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Experimental study of the effect of microtexturing on oil lubricated ceramic/steel friction pairs

机译:微织构对油润滑陶瓷/钢摩擦副影响的实验研究

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The objective of the research work was to study the potential of commercial ceramics such as Al{sub}2O{sub}3, Al{sub}2O{sub}3-ZrO{sub}2 and SiC in pairing with steel 100Cr6 and laser-assisted deterministic microtexturing of the flat functional surfaces as design element for fast running friction systems, such as multiple disc clutches, under unidirectional oil lubricated sliding. A more fundamental part of the study was oriented towards understanding of the effect of microtexturing on mechanisms at mixed or boundary lubrication and development of lubricating oil film in the contact area. Experiments were carried out with pellet/disc geometry at relatively low velocities ≤0.3 m/s and normal loads <10 N using a model test with an attached microscope for in situ observation of the contact area. In the second part, friction behaviour of the different ceramic materials with and without microtexturing was characterised using a friction test rig at sliding velocities up to 10 m/s and normal loads <60 N under more practical-oriented conditions. Results showed that frictional behaviour was significantly influenced by the ceramic material and features of microtexturing, e.g. dimples, channels, width, depth and area coverage fraction. Improved understanding of operating mechanisms and design rules of microtexturing for controlling friction coefficient at practical sliding systems was obtained from a descriptive model.
机译:研究工作的目的是研究与100Cr6钢和激光配对的商用陶瓷如Al {sub} 2O {sub} 3,Al {sub} 2O {sub} 3-ZrO {sub} 2和SiC的潜力平面功能表面的辅助确定性微纹理化,作为单向油润滑滑动下快速运行的摩擦系统(如多片离合器)的设计元素。该研究的一个更基本的部分旨在了解微观纹理对混合或边界润滑机理的影响以及接触区域润滑油膜的形成。使用附有显微镜的模型测试在相对低的速度≤0.3m / s和正常载荷<10 N的条件下对颗粒/圆盘的几何形状进行实验,以便现场观察接触面积。在第二部分中,使用摩擦试验机在滑动速度高达10 m / s且法向载荷小于60 N的条件下,以更实际为导向的条件,对具有和不具有微结构化的不同陶瓷材料的摩擦行为进行了表征。结果表明,摩擦性能受陶瓷材料和微观结构特征的显着影响。酒窝,通道,宽度,深度和面积覆盖率。从描述性模型中获得了对在实际滑动系统中控制摩擦系数的微纹理化操作机理和设计规则的更好理解。

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