Using the Embedded Element Finite-Element Method to Simulate Impact of Dyneema® Plates

The embedded finite-element technique provides a unique approach for modeling of fiber-reinforced composites. Meshing fibers as distinct bundles represented by truss elements embedded in a matrix material mesh allow for the assignment of more specific material properties for each component rather than homogenization of all the properties. This approach also allows for different damage and failure properties to be assigned the matrix and fiber materials which could provide new insight into the failure of the composite material, but also presents unique challenges in the implementation of the finite-element method. Here, we present a proof-of-concept model of a plate of Dyneema® under impact conditions using the embedded element method to represent the cross-ply fibers grouped into truss elements. We show that the embedded truss elements provide an easy way to implement the orthotropic material properties and transmit stress waves through the plate in a way that is consistent with images from experimental data.

© The Author(s), under exclusive licence to the Korean Fiber Society 2023 (Springer Nature or its licensor holds exclusive rights to the article under a publishing agreement.)

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Work Title Using the Embedded Element Finite-Element Method to Simulate Impact of Dyneema® Plates
Access
Open Access
Creators
  1. Valerie A. Martin
  2. Thomas W. Hannah
  3. Steve Ellis
  4. Reuben H. Kraft
Keyword
  1. Finite-element analysis (FEA)
  2. Fibers
  3. Polymer–matrix composites
  4. Embedded elements
License In Copyright (Rights Reserved)
Work Type Article
Publisher
  1. Fibers and Polymers
Publication Date December 16, 2023
Publisher Identifier (DOI)
  1. https://doi.org/10.1007/s12221-023-00417-z
Deposited April 28, 2025

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Version 1
published

  • Created
  • Added s12221-023-00417-z.pdf
  • Added Creator Valerie A. Martin
  • Added Creator Thomas W. Hannah
  • Added Creator Steve Ellis
  • Added Creator Reuben H. Kraft
  • Published
  • Updated
  • Updated Work Title Show Changes
    Work Title
    • Using the Embedded Element Finite-Element Method to Simulate Impact of Dyneema<sup>®</sup> Plates
    • Using the Embedded Element Finite-Element Method to Simulate Impact of Dyneema® Plates
  • Updated Keyword, Subtitle, Publication Date Show Changes
    Keyword
    • Finite-element analysis (FEA), Fibers, Polymer–matrix composites, Embedded elements
    Subtitle
    • Using the Embedded Element Finite-Element Method to Simulate Impact of Dyneema® Plates
    Publication Date
    • 2024-02-01
    • 2023-12-16

Version 2
published

  • Created
  • Updated Creator Valerie A. Martin
  • Updated Creator Thomas W. Hannah
  • Updated Creator Steve Ellis
  • Deleted s12221-023-00417-z.pdf
  • Added AccessibleCopy_5-29_Using_the_Embedded_Element_Finite‑Element_Method-tagged.pdf
  • Published