首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >PARAMETRIC STUDY ON BEAM DEFLECTION USING PHOTOSTRICTIVE OPTICAL ACTUATORS: A FINITE ELEMENT MODELING APPROACH
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PARAMETRIC STUDY ON BEAM DEFLECTION USING PHOTOSTRICTIVE OPTICAL ACTUATORS: A FINITE ELEMENT MODELING APPROACH

机译:光敏光学致动器对光束偏转的参数研究:一种有限元建模方法

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The objective of this work is to study the effect of three important parameters such as photostrictive actuator thickness, incident light intensity and convective heat transfer coefficient on a silicon cantilever beam with thin photostrictive optical actuator film surface. The authors have developed a computational method useful for design of systems incorporating thin film photostrictive actuators. The element has been implemented in an in-house finite element code named BAMAFEM. A finite element for static analysis of photostrictive thin films has already been developed and verified with analytical analysis approach of another author. To the best of our knowledge, finite element parametric analysis of the photostrictive thin film has not been extensively studied, if studied at all.Photostrictive materials, such as PLZT, demonstrate significant photostrictive behavior under illumination by high-energy light, which can be considered a superposition of a bulk photovoltaic effect and a converse piezoelectric effect. Photostrictive actuators can directly convert photonic energy to mechanical motion. Photostrictive materials can produce strain as a result of irradiation from high-intensity light. Neither electric lead wires nor electric circuits are required. Thus, photostrictive actuators are relatively immune from electrical interference. They have potential use in numerous MEMS devices. At least from the computational point of view, it would be interesting to investigate the effect of different parameters in the actuation of beam using the thin film photostrictive actuators to develop a finite element model useful for design of numerous MEMS and NANO systems having photostrictive actuators.
机译:这项工作的目的是研究光致伸缩致动器膜表面薄的硅悬臂梁上光致伸缩致动器厚度,入射光强度和对流传热系数等三个重要参数的影响。作者已经开发出一种计算方法,可用于设计结合了薄膜光致伸缩执行器的系统。该元素已在名为BAMAFEM的内部有限元素代码中实现。已经开发了一种用于光致伸缩薄膜静态分析的有限元,并已通过另一位作者的分析方法进行了验证。据我们所知,光致伸缩薄膜的有限元参数分析(如果已进行了研究)还没有得到广泛研究。 光致伸缩材料(例如PLZT)在高能光照射下显示出显着的光致伸缩行为,可以认为这是体光伏效应和逆压电效应的叠加。光致伸缩执行器可以直接将光子能量转换为机械运动。由于高强度光的照射,光致伸缩材料会产生应变。既不需要电线,也不需要电路。因此,光致伸缩致动器相对不受电干扰。它们在许多MEMS器件中都有潜在的用途。至少从计算的角度来看,使用薄膜光致伸缩致动器来研究光束致动中不同参数的影响,以开发可用于设计具有光致伸缩致动器的众多MEMS和NANO系统的有限元模型将是有趣的。

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