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    Incorporation of Automated Ball Indentation Methodology for Studying Powder Bed Fabricated 304L Stainless Steel

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    2018-111-Karnati.pdf (757.0Kb)
    Date
    2018
    Author
    Karnati, Sreekar
    Hoerchler, Jack
    Flood, Aaron
    Liou, Frank
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    Abstract
    Automated Ball Indentation (ABI) is a viable method for estimating the ductility, yield stress, and ultimate stress, among other metrics, in different metallic materials. Currently, ABI data analysis utilizes Holloman’s Power Law to model the plastic region of the true stress-true strain curve. While this formulation is accurate for some materials, its relevance for additively manufactured austenitic stainless steels, such as 304L, needed investigation. The deviation of the material’s plastic behavior from the Power Law was investigated. In order to better model this behavior, both the Voce and Ludwigson formulation were investigated. These formulations were tested for both wrought and additively manufactured 304L stainless steel. Regression analysis was used to choose the appropriate fit. The chosen formulation was then used to generate a material model to simulate the ABI process. These simulations were validated through experimental analysis.
    Department
    Mechanical Engineering
    Subject
    automated ball indentation
    plastic behavior
    Power Law
    304L
    stainless steel
    powder bed fabrication
    URI
    https://hdl.handle.net/2152/90211
    http://dx.doi.org/10.26153/tsw/17132
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    • facebook
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    © The University of Texas at Austin