• Medientyp: E-Artikel
  • Titel: Isogeometric analysis for simulation of progressive damage in composite laminates
  • Beteiligte: Pigazzini, Marco S.; Bazilevs, Yuri; Ellison, Andrew; Kim, Hyonny
  • Erschienen: SAGE Publications, 2018
  • Erschienen in: Journal of Composite Materials
  • Sprache: Englisch
  • DOI: 10.1177/0021998318770723
  • ISSN: 0021-9983; 1530-793X
  • Schlagwörter: Materials Chemistry ; Mechanical Engineering ; Mechanics of Materials ; Ceramics and Composites
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  • Beschreibung: <jats:p> The increasing popularity of composite materials in aerospace applications is creating the need for a new class of predictive methods and tools for the simulation of progressive damage in laminated fiber-reinforced composite structures. The unique challenges associated with modeling damage in these structures may be addressed by means of thin-shell formulations which are naturally developed in the context of Isogeometric Analysis. In this paper, we further validate our recently developed Isogeometric Analysis-based multi-layer shell model for progressive damage simulations using experimental data for low-velocity impact on a 24-ply flat panel. The validation includes a careful comparison of delamination and matrix damage patterns predicted by the Isogeometric Analysis-based simulation and those obtained from post-impact non-destructive evaluation of the damaged coupon. The Isogeometric Analysis-based formulation is then deployed on two additional examples: a stiffened panel and a full-scale UAV wing, to demonstrate its suitability for, and ease of application to, typical aerospace composite structures. </jats:p>