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Study of A Non-Circular Gear Infinitely Variable Transmission

机译:非圆齿轮无级变速器的研究

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Improving automobile fuel efficiency is an important research and development effort in the automotive industry. In the transmission area, it is generally understood that optimum fuel economy can be achieved via a combination of highly efficient power transfer (gears, for example) and an ability to transmit power at an infinite number of ratios (CVT, for example). In this paper, a geared infinitely variable transmission (IVT) is analyzed for efficiency through static analysis. This IVT is based on a non-circular gear concept described in [1, 2]. This IVT consists of multiple function generators with each function generator comprising two sets of non-circular gear sets whose outputs are combined with a summing planetary gear set. Each function generator provides the desired gear ratio for only a part of the driving rotation. So, multiple function generators are combined along with multiple one-way clutches to provide an infinitely variable transmission. This paper first explains the operating principle of the geared IVT. A static analysis of the IVT powerflow is derived and it is shown that this powerflow exhibits a torque recirculation phenomenon, which is not desired. This recirculation phenomenon is expected to be present in all similarly arranged IVTs where two inputs are combined using a planetary gear set to provide infinite gear ratio capability. The efficiency of the IVT is calculated based on assumed individual component efficiency and it is shown that, owing to torque recirculation, the efficiency of this transmission may not compare well with that of current automatic transmissions for a passenger car application.
机译:提高汽车燃料效率是汽车工业中的重要研发工作。在变速箱领域,通常可以理解,可以通过高效的动力传输(例如齿轮)和无穷多个传动比(例如CVT)的组合来实现最佳燃油经济性。本文通过静态分析来分析齿轮无级变速器(IVT)的效率。该IVT基于[1、2]中描述的非圆形齿轮概念。该IVT由多个函数发生器组成,每个函数发生器包括两组非圆形齿轮组,其输出与求和行星齿轮组组合在一起。每个函数发生器仅在一部分驱动旋转中提供所需的齿轮比。因此,多功能发电机与多个单向离合器结合在一起,可提供无级变速。本文首先说明齿轮式IVT的工作原理。对IVT动力流进行了静态分析,结果表明该动力流表现出扭矩再循环现象,这是不希望的。预期在所有类似布置的IVT中都会出现这种再循环现象,在IVT中,两个输入使用行星齿轮组组合在一起,以提供无限的齿轮比能力。 IVT的效率是根据假定的单个组件效率计算得出的,结果表明,由于扭矩再循环,该变速器的效率可能无法与乘用车应用中的当前自动变速器相提并论。

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