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Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold

Yıl 2024, Cilt: 21 Sayı: 2, 78 - 89, 01.11.2024

Öz

This study examines how three distinct punch strike application techniques affect the cold forming of a 25 mm thick Invar FeNi36 plate into a lay-up mold for an aviation fuselage panel. In each technique, the same number of punch strikes were delivered at various plate positions in varied sequences. The Finite Element Method (FEM) was employed to evaluate the effectiveness of the aforementioned strategies. The most effective approach was the one that produced a form that was most similar to the intended plate form. Additionally, for each stroke of the strategies, the temperature rise, equivalent plastic strain, and maximum stress values of the plate under the punch were compared when the plate was in contact with the mold.

Kaynakça

  • A. Demircan, A. Kayran, and D. F. Kurtuluş, “Kompozit Yapılı Mini İHA'lar İçin Kalıp Üretim Teknikleri ve Aerodinamik Yüzeylerin Üretimi,” IV.UHUK, Hava Harp Okulu, İstanbul, 2012, Eylül 12-14, pp.1-13.
  • C. Töre, “Uçakların Yapısal Üretim Teknikleri ve İmalat Takımları (Takım=T00l, Aparat) (Konserve veya Kola Kutusundan Uçak Gövdesi İmalatı Yapılabilir mi?)” Mühendis ve Makine, vol. 43, no. 506, pp. 33-38, 2020.
  • Milli Eğitim Bakanlığı, Plastik Teknolojisi-Makina Enjeksiyon Kalıpçılığı-2, MEGEP, Ankara, 2008.
  • H. Y. Shahare, A. K. Dubey, P. Kumar, H. Yu, A. Pesin, D. Pustovoytov, and P. Tandon, “A Comparative Investigation of Conventional and Hammering-Assisted Incremental Sheet Forming Processes for AA1050 H14 Sheets,” Metals, vol. 11, no. 11, 1862, pp. 1-17, Nov. 2021, doi:10.3390/met11111862.
  • J. K. Paik, J. H. Kim, B. J. Kim, and C. H. Tak, “Analysis of spring-back behavior in the cold-forming process of three-dimensionally curved metal plates,” ASME 29th Int. Conf. on Ocean, Offshore Arctic Eng, pp. 929-934, Jan. 2010, doi:10.1115/OMAE2010-20759.
  • X. Li, and S. Hu, “Research Progress of Springback in Multi-Point Forming of Sheet Metal,” J Phys Conf Series, vol. 2101, no. 1, 2101 012006, Nov. 2021, doi:10.1088/1742-6596/2101/1/012006.
  • M. Bojahr, H. Prommer, R. Tschullik, and P. Kaeding, “3-Dimensional Forming of Thick Plates–A Comparison of Deep Drawing and an Approach of Rolling and Bending Within a Single Process,” 8th European LSDYNA Conf., Straßburg, France, 2011, May 23-24, pp.1-7.
  • A. Köken, and E. Kurt, “Nonlinear Finite Elements Analysis of Different Steel Connections Using Ansys Workbench,” Konya Technical University, 2022.
  • QForm, ‘’Software for Simulation and Optimization of Metal Forming Processes and Metal Profile Extrusion.’’ QForm UK. Accessed: Feb. 15, 2024. [Online]. Available: https://www.qform3d.com/products/qform.
  • Defense Metal, ‘’Invar 36 (Alloy 36, Nilo 36).’’ Defence Metal. Accessed: Feb. 20, 2020. [Online]. Available: https://www.defencemetal.com/invar-36/.
Yıl 2024, Cilt: 21 Sayı: 2, 78 - 89, 01.11.2024

Öz

Kaynakça

  • A. Demircan, A. Kayran, and D. F. Kurtuluş, “Kompozit Yapılı Mini İHA'lar İçin Kalıp Üretim Teknikleri ve Aerodinamik Yüzeylerin Üretimi,” IV.UHUK, Hava Harp Okulu, İstanbul, 2012, Eylül 12-14, pp.1-13.
  • C. Töre, “Uçakların Yapısal Üretim Teknikleri ve İmalat Takımları (Takım=T00l, Aparat) (Konserve veya Kola Kutusundan Uçak Gövdesi İmalatı Yapılabilir mi?)” Mühendis ve Makine, vol. 43, no. 506, pp. 33-38, 2020.
  • Milli Eğitim Bakanlığı, Plastik Teknolojisi-Makina Enjeksiyon Kalıpçılığı-2, MEGEP, Ankara, 2008.
  • H. Y. Shahare, A. K. Dubey, P. Kumar, H. Yu, A. Pesin, D. Pustovoytov, and P. Tandon, “A Comparative Investigation of Conventional and Hammering-Assisted Incremental Sheet Forming Processes for AA1050 H14 Sheets,” Metals, vol. 11, no. 11, 1862, pp. 1-17, Nov. 2021, doi:10.3390/met11111862.
  • J. K. Paik, J. H. Kim, B. J. Kim, and C. H. Tak, “Analysis of spring-back behavior in the cold-forming process of three-dimensionally curved metal plates,” ASME 29th Int. Conf. on Ocean, Offshore Arctic Eng, pp. 929-934, Jan. 2010, doi:10.1115/OMAE2010-20759.
  • X. Li, and S. Hu, “Research Progress of Springback in Multi-Point Forming of Sheet Metal,” J Phys Conf Series, vol. 2101, no. 1, 2101 012006, Nov. 2021, doi:10.1088/1742-6596/2101/1/012006.
  • M. Bojahr, H. Prommer, R. Tschullik, and P. Kaeding, “3-Dimensional Forming of Thick Plates–A Comparison of Deep Drawing and an Approach of Rolling and Bending Within a Single Process,” 8th European LSDYNA Conf., Straßburg, France, 2011, May 23-24, pp.1-7.
  • A. Köken, and E. Kurt, “Nonlinear Finite Elements Analysis of Different Steel Connections Using Ansys Workbench,” Konya Technical University, 2022.
  • QForm, ‘’Software for Simulation and Optimization of Metal Forming Processes and Metal Profile Extrusion.’’ QForm UK. Accessed: Feb. 15, 2024. [Online]. Available: https://www.qform3d.com/products/qform.
  • Defense Metal, ‘’Invar 36 (Alloy 36, Nilo 36).’’ Defence Metal. Accessed: Feb. 20, 2020. [Online]. Available: https://www.defencemetal.com/invar-36/.
Toplam 10 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular İmalat Süreçleri ve Teknolojileri
Bölüm Makaleler
Yazarlar

Can Çoğun 0000-0001-5045-2767

Melis Hızarcı İbiş Bu kişi benim 0000-0001-7435-5718

Yayımlanma Tarihi 1 Kasım 2024
Gönderilme Tarihi 8 Mayıs 2024
Kabul Tarihi 26 Haziran 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 21 Sayı: 2

Kaynak Göster

APA Çoğun, C., & Hızarcı İbiş, M. (2024). Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold. Cankaya University Journal of Science and Engineering, 21(2), 78-89.
AMA Çoğun C, Hızarcı İbiş M. Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold. CUJSE. Kasım 2024;21(2):78-89.
Chicago Çoğun, Can, ve Melis Hızarcı İbiş. “Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold”. Cankaya University Journal of Science and Engineering 21, sy. 2 (Kasım 2024): 78-89.
EndNote Çoğun C, Hızarcı İbiş M (01 Kasım 2024) Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold. Cankaya University Journal of Science and Engineering 21 2 78–89.
IEEE C. Çoğun ve M. Hızarcı İbiş, “Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold”, CUJSE, c. 21, sy. 2, ss. 78–89, 2024.
ISNAD Çoğun, Can - Hızarcı İbiş, Melis. “Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold”. Cankaya University Journal of Science and Engineering 21/2 (Kasım 2024), 78-89.
JAMA Çoğun C, Hızarcı İbiş M. Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold. CUJSE. 2024;21:78–89.
MLA Çoğun, Can ve Melis Hızarcı İbiş. “Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold”. Cankaya University Journal of Science and Engineering, c. 21, sy. 2, 2024, ss. 78-89.
Vancouver Çoğun C, Hızarcı İbiş M. Effect of Punch Strike Application Strategies on Forming of Fuselage Panel Lay-Up Mold. CUJSE. 2024;21(2):78-89.