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Simulation Study of Inertial Micro-Switch as Influenced by Squeeze-Film Damping and Applied Acceleration Load

机译:挤压膜阻尼和施加加速度载荷对惯性微动开关的仿真研究

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摘要

Squeeze-film damping and acceleration load are two major issues in the design of inertial micro-switches. In order to deeply and systematically study these two issues, this paper proposes a typical vertically-driven inertial micro-switch, wherein the air and electrode gaps were chosen to design the required damping ratio and threshold value, respectively. The switch was modeled by ANSYS Workbench, and the simulation program was optimized for computational accuracy and speed. Transient analysis was employed to investigate the relationship between the damping ratio, acceleration load, and the natural frequency, and the dynamic properties (including contact bounce, contact time, response time, and threshold acceleration) of the switch. The results can be used as a guide in the design of inertial micro-switches to meet various application requirements. For example, increasing the damping ratio can prolong the contact time of the switch activated by short acceleration duration or reduce the contact bounce of the switch activated by long acceleration duration; the threshold value is immune to variations in the damping effect and acceleration duration when the switch is quasi-statically operated; the anti-jamming capability of the switch can be improved by designing the sensing frequency of the switch to be higher than the acceleration duration but much lower than the other order frequencies of the switch.
机译:挤压膜阻尼和加速负载是惯性微动开关设计中的两个主要问题。为了深入系统地研究这两个问题,本文提出了一种典型的垂直驱动惯性微动开关,其中选择气隙和电极间隙分别设计所需的阻尼比和阈值。该开关由ANSYS Workbench建模,并且仿真程序针对计算精度和速度进行了优化。瞬态分析用于研究阻尼比,加速负载和固有频率之间的关系,以及开关的动态特性(包括触点弹跳,触点时间,响应时间和阈值加速度)。该结果可作为惯性微动开关设计的指南,以满足各种应用需求。例如,增加阻尼比可以延长短加速持续时间激活的开关的接触时间,或者减少长加速持续时间激活的开关的触点弹跳。当开关准静态操作时,该阈值不受阻尼作用和加速持续时间变化的影响;通过将开关的感测频率设计为高于加速持续时间但远低于开关的其他阶次频率,可以提高开关的抗干扰能力。

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