Microstructural Analyses of a Stabilized Sand by a Deep-Mixing Method

Author:

Bellato Diego1,Marzano Ignazio Paolo2ORCID,Simonini Paolo3

Affiliation:

1. Head of Digitalisation and Process Management, Züblin Spezialtiefbau GmbH, Albstadtweg 3, 70567 Stuttgart, Germany.

2. Confirmed Researcher, Dept. of Ingegneria Civile Edile Ambientale, Univ. of Rome, via Eudossiana, 18, 00184 Rome, Italy (corresponding author). ORCID: .

3. Full Professor, Dept. of Ingegneria Civile Edile Ambientale, Univ. of Padua, via Ognissanti, 39, 35129 Padua, Italy.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Geotechnical Engineering and Engineering Geology,General Environmental Science

Reference48 articles.

1. Babasaki R. M. Maekawa M. Terashi M. Kawamura T. Suzuki and E. Fukazawa. 1996. “JGS TC report: Factors influencing the strength of improved soil.” In Proc. 2nd Int. Conf. on Ground Improvement Geosystems—Grouting and Deep Mixing edited by R. Yonekura M. Terashi and M. Shibazaki 913–918. Tokyo: A.A. Balkema.

2. Microstructural and mineralogical evaluation of the effectiveness of mixing treatments in stabilized clays;Bellato D.;ASTM Geotech. Test. J.,2013

3. Bellato D. P. Simonini M. Grisolia E. Leder and I. P. Marzano. 2013b. “Quality control of cutter soil mixing (CSM) technology—A case study.” In Proc. 18th Int. Conf. on Soil Mechanics and Geotechnical Engineering: Challenges and Innovations in Geotechnics ICSMGE 2013. Paris: Presses des Ponts.

4. Bellato D. P. Simonini I. P. Marzano E. Leder M. Grisolia T. Vohs and F. W. Gerresen. 2012. “Mechanical and physical properties of a CSM cut-off/retaining wall.” In Proc. Int. Conf. on Ground Improvement and Ground Control—ICGI 2012. Wollongong Australia: Research Publishing.

5. Mineralogical and mechanical analysis of cement-stabilised sands

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