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Introduction of a New Method of Solving Wear Problems Caused by the Swing Motion Occurring between the Roller and the Sliding Contact Surface

机译:引入一种求解辊和滑动接触表面之间发生的摆动运动引起的磨损问题的新方法

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In an attempt to decrease the amount of CO_2 emitted by engines and yet improve engine output power, various approaches to the development of variable valve-lift mechanisms and the application of direct fuel injection and supercharger mechanisms are rapidly gaining popularity. In the case of the swing motion which takes place in variable valve-lift mechanisms, the relative speed between the two components reaches zero at the location where the load is high and the oil film tends to break, thereby leading to wear. Furthermore, the use of a supercharger and a direct injection device generates soot, which promotes further wear. Therefore establishing a reliable method for estimating wear has become a pressing issue. Wear problems caused by the swing motion occur during boundary lubrication, and we have devised a solution for them. While the approach developed integrates the most appropriate physically based models, we recognize that it is still not sufficiently developed from the point of view of accurate prediction of wear rates. Nevertheless the investigation has helped with explanation of mechanisms involved in wear problems occurring in the field and ongoing R&D projects.
机译:为了试图减少发动机发出的CO_2的量,并改善发动机输出功率,各种方法可以发展可变阀提升机构和直接燃料喷射和增压器机构的应用迅速普及。在可变阀提升机构中发生的摆动运动的情况下,两个部件之间的相对速度在负载高的位置处达到零,并且油膜趋于破裂,从而导致磨损。此外,使用增压器和直喷装置产生烟灰,其促进进一步磨损。因此,建立一种可靠的估算方法,已成为一个压迫问题。在边界润滑期间发生由摆动运动引起的磨损问题,我们为它们设计了解决方案。虽然该方法开发集成了最合适的物理模型,但我们认识到从精确预测磨损率的角度来看仍然没有充分开发。然而,调查有助于解释领域和正在进行的研发项目中发生的磨损问题的机制。

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