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Design considerations for negative Poisson ratio structures under large deflection for MEMS applications

机译:MEMS应用中大挠度下负泊松比结构的设计考虑

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Negative Poisson ratio (NPR) materials based on a re-entrant honeycomb structure expand in the direction perpendicular to an externally exerted tension. This feature makes NPR structures attractive for use in microsensors and actuators as versatile motion transformers. When implemented in microdevices, where slender and flexible micromachined elements are widely used, the NPR material can tolerate large deflections. In the present work, motivated by the development of an optical sensor based on a photonic crystal device attached to a NPR based structure, we analyze the behavior of re-entrant honeycomb structures under large deflections. The model of the structure is built using extensible elastica theory for the description of geometrically nonlinear beams with an extensible axis. Results provided by the analytical model are compared with numerical results obtained by the finite element method. It is shown that the Poisson ratio (nu), which is defined entirely by the initial geometry of the structure undergoing small deflections, becomes strain dependent at large deflections. The extensibility of the beam's axis has a strong influence on the. of the structure at large deflections and leads to the appearance of a minimum on the strain-nu curve. An example of design is demonstrated which yields a desired strain-independent nu of the NPR structure under large deflections.
机译:基于凹角蜂窝结构的负泊松比(NPR)材料在垂直于外部张力的方向上扩展。此功能使NPR结构作为多功能运动变压器可用于微传感器和执行器。当在广泛使用细长且柔性微机械元件的微型设备中实施时,NPR材料可以承受较大的挠曲。在当前的工作中,受基于连接到基于NPR的结构的基于光子晶体器件的光学传感器的开发的启发,我们分析了大变形下凹角蜂窝结构的行为。使用可扩展弹性理论建立结构模型,以描述具有可扩展轴的几何非线性梁。将分析模型提供的结果与有限元方法获得的数值结果进行比较。结果表明,泊松比(nu)完全由经历小挠度的结构的初始几何形状定义,在大挠度下变得与应变有关。梁的轴的可扩展性对其影响很大。大挠度下的结构变形,导致在应变-nu曲线上出现最小值。演示了一个设计示例,该示例在大挠度下产生了NPR结构的所需应变独立nu。

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