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还原氧化石墨烯/水泥复合材料力学与功能特性的实验研究

Experimental Study on Mechanical and Functional Properties of Reduced Graphene Oxide/Cement Composites.

作者信息

Zhang Ning, She Wei, Du Fengyin, Xu Kaili

机构信息

School of Mechanical Engineering, Southeast University, Nanjing 211189, China.

Jiangsu Key Laboratory for Construction Materials, Southeast University, Nanjing 211189, China.

出版信息

Materials (Basel). 2020 Jul 6;13(13):3015. doi: 10.3390/ma13133015.

Abstract

This study develops a novel self-sensing cement composite by simply mixing reduced graphene oxide (rGO) in cementitious material. The experimental results indicate that, owing to the excellent dispersion method, the nucleation and two-dimensional morphological effect of rGO optimizes the microstructure inside cement-based material. This would increase the electric conductivity, thermal property and self-induction system of cement material, making it much easier for cementitious material to better warn about impending damage. The use of rGO can improve the electric conductivity and electric shielding property of rGO-paste by 23% and 45%. The remarkable enhancement was that the voltage change rate of 1.00 wt.%-rGO paste under six-cycle loads increased from 4% to 12.6%, with strain sensitivity up to 363.10, without compromising the mechanical properties. The maximum compressive strength of the rGO-mortar can be increased from 55 MPa to 71 MPa. In conclusion, the research findings provide an effective strategy to functionalize cement materials by mixing rGO and to achieve the stronger electric shielding property and higher-pressure sensitivity of rGO-cement composites, leading to the development of a novel high strength self-sensing cement material with a flexural strength up to 49%.

摘要

本研究通过在胶凝材料中简单混合还原氧化石墨烯(rGO)开发了一种新型自感应水泥复合材料。实验结果表明,由于出色的分散方法,rGO的成核和二维形态效应优化了水泥基材料内部的微观结构。这将提高水泥材料的电导率、热性能和自感应系统,使胶凝材料更容易更好地预警即将发生的损坏。使用rGO可使rGO浆料的电导率和电屏蔽性能分别提高23%和45%。显著的增强效果是,1.00 wt%-rGO浆料在六次循环加载下的电压变化率从4%提高到12.6%,应变灵敏度高达363.10,且不影响力学性能。rGO砂浆的最大抗压强度可从55 MPa提高到71 MPa。总之,研究结果提供了一种通过混合rGO使水泥材料功能化的有效策略,并实现rGO-水泥复合材料更强的电屏蔽性能和更高的压力敏感性,从而开发出一种新型高强度自感应水泥材料,其抗弯强度高达49%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27ed/7372442/6186f8da7ed0/materials-13-03015-g001.jpg

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