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Discrete Spring Model for Predicting Delamination Growth in Z-Fiber Reinforced Dcb Specimens by James G. Ratcliffe, Kevin T. O'Brien, Nasa Technical Reports Server (Ntrs) - Paperback
60.90 AED

Discrete Spring Model for Predicting Delamination Growth in Z-Fiber Reinforced Dcb Specimens by James G. Ratcliffe, Kevin T. O'Brien, Nasa Technical Reports Server (Ntrs) - Paperback

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Category Type
Politics
ISBN
9781287269632
Author
James G. Ratcliffe, Kevin T. O'Brien, Nasa Technical Reports Server (Ntrs)
Publisher
Bibliogov
Description:

Beam theory analysis was applied to predict delamination growth in DCB specimens reinforced in the thickness direction with pultruded pins, known as Z-fibers. The specimen arms were modeled as cantilever beams supported by discrete springs, which were included to represent the pins. A bi-linear, irreversible damage law was used to represent Z-fiber damage, the parameters of which were ...

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    Specifications

    Category Type
    Politics
    ISBN
    9781287269632
    Item EAN
    2724352857973
    People
    Author
    James G. Ratcliffe, Kevin T. O'Brien, Nasa Technical Reports Server (Ntrs)
    People
    Publisher
    Bibliogov
    Category Type
    Politics
    ISBN
    9781287269632
    Item EAN
    2724352857973
    People
    Author
    James G. Ratcliffe, Kevin T. O'Brien, Nasa Technical Reports Server (Ntrs)
    People
    Publisher
    Bibliogov
    Technical Information
    Binding
    Paperback
    Languages and countries
    Book Language
    English
    Read more
  •  

    Description:

    Beam theory analysis was applied to predict delamination growth in DCB specimens reinforced in the thickness direction with pultruded pins, known as Z-fibers. The specimen arms were modeled as cantilever beams supported by discrete springs, which were included to represent the pins. A bi-linear,

    Beam theory analysis was applied to predict delamination growth in DCB specimens reinforced in the thickness direction with pultruded pins, known as Z-fibers. The specimen arms were modeled as cantilever beams supported by discrete springs, which were included to represent the pins. A bi-linear, irreversible damage law was used to represent Z-fiber damage, the parameters of which were obtained from previous experiments. Closed-form solutions were developed for specimen compliance and displacements corresponding to Z-fiber row locations. A solution strategy was formulated to predict delamination growth, in which the parent laminate mode I fracture toughness was used as the criterion for delamination growth. The solution procedure was coded into FORTRAN 90, giving a dedicated software tool for performing the delamination prediction. Comparison of analysis results with previous analysis and experiment showed good agreement, yielding an initial verification for the analytical procedure.

    Product Features:
    • Category: Politics
    • Binding: Paperback
    • Language of Text: English
    • Author(s): James G. Ratcliffe, Kevin T. O'Brien, Nasa Technical Reports Server (Ntrs)
    • Publisher: Bibliogov
    • ISBN: 9781287269632
    • Number of Pages: 44
    • Dimensions: 9.69 x 7.44 x 0.09 inches
 

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