首页> 外文期刊>Journal of microanolithography, MEMS, and MOEMS >Investigation of mechanics properties of an awl-shaped serpentine microspring for in-plane displacement with low spring constant-to-layout area
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Investigation of mechanics properties of an awl-shaped serpentine microspring for in-plane displacement with low spring constant-to-layout area

机译:锥状蛇形微弹簧的平面内位移低弹簧常数至布局面积的力学特性研究

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摘要

The design, fabrication, and experimental test of an awl-shaped serpentine microspring (ASSM) for providing in-plane motion and low spring constant-to-layout area are investigated. The ASSM can provide low stiffness for in-plane motion under a restricted layout area. The spring constants of ASSMs for in-plane motion are theoretically analyzed by using Castigliano's theorem, and validated through simulation using COMSOL Multiphysics. These ASSMs are successfully fabricated on a silicon-on-insulator wafer. The parameter K/A (spring constant-to-layout area) is used as the performance index. Smaller K/A induces larger deformation under the same layout area. It shows that K/A of ASSM is smaller than the classic one with the same dimensions (total length and number of turns). Geometric sizes having effect on K/A are discussed. The spring constants for in-plane and out-of-plane motion are compared and discussed. The taper angle and beam width-to-thickness ratio (w/h) are two key factors. As w/h being >1, the spring constant of in-plane motion (k_y) is always larger than that of out-of-plane motion (k_z). If w/h is <1, the spring constant k_z would be larger than k_y if the taper angle are larger than its critical angle φ_r.
机译:研究了锥状蛇形微弹簧(ASSM)的设计,制造和实验测试,该弹簧可提供面内运动和低弹簧常数至布局面积。 ASSM可以在有限的布局区域内为平面内运动提供低刚度。使用卡斯蒂利亚诺定理,对ASSM平面运动的弹簧常数进行了理论分析,并使用COMSOL Multiphysics通过仿真对其进行了验证。这些ASSM成功地制造在绝缘体上硅晶片上。参数K / A(弹簧常数到布局区域)用作性能指标。在相同的布局面积下,较小的K / A会引起较大的变形。它表明,具有相同尺寸(总长度和匝数)的经典ASSM的K / A较小。讨论了影响K / A的几何尺寸。比较并讨论了平面内和平面外运动的弹簧常数。锥角和光束宽度与厚度的比率(w / h)是两个关键因素。当w / h> 1时,平面内运动的弹簧常数(k_y)总是大于平面外运动的弹簧常数(k_z)。如果w / h <1,则当锥角大于其临界角φ_r时,弹簧常数k_z将大于k_y。

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