个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 建筑材料研究所所长、土木水利国家级实验教学中心常务副主任
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:建设工程学院
学科:材料学. 结构工程. 市政工程
办公地点:大连理工大学3号实验楼
联系方式:0411-84707101
电子邮箱:wangbm@dlut.edu.cn
Investigation of the Mechanical Properties and Microstructure of Graphene Nanoplatelet-Cement Composite
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论文类型:期刊论文
发表时间:2016-11-01
发表刊物:NANOMATERIALS
收录刊物:SCIE、PubMed、Scopus
卷号:6
期号:11
ISSN号:2079-4991
关键字:graphene nanoplatelets (GNPs); cement paste; mechanical properties; porosity; morphology
摘要:In this work, graphene nanoplatelets (GNPs) were dispersed uniformly in aqueous solution using methylcellulose (MC) as a dispersing agent via ultrasonic processing. Homogenous GNP suspensions were incorporated into the cement matrix to investigate the effect of GNPs on the mechanical behavior of cement paste. The optimum concentration ratio of GNPs to MC was confirmed as 1:7 by ultraviolet visible spectroscopy (UV-Vis), and the optical microscope and transmission electron microscopy (TEM) images displayed remarkable dispersing performance. The GNP-cement composite exhibited better mechanical properties with the help of surface-modified GNPs. The flexural strength of cement paste increased up to 15%-24% with 0.05 wt % GNPs (by weight of cement). Meanwhile, the compressive strength of the GNP-cement composite increased up to 3%-8%. The X-ray diffraction (XRD) and thermal analysis (TG/DTG) demonstrated that the GNPs could accelerate the degree of hydration and increase the amount of hydration products, especially at an early age. Meanwhile, the lower porosity and finer pore size distribution of GNP-cement composite were detected by mercury intrusion porosimetry (MIP). In addition, scanning electron microscope (SEM) analysis showed the introduction of GNPs could impede the development of cracks and preserve the completeness of the matrix through the plicate morphology and tortuous behavior of GNPs.