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Structural Dynamics of a Dual Clutch Offset Compound Gear Transmission with Electro-Magnetically Actuated Engagement

机译:双离合器偏移复合复合齿轮变速器具有电磁致动接合的结构动力学

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This paper describes a structural dynamic analysis of a dual clutch Offset Compound Gear (OCG) transmission for application in a two-speed rotorcraft transmission with Electro-Magnetically Actuated (EMA) clutch engagement. This model includes the nonlinear axial contact dynamics between clutch plates. The applied electro-magnetic engagement force is proportional to the magnetic flux traveling axially through the clutch pack. Since the magnetic reluctance is inversely related to the dynamic air gaps between clutch plates, the engagement force rapidly increases as the plates come into contact. Due to the momentum and inertia of the clutch plates, the impacting plates generate an impulsive axial spike in clutch pressures. Since the friction torque transmitted by the clutch is proportional to the instantaneous clutch pressure, the axial plate contact dynamics can be a significant source of shock torque loads delivered to the driveline during shifting. The simulation results capture this phenomena and demonstrate the magnitude of the effect. To the authors' knowledge, axial clutch plate contact dynamics have not been previously considered or accounted for in the literature on clutch dynamics.
机译:本文介绍了一种双离合器偏移复合齿轮的结构动力学分析(OCG)传输用于与电磁致动(EMA)离合器接合两速变速器旋翼机应用。该模型包括离合器片之间的非线性轴向接触动力学。所施加的电磁接合力正比于磁通量通过离合器组件轴向地行进。由于磁阻是负相关的离合器板之间的动态空气间隙,因为这些板接触的啮合力迅速增加。由于离合器板的动量和惯量,所述撞击板产生在离合器压力的脉冲轴向尖峰。由于由离合器传输的扭矩的摩擦正比于瞬时离合器压力,轴向板接触动力学可以是变速期间输送到所述传动系的冲击的转矩负载的显著源。仿真结果抓住这个现象和演示效果的大小。据笔者所知,轴向离合片接触动力学以前没有考虑或在文献中占的离合器动态。

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