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Running-in wear modeling of honed surface for combustion engine cylinder liners

机译:内燃机气缸套珩磨面磨合磨损模型

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摘要

The texture change during running-in alters the performance and efficiency of a tribo-mechanical system. During mass production of cylinder liners, a final finishing stage known as ‘‘plateau honing’’ is commonly added to reduce the running-in wear process of the liner surface. The majority of researchers think that this operation improves the engine efficiency and decreases oil consumption. It was believed that there are close links between the surface topography of honed cylinders change and their wear resistance during running-in. However, these interactions have not yet been established. Some running-in wear models were developed in the open literature to predict topographical surface changes without considering the running-in conditions. The present paper thus investigates the various aspects of the wear modeling that caused running- in problems in honed surfaces and its implications on ring-pack friction performance. To illustrate this, plateau honing experiments under different conditions were first carried out on an instrumented vertical honing machine. The plateau honing experiments characterize the surface modifications during running-in wear of cast-iron engine bores using advanced characterization method. Based on the experimental evidence, a running-in wear model was developed. Finally, a numerical extension of the developed model was applied to solve the Reynolds equation by taking into account the real surface topographies of the engine bore. This enables us to predict realistic friction performance within the cylinder ring-pack tribosystem.
机译:磨合过程中的纹理变化会改变摩擦机械系统的性能和效率。在批量生产气缸套时,通常会添加一个称为“高原珩磨”的最终精加工阶段,以减少气缸套表面的磨合磨损过程。大多数研究人员认为此操作可提高发动机效率并减少机油消耗。据认为,磨合缸的表面形貌变化与磨合期间的耐磨性之间存在密切的联系。但是,尚未建立这些交互。在公开文献中开发了一些磨合磨损模型,以预测地形表面变化而无需考虑磨合条件。因此,本文研究了磨损模型的各个方面,这些方面导致了珩磨表面的磨合问题及其对环组摩擦性能的影响。为了说明这一点,首先在仪器化的垂直珩磨机上进行了不同条件下的高原珩磨实验。高原珩磨实验使用先进的表征方法来表征铸铁发动机孔磨合磨损期间的表面改性。根据实验证据,开发了磨合磨损模型。最后,通过考虑发动机缸孔的实际表面形貌,对所开发模型的数值扩展用于求解雷诺方程。这使我们能够预测气缸环填料摩擦系统内的实际摩擦性能。

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