Abstract

This paper introduces the superjet-midi (SJM) method, which has been developed to improve the efficiency of jet grouting. The diameters of soilcrete columns constructed with the new method are relatively large (2·4–3·5 m). Advantages and limitations of the SJM method are summarised. To examine the quality of construction, cylindrical SJM specimens were recovered at the site, and field and laboratory tests were conducted. It is found that the jet-sounding technique is a simple and economical measure to estimate the effective diameter of soilcrete columns. The rock quality designation of specimens varies from 79% to 97%, which indicates that the quality of the soilcrete is good. The uniaxial compressive strength qu of jumbo-jet special grout and SJM specimens are similar. The modulus of elasticity Et50 varies from 350 to 1990 MN/m2. These data are in good agreement with the range E50 = 100qu –300qu suggested by the JSG Association. Axial failure strains of SJM soilcrete are relatively close to the failure strains for concrete rather than those for soil. Cet exposé présente la méthode superjet-midi (SJM) qui a é té développée afin d'améliorer l'efficacité de l'injection de ciment. Les diamètres des colonnes de sol bétonné construites grâce à la nouvelle méthode sont relativement importants (2·4–3·5 m). Nous résumons les avantages et les limitations de la méthode SJM. Pour examiner la qualité de la construction, des spécimens SJM cylindriques ont é té récupérés sur le site et des essais sur le terrain et en laboratoire ont é té menés. Nous avons trouvé que la technique de sondage sous injection est un moyen simple et é conomique pour é valuer le diamètre effectif des colonnes de sol bétonné. La dé signation de qualité rocheuse des spécimens varie de 79% à 97%, ce qui indique que la qualité du sol bétonné est bonne. Les forces compressives uniaxiales qu des spécimens JSG et SJM sont similaires. Le module d'élasticité Et50 varie de 350 à 1990 MN/m2. Ces données concordent avec la gamme E50 100qu –300qu suggérée par l'Association JSG. Les déformations de rupture axiale du sol bétonné SJM sont relativement plus proches des déformations de rupture du béton que de celles du sol.

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