Improvement of Flexural and Compressive Strength of Cement Mortar by Graphene Nanoplatelets
Auteur(s): |
Yu Chen
Xingchen Li Chuangchuang Li Nana Zhang Ronggui Liu Chunhua Lu |
---|---|
Médium: | article de revue |
Langue(s): | anglais |
Publié dans: | The Open Civil Engineering Journal, 22 février 2021, n. 1, v. 15 |
Page(s): | 165-171 |
DOI: | 10.2174/1874149502115010165 |
Abstrait: |
Background:In order to provide space for improving the durability of engineering structures by enhancing strength, the addition of nanomaterials has become a research trend in recent years. Graphene and its derivatives have unique properties and have been used in certain fields, which has also stimulated continuous and in-depth research on whether it can improve structural strength. Objective:This paper investigates the mechanical properties and mechanism of cement-based materials reinforced by Graphene Nanoplatelets (GNPs). Methods:Macroscopically, the flexural strength and compressive strengths of cement mortar were tested. Microscopically, the structure and composition were characterized and analyzed by SEM, EDS, and XRD. Results:The results show that the mechanical properties of modified cement mortar are directly related to the GNPs content. When the GNPs content is 0.04wt%, the flexural and compressive strength can still be increased by 12.8% and 33.9% after 28 d. Furthermore, the appropriate content of GNPs dispersed in the cement matrix played a role in promoting cement hydration. The interconnection with hydration products further reduces cracks and pores so that the cement composites form a denser microstructure. Conclusion:The results obtained above would provide references for understanding the reinforcement mechanism of GNPs. |
Copyright: | © 2021 Yu Chen et al. |
License: | Cette oeuvre a été publiée sous la license Creative Commons Attribution 4.0 (CC-BY 4.0). Il est autorisé de partager et adapter l'oeuvre tant que l'auteur est crédité et la license est indiquée (avec le lien ci-dessus). Vous devez aussi indiquer si des changements on été fait vis-à-vis de l'original. |
1.45 MB
- Informations
sur cette fiche - Reference-ID
10613138 - Publié(e) le:
09.07.2021 - Modifié(e) le:
14.09.2021