Literature DB >> 33918247

Elastic Wave Monitoring of Cementitious Mixtures Including Internal Curing Mechanisms.

Gerlinde Lefever1, Didier Snoeck1,2, Nele De Belie2, Danny Van Hemelrijck1, Dimitrios G Aggelis1.   

Abstract

The mitigation of autogenous shrinkage in cementitious materials by internal curing has been widely studied. By the inclusion of water reservoirs, in form of saturated lightweight aggregates or superabsorbent polymers, additional water is provided to the hydrating matrix. The onset of water release is of high importance and determines the efficiency of the internal curing mechanism. However, the monitoring of it poses problems as it is a process that takes place in the microstructure. Using acoustic emission (AE) sensors, the internal curing process is monitored, revealing its initiation and intensity, as well as the duration. In addition, AE is able to capture the water evaporation from saturated specimens. By ultrasonic testing, differences in the hydration kinetics are observed imposed by the different methods of internal curing. The results presented in this paper show the sensitivity of combined AE and ultrasound experiments to various fundamental mechanisms taking place inside cementitious materials and demonstrate the ability of acoustic emission to evaluate internal curing in a non-destructive and easily implementable way.

Entities:  

Keywords:  acoustic emission; cement; hydrogels; internal curing; lightweight aggregates; superabsorbent polymers; ultrasound

Year:  2021        PMID: 33918247     DOI: 10.3390/s21072463

Source DB:  PubMed          Journal:  Sensors (Basel)        ISSN: 1424-8220            Impact factor:   3.576


  1 in total

1.  Prediction of Ultrasonic Pulse Velocity for Cement, Mortar, and Concrete through a Multiscale Homogenization Approach.

Authors:  Jingluo Jiang; Dawei Zhang; Fuyuan Gong; Dian Zhi
Journal:  Materials (Basel)       Date:  2022-04-30       Impact factor: 3.623

  1 in total

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