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首页> 外文期刊>Journal of Micromechanics and Microengineering >Optimization of a circular piezoelectric bimorph for a micropump driver
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Optimization of a circular piezoelectric bimorph for a micropump driver

机译:用于微型泵驱动器的圆形压电双压电晶片的优化

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摘要

Piezoelectric bimorph actuation has been successfully used in numerous types of microdevices, most notably micropumps. However, even for the simple case of circular geometry, analytical treatments are severely limited. This study utilized the finite-element method to optimize the deflection of a circular bimorph consisting of a single piezoelectric actuator, bonding material and elastic plate of finite dimensions. Optimum actuator dimensions were determined for given plate dimensions, actuator-to-plate stiffness ratio and bonding layer thickness. Dimensional analysis was used to present the results for fixed- and pinned-edge conditions in a generalized form for use as a design tool. For an optimally-thick actuator, the optimum actuator-to-plate radius ratio ranged from 0.81 to 1.0, and was independent of the Young's modulus ratio. For thin plates, a bonding layer minimally affected the optimum dimensions. The optimized actuator dimensions based on a model of an actual device were within 13% of the fixed-edge condition. [References: 18]
机译:压电双压电晶片致动已成功用于多种类型的微型设备中,最著名的是微型泵。然而,即使对于圆形几何的简单情况,分析处理也受到严格限制。这项研究利用有限元方法来优化由单个压电致动器,粘结材料和有限尺寸的弹性板组成的圆形双压电晶片的挠度。对于给定的板尺寸,执行器与板的刚度比和粘结层厚度,确定了最佳执行器尺寸。尺寸分析用于以广义形式表示固定边缘条件和固定边缘条件的结果,以用作设计工具。对于最佳厚度的致动器,最佳致动器与板的半径比范围为0.81至1.0,并且与杨氏模量比无关。对于薄板,粘结层对最佳尺寸的影响最小。基于实际设备模型的优化执行器尺寸在固定边缘条件的13%以内。 [参考:18]

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