The modification effects of a nano-silica slurry on microstructure, strength, and strain development of recycled aggregate concrete applied in an enlarged structural test
The modification effects of a nano-silica slurry on properties of recycled aggregate concrete (RAC) were experimentally studied. Together with natural aggregate concrete (NAC), non-modified and modified RAC were applied in three beams in a real project. The beneficial effects of the nano-silica slurry on RAC’s mechanical properties were certificated. In situ strain monitoring in the target beams showed the improved resistance to cracking of RAC after modification. Nanoindentation tests proved that the nano-silica slurry enhanced the new interface transition zone (ITZ) between the old and new mortars in RAC, and surface-strengthened the old mortar, while the old ITZ between old aggregate was not strengthened.
%0 Journal Article
%1 zhang2015modification
%A Zhang, Hongru
%A Zhao, Yuxi
%A Meng, Tao
%A Shah, Surendra P.
%D 2015
%J Construction and Building Materials
%K RAC nano
%P 721 - 735
%R https://doi.org/10.1016/j.conbuildmat.2015.07.089
%T The modification effects of a nano-silica slurry on microstructure, strength, and strain development of recycled aggregate concrete applied in an enlarged structural test
%U http://www.sciencedirect.com/science/article/pii/S0950061815301100
%V 95
%X The modification effects of a nano-silica slurry on properties of recycled aggregate concrete (RAC) were experimentally studied. Together with natural aggregate concrete (NAC), non-modified and modified RAC were applied in three beams in a real project. The beneficial effects of the nano-silica slurry on RAC’s mechanical properties were certificated. In situ strain monitoring in the target beams showed the improved resistance to cracking of RAC after modification. Nanoindentation tests proved that the nano-silica slurry enhanced the new interface transition zone (ITZ) between the old and new mortars in RAC, and surface-strengthened the old mortar, while the old ITZ between old aggregate was not strengthened.
@article{zhang2015modification,
abstract = {The modification effects of a nano-silica slurry on properties of recycled aggregate concrete (RAC) were experimentally studied. Together with natural aggregate concrete (NAC), non-modified and modified RAC were applied in three beams in a real project. The beneficial effects of the nano-silica slurry on RAC’s mechanical properties were certificated. In situ strain monitoring in the target beams showed the improved resistance to cracking of RAC after modification. Nanoindentation tests proved that the nano-silica slurry enhanced the new interface transition zone (ITZ) between the old and new mortars in RAC, and surface-strengthened the old mortar, while the old ITZ between old aggregate was not strengthened.},
added-at = {2019-06-28T07:37:49.000+0200},
author = {Zhang, Hongru and Zhao, Yuxi and Meng, Tao and Shah, Surendra P.},
biburl = {https://www.bibsonomy.org/bibtex/26f8e68db5dfc13e33446433ddeb5cd20/apdash},
doi = {https://doi.org/10.1016/j.conbuildmat.2015.07.089},
interhash = {022154b06c3bc846e8c7c84da0519a5d},
intrahash = {6f8e68db5dfc13e33446433ddeb5cd20},
issn = {0950-0618},
journal = {Construction and Building Materials},
keywords = {RAC nano},
pages = {721 - 735},
timestamp = {2019-06-28T07:40:14.000+0200},
title = {The modification effects of a nano-silica slurry on microstructure, strength, and strain development of recycled aggregate concrete applied in an enlarged structural test},
url = {http://www.sciencedirect.com/science/article/pii/S0950061815301100},
volume = 95,
year = 2015
}