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A multiscale prediction model and simulation for autogenous shrinkage deformation of early-age cementitious materials

机译:早期胶凝材料自生收缩变形的多尺度预测模型与仿真

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摘要

Autogenous shrinkage of cementitious materials is a key factor leading to early-age cracking of concrete. Based on the micromechanics, the underlying multiscale framework and capillary pressure theory, a multiscale model of autogenous shrinkage is presented for cementitious materials with a homogenization method. By comparing the predictive values from models with the experimental data in the literature, the HYMOSTRUC relative humidity model and Shimomura and Maekawa pore size distribution model are recommended for use in the proposed autogenous shrinkage multiscale model. Combined with the HYMOSTRUC chemical shrinkage model, the simulated results of the autogenous shrinkage multiscale model proposed in this paper match well with the experimental data in the literature and the predictive capability is successfully validated. (C) 2019 Elsevier Ltd. All rights reserved.
机译:胶结材料的自发收缩是导致混凝土过早开裂的关键因素。基于微观力学,潜在的多尺度框架和毛细管压力理论,采用均质化方法提出了水泥质材料自收缩的多尺度模型。通过将模型的预测值与文献中的实验数据进行比较,建议将HYMOSTRUC相对湿度模型以及Shimuramura和Maekawa孔径分布模型用于建议的自发收缩多尺度模型中。结合HYMOSTRUC化学收缩模型,本文提出的自收缩多尺度模型的模拟结果与文献中的实验数据吻合良好,并成功地验证了预测能力。 (C)2019 Elsevier Ltd.保留所有权利。

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