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首页> 外文期刊>Tribology International >Microtextured surfaces in higher loaded rolling-sliding EHL line-contacts
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Microtextured surfaces in higher loaded rolling-sliding EHL line-contacts

机译:较高负载滚动滑动EHL线路触点的微织物表面

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摘要

Due to scarce resources coupled with increasing mobility requirements, resource-efficient machine and motor elements are vital. Therefore, surfaces in lubricated tribological contacts can be microtextured, enabling improved lubricating conditions and friction behavior. While this has already been shown for lower loaded contacts, the effects for higher loaded, application-oriented EHL contacts are topic of basic research. Therefore, geometrically defined microtextures are adapted to the tribological system of the tappet/camshaft contact in the valve train of combustion engines as a demonstrator. The tribological performance in respect to lubricating conditions, friction and wear behavior is analyzed on single cam/tappet component test-rigs. EHL simulation is used as 'numerical zoom' into a section of the contact area contributing to better understanding of effects and observed phenomena.
机译:由于稀缺资源加上了增加的移动性要求,资源有效的机器和电动元件至关重要。 因此,润滑的摩擦学触点中的表面可以是微织物,使得能够改善润滑条件和摩擦行为。 虽然这已经显示出较低的负载触点,但是对更高负载的效果,面向应用的EHL联系人是基础研究的主题。 因此,几何定义的微纹理适用于阀齿轮引擎中的挺杆/凸轮轴接触的摩擦学系统作为演示。 在单一凸轮/挺杆组件试验台上分析了摩擦条件,摩擦和磨损行为的摩擦学性能。 EHL模拟用作“数值变焦”进入接触区域的一部分,有助于更好地理解效果和观察到的现象。

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