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Experimental and Calculation Analysis of Rotational Vibration for an Engine Front End Accessory Drive System

机译:发动机前端配件驱动系统旋转振动的实验计算分析

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摘要

Experimental methods for measuring static and dynamic characteristics of an engine Frond End Accessory Drive System (FEADS) are presented. The static performance of a FEADS is the static tension of the belt, and the dynamic properties of a FEADS are transverse vibration of belt, and rotational vibration performances that include rotational response of pulleys and tensioner arm, dynamic tension of belt span, slip factor between belt and pulley. A mathematical model and calculation method for rotational vibration analysis of a 8 pulley-belt FEADS is established. In the model, creeping effect of a belt on pulley wrap arc, viscous damping and dry friction of a tensioner are considered. In calculation of dynamic performances of the FEADS, the excitation torques with multi-frequency components from crankshaft torsional vibration are obtained from the measurement. The static tension and steady-state tension in belt spans, natural frequency of a FEADS, rotational response of driven pulleys and tensioner arm, dynamic tension of belt span, slip factor between belt and pulley are estimated with the proposed method. The calculated and tested rotational response of driven pulley and tensioner arm, and tension of each belt span are compared well with experiment, which validate the presented model and calculation method. The modeling method and experimental procedure are instructive for designing a FEADS.
机译:用于测量发动机前端处附件驱动系统(FEADS)的静态和动态特性的实验方法介绍。一个FEADS的静态性能是皮带的静态张力,和一个FEADS的动态特性是带的横向振动和旋转振动的性能,其中包括滑轮和张紧器臂的旋转响应,带跨度的动态张力,之间滑动系数皮带和皮带轮。建立了一个8皮带轮皮带FEADS的旋转振动分析的数学模型和计算方法。在模型中,上滑轮外壳圆弧,粘性阻尼以及张紧器的干摩擦带的蠕动效应被考虑。在的FEADS的动态性能计算中,从测量得到的多频率分量的激励转矩从曲轴扭转振动。静态张力和稳态张力在带跨度中,FEADS的固有频率,从动滑轮和张紧器臂,带跨度的动态张力,带之间和皮带轮滑移因子的旋转响应估计与所提出的方法。从动带轮和张紧器臂,并且每个带跨度的张力的计算和测试响应旋转非常符合实验,验证所提出的模型和计算方法进行比较。建模方法和实验方法是具有启发性的设计FEADS。

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