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首页> 外文期刊>Journal of Fluids and Structures >Vibrations of micron-sized fluid membranes induced via pulsed laser excitation
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Vibrations of micron-sized fluid membranes induced via pulsed laser excitation

机译:通过脉冲激光激发诱导微米尺寸的流体膜的振动

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We study the acoustic vibrations of three different micron-sized square fluid membranes induced by means of a nanosecond pulsed laser. Several vibration modes in the kHz range are excited when the metallic frame, on which the fluid membrane is suspended, undergoes rapid thermal expansion after absorption of the pulsed laser light. The vibration frequencies detected are compared with a model based on bending vibrations of the fluid film similar to those in a solid membrane. Finite element method based simulations are employed to calculate the membrane deformation for different excitation cases of light absorption, as well as the highest excited modes. In addition we explore the effect on the film vibrations due to the inclusion of carbon nanofibers in the fluid membrane. The carbon nanofibers affect the surface tension in a way that couples bending modes to Marangoni waves in the membrane. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们研究了借助于纳秒脉冲激光诱导的三种不同微米尺寸方形膜的声学振动。 当悬浮在脉冲激光的吸收后,kHz范围内的几种振动模式在悬浮的金属框架上进行快速热膨胀时,激发。 检测到检测到的振动频率与基于类似于固体膜中的流体膜的弯曲振动的模型进行比较。 基于有限元方法的模拟用于计算不同励磁病例的膜变形,以及最高激发模式。 此外,我们探讨了由于在流体膜中包含碳纳米纤维而对膜振动的影响。 碳纳米纤维以耦合弯曲模式到膜中的Marangoni波的方式影响表面张力。 (c)2018年elestvier有限公司保留所有权利。

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