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固体边界及材料内部聚合物摩擦的建模

Modeling of Polymer Friction on Boundaries of Solids and Inside Materials.

作者信息

Zmitrowicz Alfred

机构信息

Institute of Fluid-Flow Machinery, Polish Academy of Sciences, ul. J. Fiszera 14, 80-231 Gdańsk, Poland.

出版信息

Materials (Basel). 2021 Oct 18;14(20):6187. doi: 10.3390/ma14206187.

Abstract

Friction models are proposed for anisotropic and heterogeneous dry friction on boundaries of polymer solids. Unit vectors and oriented angles of sliding velocities, radii of curvature and unit normal vectors of sliding trajectories are taken as independent variables in constitutive equations of anisotropic and heterogeneous friction. Heterogeneous dry friction of a polymer pin in pin-on-disc tests is illustrated in the case of Archimedean spiral trajectory. Individual molecular chains composing polymer materials can move inside the material with a high degree of friction anisotropy. The resistance of macromolecule motion is considered with respect to micromechanical models of macromolecules, their kinematics, and friction laws. Two approaches are applied for modeling of anisotropic friction inside polymer materials: continuum-based models (anisotropic viscous friction) and micromechanical models (anisotropic dry friction). Examples of macromolecule dry friction are considered under conditions of spinning and sliding of a disc-like macromolecule and snake-like sliding of a long macromolecule.

摘要

针对聚合物固体边界上的各向异性和非均匀干摩擦,提出了摩擦模型。在各向异性和非均匀摩擦的本构方程中,滑动速度的单位向量和方向角、滑动轨迹的曲率半径和单位法向量被用作自变量。在阿基米德螺旋轨迹的情况下,说明了销盘试验中聚合物销的非均匀干摩擦。构成聚合物材料的单个分子链能够在材料内部以高度的摩擦各向异性进行移动。从大分子的微观力学模型、它们的运动学和摩擦定律方面考虑了大分子运动的阻力。采用两种方法对聚合物材料内部的各向异性摩擦进行建模:基于连续介质的模型(各向异性粘性摩擦)和微观力学模型(各向异性干摩擦)。考虑了盘状大分子的纺丝和滑动以及长链大分子的蛇形滑动条件下的大分子干摩擦示例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a845/8540234/6573895769f9/materials-14-06187-g005.jpg

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