Theoretical justification of the influence of change of dilaton and compression bonds of atoms of materials of machine parts on their tribological effect

V. Aulin, S. Lysenko, A. Hrynkiv, О.D. Derkach, D. Makarenko, І.V. Zhylova
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Abstract

The course of friction and wear processes in the surface layers of conjugations of machine parts is clarified on the basis of the idea of dilaton and compression bonds of atoms in the materials of parts. Dilaton-compression connections are random in nature, and therefore in this work the theory of destruction of parts by S.M. Zhurkov, thermodynamic and quantum physical approaches. The entropy at the macro-, meso- and microscopic levels and the local regions of the materials of conjugation of the parts subject to friction loading are considered. In the diagram of the state of atomic-molecular bonds the dependence curve Fi(ri) or Ti(ri) is considered and the analysis of transformations of bonds according to the specified diagram is carried out. From the point of view of solid state physics and tribophysics, the manifestation, evolution and consequences of the influence on the characteristics and properties of the friction zone of dilaton and compression bonds of material atoms are considered. Composite materials (composite coatings) are substantiated in more detail. This takes into account the assessment of the concept of material stresses in the friction zone, the ability to relax it, as well as the presence of the SD effect. The fracture process is associated with the modulus of elasticity of the components of the composite material and the bulk content of the filler. An appropriate condition is proposed, which determines the tribological efficiency of composite materials and coatings.
对机械零件材料的原子膨胀键和压缩键的变化对其摩擦学效应的影响进行了理论论证
基于零件材料中原子的膨胀键和压缩键的概念,阐明了机械零件接合表面层的摩擦磨损过程。Dilaton压缩连接本质上是随机的,因此在这项工作中,S.M.Zhurkov的零件破坏理论,热力学和量子物理方法。考虑了受摩擦载荷作用的零件的宏观、微观和微观熵以及材料共轭的局部区域。在原子-分子键的状态图中,考虑了依赖曲线Fi(ri)或Ti(ri),并根据指定的图对键的转变进行了分析。从固体物理学和摩擦物理学的角度,考虑了材料原子的膨胀键和压缩键对摩擦区特性和性质的影响的表现、演变和后果。复合材料(复合涂层)得到了更详细的证实。这考虑到了对摩擦区材料应力概念的评估、放松材料应力的能力以及SD效应的存在。断裂过程与复合材料成分的弹性模量和填料的体积含量有关。提出了一个合适的条件,该条件决定了复合材料和涂层的摩擦学效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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