Publication:
Advanced lamination parameter interpolation and extrapolation methods for designing manufacturable variable stiffness laminates

Placeholder

Organizational Units

Program

KU-Authors

Başdoğan, İpek

KU Authors

Co-Authors

Shahabad, Peiman Khandar
Anamagh, Mirmeysam Rafiei
Serhat, Gokhan
Bediz, Bekir

Advisor

Publication Date

Language

en

Journal Title

Journal ISSN

Volume Title

Abstract

The design of variable stiffness laminates requires efficient methodologies due to the increased number of optimization variables associated with curvilinear fiber paths. Here, this need is addressed by the development of two novel approaches: the lamination parameter extrapolation method (LPEM) and the relaxed lamination parameter interpolation method (RLPIM). These techniques build on the previously proposed lamination parameter interpolation method (LPIM), and collectively they form a spectrum of approaches that differ in optimization capacity, conservativeness regarding fiber curvature constraints, and computational cost. The resulting governing equations are solved using the spectral Chebyshev method to further improve the efficiency of the optimization process. The case studies demonstrate the effectiveness and unique properties of the developed algorithms.

Source:

Composite Structures

Publisher:

Elsevier Sci Ltd

Keywords:

Subject

Mechanics, Materials science, composites

Citation

Endorsement

Review

Supplemented By

Referenced By

Copyrights Note

0

Views

0

Downloads

View PlumX Details