasticity and strength
    Bernhard Pichler
    Christian Hellmich
    Josef Eberhardsteiner
    Acta Mechanica, 2009, 203 : 137 - 162
  • [28] Spherical and acicular representation of hydrates in a micromechanical model for cement paste: prediction of early-age elasticity and strength
    Pichler, Bernhard
    Hellmich, Christian
    Eberhardsteiner, Josef
    ACTA MECHANICA, 2009, 203 (3-4) : 137 - 162
  • [29] Prediction of Early Age Normal Concrete Compressive Strength Based on Dynamic Shear Modulus Measurements
    Venkiteela, Giri
    Sun, Zhihui
    Najm, Husam
    JOURNAL OF MATERIALS IN CIVIL ENGINEERING, 2013, 25 (01) : 30 - 38
  • [30] A multi-scale percolation-based approach for the prediction of elasticity of early-age cement paste
    Zhao, Haitao
    Wu, Shengxing
    Huang, Donghui
    Chen, Xudong
    Zhao, Lanhao
    EUROPEAN JOURNAL OF ENVIRONMENTAL AND CIVIL ENGINEERING, 2013, 17 : S304 - S320