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The Theory and Synthesis of High Effect Flywheel With Variable Equivalent Mass Moment of Inertia

机译:高效飞轮的理论与综合惯性等同物质量矩

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To reduce the angular velocity fluctuation of the input shaft to a machine, we deduced that a machine under the combined action of the inertia and the load may keep running smoothly if the equivalent kinetic energy (EKE) of the machine is constant during its operation. Furthermore, we introduced a novel type of flywheels with variable equivalent mass moment of inertia (VEMMoI) and without fixed connection with the input shaft to the machine. The kinetic energy fluctuation of the flywheel is used to dynamically decrease the EKE fluctuation of the original machine, thereby realizing smooth machine operation. Three types of flywheels with VEMMoI driven by a two-link dyad, a pair of noncircular gears and a planet cam respectively were designed as examples. The velocity fluctuation of the machine is significantly reduced. In the second and the third examples, in particular, the input shaft may rotate at a constant rate, since its angular velocity fluctuation is eliminated completely in principle.
机译:为了将输入轴的角速度波动降低到机器,我们推导出在惯性的组合动作下的机器,并且如果机器的等效动能(EKE)在其操作期间是恒定的,则负载可以平稳地运行。此外,我们引入了一种具有可变等同物质量惯性矩(vemmoi)的飞轮的小型飞轮,并且没有固定连接到机器到机器。飞轮的动能波动用于动态降低原机的EKE波动,从而实现平滑的机器操作。三种类型的由双链路成对驱动,VEMMoI飞轮,一对非圆齿轮和行星凸轮分别被设计为例子。机器的速度波动显着降低。在第二和第三示例中,特别地,输入轴可以以恒定速率旋转,因为原则上完全消除了其角速度波动。

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