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Optimization Design of High Stable Flexspline for Harmonic Drive System

机译:谐波传动系统高稳定性柔性花键的优化设计

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Harmonic drive (HD) systems benefit from their high transmission ratio and extremely low transmission error, therefore, they are widely applied to robotic and space sciences. High stable HD gains pupolarity in space drive mechanism. Flexspline plays an important role in HD, however, the high stable HD has a special flexspline different from the conventional one. The requirement of weight and volume is strict for space agencies, and hence it is necessary to optimize the structural dimensions of the special flexspline. This paper presents an optimization of the different flexspline by using response surface method. A finite element equivalent model of the flexspline was built. In addition, the optimized design points and response surface were provided to achieve an optimum flexspline, and Von-Mises stress sensitivity was obtained. Those lead to the conclusion that response surface method is effective when used to design the flexspline.
机译:谐波驱动(HD)系统得益于其高传动比和极低的传输误差,因此,它们被广泛应用于机器人和太空科学。高稳定的高清在太空驱动机制中获得了极性。 Flexspline在HD中起着重要的作用,但是,高稳定性HD具有不同于传统的Flexspline的特殊功能。太空机构对重量和体积的要求非常严格,因此有必要优化特殊柔性花键的结构尺寸。本文提出了一种使用响应面法对不同的柔性样条进行优化的方法。建立了样条的有限元等效模型。此外,提供了优化的设计点和响应面以实现最佳的柔度样条曲线,并获得了Von-Mises应力敏感度。这些得出的结论是,响应面法在设计柔性样条线时是有效的。

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