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Détail de l'auteur
Auteur Pornkasem Jongpradist
Documents disponibles écrits par cet auteur
Affiner la rechercheEffective void ratio for assessing the mechanical properties of cement-clay admixtures at high water content / Pornkasem Jongpradist in Journal of geotechnical and geoenvironmental engineering, Vol. 137 N° 6 (Juin 2011)
[article]
in Journal of geotechnical and geoenvironmental engineering > Vol. 137 N° 6 (Juin 2011) . - pp. 621-627
Titre : Effective void ratio for assessing the mechanical properties of cement-clay admixtures at high water content Type de document : texte imprimé Auteurs : Pornkasem Jongpradist, Auteur ; Sompote Youwai, Auteur ; Chai Jaturapitakkul, Auteur Année de publication : 2011 Article en page(s) : pp. 621-627 Note générale : Géotechnique Langues : Anglais (eng) Mots-clés : Mechanical properties Cement Clays Void ratio Water content Lightweight Foam Index. décimale : 624.1 Infrastructures.Ouvrages en terre. Fondations. Tunnels Résumé : Portland cement is widely used for the improvement of soft clay in many applications and construction methods. Because of the high initial water content of in situ soft clay, the additional water in the cement slurry to be mixed, and the added air in some applications, the mixtures have a high water content and void ratio in either almost-saturated or unsaturated conditions. The mechanical properties of cement-clay admixtures—including cement-treated clay and air-cement-treated clay—are affected by several parameters, e.g., mixing proportions, curing time, and the initial state of the mixture. To facilitate engineering decisions regarding mixing design and the development of a constitutive model, a single parameter that can characterize the mechanical properties of such mixed materials is advantageous. This paper recommends a parameter defined as the effective void ratio that could appropriately quantify the dependency of the mechanical properties of cement-clay admixtures on the influencing parameters on the basis of the results of unconfined compression, oedometer, and triaxial tests. The proposed parameter tends to capture the mechanical characteristics of cement-clay admixtures under different test conditions.
DEWEY : 624.1 ISSN : 1090-0241 En ligne : http://ascelibrary.org/gto/resource/1/jggefk/v137/i6/p621_s1?isAuthorized=no [article] Effective void ratio for assessing the mechanical properties of cement-clay admixtures at high water content [texte imprimé] / Pornkasem Jongpradist, Auteur ; Sompote Youwai, Auteur ; Chai Jaturapitakkul, Auteur . - 2011 . - pp. 621-627.
Géotechnique
Langues : Anglais (eng)
in Journal of geotechnical and geoenvironmental engineering > Vol. 137 N° 6 (Juin 2011) . - pp. 621-627
Mots-clés : Mechanical properties Cement Clays Void ratio Water content Lightweight Foam Index. décimale : 624.1 Infrastructures.Ouvrages en terre. Fondations. Tunnels Résumé : Portland cement is widely used for the improvement of soft clay in many applications and construction methods. Because of the high initial water content of in situ soft clay, the additional water in the cement slurry to be mixed, and the added air in some applications, the mixtures have a high water content and void ratio in either almost-saturated or unsaturated conditions. The mechanical properties of cement-clay admixtures—including cement-treated clay and air-cement-treated clay—are affected by several parameters, e.g., mixing proportions, curing time, and the initial state of the mixture. To facilitate engineering decisions regarding mixing design and the development of a constitutive model, a single parameter that can characterize the mechanical properties of such mixed materials is advantageous. This paper recommends a parameter defined as the effective void ratio that could appropriately quantify the dependency of the mechanical properties of cement-clay admixtures on the influencing parameters on the basis of the results of unconfined compression, oedometer, and triaxial tests. The proposed parameter tends to capture the mechanical characteristics of cement-clay admixtures under different test conditions.
DEWEY : 624.1 ISSN : 1090-0241 En ligne : http://ascelibrary.org/gto/resource/1/jggefk/v137/i6/p621_s1?isAuthorized=no