Hajizadeh Elnaz, Todd B D, Daivis P J
Department of Mathematics, Faculty of Science, Engineering and Technology, and Centre for Molecular Simulation, Swinburne University of Technology, Hawthorn, Victoria 3122, Australia.
School of Applied Sciences, RMIT University, Melbourne, Victoria 3001, Australia.
J Chem Phys. 2014 Nov 21;141(19):194905. doi: 10.1063/1.4901721.
We present nonequilibrium molecular dynamics (NEMD) simulation results for the miscibility, structural properties, and melt rheological behavior of polymeric blends under shear flow. The polymeric blends consist of chemically identical linear polymer chains (187 monomers per chain) and dendrimer polymers of generations g = 1-4. The number fraction x of the dendrimer species is varied (4%, 8%, and 12%) in the blend melt. The miscibility of blend species is measured, using the pair distribution functions gDL, gLL, and gDD. All the studied systems form miscible blend melts under the conditions investigated. We also study the effect of shear rate γ̇ and dendrimer generation on inter-penetration between blend species for different blend systems. The results reveal that shear flow increases the interpenetration of linear chains toward the core of the dendrimers. We also calculate the shear-rate dependent radius of gyration and ratios of the eigenvalues of the gyration tensor to study the shear-induced deformation of the molecules in the blend. Melt rheological properties including the shear viscosity and first and second normal stress coefficients obtained from NEMD simulations at constant pressure are found to fall into the range between those of pure dendrimer and pure linear polymer melts.
我们展示了非平衡分子动力学(NEMD)模拟结果,该结果涉及剪切流作用下聚合物共混物的混溶性、结构性质和熔体流变行为。聚合物共混物由化学性质相同的线性聚合物链(每条链含187个单体)和代数g = 1 - 4的树枝状聚合物组成。在共混熔体中,树枝状聚合物物种的数分数x有所变化(4%、8%和12%)。使用对分布函数gDL、gLL和gDD来测量共混物种的混溶性。在所研究的条件下,所有系统均形成了可混溶的共混熔体。我们还研究了剪切速率γ̇和树枝状聚合物代数对不同共混体系中共混物种间相互渗透的影响。结果表明,剪切流增加了线性链向树枝状聚合物核心的相互渗透。我们还计算了与剪切速率相关的回转半径以及回转张量特征值的比值,以研究共混物中分子的剪切诱导变形。发现从恒压下的NEMD模拟获得的熔体流变性质,包括剪切粘度以及第一和第二法向应力系数,落在纯树枝状聚合物熔体和纯线性聚合物熔体之间的范围内。