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- W3122870616 abstract "Abstract Electrohydrodynamic jet printing (e-jet printing) is a nascent additive manufacturing process most notable for extremely high resolution printing and having a vast portfolio of printable materials. These capabilities make e-jet printing promising for applications such as custom electronics and biotechnology fabrication. However, reliably fulfilling e-jet printing’s potential for high resolution requires delicate control of the volume deposited by each jet. Such control is made difficult by a lack of models that both capture the dynamics of volume deposition and are compatible with the control schemes relevant to e-jet printing. This work delivers such a model. Specifically, this work introduces a definition of “droplet volume” as a dynamically evolving variable rather than a static variable, and uses this definition along with analysis of high speed microscope videos to develop a hybrid dynamical system model of droplet volume evolution. This model is validated with experimental data, which involves the contribution of a novel technique for extracting consistent droplet volume measurements from videos." @default.
- W3122870616 created "2021-02-01" @default.
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- W3122870616 date "2020-10-05" @default.
- W3122870616 modified "2023-10-18" @default.
- W3122870616 title "A Control-Oriented Dynamical Model of Deposited Droplet Volume in Electrohydrodynamic Jet Printing" @default.
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- W3122870616 doi "https://doi.org/10.1115/dscc2020-3238" @default.
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