Experimental feasibility research on a high-efficiency cement-based clay stabilizer
Author:
Publisher
Springer Science and Business Media LLC
Subject
Civil and Structural Engineering
Link
http://link.springer.com/article/10.1007/s12205-017-0782-8/fulltext.html
Reference26 articles.
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2. Gao, G. R. (1996). “The distribution and geotechnical properties of loess soils, lateritic soils and clayey soils in China.” Engineering Geology, Vol. 42, No. 1, pp. 95–104, DOI: 10.1016/0013-7952(95)00056-9.
3. Gleize, P. J. P., Müller, A., and Roman, H. R. (2003). “Microstructural investigation of a silica fume–cement–lime mortar.” Cement and Concrete Composites, Vol. 25, No. 2, pp. 171–175, DOI: 10.1016/S0958-9465(02)00006-9.
4. Horpibulsuk, S., Bergado, D. T., and Lorenzo, G. A. (2004). “Compressibility of cement-admixed clays at high water content.” Geotechnique, Vol. 54, No. 2, pp. 151–154, DOI: 10.1680/geot.2004.54.2.151.
5. Horpibulsuk, S., Rachan, R., and Raksachon, Y. (2009). “Role of fly ash onstrength and microstructure development in blended cement stabilized silty clay.” Soils and Foundations, Vol. 49, No. 1, pp. 85–98, DOI: 10.3208/sandf.49.85.
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