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A Model Scale Test Method for the Piston Ring - Cylinder Liner Tribosystem of Internal Combustion Engines

机译:内燃机活塞环-缸套摩擦系统的模型比例试验方法。

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Rising technical standards of customers, legal requirements and the trend to minimize maintenance effort raise the thermal, mechanical and tribological loads on components of combustion engines. In this regard, emphasis is laid on improving the piston ring - cylinder liner tribosystem, one with the highest energy losses. An efficient performance has to be guaranteed during its lifetime. Tribological investigations could be carried out on engine test benches, but they are highly cost-intensive and time-consuming. Therefore, a damage-equivalent test methodology was developed with the analogous tribological model, "ring-on-liner". The research was carried out under two characteristic operating conditions. One with a "standard" operating system, modelled in line with ideal lubrication conditions, and the other "extreme abrasive" operating system, typical to a system running on a lubricant contaminated by abrasive particles. To optimize the tribological loading capacity of the cylinder liner, with focus on these two operating conditions, numerous nitride coatings have been investigated. The key aspects being seizure resistance, running-in characteristics and long term wear behaviour.
机译:客户不断提高的技术标准,法律要求以及减少维护工作量的趋势,都增加了内燃机组件的热,机械和摩擦负荷。在这方面,重点在于改进活塞环-缸套摩擦系统,这是能量损失最高的系统。在其生命周期内必须保证高效的性能。可以在发动机试验台上进行摩擦学研究,但它们的成本很高且很耗时。因此,使用类似的摩擦模型“衬套环”开发了等效于损伤的测试方法。该研究是在两个典型的运行条件下进行的。一个具有符合理想润滑条件的“标准”操作系统,另一个具有“极强磨蚀性”操作系统,这是典型的在由磨粒污染的润滑剂上运行的系统。为了优化气缸套的摩擦学负载能力,着重于这两个操作条件,已经研究了许多氮化物涂层。关键方面是抗癫痫发作,磨合特性和长期磨损性能。

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