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首页> 外文期刊>Proceedings of the institution of mechanical engineers >An integrated model for the performance of piston ring pack in internal combustion engines
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An integrated model for the performance of piston ring pack in internal combustion engines

机译:内燃机活塞环组件性能的集成模型

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Piston rings are important components in internal combustion engines. Their primary function is to seal dynamically the gap between moving piston and cylinder liner surface in order to prevent the combustion gases from penetrating into the crankcase. The rings also control the oil leakage from the crankcase to the combustion chamber. The performance of the piston ring pack impacts the engine efficiency, durability and emissions. The recognition of the impact of the ring-pack performance on the engine design resulted in a sustained effort of research and development aimed at understanding the operation of the piston ring pack. Most of the published models developed in this field are two-dimensional assuming that the ring and liner are perfect circles for the purpose of modelling the axial and radial dynamics. Although this approach has proved to be useful, there exist a number of asymmetrical characteristics of the power cylinder system that can be crucial to the ring-pack performance and therefore it is considered to be appropriate. In this work, an integrated methodology that handles the complex ring-pack mechanism is presented. The physics of the ring-pack mechanism covers the three-dimensional piston ring dynamics of asymmetric engine cylinder due to bore distortion, the mixed lubrication at ring running face as well as the ring flanks and the interring gas dynamics. The modelling method is verified in two steps. In the first step, the dynamic behaviour of the three-dimensional ring model is verified against a commercial finite element software by comparing the eigenmodes up to a frequency of about 1 kHz. In the second step, the ring-pack modelling approach using three-dimensional ring models is also verified against a commercial ring dynamics program, which is based on the two-dimensional modelling. It is shown that the three-dimensional ring dynamics modelling method has advantages over the two-dimensional modelling approach as it facilitates studying the influence of the non-uniform twist along its circumference (ring winding), the effect of bore distortion on blow-by, ring friction, friction power losses and wear.
机译:活塞环是内燃机的重要组成部分。它们的主要功能是动态密封活动活塞和气缸套表面之间的间隙,以防止燃烧气体渗透到曲轴箱中。环还控制从曲轴箱到燃烧室的机油泄漏。活塞环组件的性能会影响发动机效率,耐用性和排放。认识到环组件性能对发动机设计的影响,导致了持续的研发工作,旨在了解活塞环组件的运行。在本领域中开发的大多数已发布模型都是二维的,假定环和衬套是用于建模轴向和径向动力学的完美圆。尽管已证明这种方法是有用的,但动力缸系统存在许多不对称特性,这些特性对于环组性能至关重要,因此被认为是合适的。在这项工作中,提出了一种处理复杂的环组装机制的集成方法。环填料机构的物理特性涵盖了由于缸孔变形而引起的不对称发动机汽缸的三维活塞环动力学,环工作面的混合润滑以及环侧面和环间气体动力学。分两步验证了建模方法。第一步,通过比较高达约1 kHz频率的本征模,对照商用有限元软件验证三维环形模型的动态行为。在第二步中,还针对基于二维建模的商业环形动力学程序,验证了使用三维环形模型的环形包装建模方法。结果表明,三维环动力学建模方法优于二维建模方法,因为它有助于研究沿其圆周(环绕组)的不均匀扭曲的影响,孔变形对漏气的影响,环摩擦,摩擦功率损失和磨损。

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