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Modelling the drying shrinkage of porous materials by considering both capillary and adsorption effects

机译:通过考虑毛细管和吸附效应来模拟多孔材料的干燥收缩

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摘要

This paper presents a poromechanical model for drying of unsaturated porous media valid for a large range of relative humidity. Using the proper laws of thermodynamics, this model is derived and permits to account for different effects that contribute to the effective stress development: the average pore pressure effect, the energy of the interfaces effect, the surface adsorption effect and the Shuttleworth effect. The majority of the input parameters of this model are simply assessed by using two commonly known techniques for the characterization of pores structures applied on experimental desorption isotherms: the B.E.T theory (Brunauer et al., 1938) and the BJH technique (Barrett et al., 1951). Another input parameter (linked to the Shuttleworth effect) is fitted on experimental drying shrinkage strains. This model is tested and validated with experimental data for different porous materials - hardened ordinary cement paste, high- performance concrete and Vycor glass - found in the literature. The obtained results show a satisfactory evaluation of the drying shrinkage strains for all three tested materials, with the possibility of considering zero fitting parameter. Compared to other poromechanical models found in the literature such as the classical Biot-Bishop (Biot, 1941) model and the (Coussy et al., 2003) model, our model appears to be capable of displaying the transition at a certain relative humidity between the capillary pressure effects and the surface adsorption effect, which manifests itself by a plateau in the drying shrinkage strains curve at this value of relative humidity.
机译:本文介绍了一种用于干燥不饱和多孔介质的多孔机制,适用于大量的相对湿度。利用适当的热力学定律,该模型得到了促进和允许考虑有助于有效应力发展的不同效果:平均孔隙压力效应,界面效应的能量,表面吸附效果和梭藻效应。通过使用两种常用的已知技术来评估该模型的大部分输入参数,用于在实验解吸等温线上施加的孔结构表征:BET理论(Brunauer等,1938)和BJH技术(Barrett等人。 1951年)。另一个输入参数(与Shuttleworth效应相关)安装在实验干燥收缩菌株上。测试和验证了该模型,并验证了不同多孔材料的实验数据 - 硬化普通水泥浆料,高性能混凝土和VYCOR玻璃 - 在文献中发现。得到的结果表明,对所有三种测试材料的干燥收缩菌株的令人满意的评价,其可能考虑零配件参数。与诸如经典Biot-主主主教(BIOT,1941)模型等的文献中的其他多孔机械模型相比,我们的模型似乎能够在某种相对湿度下显示过渡毛细管压力效应和表面吸附效果,在该相对湿度的情况下,在干燥收缩菌株曲线中显示出来。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2020年第9期|104016.1-104016.29|共29页
  • 作者单位

    IMSIA UMR9219 EDF-CNRS-CEA-ENSTA Paris Tech France Navier Ecole des Ponts Univ Gustave Eiffel CNRS Marne-la-Vallee France EDF R&D 7 bd Gaspard Monge 92120 Palaiseau France;

    Navier Ecole des Ponts Univ Gustave Eiffel CNRS Marne-la-Vallee France;

    Navier Ecole des Ponts Univ Gustave Eiffel CNRS Marne-la-Vallee France;

    IMSIA UMR9219 EDF-CNRS-CEA-ENSTA Paris Tech France EDF R&D 7 bd Gaspard Monge 92120 Palaiseau France;

    IMSIA UMR9219 EDF-CNRS-CEA-ENSTA Paris Tech France EDF R&D 7 bd Gaspard Monge 92120 Palaiseau France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Porous material; Constitutive behaviour; Elastic material; Adsorption; Concrete;

    机译:多孔材料;组成型行为;弹性材料;吸附;具体的;

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