Chowdhury Sanjib Chandra, Okabe Tomonaga, Nishikawa Masaaki
Department of Mechanical Engineering, Bangladesh University of Engineering and Technology, Dhaka-1000, Bangladesh.
J Nanosci Nanotechnol. 2010 Feb;10(2):739-45. doi: 10.1166/jnn.2010.1879.
We investigate the effects of the vacancy defects (i.e., missing atoms) in carbon nanotubes (CNTs) on the interfacial shear strength (ISS) of the CNT-polyethylene composite with the molecular dynamics simulation. In the simulation, the crystalline polyethylene matrix is set up in a hexagonal array with the polymer chains parallel to the CNT axis. Vacancy defects in the CNT are introduced by removing the corresponding atoms from the pristine CNT (i.e., CNT without any defect). Three patterns of vacancy defects with three different sizes are considered. Two types of interfaces, with and without cross-links between the CNT and the matrix are also considered here. Polyethylene chains are used as cross-links between the CNT and the matrix. The Brenner potential is used for the carbon-carbon interaction in the CNT, while the polymer is modeled by a united-atom potential. The nonbonded van der Waals interaction between the CNT and the polymer matrix and within the polymer matrix itself is modeled with the Lennard-Jones potential. To determine the ISS, we conduct the CNT pull-out from the polymer matrix and the ISS has been estimated with the change of total potential energy of the CNT-polymer system. The simulation results reveal that the vacancy defects significantly influence the ISS. Moreover, the simulation clarifies that CNT breakage occurs during the pull-out process for large size vacancy defect which ultimately reduces the reinforcement.
我们通过分子动力学模拟研究了碳纳米管(CNT)中的空位缺陷(即缺失原子)对CNT-聚乙烯复合材料界面剪切强度(ISS)的影响。在模拟中,结晶聚乙烯基体以聚合物链平行于CNT轴的六边形阵列形式建立。通过从原始CNT(即无任何缺陷的CNT)中移除相应原子来引入CNT中的空位缺陷。考虑了三种不同尺寸的三种空位缺陷模式。这里还考虑了两种类型的界面,即CNT与基体之间有交联和无交联的界面。聚乙烯链用作CNT与基体之间的交联。Brenner势用于CNT中碳-碳相互作用,而聚合物由联合原子势建模。CNT与聚合物基体之间以及聚合物基体自身内部的非键范德华相互作用用Lennard-Jones势建模。为了确定ISS,我们进行了CNT从聚合物基体中的拔出,并根据CNT-聚合物系统总势能的变化来估计ISS。模拟结果表明,空位缺陷对ISS有显著影响。此外,模拟表明,对于大尺寸空位缺陷,在拔出过程中会发生CNT断裂,这最终会降低增强效果。