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Wear Behavior of Fiber Laser Textured TiN Coatings in a Heavy Loaded Sliding Regime

机译:光纤激光织构TiN涂层在重载滑动状态下的磨损行为

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摘要

In heavy loaded mating components, such as sliders and sliding bearings, guaranteeing the efficiency of lubricant films for long times during severe service conditions is very complicated. In this work, the benefits deriving from the use of fiber laser sources for surface texturing of very thin TiN coatings in severe wear working conditions were demonstrated. Evaluations of the laser textured dimples shape, geometry and density are given. Wear performance of the fiber laser textured surfaces was evaluated in discontinuous oil lubricated conditions with a flat contact. High normal load and low sliding speed were applied. Comparison tests were also performed on commercial TiN and WC/C coatings. In terms of average wear volume and maximum wear depth, Laser Surface Texturing of TiN provided respectively a 70% and a 45% reduction if compared to plain TiN. If compared to WC/C the wear resistance gains were lower but LST TiN maintained such benefits for longer wear runs. SEM analysis also revealed that the laser interaction provided a localized thermal cracking to the TiN coating. However, the sliding action caused very limited and localized coating fragmentation or delamination
机译:在诸如滑块和滑动轴承之类的重负荷配合部件中,要在恶劣的使用条件下长时间保证润滑膜的效率非常复杂。在这项工作中,证明了在严重磨损的工作条件下使用光纤激光源对非常薄的TiN涂层进行表面纹理化所带来的好处。给出了激光纹理凹痕的形状,几何形状和密度的评估。在不连续的油润滑条件下,以平坦的接触面评估了光纤激光纹理表面的磨损性能。施加了较高的正常载荷和较低的滑动速度。还对商用TiN和WC / C涂层进行了对比测试。就平均磨损量和最大磨损深度而言,与普通TiN相比,TiN的激光表面纹理化处理分别减少了70%和45%。如果与WC / C相比,则耐磨性降低,但LST TiN保持了此类优点,可延长磨损时间。 SEM分析还表明,激光相互作用为TiN涂层提供了局部热裂纹。但是,滑动作用导致非常有限的局部涂层碎裂或分层

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