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A study on the precision of mechanical watch movement with Tourbillon

机译:陀飞轮机械表机芯的精度研究

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Despite its long history, detailed studies on the dynamics of mechanical watch movement are still lacking. In this paper, extending our previous mechanics model, the dynamical wave motion of the hairspring - balance wheel assembly, the core of the timekeeping mechanism called the escapement, is analyzed by partial differential equations. It is found that the corresponding eigenfunctions may be formulated into a Fourier series, through which the relative amplitudes of high order harmonics can be obtained. The relative error incurred owing to the high order harmonics is estimated to be around 10 ~(-3), or 10~2 s/day, much higher than the needed accuracy. This is why manual adjustment is needed in practice. Moreover, addition of the pricy Tourbillon mechanism, which is designed to counteract the gravity effect, is found to trigger complexity in the motion and hence, may not be worth much.
机译:尽管历史悠久,但仍缺乏对机械表机芯动力学的详细研究。在本文中,通过扩展我们先前的力学模型,通过偏微分方程分析了游丝-摆轮组件的动态波动,该游丝是摆轮计时机构的核心。发现可以将对应的本征函数表述为傅立叶级数,通过该傅立叶级数可以获得高阶谐波的相对幅度。由于高次谐波而引起的相对误差估计约为10〜(-3)或10〜2 s / day,远远高于所需的精度。这就是为什么在实践中需要手动调整的原因。而且,发现昂贵的陀飞轮机构被设计来抵消重力作用,这会触发运动的复杂性,因此可能不值一提。

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