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Geometrical and mechanical characteristics of deformed balance spring obtained by simulation study

机译:通过仿真研究获得变形摆轮的几何和机械特性

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This paper analyzes the geometrical and mechanical characteristics of balance springs, which have the most important influence on the oscillation rate of the balance wheel and, consequently, the most decisive effects on the timekeeper's accuracy. These characteristics are obtained by a set of SolidWorks simulations of static structural studies based on the finite element model, which are performed and accomplished in a specific and original way. Our study demonstrates that the position of the balance spring center of mass and its momentum of inertia are not constant but depend on the angular displacement of the spring collet end. It also shows that the torque spring rate (the spring stiffness) varies as a function of angular displacement during the balanced spring twist. All results are presented numerically and graphically by a set of diagrams and can contribute to the better understanding of the balance spring geometrical and mechanical features and, therefore, be applied for improving a timepiece's accuracy. Moreover, the method of simulation study disclosed and explained in this paper provides general suggestions and guidance for similar studies. The accuracy of the presented results, as well as the validity of the complete simulation-based method, is proven by the experimentally determined relationship between balance spring restoring torque, stiffness, and spring angular displacement.
机译:本文分析了游丝的几何和机械特性,这些特性对摆轮的振动速率具有最重要的影响,因此对计时精度的影响最大。这些特性是通过基于有限元模型的一组SolidWorks静态结构研究模拟获得的,这些模拟以特定和原始的方式执行和完成。我们的研究表明,游丝质量中心的位置及其惯性动量不是恒定的,而是取决于弹簧夹头端的角位移。它还表明,在平衡弹簧扭转过程中,扭矩弹簧刚度(弹簧刚度)随角位移而变化。所有结果均通过一组图表以数字方式和图形方式呈现,有助于更好地理解游丝的几何和机械特性,因此可用于提高时计的准确性。此外,本文公开和解释的模拟研究方法为类似研究提供了一般建议和指导。通过平衡弹簧复位扭矩,刚度和弹簧角位移之间的实验确定的关系,证明了所提出结果的准确性以及基于模拟的完整方法的有效性。

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