材料科学
极限抗拉强度
天然橡胶
复合材料
纳米复合材料
模数
动态力学分析
结晶
抗撕裂性
石墨烯
弹性体
杨氏模量
聚合物
化学工程
纳米技术
工程类
作者
Xing Wang,Jinrong Wu,Guangsu Huang,Huijun Li,Maozhu Tang,Xuan Fu
摘要
Graphene/natural rubber ( GE / NR ) nanocomposites were prepared by a modified latex mixing method combined with in situ chemical reduction. It was found that the GE nanosheets are well dispersed and have strong interfacial interaction with NR . Thus, adding a low content of GE can remarkably increase the tensile strength and the initial tensile modulus of NR . With incorporation of as low as 0.5 phr of GE , a 48% increase in the tensile strength and an 80% increase in the initial tensile modulus are achieved without sacrificing the ultimate strain. But further increasing the GE loading degrades the tensile strength and the ultimate strain. Dynamic mechanical measurement indicates that the storage modulus of the nanocomposites is greatly enhanced with addition of GE , while the loss tangent peak is depressed due to the reduced mobility of the rubber molecules. The reinforcement effect of GE on NR is interpreted as a change in the strain induced crystallization and network structure of the nanocomposites, based on the analysis of Mooney − Rivlin plots and the tube model.© 2013 Society of Chemical Industry
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