m (Scipediacontent moved page Draft Content 856487921 to Turon et al 2020a) |
|||
Line 15: | Line 15: | ||
== Full document == | == Full document == | ||
− | <pdf>Media: | + | <pdf>Media:Turon_et_al_2020a_7920_p18.pdf</pdf> |
− | + | ||
== References == | == References == |
The aim of this work is to describe the structural analysis of a multifunctional aircraft fuselage panel. The structure of the panel has an embedded antenna tiles. The panel consists of UniDirectional (UD) carbon fibre reinforced composite skin stiffened with ortho-grid ribs, and a transparent skin window made using UD glass fibre reinforced composite. The orthogrid structure is a structural reinforcement but also the antenna tiles support. The presented work proposes a numerical multiscale strategy. The laminate is simulated with solid elements, in order to capture the real kinematics of the material, but several laminas are condensed in a single finite element. The performance of each lamina is obtained using the Serial-Parallel (SP) mixing theory. The specific formulations developed have been very useful to identify and study the mechanical performance of these new structures and the localization of unknown and un-predicted hot-spots in the structure.
[1] Rastellini F. and Oller S. and Salomón O. and Oñate, E. Composite materials non-linear
modelling for long fibre-reinforced laminates continuum basis, computational aspect and
validations. Computers and Structures. (2008) 86:879-896.
[2] Car E. and Oller S. and Oñate, E. An anisotropic elastoplastic constitutive model for large
strain analysis of fiber reinforced composite materials. Computer Methods in Applied Mechanics
and Engineering. (2000) 185:245-277.
[3] Martinez X. and Oller S. Numerical simulation of matrix reinforced composite materials
subjected to compression loads. Archives of computational methods in engineering. (2009)
16:357-397.
[4] Otero F. and Oller S. and Martínez X. and Salomón O. Numerical homogenization for
composite materials analysis. Comparison with other micro mechanical formulations.
Composite Structures. (2015) 122:405-416.
[5] Martinez X. and Oller S. and Barbero E. Study of Delamination in Composites by Using
the Serial/Parallel Mixing Theory and a Damage Formulation. In: Mechanical Response
of Composites. Computational Methods in Applied Sciences, vol 10. Springer, Dordrecht
(2008)
Published on 15/02/21
Accepted on 03/03/21
Submitted on 03/03/21
DOI: 10.23967/emus.2019.016
Licence: CC BY-NC-SA license
Are you one of the authors of this document?