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Sensors  2010 

Dynamic Characteristics of a Hydraulic Amplification Mechanism for Large Displacement Actuators Systems

DOI: 10.3390/s100402946

Keywords: hydraulic amplification, liquid encapsulation, dynamic actuation, tactile display, MEMS

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Abstract:

We have developed a hydraulic displacement amplification mechanism (HDAM) and studied its dynamic response when combined with a piezoelectric actuator. The HDAM consists of an incompressible fluid sealed in a microcavity by two largely deformable polydimethylsiloxane (PDMS) membranes. The geometry with input and output surfaces having different cross-sectional areas creates amplification. By combining the HDAM with micro-actuators, we can amplify the input displacement generated by the actuators, which is useful for applications requiring large deformation, such as tactile displays. We achieved a mechanism offering up to 18-fold displacement amplification for static actuation and 12-fold for 55 Hz dynamic actuation.

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