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Computational Modeling of Damage and Fracture in Composite Materials
Computational Modeling of Damage and Fracture in Composite Materials
118,70
131,89 €
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The work is focused on the study of damage and fracture mechanics with emphasis to composite materials which are widely employed in the aerospace industry. For this purpose, a cohesive-frictional model for the prediction of interlaminar damage and a non-local constitutive model for intralaminar progressive damage simulation in composite laminated structures were defined. The proposed constitutive models were developed for commercial finite element software ABAQUS by means of user-defined materi…
  • Publisher:
  • Year: 2014
  • ISBN-10: 363966924X
  • ISBN-13: 9783639669244
  • Format: 15.2 x 22.9 x 0.8 cm, softcover
  • Language: English
  • SAVE -10% with code: EXTRA

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The work is focused on the study of damage and fracture mechanics with emphasis to composite materials which are widely employed in the aerospace industry. For this purpose, a cohesive-frictional model for the prediction of interlaminar damage and a non-local constitutive model for intralaminar progressive damage simulation in composite laminated structures were defined. The proposed constitutive models were developed for commercial finite element software ABAQUS by means of user-defined material subroutine written in FORTRAN. To verify the effectiveness of the implemented models numerical simulations were conducted and validated by experimental results available from literature.

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  • Author: Maio Leandro
  • Publisher:
  • Year: 2014
  • ISBN-10: 363966924X
  • ISBN-13: 9783639669244
  • Format: 15.2 x 22.9 x 0.8 cm, softcover
  • Language: English English

The work is focused on the study of damage and fracture mechanics with emphasis to composite materials which are widely employed in the aerospace industry. For this purpose, a cohesive-frictional model for the prediction of interlaminar damage and a non-local constitutive model for intralaminar progressive damage simulation in composite laminated structures were defined. The proposed constitutive models were developed for commercial finite element software ABAQUS by means of user-defined material subroutine written in FORTRAN. To verify the effectiveness of the implemented models numerical simulations were conducted and validated by experimental results available from literature.

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