Experimental data of cement grouting in coarse soils with different superplasticisers

High-range water reducers, such as superplasticisers, can be potentially viable for cement grouting applications. In this study, we investigate the influence of two types of superplasticisers—one based on polycarboxylate ether and another based on naphthalene condensates—on the injectability of thic...

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Main Authors: Costas A. Anagnostopoulos, Theodoros Chrysanidis, Maria Anagnostopoulou
Format: Article
Language:English
Published: Elsevier 2020-06-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340920305060
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spelling doaj-e8054a7f84a1404996d063ff97ee426c2020-11-25T03:12:07ZengElsevierData in Brief2352-34092020-06-0130105612Experimental data of cement grouting in coarse soils with different superplasticisersCostas A. Anagnostopoulos0Theodoros Chrysanidis1Maria Anagnostopoulou2Corresponding author.; Department of Environmental Engineering, International Hellenic University, 57400 Sindos, Thessaloniki, GreeceDepartment of Environmental Engineering, International Hellenic University, 57400 Sindos, Thessaloniki, GreeceDepartment of Environmental Engineering, International Hellenic University, 57400 Sindos, Thessaloniki, GreeceHigh-range water reducers, such as superplasticisers, can be potentially viable for cement grouting applications. In this study, we investigate the influence of two types of superplasticisers—one based on polycarboxylate ether and another based on naphthalene condensates—on the injectability of thick cement grouts into coarse soil and on the shear strength parameters of the grouted soil. Injectability tests were performed on soil columns with various superplasticiser dosages and grouts prepared with different water-to-cement ratios over a wide range of grouting pressures. The shear strength parameters of the grouted soil were evaluated through undrained unconsolidated triaxial compression tests.http://www.sciencedirect.com/science/article/pii/S2352340920305060Cement groutingSuperplasticisersShear strengthTriaxial test
collection DOAJ
language English
format Article
sources DOAJ
author Costas A. Anagnostopoulos
Theodoros Chrysanidis
Maria Anagnostopoulou
spellingShingle Costas A. Anagnostopoulos
Theodoros Chrysanidis
Maria Anagnostopoulou
Experimental data of cement grouting in coarse soils with different superplasticisers
Data in Brief
Cement grouting
Superplasticisers
Shear strength
Triaxial test
author_facet Costas A. Anagnostopoulos
Theodoros Chrysanidis
Maria Anagnostopoulou
author_sort Costas A. Anagnostopoulos
title Experimental data of cement grouting in coarse soils with different superplasticisers
title_short Experimental data of cement grouting in coarse soils with different superplasticisers
title_full Experimental data of cement grouting in coarse soils with different superplasticisers
title_fullStr Experimental data of cement grouting in coarse soils with different superplasticisers
title_full_unstemmed Experimental data of cement grouting in coarse soils with different superplasticisers
title_sort experimental data of cement grouting in coarse soils with different superplasticisers
publisher Elsevier
series Data in Brief
issn 2352-3409
publishDate 2020-06-01
description High-range water reducers, such as superplasticisers, can be potentially viable for cement grouting applications. In this study, we investigate the influence of two types of superplasticisers—one based on polycarboxylate ether and another based on naphthalene condensates—on the injectability of thick cement grouts into coarse soil and on the shear strength parameters of the grouted soil. Injectability tests were performed on soil columns with various superplasticiser dosages and grouts prepared with different water-to-cement ratios over a wide range of grouting pressures. The shear strength parameters of the grouted soil were evaluated through undrained unconsolidated triaxial compression tests.
topic Cement grouting
Superplasticisers
Shear strength
Triaxial test
url http://www.sciencedirect.com/science/article/pii/S2352340920305060
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