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Optimising Piston Ring Contact Face Chamfer for High Performance Engines

机译:优化活塞环接触面倒角,适用于高性能发动机

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Internal combustion engine components have been a main research interest over many decades [1]. While bulk material and surface engineering developments have improved the resistance to fatigue, reduced the amount of wear and friction during operation, small improvements in race applications designs can increase the engine performance and give a competitive edge to racing engines. Piston rings are designed to create a seal which means that they will suffer large levels of material loss due to wear during operation. The compression ring is the top or closest ring to combustion gases and is exposed to the highest operating temperature. In this paper, the authors propose a design modification to the compression ring coated chamfer which can reduce stress concentration and material loss during operation.
机译:内燃机组件在数十年中是主要的研究兴趣[1]。虽然散装材料和表面工程的发展改善了疲劳的抵抗力,但在运行过程中减少了磨损量,血液应用设计的小改善可以提高发动机性能,并为赛车发动机提供竞争优势。活塞环设计用于产生密封,这意味着它们在操作期间由于磨损而导致的大量材料损失。压缩环是燃烧气体的顶部或最近的环,并且暴露于最高工作温度。在本文中,作者提出了对压缩环涂层倒角的设计改进,其可以减少操作期间的应力浓度和材料损耗。

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