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    3D Inkjet Printing of Conductive Structures using In-Situ IR sintering

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    2015-124-Saleh.pdf (1.767Mb)
    Date
    2015
    Author
    Saleh, E.
    Vaithilingam, J.
    Tuck, C.
    Wildman, R.
    Ashcroft, I.
    Hague, R.
    Dickens, P.
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    Abstract
    In this study we investigate the inkjet printing of a silver nanoparticle ink and the optimization of IR sintering conditions to form 3D inkjet-printed conductive structures. The understanding of the interaction between the silver layers and the sintering conditions are key elements to successfully build conductive tracks in 3D. The drop size of conductive ink on glass substrates as well as on sintered conductive film was measured to optimize the printing resolution. The resistivity of the sintered deposition was studied in a planar X-Y direction as well as in a vertical Z direction to analyze the effects of stacking hundreds of silver layers in different deposition orientations. Using the results of the optimized printing and sintering conditions, conductive tracks were demonstrated forming simple 3D inkjet-printed structures powering electronic components.
    Department
    Mechanical Engineering
    Subject
    3D inkjet printing
    silver ink
    conductive structures
    IR sintering
    URI
    https://hdl.handle.net/2152/89438
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    © The University of Texas at Austin