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首页> 外文期刊>Journal of Micromechanics and Microengineering >Evaluating three-dimensional effects on the behavior of compliant bistable micromechanisms
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Evaluating three-dimensional effects on the behavior of compliant bistable micromechanisms

机译:评估顺应性双稳态微力学行为的三维效应

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Fully compliant bistable micromechanisms (FCBMs) have potential use in numerous applications, including switches, relays, shutters and low-power sensing arrays. Two-dimensional finite element models for these FCBMs have been used in device analysis and design, and provided an adequate match to preliminary experimental data. However, with more extensive experimentation over a large range of designs, some results proved to be radically different than predicted, with trends not consistent with effects such as stiction or electrostatic forces. Two different types of behavior, Behavior 1 and Behavior 2, are observed and explained, only one of which is predicted by 2D models. This paper tests the hypothesis that three-dimensional effects can dramatically influence the motion characteristics of FCBMs. Three-dimensional finite element models were constructed, compared to 2D models, and validated for the purpose of testing the hypothesis. Off-axis and eccentric loads are shown to cause behavior consistent with experimental data for Behavior 2.
机译:完全兼容的双稳态微机构(FCBM)在许多应用中都有潜在的用途,包括开关,继电器,百叶窗和低功率传感阵列。这些FCBM的二维有限元模型已用于设备分析和设计中,并与初步的实验数据充分匹配。但是,在大范围的设计中进行了更广泛的实验后,一些结果证明与预期的结果根本不同,其趋势与诸如静力或静电力等效应不一致。观察并解释了两种不同类型的行为,即行为1和行为2,其中只有一种是由2D模型预测的。本文检验了以下三个假设:三维效应会极大地影响FCBM的运动特性。构建了三维有限元模型,并将其与2D模型进行了比较,并进行了验证,以检验假设。轴外和偏心载荷显示出与行为2的实验数据一致的行为。

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