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HomeAuthorsFurlani E.P.

Authors: Furlani E.P.

Thermally Induced Marangoni Instability of Liquid Microjets with Application to Continuous Inkjet Printing

Furlani E.P., Price B.G., Hawkins G., Lopez A.G., Eastman Kodak Co., US
Liquid microjets are inherently unstable and can be broken into droplets in a controllable fashion via thermal modulation of surface tension. Such modulation can be achieved using CMOS/MEMS technology by integrating resistive heating elements around [...]

Analysis of Magnetic Particle Capture in the Microvasculature

Furlani E.P., Ng K.C., Sahoo Y., University at Buffalo, US
An analytical model is described for predicting the capture of therapeutic magnetic nanoparticles in the microvasculature. The particles consist of a magnetic core coated with surface-bound anticancer agents, and are directed to a tumor using [...]

Thermal Modulation and Instability of Viscous Microjets

Furlani E.P., Eastman Kodak Company, US
Liquid microjets are inherently unstable and can be broken into droplets by various means including the modulation of pressure, velocity, and/or fluid properties. In this presentation we discuss the controlled breakup of viscous microjets via [...]

A MOEMS Electrothermal Grating

Furlani E.P., Eastman Kodak Research Labs, US
We present a thermoelastically driven MOEMS light modulator in the form of an ElectroThermal Grating (ETG). The ETG consists of an array of equally spaced bilayer microbeams suspended at both ends above a substrate (Fig. [...]

Analytical Analysis of a Squeeze Film Dominated MEMS Fluid Ejector

Furlani E.P., Lebens J.A., Eastman Kodak Company, US
We present an analytical model for predicting the behavior of a squeeze film dominated MEMS fluid ejector. The device consists of a piston that moves parallel to an orifice plate, with a thin film of [...]

Surface Tension Induced Instability of Viscous Liquid Jets

Furlani E.P., Delametter C.N., Chwalek J.M., Trauernicht D., Eastman Kodak Company, US
Viscous liquid jets are inherently unstable, and drop formation can be induced by various means including surface tension modulation. Furthermore, surface tension is temperature dependent, and can be modulated by locally heating the surface of [...]

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