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REDUCED FRICTION LOSSES AND WEAR BY DLC COATING OF PISTON PINS

机译:减少活塞销的DLC涂层摩擦损失和磨损

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A Diamond Like Carbon (DLC) coating is well known to offer superior wear and friction behaviour. This combination of properties makes DLC suitable for many different areas of tribology. This paper concerns itself with usage in the power cylinder environment of automotive diesel engines. To estimate the potential of DLC coatings applied to piston pins in internal combustion engines, linearly reciprocating sliding wear examinations have been performed on uncoated and DLC coated component segments versus different counterpart materials as present in the power cylinder environment, including: piston (aluminium alloy), bushing (brass), piston pin (steel) and connecting rod (steel). Evaluation criteria for the tests include friction and wear performance in dry and lubricated conditions. Test results show how the DLC coatings offer impressive wear reductions for each of the different counterpart materials used. Furthermore, special emphasis is given to the analysis of the friction behaviour. As expected, the coefficient of friction (COF) decreased for aluminium and steel counterparts when the piston pin segments were DLC coated. However, for the combination of DLC with brass the COF increased in the dry condition. This surprising outcome is explained with SEM and EDX investigations of the wear traces. The tests at elevated temperature with lubrication show an inverse relationship with respect to friction criteria when compared with the dry room temperature tests for the DLC with brass combination. Examined engine tests confirm the results of the nonengine wear test rig, showing that DLC coatings applied on piston pins also exhibit properties and good potential to decrease frictional losses and fuel consumption in modern engines.
机译:众所周知,如碳(DLC)涂层如碳(DLC)涂层提供卓越的磨损和摩擦行为。这种属性的组合使DLC适用于许多不同的摩擦学领域。本文涉及汽车柴油发动机动力缸环境中的用途。为了估算应用于内燃机中的活塞销的DLC涂层的电位,已经对现成的未涂覆的和DLC涂覆的组分区段进行了线性往复式的滑动磨损检查,而是如动力缸环境中存在的不同对应材料,包括:活塞(铝合金) ,衬套(黄铜),活塞销(钢)和连杆(钢)。测试的评估标准包括干燥和润滑条件下的摩擦和磨损性能。测试结果显示DLC涂层如何为每个不同的对应物料提供令人印象深刻的耐磨性。此外,特别强调对摩擦行为的分析。如预期的那样,当活塞销段是DLC涂层时,铝和钢对应物的摩擦系数(COF)降低。然而,对于DLC与黄铜的组合,COF在干燥条件下增加。这种令人惊讶的结果是用磨损痕迹的SEM和EDX调查来解释。随着用黄铜组合的DLC的干燥室温测试相比,润滑在升高温度下的试验显示了与摩擦标准相比的反比关系。检查的发动机测试确认了非先前磨损试验台的结果,显示应用于活塞销上的DLC涂层也表现出具有降低现代发动机摩擦损失和燃料消耗的特性和良好潜力。

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