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Year 2016, Volume: 17 Issue: 3, 512 - 520, 04.10.2016
https://doi.org/10.18038/btda.68342

Abstract

References

  • Kara M, Düşük Hızlı Darbe Sonrası Yama İle Tamir Edilmiş Filaman Sarım CTP Boruların İç Basınç Altındaki Hasar Davranışı, Doktora Tezi Selçuk Üniversitesi Fen Bilimleri Enstitüsü, 2012, Konya.
  • Lee SM, Cheon JS, Im YT. Experimental and numerical study of the impact behavior of SMC plates Compos. Struct., 1999; 47, 551–561
  • Kim SJ, Goo NS. Dynamic contact responses of laminated composite plates according to the impactor’s shapes, Comput. Struct., 1997; 65 (1), 83–90.
  • Zhou GJC, Lloyd J. McGuirk J. Experimental evaluation of geometric factors affecting damage mechanisms in carbon/epoxy plates, Compos. Part A: Appl. Sci. Manuf., 2001; 32, 71–84.
  • G. Zhou, Damage mechanisms in composite laminates impacted by a flat-ended impactor, Compos. Sci. Technol., 1995; 54, 267–273.
  • Mines RAW, Roach AM. N. Jones, High velocity perforation behaviour or polymer composite laminates, Int. J. Impact Eng., 1999; 22, 561–588 [7] Uyaner M and Kara M. Experimental study of the impact behavior of laminated composites stricken by sharp impactors. Sci Eng Compos Mater, 2012; 19, 307-313.
  • H.N. Dhakal, Z.Y. Zhang, N. Bennett, P.N.B. Reis, Low-velocity impact response of non-woven hemp fibre reinforced unsaturated polyester composites: Influence of impactor geometry and impact velocity, Compos. Struct., 2012; 94, 2756–2763. [9] Faizul YM, Ghani SA and Salleh J. Effect of impactor shapes and yarn frictional effects on plain woven fabric puncture simulation. Textile Research Journal, 2014; 0040517513515319.
  • Icten BM, Kıral BG and Deniz ME Impactor diameter effect on low velocity impact response of woven glass epoxy composite plates. Composites Part B: Engineering, 2013; 50 325-332.
  • Abrate, S. Impact on composite structures. Cambridge, Cambridge University Press., 1998, 135-160. [12] ASTM D 7136/D 7136M 07 Standard Test Method for Measuring the Damage Resistance of a Fiber-Reinforced Polymer Matrix Composite to a Drop-Weight Impact Event 2.

E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ

Year 2016, Volume: 17 Issue: 3, 512 - 520, 04.10.2016
https://doi.org/10.18038/btda.68342

Abstract

Bu çalışmada filaman sarım yöntemiyle üretilmiş ±55° sarım açısına sahip 10 tabakalı E-camı/epoksi kompozit boruların düşük hızlı darbe cevabına vurucu geometrisinin etkisi deneysel olarak araştırılmıştır. V yatağı üzerine yerleştirilen kompozit boru numunelerine düşük hızlı darbe cihazı kullanılarak, 24 mm ve 12 mm çaplı yarı-küresel ve 120° piramit uca sahip vurucularla düşük enerjili darbe yapılmıştır. Düşük enerjili darbe deneyleri 5 J, 10 J ve 15 J enerji seviyelerinde yapılmıştır. Vurucu geometrisine ve enerji seviyesine bağlı olarak elde edilen kuvvet-zaman ve kuvvet yer değiştirme değişimleri incelenmiştir. Ayrıca farklı geometrilere sahip vurucuların kompozit boru numunesinde meydana getirmiş olduğu hasarlar haritalanmış, vurucu geometrisine bağlı olarak değişen hasar alanları tetkik edilmiştir. 

References

  • Kara M, Düşük Hızlı Darbe Sonrası Yama İle Tamir Edilmiş Filaman Sarım CTP Boruların İç Basınç Altındaki Hasar Davranışı, Doktora Tezi Selçuk Üniversitesi Fen Bilimleri Enstitüsü, 2012, Konya.
  • Lee SM, Cheon JS, Im YT. Experimental and numerical study of the impact behavior of SMC plates Compos. Struct., 1999; 47, 551–561
  • Kim SJ, Goo NS. Dynamic contact responses of laminated composite plates according to the impactor’s shapes, Comput. Struct., 1997; 65 (1), 83–90.
  • Zhou GJC, Lloyd J. McGuirk J. Experimental evaluation of geometric factors affecting damage mechanisms in carbon/epoxy plates, Compos. Part A: Appl. Sci. Manuf., 2001; 32, 71–84.
  • G. Zhou, Damage mechanisms in composite laminates impacted by a flat-ended impactor, Compos. Sci. Technol., 1995; 54, 267–273.
  • Mines RAW, Roach AM. N. Jones, High velocity perforation behaviour or polymer composite laminates, Int. J. Impact Eng., 1999; 22, 561–588 [7] Uyaner M and Kara M. Experimental study of the impact behavior of laminated composites stricken by sharp impactors. Sci Eng Compos Mater, 2012; 19, 307-313.
  • H.N. Dhakal, Z.Y. Zhang, N. Bennett, P.N.B. Reis, Low-velocity impact response of non-woven hemp fibre reinforced unsaturated polyester composites: Influence of impactor geometry and impact velocity, Compos. Struct., 2012; 94, 2756–2763. [9] Faizul YM, Ghani SA and Salleh J. Effect of impactor shapes and yarn frictional effects on plain woven fabric puncture simulation. Textile Research Journal, 2014; 0040517513515319.
  • Icten BM, Kıral BG and Deniz ME Impactor diameter effect on low velocity impact response of woven glass epoxy composite plates. Composites Part B: Engineering, 2013; 50 325-332.
  • Abrate, S. Impact on composite structures. Cambridge, Cambridge University Press., 1998, 135-160. [12] ASTM D 7136/D 7136M 07 Standard Test Method for Measuring the Damage Resistance of a Fiber-Reinforced Polymer Matrix Composite to a Drop-Weight Impact Event 2.
There are 9 citations in total.

Details

Journal Section Articles
Authors

Memduh Kara

Mesut Uyaner This is me

Publication Date October 4, 2016
Published in Issue Year 2016 Volume: 17 Issue: 3

Cite

APA Kara, M., & Uyaner, M. (2016). E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ. Anadolu University Journal of Science and Technology A - Applied Sciences and Engineering, 17(3), 512-520. https://doi.org/10.18038/btda.68342
AMA Kara M, Uyaner M. E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ. AUJST-A. October 2016;17(3):512-520. doi:10.18038/btda.68342
Chicago Kara, Memduh, and Mesut Uyaner. “E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ”. Anadolu University Journal of Science and Technology A - Applied Sciences and Engineering 17, no. 3 (October 2016): 512-20. https://doi.org/10.18038/btda.68342.
EndNote Kara M, Uyaner M (October 1, 2016) E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ. Anadolu University Journal of Science and Technology A - Applied Sciences and Engineering 17 3 512–520.
IEEE M. Kara and M. Uyaner, “E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ”, AUJST-A, vol. 17, no. 3, pp. 512–520, 2016, doi: 10.18038/btda.68342.
ISNAD Kara, Memduh - Uyaner, Mesut. “E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ”. Anadolu University Journal of Science and Technology A - Applied Sciences and Engineering 17/3 (October 2016), 512-520. https://doi.org/10.18038/btda.68342.
JAMA Kara M, Uyaner M. E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ. AUJST-A. 2016;17:512–520.
MLA Kara, Memduh and Mesut Uyaner. “E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ”. Anadolu University Journal of Science and Technology A - Applied Sciences and Engineering, vol. 17, no. 3, 2016, pp. 512-20, doi:10.18038/btda.68342.
Vancouver Kara M, Uyaner M. E-CAMI/EPOKSİ KOMPOZİT BORULARIN DARBE CEVABINA VURUCU GEOMETRİSİNİN ETKİSİ. AUJST-A. 2016;17(3):512-20.