Structural Analysis and Optimization of Layered Composite Structures: Numerical and Experimental Investigations
Zbornik radova, Tome 19 (2022) no. 27, p. 203
Voir la notice de l'article provenant de la source eLibrary of Mathematical Institute of the Serbian Academy of Sciences and Arts
The investigation in this work is focused on developing reliable
computation procedure to analyze initial failure load for pin-loaded holes at the
layered composite structures. Finite element method (FEM) is used to determine
stress distribution around the fastener hole. The model takes into account contact
at the pin-hole interface. Combining Chang-Scott-Springer characteristic curve
model and Tsai-Wu initial failure criterion are used to determine joint failure. Special
attention in this work is on pin-load distributions and its effect on load level of failure
and its location. Here is contact finite element pin/lug model analyzed. The influence of
stacking sequences of layered CFC composites type NCHR 914/132/300, containing
pin-loaded holes is investigated, too. The computation results are compared with own
and available experimental results. An efficient optimization method is presented for
minimum weight design of the large-scale structural system such as aircraft structural
systems. The efficiency of method is based on application of the two-level approach
in structural optimization structural systems. Optimization method presented
here is based on combining optimality criterion (OC) and nonlinear mathematical
programming (NMP) algorithms. Finite element analysis (FEA) are used to compute
internal forces at the system level. The two-level optimization approach is applied
to minimum-weight design of complex aircraft structures such as aircraft parashute
composite beam subject to multiple constraints.
Classification :
70-99, 74-99, 70F35, 92C10, 74L10, 70Exx, 70KXX, 74M05, 37H20
Keywords: composites, failure analysis optimization methods, composite structures, optimality criterions, initial failure constraints, buckling constraints, FEA
Keywords: composites, failure analysis optimization methods, composite structures, optimality criterions, initial failure constraints, buckling constraints, FEA
@article{ZR_2022_19_27_a6,
author = {Katarina Maksimovi\'c and Stevan Maksimovi\'c},
title = {Structural {Analysis} and {Optimization} of {Layered} {Composite} {Structures:} {Numerical} and {Experimental} {Investigations}},
journal = {Zbornik radova},
pages = {203 },
publisher = {mathdoc},
volume = {19},
number = {27},
year = {2022},
language = {en},
url = {http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a6/}
}
TY - JOUR AU - Katarina Maksimović AU - Stevan Maksimović TI - Structural Analysis and Optimization of Layered Composite Structures: Numerical and Experimental Investigations JO - Zbornik radova PY - 2022 SP - 203 VL - 19 IS - 27 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a6/ LA - en ID - ZR_2022_19_27_a6 ER -
%0 Journal Article %A Katarina Maksimović %A Stevan Maksimović %T Structural Analysis and Optimization of Layered Composite Structures: Numerical and Experimental Investigations %J Zbornik radova %D 2022 %P 203 %V 19 %N 27 %I mathdoc %U http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a6/ %G en %F ZR_2022_19_27_a6
Katarina Maksimović; Stevan Maksimović. Structural Analysis and Optimization of Layered Composite Structures: Numerical and Experimental Investigations. Zbornik radova, Tome 19 (2022) no. 27, p. 203 . http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a6/