Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2022, Cilt: 20 Sayı: 2, 86 - 97, 28.11.2022
https://doi.org/10.56193/matim.1102561

Öz

Kaynakça

  • [1] D. V. Rosato, Designing With Reinforced Composites. Carl Hanser Verlag GmbH & Co, 1997.
  • [2] Tri-Dung Ngo, Introduction to Composite Materials. InnoTech Alberta-Alberta Innovates, University of Alberta, 2019
  • [3] E.P. Irving, C. Soutis, Polymer Composites in the Aerospace Industry. Woodhead Publishing, UK, 2014
  • [4] FAA & ASA, Aviation Maintenance Technician Handbook: Airframe, Volume 1. USA 2018
  • [5] “Out of Autoclave Structural Prepreg Composites” Sampe Journal- pp. 13, 2017.
  • [6] S. Budhe, M: D: Banea, S. De Barros, “Bonded repair of composite structures in aerospace application: a review on environmental issues”, Applied Adhesion Science, Vol. 6 Article number: 3, 2018.
  • [7] F.C. Campbell, Structural Composite Material. ASM International Chapter 12, USA, 2010.
  • [8] A. Baker, A Gunnion and J. Wang” On the Certification of Bonded Repairs to Primary Composite Aircraft Components”. Journal on Adhesion 2015. Do: https://doi.org/10.1080/00218464.2014.883315.
  • [9] C. Duong, C. H. Wang Composite Repair: Theory & Design). Elsevier BV., Netherlands, 2007
  • [10] Elham Fouladi ve Ali Abedian, Systematic Design Method for Bonded Repair Based on Axiomatic Design Methodology, 9th International Conference on Axiomatic Design – ICAD 2015, 2015.
  • [11] Doung, Cong N., and Chu Hui Wang. Composite repair theory and design. 1st. USA, Australia: Elsevier, 2007. [12] Marioli-Riga, Z., and E. E. Gdoutos. "Composite Patch Repair Methodology for Damaged Aircrafts Structural Components." 2004 SEM Annual Conference. 2004. 7-10.
  • [13] Mayda M., Börklü Hüseyin R., Yeni Bir Kavramsal Tasarım İşlem Modeli, Tübav Bilim Dergisi, 2018
  • [14] Gürcüm B. H., Ezer Ö., Tekstil Ürün Tasarımında Sistematik Yaklaşım: Kavramsal Tasarım Metodu, Uluslararası Sosyal Araştırmalar Dergisi, 2016
  • [15] Nondestructive testing of damage in aerospace composites, pp. 437
  • [16] R. B. Heslehurst, Engineering Repairs of Composite Structures, CRC Press, Taylor & Francis Group LLC, USA, 2019.
  • [17] FAA, “AC20-107- and JAA ACJ 25.603- Composite Aircraft Structure”. USA, 2007.
  • [18] Davis, M.J., "Bonded Repairs: Principles and Practice", Int. Conf. On Aircraft Damage Assessment and Repair”. Melbourne, 1991
  • [19] R. B. Heslehurst (Engineering Repair Of Composite Structures. CRC Press, Taylor & Francis Group LLC, USA, 2019.
  • [20] MIL-HDBK-17-3F, Composite Materials Handbook, Volume 3, Polymer Matrix Composites Materials Usage, Design, And Analysis, USA 1997
  • [21] D. Holzhüter, A. Pototzky, C. Hühne and M. Sinapius, “Automated Scarfing Process for Bonded Composite Repairs” Adaptive, Tolerant And Efficient Composite Structures. pp. 297-307, 2012. do: 10.1007/978-3-642-29190-6_23.
  • [22] M. D. Isaac, O. Ishai, Engineering Mechanic of Composite Material, Second Edition. Oxford University Press, UK, 2006.
  • [23] M. Suhara, T.Shimizu, K. Hasegawa, T. Shgetom, M. Kambayashi ve Y. Sato, “Development of Quick Repair Method for Aircraft Composite Structure” Mitsubishi Heavy Industries Tehnical Review Vol. 53, No. 4, 2016.
  • [24] H.M. Chong, S.L. Liu, A.S. Subramanian, S.P. Ng, S.W. Tay, S.Q. Wang and S. Feih. “Out-of-autoclave scarf repair of interlayer toughened carbon fibre composites using double vacuum debulking of patch” Composites Part A: Applied Science and Manufacturing, Vol. 107, pp. 224-234, 2018.
  • [25] İnternet sitesi, https://www.substech.com/dokuwiki/doku.php?id=surface_preparation_for_adhesive_bonDing (28.01.2022).
  • [26] HJ. Kim, HS. Kim, GY. Lee, MS. Kim, SH. Kim, R. Keller, JB Ihn and SH. Ahn, “Three-dimensional carbon fiber composite printer for CFRP repair” Composites Part B: Engineering Vol. 174, 2019.
  • [27] G. Pahl, W. Beitz, J. Feldusen and K. H. Grote Engineering Design: A Systematic Approach 3rd Edition. Springer-Verlag, London, 2007.

Elyaf Takviyeli Polimer Tamir Tasarımının Sistematik Tasarım Yöntemi ile Belirlenmesi

Yıl 2022, Cilt: 20 Sayı: 2, 86 - 97, 28.11.2022
https://doi.org/10.56193/matim.1102561

Öz

Bu çalışmada kompozit tamir tasarımının Pahl & Beitz sistematik tasarım yaklaşımı ile karar verilmesi amaçlanmaktadır Bu kapsamda da kompozit tamir tasarımı için gerekli olan tesis kabiliyetleri, maliyet, malzemeye erişebilme gibi mühendislik dışı kriterleri ve dayanım, sağlamlık gibi mühendislik kriterleri sistematik bir yaklaşımla ele alınmaktadır. En yaygın malzemelerden biri olan elyaf takviyeli polimerlerin tamir tasarımı için ihtiyaç listesi, fonksiyon yapısı ve alt fonksiyonları oluşturulmuş ve çözüm varyantları elde edilmiştir. Çözüm varyantları için karar ağacı, değerlendirme çizelgesi ve değer profil diyagramı oluşturulması ile de optimum tasarım belirlenmiştir.

Kaynakça

  • [1] D. V. Rosato, Designing With Reinforced Composites. Carl Hanser Verlag GmbH & Co, 1997.
  • [2] Tri-Dung Ngo, Introduction to Composite Materials. InnoTech Alberta-Alberta Innovates, University of Alberta, 2019
  • [3] E.P. Irving, C. Soutis, Polymer Composites in the Aerospace Industry. Woodhead Publishing, UK, 2014
  • [4] FAA & ASA, Aviation Maintenance Technician Handbook: Airframe, Volume 1. USA 2018
  • [5] “Out of Autoclave Structural Prepreg Composites” Sampe Journal- pp. 13, 2017.
  • [6] S. Budhe, M: D: Banea, S. De Barros, “Bonded repair of composite structures in aerospace application: a review on environmental issues”, Applied Adhesion Science, Vol. 6 Article number: 3, 2018.
  • [7] F.C. Campbell, Structural Composite Material. ASM International Chapter 12, USA, 2010.
  • [8] A. Baker, A Gunnion and J. Wang” On the Certification of Bonded Repairs to Primary Composite Aircraft Components”. Journal on Adhesion 2015. Do: https://doi.org/10.1080/00218464.2014.883315.
  • [9] C. Duong, C. H. Wang Composite Repair: Theory & Design). Elsevier BV., Netherlands, 2007
  • [10] Elham Fouladi ve Ali Abedian, Systematic Design Method for Bonded Repair Based on Axiomatic Design Methodology, 9th International Conference on Axiomatic Design – ICAD 2015, 2015.
  • [11] Doung, Cong N., and Chu Hui Wang. Composite repair theory and design. 1st. USA, Australia: Elsevier, 2007. [12] Marioli-Riga, Z., and E. E. Gdoutos. "Composite Patch Repair Methodology for Damaged Aircrafts Structural Components." 2004 SEM Annual Conference. 2004. 7-10.
  • [13] Mayda M., Börklü Hüseyin R., Yeni Bir Kavramsal Tasarım İşlem Modeli, Tübav Bilim Dergisi, 2018
  • [14] Gürcüm B. H., Ezer Ö., Tekstil Ürün Tasarımında Sistematik Yaklaşım: Kavramsal Tasarım Metodu, Uluslararası Sosyal Araştırmalar Dergisi, 2016
  • [15] Nondestructive testing of damage in aerospace composites, pp. 437
  • [16] R. B. Heslehurst, Engineering Repairs of Composite Structures, CRC Press, Taylor & Francis Group LLC, USA, 2019.
  • [17] FAA, “AC20-107- and JAA ACJ 25.603- Composite Aircraft Structure”. USA, 2007.
  • [18] Davis, M.J., "Bonded Repairs: Principles and Practice", Int. Conf. On Aircraft Damage Assessment and Repair”. Melbourne, 1991
  • [19] R. B. Heslehurst (Engineering Repair Of Composite Structures. CRC Press, Taylor & Francis Group LLC, USA, 2019.
  • [20] MIL-HDBK-17-3F, Composite Materials Handbook, Volume 3, Polymer Matrix Composites Materials Usage, Design, And Analysis, USA 1997
  • [21] D. Holzhüter, A. Pototzky, C. Hühne and M. Sinapius, “Automated Scarfing Process for Bonded Composite Repairs” Adaptive, Tolerant And Efficient Composite Structures. pp. 297-307, 2012. do: 10.1007/978-3-642-29190-6_23.
  • [22] M. D. Isaac, O. Ishai, Engineering Mechanic of Composite Material, Second Edition. Oxford University Press, UK, 2006.
  • [23] M. Suhara, T.Shimizu, K. Hasegawa, T. Shgetom, M. Kambayashi ve Y. Sato, “Development of Quick Repair Method for Aircraft Composite Structure” Mitsubishi Heavy Industries Tehnical Review Vol. 53, No. 4, 2016.
  • [24] H.M. Chong, S.L. Liu, A.S. Subramanian, S.P. Ng, S.W. Tay, S.Q. Wang and S. Feih. “Out-of-autoclave scarf repair of interlayer toughened carbon fibre composites using double vacuum debulking of patch” Composites Part A: Applied Science and Manufacturing, Vol. 107, pp. 224-234, 2018.
  • [25] İnternet sitesi, https://www.substech.com/dokuwiki/doku.php?id=surface_preparation_for_adhesive_bonDing (28.01.2022).
  • [26] HJ. Kim, HS. Kim, GY. Lee, MS. Kim, SH. Kim, R. Keller, JB Ihn and SH. Ahn, “Three-dimensional carbon fiber composite printer for CFRP repair” Composites Part B: Engineering Vol. 174, 2019.
  • [27] G. Pahl, W. Beitz, J. Feldusen and K. H. Grote Engineering Design: A Systematic Approach 3rd Edition. Springer-Verlag, London, 2007.
Toplam 26 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Makine Mühendisliği
Bölüm Araştırma, Geliştirme ve Uygulama Makaleleri
Yazarlar

Öznur Bayraktar Erbudak 0000-0002-9455-7066

Orhan Erden 0000-0002-2541-4934

Yayımlanma Tarihi 28 Kasım 2022
Gönderilme Tarihi 12 Nisan 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 20 Sayı: 2

Kaynak Göster

Vancouver Bayraktar Erbudak Ö, Erden O. Elyaf Takviyeli Polimer Tamir Tasarımının Sistematik Tasarım Yöntemi ile Belirlenmesi. MATİM. 2022;20(2):86-97.