2020•Lab on a ChipRequires access

Finger-powered fluidic actuation and mixing via MultiJet 3D printing

Eric C. Sweet, Rudra Mehta, Yifan Xu, Ryan Jew, Rachel Lin, Liwei Lin

Open publisher page 36 citations

Abstract

without the use of electricity. Moreover, a portable human-powered two-fluid pulsatile fluidic mixer, capable of generating fully-mixed fluids in 10 seconds, is presented, demonstrating the application of FPAs towards on-chip integration into more complex 3D printed fluidic networks.

About this research paper

What this paper is about

without the use of electricity. Moreover, a portable human-powered two-fluid pulsatile fluidic mixer, capable of generating fully-mixed fluids in 10 seconds, is presented, demonstrating the application of FPAs towards on-chip integration into more complex 3D printed fluidic networks.

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OpenAlex reports 36 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

without the use of electricity. Moreover, a portable human-powered two-fluid pulsatile fluidic mixer, capable of generating fully-mixed fluids in 10 seconds, is presented, demonstrating the application of FPAs towards on-chip integration into more complex 3D printed fluidic networks.

Key concepts: Fluidics, Mixing (physics), Mechanical engineering, Microfluidics, Engineering, Materials science, Electrical engineering, Nanotechnology

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