• Login
    Search 
    •   Home
    • Office of Sponsored Research (OSR)
    • Search
    •   Home
    • Office of Sponsored Research (OSR)
    • Search
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Filter by Category

    Author
    Kueck, Aaron (1)
    Papadopoulos, Panayiotis (1)Pelton, Alan R. (1)Sengupta, Arkaprabha (1)Journal
    Computational Mechanics (1)
    PublisherSpringer Nature (1)Subject
    Finite elements (1)
    Monolithic solution (1)
    Nitinol (1)Phase transformation (1)Thermomechanics (1)View MoreTypeArticle (1)Year (Issue Date)
    2011 (1)
    Item Availability
    Metadata Only (1)

    Browse

    All of KAUSTCommunitiesIssue DateSubmit DateThis CommunityIssue DateSubmit Date

    My Account

    Login

    Quick Links

    Open Access PolicyORCID LibguidePlumX LibguideSubmit an Item

    Statistics

    Display statistics
     

    Search

    Show Advanced FiltersHide Advanced Filters

    Filters

    Now showing items 1-1 of 1

    • List view
    • Grid view
    • Sort Options:
    • Relevance
    • Title Asc
    • Title Desc
    • Issue Date Asc
    • Issue Date Desc
    • Submit Date Asc
    • Submit Date Desc
    • Results Per Page:
    • 5
    • 10
    • 20
    • 40
    • 60
    • 80
    • 100

    • 1CSV
    • 1RefMan
    • 1EndNote
    • 1BibTex
    • Selective Export
    • Select All
    • Help
    Thumbnail

    On phase transformation models for thermo-mechanically coupled response of Nitinol

    Sengupta, Arkaprabha; Papadopoulos, Panayiotis; Kueck, Aaron; Pelton, Alan R. (Computational Mechanics, Springer Nature, 2011-03-31) [Article]
    Fully coupled thermomechanical models for Nitinol at the grain level are developed in this work to capture the inter-dependence between deformation and temperature under non-isothermal conditions. The martensite transformation equations are solved using a novel algorithm which imposes all relevant constraints on the volume fractions. The numerical implementation of the resulting models within the finite element method is effected by the monolithic solution of the momentum and energy equations. Validation of the models is achieved by means of thin-tube experiments at different strain rates. © 2011 Springer-Verlag.
    DSpace software copyright © 2002-2019  DuraSpace
    Quick Guide | Contact Us | Send Feedback
    Open Repository is a service hosted by 
    Atmire NV
     

    Export search results

    The export option will allow you to export the current search results of the entered query to a file. Different formats are available for download. To export the items, click on the button corresponding with the preferred download format.

    By default, clicking on the export buttons will result in a download of the allowed maximum amount of items. For anonymous users the allowed maximum amount is 50 search results.

    To select a subset of the search results, click "Selective Export" button and make a selection of the items you want to export. The amount of items that can be exported at once is similarly restricted as the full export.

    After making a selection, click one of the export format buttons. The amount of items that will be exported is indicated in the bubble next to export format.