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The correlation between the surface geometry of tested materials and the shape of lubricant drop

机译:被测材料的表面几何形状与润滑剂滴的形状之间的相关性

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In manufacturing of air compressors, piston engines and guides, lubricants are used to result in formation of a continuous oil film that separates the friction surfaces. The continuity of this film within the entire operating range of the friction pair, from starting to steady state, is the guarantee of proper operation. The surface geometry of friction elements plays significant role in maintaining continuity of the oil film. The widely used method for obtaining proper surface condition of the structural components of piston systems is the honing process. This method consists of shaping the microgeometry of the surface of friction pair elements by material removal processing methods (turning, grinding, laser processing) to prevent rapid spreading of lubricant, and thus to prevent breaking of the oil film. In case of Al-MMCs using for manufacturing the parts of machines working under friction with lubrication conditions the shaping of their working surface by honing is limited by the machining efficiency. The investigations on surface geometry of elements made of composites including ceramic reinforcement revealed that presence of reinforcement particles on the working surface bring the changes which can be used for shaping the correct oil film. The investigations presented in this article can be used for evaluation of lubricant propagation process on the composite material surface.
机译:在空气压缩机,活塞发动机和导向装置的制造中,使用润滑剂导致形成分离摩擦表面的连续油膜。从开始到稳定状态,该膜在摩擦副的整个工作范围内的连续性是正确工作的保证。摩擦元件的表面几何形状在维持油膜的连续性方面起着重要作用。为使活塞系统的结构部件具有适当的表面状态而广泛使用的方法是珩磨工艺。该方法包括通过材料去除加工方法(车削,磨削,激光加工)对摩擦副元件表面的微观几何形状进行整形,以防止润滑剂快速扩散,从而防止油膜破裂。在用于制造在润滑条件下以摩擦方式工作的机器零件的Al-MMC的情况下,通过珩磨加工其工作表面的形状受到加工效率的限制。对包含陶瓷增强材料的复合材料制成的元件的表面几何形状的研究表明,工作表面上存在增强颗粒会带来变化,这些变化可用于塑造正确的油膜。本文介绍的研究可用于评估复合材料表面上润滑剂的扩散过程。

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