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首页> 外文期刊>The Journal of Chemical Physics >Rheological and structural studies of liquid decane,hexadecane,and tetracosane under planar elongational flow using nonequilibrium molecular-dynamics simulations
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Rheological and structural studies of liquid decane,hexadecane,and tetracosane under planar elongational flow using nonequilibrium molecular-dynamics simulations

机译:非平衡分子动力学模拟在平面伸长流动下液体癸烷,十六烷和十四烷的流变和结构研究

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We report for the first time rheological and structural properties of liquid decane,hexadecane,and tetracosane using nonequilibrium molecular-dynamics (NEMD) simulations under planar elongational flow (PEF).The underlying NEMD algorithm employed is the so-called p-SLLOD algorithm [C.Baig,B.J.Edwards,D.J.Keffer,and H.D.Cochran,J.Chem.Phys.122,114103 (2005)].Two elongational viscosities are measured,and they are shown not to be equal to each other,indicating two independent viscometric functions in PEF.With an appropriate definition,it is observed that the two elongational viscosities converge to each other at very low elongation rates,i.e.,in the Newtonian regime.For all three alkanes,tension-thinning behavior is observed.At high elongation rates,chains appear to be fully stretched.This is supported by the result of the mean-square end-to-end distance of chains (R_(ete)~2) and the mean-square radius of gyration of chains ,and further supported by the result of the intramolecular Lennard-Jones (LJ) potential energy.It is also observed that and show a different trend as a function of strain rate from those in shear flow:after reaching a plateau value, and are found to increase further as elongation rate increases.A minimum in the hydrostatic pressure is observed for hexadecane and tetracosane at about epsilon(msigma~2/epsilon)~(1/2)=0.02.This phenomenon is shown to be associated with the intermolecular LJ potential energy.The bond-bending and torsional energies display similar trends,but a different behavior is observed for the bond-stretching energy.An important observation common in these three bonded-intramolecular interactions is that all three modes are suppressed to a small value at high elongation rates.We conjecture that a liquid-crystal-like,nematic structure is present in these systems at high elongation rates,which is characterized by a strong chain alignment with a fully stretched conformation.
机译:我们首次在平面伸长流(PEF)下使用非平衡分子动力学(NEMD)模拟首次报告了癸烷,十六烷和十四烷的流变和结构性质。 C.Baig,BJEdwards,DJKeffer和HDCochran,J.Chem.Phys.122,114103(2005)]。测量了两个拉伸粘度,它们显示彼此不相等,表明两个独立的粘度在适当的定义下,观察到两种伸长粘度在非常低的伸长率下会聚,即在牛顿体系中。对于所有三种烷烃,观察到拉伸稀化行为。在高伸长率下,链似乎已完全拉伸。这受到链的均方根端到端距离(R_(ete)〜2)和链的回转均方半径的支持。并进一步得到分子内结果的支持Lennard-Jones(LJ)势能。还发现,随应变率的变化趋势与剪切流不同:在达到平稳值后,发现随着伸长率的增加而进一步增加。十六烷和十四烷的静水压在ε(msigma〜2 / epsilon)〜(1 / 2)= 0.02。这种现象被证明与分子间LJ势能有关。键弯曲和扭转能显示相似的趋势,但键拉伸能观察到不同的行为。这三个方面的一个重要观察点是共同的键-分子间相互作用是在高延伸率下所有三种模式都被抑制到很小的值。我们推测这些系统在高延伸率下存在液晶状向列结构,其特征是链排列牢固具有完全伸展的构型。

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