Impact mechanical properties and pore structure of graphene oxide concrete at high temperature
Author:
Funder
National Natural Science Foundation of China
Air Force Engineering University
Publisher
Elsevier BV
Reference42 articles.
1. Mechanical properties and microstructure of a graphene oxide–cement composite;Pan;Cement Concr. Compos.,2015
2. Study of concrete damage mechanism under hydrostatic pressure by numerical simulations;Cui;Construct. Build. Mater.,2018
3. Applications of using nano material in concrete: a review;Norhasri;Construct. Build. Mater.,2017
4. Influence of mineral nano-fibers on the physical properties of road cement concrete material;Liu;Construct. Build. Mater.,2018
5. Properties of roller-compacted concrete pavement containing waste aggregates and nano SiO2;Tavakoli;Construct. Build. Mater.,2020
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