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Influence of the Filler Size and the Counterbody Surface on the Formation of a Friction Layer Under Solid Lubricated Polymer Nanocomposite S-Steel Sliding

机译:填充尺寸和靶表面对固体润滑聚合物纳米复合材料S钢滑动下摩擦层的形成

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摘要

The influence of the characteristics of particle inclusions and the surface microgeometry of the substrate on the conditions of formation of a stable transfer film under friction of a polymer nanocomposite are analyzed. The investigations have been performed with the help of cellular automata, within the framework of which the profile of the counterbody surface, the adhesion properties of the matrix material, and the size of the nanofiller particles are taken into account. It is shown that to endow a hybrid polymer nanocomposite with low-friction properties, it is preferable that the nanofiller consist of particles whose sizes are comparable to the characteristic size of the microprofile of the substrate. Estimates are made of the shape and size of cavities in the surface of the counterbody facilitating the conditions of formation of a stable transfer film of SiO2 particles.
机译:分析了颗粒夹杂物特征的影响和基板的表面微观测定法在聚合物纳米复合材料摩擦下形成稳定转移膜的形成条件。 在骨盆自动机的帮助下,在骨髓表面,基质材料的粘附性能和纳米填充颗粒的尺寸的框架内进行了调查,以及纳米填充颗粒的尺寸。 结果表明,为了赋予具有低摩擦性能的杂化聚合物纳米复合材料,优选纳米填充物由粒子组成,其尺寸与基板的微相尺寸相当。 估计是由抗体表面的腔体的形状和尺寸,便于形成SiO 2颗粒的稳定转移膜的形成条件。

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