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Quantitative Analysis of Leakage Suppression of DLC Coating on Piston Ring

机译:活塞环DLC涂层泄漏抑制的定量分析

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Piston ring wear in gasoline engine induces deterioration of emissions performance due to leakage of blow-by gas, instability of idling caused by reduced compression in combustion chamber, and to generate early degeneration of engine oil. We examined anti-wear performance of DLC coating on piston ring, which had been recently reported as an effective method for improving the abrasion resistance. As a result, wear rate remained low under the condition of DLC existence on sliding surface, but once DLC was worn out completely, wear of the piston ring was accelerated and its life became shorter than piston ring without DLC. In this research, we designed reciprocating test apparatus that operates at much higher velocity range, and characterized the frictional materials of the piston ring and sleeve and the DLC as a protective film, a vapor phase epitaxy (VPE) was actively used as a means to form certain level of convex and concave shape on its surface. As a result, we achieved higher wear durability by devising a combination of DLC and underlying. Calculation of compression gas leakage from Piston ring end gap is also introduced.
机译:汽油发动机中的活塞环磨损引起由于窜气泄漏而导致排放性能的恶化,燃烧室中的压缩引起的怠速的不稳定性,并产生发动机油的早期退化。我们在活塞环上检查了DLC涂层的抗磨损性能,最近被报告为改善耐磨性的有效方法。结果,在滑动表面的DLC存在条件下,磨损率保持低,但是一旦DLC完全磨损,就加速了活塞环的磨损,并且没有DLC的活塞环比活塞环更短。在该研究中,我们设计了在更高的速度范围内操作的往复式测试装置,并且表征活塞环和套筒的摩擦材料和作为保护膜的DLC,气相外延(VPE)被主动用作手段在其表面上形成一定的凸形和凹形形状。因此,我们通过设计DLC和底层的组合来实现更高的耐磨性。还引入了从活塞环端间隙的压缩气体泄漏的计算。

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