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Design and optimization of silicon bridges in a tourbillon watch

机译:陀飞轮手表中硅桥的设计与优化

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Tourbillon was invented to cancel the gravity effect on the timekeeping accuracy of a mechanical watch. However, the complicated structure generates new errors. In the last decade, micro-electro-mechanical system (MEMS) technology appeared in Swiss watch industry and showed advantages in design flexibility and fabrication precision. In this paper, a new application, silicon bridges, is introduced in a tourbillon watch. A mathematical model of the forces and torques in the mechanism is developed in both horizontal and vertical positions. Using the model, the silicon bridges are designed and optimized based on a specific movement. The result shows that the properties of the mechanism improve due to the material and design. Prototypes were made by Deep Reactive Ion Etching (DRIE) method.
机译:陀飞轮被发明以取消对机械表的计时精度的重力影响。但是,复杂的结构会产生新的错误。在过去的十年中,瑞士手表行业出现了微电机械系统(MEMS)技术,并在设计灵活性和制造精度方面表现出优势。在本文中,在陀飞轮手表中引入了一种新的应用硅桥。该机构中的力和扭矩的数学模型是在水平和垂直位置开发的。使用该模型,基于特定运动设计和优化硅桥。结果表明,由于材料和设计,机构的性质改善。通过深反应离子蚀刻(Drie)方法制造原型。

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