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Tennis, P.D. and Jennings, H.M., 2000. A model for two types of C-S-H in the micro-
structure of Portland cement pastes. Cement and Concrete Research , 30(6),
855-863.
Torquato, S., 2001. Random Heterogeneous Materials . Springer, Berlin.
Tregger, N., Pakula, M. and Shah, S.P., 2010a. Infl uence of micro- and nanoclays on
fresh state of concrete. Transportation Research Record , 2141, 68-74.
Tregger, N., Pakula, M. and Shah, S.P., 2010b. Infl uence of clays on the rheology of
cement paste. Cement and Concrete Research , 40(3), 384-391.
Trtik, P., Münch, B. and Lura, P., 2009. A critical examination of nanoindentation on
model materials and hardened cement pastes based on virtual experiments.
Cement and Concrete Composites , 31(10), 705-714.
Ulm, F.-J., Constantinides, G. and Heukamp, F.H., 2004. Is concrete a poro-mechan-
ics material? A multi-scale investigation of poro-elastic properties. Materials and
Structures , 37(1), 43-58.
Ulm, F.-J., Delafargue, A. and Constantinides, G., 2005. Experimental microporome-
chanics. In Dormieux, L. and Ulm, F.-J. (eds), Applied Microporomechanics of
Porous Materials , CISM Lecture notes no 580, Springer Wien, New York.
Ulm, F.-J., Vandamme, M., Bobko, C. and Ortega, J.A., 2007. Statistical indentation
techniques for hydrated nanocomposites: concrete, bone, and shale. Journal of the
American Ceramic Society , 90(9), 2677-2692.
Ulm, F.-J., Vandamme, M., Jennings, H., Vanzo, J., Bentivegna, M., Krakowiak, K.,
Constantinides, G., Bobko, C. and Van Vliet, K., 2010. Does microstructure matter
for statistical nanoindentation techniques? Cement and Concrete Composites,
32(1), 92-99.
Vandamme, M. and Ulm, F.-J., 2009. Nanogranular origin of concrete creep . Proceed-
ings of the National Academy of Sciences of the United States of America , 106(26),
10552-10557.
Vandamme, M., Ulm, F.-J. and Fonollosa, P., 2010. Nanogranular packing of C-S-H
at substochiometric conditions. Cement and Concrete Research , 40(1), 14-26.
Volkl, J.J., Beddoe, R.E. and Setzer, M.J., 1987. The specifi c surface of hardened
cement paste by small-angle X-ray-scattering - effect of moisture-content and
chlorides. Cement and Concrete Research . 17(1), 81-88.
Wang, X.H., Jacobsen, S., He, J.Y., Zhang, Z.L., Lee, S.F. and Lein, H.L., 2009.
Application of nanoindentation testing to study of the interfacial transition
zone in steel fi ber reinforced mortar. Cement and Concrete Research , 39(8),
701-715.
Wansom, S., Kidner, N.J., Woo, L.Y. and Mason, T.O. 2006. AC-impedance response
of multi-walled carbon nanotube/cement composites . Cement and Concrete Com-
posites , 28(6), 509-519.
Weiguo, S., Gejin, G., Rui, D., Yu, T., Hu, C. and Liqi, X., 2011. Fabrication and
characterization of nano colloid surfaced concrete. Materials and Structures , 44(9),
1559-1564.
Wille K. and Loh, K.J., 2010. Nanoengineering ultra-high-performance concrete
with multiwalled carbon nanotubes. Transportation Research Record , 2142,
119-126.
Winslow, D.N. and Diamond, S., 1974. Specifi c surface of hardened cement paste as
determined by small-angle X-ray scattering. Journal of the American Ceramic
Society , 57(5), 193-197.
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