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Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm

Cilt: 06 Sayı: 01 31 Temmuz 2026
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Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm

Öz

Abstract With the advancement of technology, materials and production methods in the unmanned aerial vehicle (UAV) sector have undergone significant evolution. During the early production of aircraft, low strength materials were commonly used as structural components. Considering the developments in today's aviation industry, it has been observed that production technologies have evolved into innovative methods such as composite materials, additive manufacturing and integrated structures. In this study, structural design and buckling analyses were performed for the surface of UAV wing using composite material. Optimization was performed to increase the buckling load and reduce the Equivalent Stress. Plate thickness, rib thickness and stiffener thickness were selected as parameters for optimization. Linear buckling and optimization were carried out for each defined parameter. Lower and upper limits were specified for the parameters. The study achieved optimal results for structural design and buckling analysis values using the Genetic Algorithm as the optimization method. The final structure optimized by Genetic Algorithm is compared with the initial structural design and buckling analysis results. The conducted buckling analyses were performed on a three-stiffener and two-rib plate. As a result of the study, the buckling load increased by 25% and the structural weight decreased by 3.46%.

Anahtar Kelimeler

Destekleyen Kurum

Tübitak (Scientific and Technological Research Council of Turkey)

Proje Numarası

1919B012317982

Etik Beyan

This project is supported by TÜBİTAK 2209-A 2209-A University Students Research Projects Support Program.

Teşekkür

We would like to thanks Tübitak (Scientific and Technological Research Council of Turkey) for their support for our project numbered 1919B012317982 in the 2209-A University Students Research Projects Support Program.

Kaynakça

  1. [1] Ünler T, Dağ T, and Öztürk M, “Sabit Kanat Bir İnsansız Hava Aracı Konsept Tasarımı,” in 3rd International Conference on Applied Engineering and Natural Sciences, 2022.
  2. [2] N. Yıldırım, S. Kurtar, G. Bedenli, and T. Dağ, “İNSANSIZ HAVA ARACI KANADINDA RİB SAYISINDAKİ VE MALZEMESİNDEKİ DEĞİŞİME BAĞLI DEFORMASYONUN İNCELENMESİ,” researchgate.netN YILDIRIM, S KURTAR, G BEDENLİ, T DAĞ, M ÖZTÜRK, T ÜNLERresearchgate.net, 2022, Accessed: Feb. 01, 2025. [Online]. Available: https://www.researchgate.net/profile/Tarik-Uenler-2/publication/362072459_INSANSIZ_HAVA_ARACI_KANADINDA_RIB_SAYISINDAKI_VE_MALZEMESINDEKI_DEGISIME_BAGLI_DEFORMASYONUN_INCELENMESI/links/62d557698fb4871182264335/INSANSIZ-HAVA-ARACI-KANADINDA-RIB-SAYISINDAKI-VE-MALZEMESINDEKI-DEGISIME-BAGLI-DEFORMASYONUN-INCELENMESI.pdf
  3. [3] A. Cankurt, “OPTIMUM DESIGN OF COMPOSITE STIFFENED PANELS WITH INSTABILITY CONSIDERATIONS A THESIS SUBMITTED TO THE GRADUATE SCHOOL OF NATURAL AND APPLIED SCIENCES OF MIDDLE EAST TECHNICAL UNIVERSITY,” 2013.
  4. [4] T. Dag, N. Yildirim, G. Senturk, M. Durmazoglu, S. Yildirim, and M. Uyaner, “Virtual Investigation on the Response of Glare to Low Velocity Impact,” Proceedings of 10th International Conference on Recent Advances in Air and Space Technologies, RAST 2023, 2023, doi: 10.1109/RAST57548.2023.10198016.
  5. [5] M. Kazemi and G. Verchery, “Design of composite laminated plates for maximum buckling load with stiffness and elastic modulus constraints,” Compos Struct, vol. 148, pp. 27–38, Jul. 2016, doi: 10.1016/J.COMPSTRUCT.2016.03.051.
  6. [6] K. Tekkanat and Ö. Keleş, “Uçak Kanadının Entegre Güçlendirilmiş Panel Yapıları Kullanılarak Yapısal Tasarımı **,” European Journal of Science and Technology Special Issue, pp. 64–71, 2020, doi: 10.31590/ejosat.araconf9.
  7. [7] L. Lanzi and V. Giavotto, “Post-buckling optimization of composite stiffened panels: Computations and experiments,” Compos Struct, vol. 73, no. 2, pp. 208–220, May 2006, doi: 10.1016/J.COMPSTRUCT.2005.11.047.
  8. [8] K. Kumar, A. Kumar, M. Kumar, and A. Info, “Design and analysis of composite overwrapped pressure vessel with analysis of various overwrapping pattern,” Article in International Journal for Modern Trends in Science and Technology, vol. 8, no. 06, pp. 27–32, 2022, doi: 10.46501/IJMTST0806005.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Endüstri Mühendisliği

Bölüm

Konferans Bildirisi

Yayımlanma Tarihi

31 Temmuz 2026

Gönderilme Tarihi

27 Mayıs 2025

Kabul Tarihi

23 Aralık 2025

Yayımlandığı Sayı

Yıl 2026 Cilt: 06 Sayı: 01

Kaynak Göster

APA
Güvenç, M. A., Karaman, E., & Çakmak, H. (2026). Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm. Researcher, 06(01), 21-35. https://izlik.org/JA78GU43RN
AMA
1.Güvenç MA, Karaman E, Çakmak H. Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm. Researcher. 2026;06(01):21-35. https://izlik.org/JA78GU43RN
Chicago
Güvenç, Mehmet Ali, Erkan Karaman, ve Hakan Çakmak. 2026. “Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm”. Researcher 06 (01): 21-35. https://izlik.org/JA78GU43RN.
EndNote
Güvenç MA, Karaman E, Çakmak H (01 Temmuz 2026) Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm. Researcher 06 01 21–35.
IEEE
[1]M. A. Güvenç, E. Karaman, ve H. Çakmak, “Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm”, Researcher, c. 06, sy 01, ss. 21–35, Tem. 2026, [çevrimiçi]. Erişim adresi: https://izlik.org/JA78GU43RN
ISNAD
Güvenç, Mehmet Ali - Karaman, Erkan - Çakmak, Hakan. “Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm”. Researcher 06/01 (01 Temmuz 2026): 21-35. https://izlik.org/JA78GU43RN.
JAMA
1.Güvenç MA, Karaman E, Çakmak H. Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm. Researcher. 2026;06:21–35.
MLA
Güvenç, Mehmet Ali, vd. “Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm”. Researcher, c. 06, sy 01, Temmuz 2026, ss. 21-35, https://izlik.org/JA78GU43RN.
Vancouver
1.Mehmet Ali Güvenç, Erkan Karaman, Hakan Çakmak. Linear Buckling Optimisation of Composite Plate in UAV Wing with Multi Objective Genetic Algorithm. Researcher [Internet]. 01 Temmuz 2026;06(01):21-35. Erişim adresi: https://izlik.org/JA78GU43RN
  • Yayın hayatına 2013 yılında başlamış olan "Researcher: Social Sciences Studies" (RSSS) dergisi, 2020 Ağustos ayı itibariyle "Researcher" ismiyle Ankara Bilim Üniversitesi bünyesinde faaliyetlerini sürdürmektedir.
  • 2021 yılı ve sonrasında Mühendislik ve Fen Bilimleri alanlarında katkıda bulunmayı hedefleyen özgün araştırma makalelerinin yayımlandığı uluslararası indeksli, ulusal hakemli, bilimsel ve elektronik bir dergidir.
  • Dergi özel sayılar dışında yılda iki kez yayımlanmaktadır. Amaçları doğrultusunda dergimizin yayın odağında; Endüstri Mühendisliği, Yazılım Mühendisliği, Bilgisayar Mühendisliği ve Elektrik Elektronik Mühendisliği alanları bulunmaktadır.
  • Dergide yayımlanmak üzere gönderilen aday makaleler Türkçe ve İngilizce dillerinde yazılabilir. Dergiye gönderilen makalelerin daha önce başka bir dergide yayımlanmamış veya yayımlanmak üzere başka bir dergiye gönderilmemiş olması gerekmektedir.