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MULTILAYER MICROELECTROMECHANICAL STRUCTURES FOR MATERIAL PROPERTY CHARACTERIZATION

机译:材料性质表征多层微机电结构

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A new class of micro-electro-mechanical systems (MEMS) for material characterization is presented. These multilayered structures are lateral resonators which allow the determination of material properties of the different materials making up the system. Of particular significance is the ability to characterize many new materials previously untestable by resonant techniques. The basic lateral resonant structures are made of a single material, usually doped polycrystalline silicon, with beams anchored to the substrate at one end and supporting a rigid mass at the other. The rigid mass has a comb-shaped region on each side for electrostatically actuating and sensing the motion. The use of this electrostatic comb drive requires that the structure be made of a material that is electrically conductive. Thus, the class of materials which is amenable to characterization by resonance techniques has been somewhat limited. Multilayer structures, tested in conjunction with these basic monolithic structures, permit properties of both the base material and the subsequent layers to be determined. Stiffness and mass density of many new materials can be obtained by comparing the behavior of multilayer structures with their single-layer counterparts. Experimental designs and the associated analytical techniques for obtaining various properties are presented.
机译:提出了一种用于材料表征的新型微电机械系统(MEMS)。这些多层结构是横向谐振器,其允许确定构成系统的不同材料的材料特性。特别重要的是能够通过谐振技术来表征以前不可能的许多新材料。基本的横向谐振结构由单个材料,通常掺杂的多晶硅硅制成,梁在一端锚定到基板并支撑另一端的刚性质量。刚性质量在每侧具有梳形区域,用于静电致动和感测运动。这种静电梳驱动器的使用要求该结构由导电的材料制成。因此,通过谐振技术表征的表征的类别已经有所限制。多层结构与这些基本的整体结构结合测试,允许基材和后续层的性能进行测试。通过将多层结构与单层对应物的行为进行比较,可以获得许多新材料的刚度和质量密度。提出了用于获得各种性质的实验设计和相关的分析技术。

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