首页> 外文会议>AHS International Annual Forum vol.2; 20070501-03; Virginia Beach,VA(US) >Compact Pericyclic Continuously Variable Speed Transmission Systems: Design Features and High-Reduction Variable Speed Case Studies
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Compact Pericyclic Continuously Variable Speed Transmission Systems: Design Features and High-Reduction Variable Speed Case Studies

机译:紧凑型周向无级变速系统:设计特点和高变速变速箱案例研究

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The Pericyclic Variable Speed Transmission (PVT) is a dual-input one output differential power train system which can be adapted to various vehicle systems as a main transmission component. The PVT system can also be operated as a fixed speed drivetrain when one of the input members is held stationary. Wide range of reduction ratios, (1.05:1 up to 50:1), can be achieved for a fixed speed PVT in one compact unit. To explore the range of potential PVT based variable speed transmission concepts, two bounding cases were considered for a 600HP light rotary-wing aircraft. The total speed reduction ratio of the helicopter transmission is 285.7:1 for the low rotor speed (140 RPM), and 133:1 for the high rotor speed (300 RPM). The transmission in the case studies is the combination of a 6.25:1 ratio PVT as the first reduction stage and 45:1 ratio PVT for the second reduction stage, in the first case study the speed increase is achieved by a 45:1 ratio PVT unit while in the second case study it is increased by the 6:25:1 ratio PVT. Critical design elements, such as kinematical features, power flow, power circulation, and component torque on the two conceptual PVT designs are analyzed to investigate the impact of different reduction ratio variable speed PVT units on the transmission system configuration. The PVT design procedure starts with the determination of the number of teeth on the gears to achieve the low speed reduction ratio. Then, the speed of the speed control member is calculated to achieve required output speed increase. Both systems are designed to minimize internal power circulation during all operating speeds. The analysis shows that both systems branch approximately 50% of the engine power to the Controllable Variable-Speed Unit (CVU) at increased rotor speed (300RPM). The kineto-static torques of the components are obtained by the system kinematics and the power flow. The torque carried by CVU of the 6.25:1 ratio variable speed unit is 2% of the 45:1 ratio variable speed system, in a more compact and light weight CVU units; hence, in general it is advantageous to couple the CVU unit with the low reduction ratio PVT .
机译:周转变速箱(PVT)是一种双输入单输出差动动力总成系统,可以作为主要的变速箱组件适用于各种车辆系统。当输入构件之一保持静止时,PVT系统也可以作为固定速度的传动系统运行。在一台紧凑型装置中实现恒定速度的PVT,可以实现大范围的减速比(从1.05:1到50:1)。为了探索基于PVT的潜在变速传动概念的范围,考虑了600HP轻型旋翼飞机的两个边界情况。低旋翼速度(140 RPM)时,直升机传动装置的总减速比为285.7:1,高旋翼速度(300 RPM)时为133:1。案例研究中的传动是将第一个减速阶段的PVT比率为6.25:1与第二个减速阶段的PVT比率为45:1相结合,在第一个案例中,通过PVT比率为45:1实现了速度提升单位,而在第二个案例研究中,PVT以6:25:1的比例增加。分析了两个概念性PVT设计的关键设计要素,例如运动学特征,功率流,功率循环和部件扭矩,以研究不同减速比变速PVT单元对变速箱系统配置的影响。 PVT设计程序首先确定齿轮上的齿数以实现低速比。然后,计算速度控制构件的速度以实现所需的输出速度增加。两种系统均旨在在所有运行速度下最大程度地减少内部电源循环。分析表明,两个系统在转子转速提高(300RPM)时,会将大约50%的发动机功率分配给可变速单元(CVU)。组件的动静扭矩是通过系统运动学和功率流获得的。在更紧凑,更轻巧的CVU单元中,6.25:1比率变速单元的CVU承载的扭矩是45:1比率变速系统的2%;因此,通常,将CVU单元与低减速比PVT耦合是有利的。

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