Effect of molecular geometry on boundary layer lubrication

被引:0
|
作者
Kong, Y.C.
Tildesley, D.J.
机构
来源
Molecular Simulation | / 22卷 / 02期
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Simulation studies of the friction between layers of dialkyl surfactants have been performed using a non-equilibrium molecular dynamics method. The model layers at a temperature of 298 K and a normal pressure of 210 MPa are sheared at a relative velocity of 1 ms-1. The friction coefficient has been studied as a function of the molecular geometry by simulating bilayers of C10C18 (asymmetrical) and C18C18 and C10C10 (symmetrical) surfactants. In all cases the hydrocarbon chains are attached to a positively charged dimethylammonium head-group which interacts with a negatively charged surface. At a head-group area of 50 angstrom2 per molecule, the friction between the layers of asymmetrical surfactants is greater than that between layers of symmetrical surfactants at approximately the same normal pressure. At 77 angstrom2 the friction between the C18C10 layers remains higher than that of the C18C18 layers but is now lower than that of the C10C10, where the surface structure is highly disordered and the two layers are separated by only 15.8 angstrom. The friction between the layers correlates well with the amount of layer overlap as defined by the common area under the chain density profiles. These observation, which are in broad agreement with the experimental measurement on similar dichain surfactants are rationalized in terms of the translational, orientational and conformational structures of the layers.
引用
收藏
页码:149 / 168
相关论文
共 50 条
  • [41] Molecular mechanisms of aqueous boundary lubrication by mucinous glycoproteins
    Zauscher, Stefan
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2012, 244
  • [42] Molecular mechanisms of aqueous boundary lubrication by mucinous glycoproteins
    Coles, Jeffrey M.
    Chang, Debby P.
    Zauscher, Stefan
    CURRENT OPINION IN COLLOID & INTERFACE SCIENCE, 2010, 15 (06) : 406 - 416
  • [43] A software complex for molecular simulation of boundary lubrication layers
    Kuznetsov, S. A.
    Godlevskiy, V. A.
    Berezina, E. V.
    Bogomolov, M. V.
    JOURNAL OF FRICTION AND WEAR, 2012, 33 (01) : 5 - 10
  • [44] A software complex for molecular simulation of boundary lubrication layers
    S. A. Kuznetsov
    V. A. Godlevskiy
    E. V. Berezina
    M. V. Bogomolov
    Journal of Friction and Wear, 2012, 33 : 5 - 10
  • [45] EFFECT OF A MAGNETIC-FIELD ON BOUNDARY LUBRICATION
    YAMAMOTO, Y
    GONDO, S
    TRIBOLOGY INTERNATIONAL, 1987, 20 (06) : 342 - 346
  • [46] Molecular dynamics simulations of elasto-hydrodynamic lubrication and boundary lubrication for automotive tribology
    Washizu, Hitoshi
    Sanda, Shuzo
    Hyodo, Shi-aki
    Ohmori, Toshihide
    Nishino, Noriaki
    Suzuki, Atsushi
    INTERNATIONAL CONFERENCE ON SCIENCE OF FRICTION, 2007, 89
  • [47] ROUGHNESS EFFECT ON THE FRICTIONAL FORCE IN BOUNDARY LUBRICATION
    DAIKHIN, L
    URBAKH, M
    PHYSICAL REVIEW E, 1994, 49 (02): : 1424 - 1429
  • [48] EFFECT OF A MAGNETIC FIELD ON BOUNDARY LUBRICATION.
    Yamamoto, Yuji
    Gondo, Seigo
    1600, (20):
  • [49] Synergistic lubrication of organic friction modifiers in boundary lubrication regime by molecular dynamics simulations
    Shi, Junqin
    Li, Hang
    Lu, Yang
    Sun, Lin
    Xu, Shaofeng
    Fan, Xiaoli
    APPLIED SURFACE SCIENCE, 2023, 623
  • [50] MECHANISM OF BOUNDARY LUBRICATION AND THE PROPERTIES OF THE BOUNDARY LUBRICATION FILM
    DERIAGIN, BV
    KARASEV, VV
    ZAKHAVAEVA, NN
    LAZAREV, VP
    SOVIET PHYSICS-TECHNICAL PHYSICS, 1957, 2 (05): : 980 - 988