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Vibration modeling and testing of bilayer beams for determination of film elastic modulus

机译:用于确定薄膜弹性模量的双层梁的振动建模和测试

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摘要

Analysis of the main parameters affecting the fundamental vibrating frequency of film/substrate bilayer beams of rectangular cross-section is discussed based on modeling and testing. Initially, the limits of validity of two analytical models to obtain the fundamental frequency of perfectly-bonded bilayer beams in cantilever configuration are determined by comparing the predicted frequencies to a finite element model developed herein. Using a selected analytical formulation, a modeling-assisted methodology is employed to investigate the parameters that are most influential on the determination of the elastic modulus of the film using a vibratory technique. Modeling suggests the use of thin compliant substrates for extracting the modulus of stiff (metallic) films. If the substrate is stiffer than the film, a thicker film is required to yield measurable shifts in the resonant frequency. The elastic modulus of a millimeter-thick thermosetting polymer extracted by this method agrees with the results obtained from conventional tensile testing of the polymer. Measurements carried out on a gold (100 nm)/polysulfone (130 (mu)m) system yield an average elastic modulus of the gold film similar to the values reported in the literature.
机译:在建模和测试的基础上,讨论了影响矩形截面膜/基底双层梁基本振动频率的主要参数。最初,通过将预测频率与本文开发的有限元模型进行比较,确定了两个分析模型在悬臂结构中获得完美结合的双层梁的基本频率的有效性极限。使用选定的分析配方,采用建模辅助方法来研究对使用振动技术确定薄膜的弹性模量最有影响的参数。建模建议使用薄的顺应性基板来提取硬(金属)膜的模量。如果基材比薄膜坚硬,则需要更厚的薄膜才能产生可​​测量的谐振频率偏移。通过这种方法提取的毫米厚的热固性聚合物的弹性模量与从常规的聚合物拉伸试验中获得的结果一致。在金(100nm)/聚砜(130μm)系统上进行的测量产生金膜的平均弹性模量,类似于文献中报道的值。

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