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Effect of Maneuvering and Gust Loads on the Two-Speed Shift Dynamics of a Helicopter Equipped with a Dual Clutch Transmission

机译:机动和阵风载荷对配备双离合变速器的直升机的两速变速动力学的影响

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This paper explores the effects of maneuvering and gust loads on the drivesystem and flight dynamic response of a single main rotor helicopter equipped with a two speed dual clutch transmission. The authors demonstrate that performing upshifts during certain maneuvers can significantly reduce the transmitted clutch frictional torques and the resulting clutch pack temperature rise during gear changes. For example, compared with an upshift in level flight, performing a 8° pitch-up maneuver reduced peak clutch frictional power dissipation by 63% (from 455 Hp down to 169 Hp) and reduced total upshift time by 37% (from 5 seconds down to 3 seconds). This results in an 83% reduction in total heat energy dissipated by the clutch during the upshift. Since the design of the clutch pack mass is directly proportional to the heat dissipation requirements, this new (Maneuver Assisted Shifting) MAS technique could enable significant weight savings and clutch wear reduction in helicopter two-speed transmissions.
机译:本文探讨了机动和阵风载荷对配备有双速双离合变速器的单主旋翼直升机的驱动系统和飞行动力响应的影响。作者证明,在某些操纵过程中进行换高档可以显着降低传递的离合器摩擦扭矩,并在换档期间导致离合器组件温度升高。例如,与水平飞行的升档相比,执行8°加速踏板操纵时,离合器峰值摩擦功率耗散降低了63%(从455 Hp降至169 Hp),总升档时间减少了37%(从5秒降低)至3秒)。这导致在换高档时离合器耗散的总热量减少了83%。由于离合器组件质量的设计与散热要求成正比,因此这种新的(机动辅助换挡)MAS技术可以在直升机两速变速器中显着减轻重量并减少离合器磨损。

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