Microfabrication of hybrid fluid membrane for microengines

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Abstract

This paper describes the microfabrication and dynamic characterization of thick membranes providing a technological solution for microengines. The studied membranes are called hybrid fluid-membrane (HFM) and consist of two thin membranes that encapsulate an incompressible fluid. This work details the microelectromechanical system (MEMS) scalable fabrication and characterization of HFMs. The membranes are composite structures based on Silicon spiral springs embedded in a polymer (RTV silicone). The anodic bonding of multiple stacks of Si/glass structures, the fluid filling and the sealing have been demonstrated. Various HFMs were successfully fabricated and their dynamic characterization demonstrates the agreement between experimental and theoretical results.

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Chutani, R., Formosa, F., De Labachelerie, M., Badel, A., & Lanzetta, F. (2015). Microfabrication of hybrid fluid membrane for microengines. In Journal of Physics: Conference Series (Vol. 660). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/660/1/012048

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