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Analysis and Design of a Novel Continuously Variable Transmission for Robotics

机译:一种新型机器人无级变速器的分析与设计

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In this paper, we have studied a novel continuously variable transmission (CVT), which has the potential to be applied to robotics. The transmission principle of the CVT is based on Vbelt transmission and planetary gear train transmission to get large reduction ratio, and its design motivation employs the theory of nested structure to realize a compact CVT. Next, we carry out dynamic simulation on the CVT with different loads and different transmission ratios to analyze work efficiency, and then analyze the dynamics of the planet carrier under the constant torque input. Finally, we develop a prototype with hydraulic drive to adjust the transmission ratio, and design a V-belt composed of multiple metal sheets that can be pre-tightened.
机译:在本文中,我们研究了一种新颖的无级变速箱(CVT),它有可能应用于机器人技术。 CVT的传动原理是基于Vbelt传动和行星齿轮系传动,以实现较大的减速比,其设计动机是采用嵌套结构理论来实现紧凑型CVT。接下来,我们对具有不同负载和不同传动比的CVT进行动态仿真,以分析工作效率,然后分析恒转矩输入下行星架的动力学。最后,我们开发了一个具有液压驱动装置的原型,以调节传动比,并设计了一种由多个可预紧的金属板组成的三角皮带。

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