Dissertation > Excellent graduate degree dissertation topics show

Research on the Layout Optimization Design Method of Composite Wing Structures

Author: ZhaoQun
Tutor: DingYunLiang
School: Nanjing University of Aeronautics and Astronautics
Course: Aircraft design
Keywords: composite materials wing structures layout optimization equivalent stiffness surrogate model structural efficiency two-level optimization
CLC: V221.3
Type: PhD thesis
Year: 2010
Downloads: 351
Quote: 2
Read: Download Dissertation

Abstract


The application proportion of composites has become an important advanced standard for modern airliners. Passenger jets usually employ semirigid shell wing structures, in which stiffened wing panels are the main load-bearing components. To apply composite materials in these structures could reduce weight significantly, and improve filght performances. Structural layout defined in preliminary design phase might bring the desicive influences in the overall properties of the structure. Therefore the research on layout design method of the composite wing structures is valuable in engineering.A two-level optimization strategy is proposed in this thesis for the layout design of large scale composite wing structures, which optimizes the positional relationships between different components to increase the structural efficiency as an objective. System level adjusts stiffness standard according to structural deformation, while subsystems optimize the layout to satisfy the designated constraints. The approaching degrees of various failure critical loads are employed to gauge the structure’s carrying efficiency. By optimizing the efficiency as an objective, the continuity of the problem could be guaranteed, which facilitates numerical optimization. Stiffened wing panels are simulated by the equivalent stiffness models, and their global buckling loads are predicted based on energy method. The nonlinear effect of stringers’support elasticity on the local buckle resistance of the anisotropic skin is investigated, and a general approximation model is proposed using matching relationships between structural siffnesses as input parameters. The calculation efficiency is improved by evaluating the structure mechanical features using various approximation models. Finally, the optimization framework is integrated into the interface of PATRAN software by PCL secondary development codes, and the accuracy and fesibility are verified by the example of layout optimization for a large scale composite wing structure.The research results in this thesis demonstrate that: Equivalent stiffness model could provide satisfied accuracy in the global buckling analysis of composite stiffened panels; there is a nonlinear relationship between the local buckling resistance of the skin in composite stiffened structure and the stiffeners’support stiffnesses, as well as the anisotropy of the skin itself, and the relationship could be approximated by surrogate models; based on various simplifying methods, the objective improved the structural efficiency; the wing structure two-level layout optimization framework could convert the discrete layout parameters into continuous stiffness coefficients, and the layout optimization of wing panels considering buckling cases could be achieved, which improves the reliability of optimization process and converges rapidly, as well as it provides satisfied global optimization capability.

Related Dissertations

  1. Preparation and Characteration of Composite Microspheres with Dual-, Triple- Responsive Properties,O631.3
  2. Facility Layout Plan and Optimization of Chemical Factory,TQ08
  3. Study on Process Layout Optimization Method Based on Shape and Form of Basic Units,F224
  4. Design and Study of the 1m Primary Mirror and Its Supporting System,TH743
  5. Numerical Analysis for Hull Strength and Delamination Damage of Composite Marine Structures,U674.701
  6. Research on Computational Approach to the Layout Optimization Problems in Satellite Capsule,TP301.6
  7. Wind turbine drive train configuration and layout optimization structure,TM315
  8. UAV longitudinal aerodynamic optimization design and control system,V279
  9. MREs Preparation and vibration damping applications in automotive simulation and experimental study,TB381
  10. Study on Damping of Fibre Reinforced Resin Composites and Structures,TB332
  11. Study on Structural Dynamic of Large Turbine Blade of SMA Composite,TK83
  12. Research on Top Design of Earth Observation Satellite System Based on Surrogate Model,V423.41
  13. A Study of General Analytical Robust Design Tool and Applications for Mechanical Product,TH122
  14. Study on the Economic Benefit of Fiscal Expenditure for Agriculture in Heilongjiang Province,F812.8
  15. Experimental Study on Composite Thin-walled Cylindrical Shell Vibration of Composite Materials,TB533
  16. The Numerical Control Remaking for C620 Lathe,TG51
  17. Study on Coupled Static Deformation and Vibration Behavior of Composite Thin-Walled Beams,TH113.1
  18. Research on Mechanical Characteristics for Composite Laminated Plates with Cutouts Subjected to Shear Load,TB33
  19. Study on Contact Dynamics Characteristics of Central Pin in Turning Frame of the Dynamic Stability Vehicles,U463.4
  20. Research of Topology Optimization Design of Microstructure for Material Based on Homogenization Method,TB332
  21. The Improvement Research of the Production System in M Solar Water Heater Manufacturer,F426.6

CLC: > Aviation, aerospace > Aviation > Aircraft Construction and Design > Overall design > Aerodynamic layout
© 2012 www.DissertationTopic.Net  Mobile