DETERMINATION OF THE CONTACT AREA UNDER CYCLIC LOADING OF CONTACT PAIRS OF ISOTROPIC MATERIALS ON THE BASIS OF 3D SURFACE MICRORELIEF MODELLING

Q3 Materials Science
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Abstract

The parameters of the surface microrelief are paramount in the problems of frictional interaction of parts, the flow of liquid and gas in channels, ensuring the required thermal conditions and the stress-strain state of the structure. The solution of the problem of ensuring the optimal thermal regime for a significant range of technical products often becomes decisive in the design of products operating under conditions of high-intensity heat flows. Transit heat fluxes flowing through the product, as well as heat fluxes from own heat sources, must be either accumulated or removed to the external space. In this case, the directions of the heat flux vectors are determined by the design features of the products, including through various contact connections. Obviously, a reliable determination of the parameters of the contact interaction of product parts is the basis for a reliable analysis of the stress-strain and thermal state of a wide range of structures operating under conditions of high-intensity heat flows. The operational characteristics of the contacting parts of the structure are directly determined by the properties of the contact of the mating surfaces. When solving many problems of thermal, mechanical and electrical contact interaction, surface roughness is a major factor. The processes of friction and wear occur precisely on the actual contact area and depend not only on the properties of the material, but also on the intercontact pressure on this area, since the magnitude of the actual pressure determines the destruction of surface films and the appearance of adhesive bonds in the contact. In the presented work, the change in the actual contact area under cyclic loading of contact pairs of materials based on digital twins of contact surfaces in a wide range of compressive pressures is considered.
基于三维表面微起伏模型的各向同性材料接触对循环载荷下接触面积的确定
在零件的摩擦相互作用、通道中液体和气体的流动、确保所需的热条件和结构的应力-应变状态等问题中,表面微起伏的参数至关重要。在高强度热流条件下运行的产品的设计中,确保大量技术产品的最佳热状态的问题的解决方案往往是决定性的。流经产品的过境热通量,以及来自自身热源的热通量,必须积聚或转移到外部空间。在这种情况下,热通量矢量的方向由产品的设计特征决定,包括通过各种接触连接。显然,产品零件接触相互作用参数的可靠确定是可靠分析在高强度热流条件下运行的各种结构的应力-应变和热状态的基础。结构的接触部件的操作特性直接由配合表面的接触特性决定。在解决许多热、机械和电接触相互作用的问题时,表面粗糙度是一个主要因素。摩擦和磨损过程精确地发生在实际接触区域上,并且不仅取决于材料的性质,还取决于该区域上的接触间压力,因为实际压力的大小决定了表面膜的破坏和接触中粘合剂结合的出现。在所提出的工作中,考虑了在宽压缩压力范围内,基于接触表面数字孪晶的材料接触对在循环载荷下实际接触面积的变化。
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
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