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首页> 外文期刊>Journal of Tribology >An Elastohydrodynamic Coupling of a Rotating Crankshaft and a Flexible Engine Block
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An Elastohydrodynamic Coupling of a Rotating Crankshaft and a Flexible Engine Block

机译:旋转曲轴和柔性发动机缸体的弹性流体动力耦合

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摘要

A comprehensive formulation is presented for the dynamics of a rotating flexible crankshaft coupled with the dynamics of an engine block through a finite difference elastohydrodynamic main bearing lubrication algorithm. The coupling is based on detailed equilibrium conditions at the bearings. The component mode synthesis is employed for modeling the crankshaft and block dynamic behavior. A specialized algorithm for coupling the rigid and flexible body dynamics of the crankshaft within the framework of the component mode synthesis has been developed. A finite difference lubrication algorithm is used for computing the oil film elastohydrodynamic characteristics. A computationally accurate and efficient mapping algorithm has been developed for transferring information between a high-density computational grid for the elastohydrodynamic bearing solver and a low-density structural grid utilized in computing the crankshaft and block structural dynamic response. The new computational capability is used to compute the vibratory response of an automotive V6 engine due to combustion and inertia loading.
机译:通过有限差分弹性流体动力主轴承润滑算法,提出了旋转柔性曲轴动力学与发动机缸体动力学的综合公式。联轴器基于轴承的详细平衡条件。组件模式综合用于建模曲轴和缸体动态行为。已经开发了一种在零件模式合成框架内耦合曲轴的刚体和柔体动力学的专用算法。有限差分润滑算法用于计算油膜的弹性流体力学特性。已经开发了一种计算准确且高效的映射算法,用于在弹性流体动力轴承求解器的高密度计算网格与用于计算曲轴和滑块结构动态响应的低密度结构网格之间传递信息。新的计算功能可用于计算由于燃烧和惯性负载而引起的汽车V6发动机的振动响应。

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