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Kıvrımsız cam elyaf takviyeli kompozit plakalarda pim bağlantılarının deneysel olarak incelenmesi

Year 2018, , 1445 - 1458, 19.12.2018
https://doi.org/10.17341/gazimmfd.416441

Abstract

Bu çalışmada, pim bağlantısına sahip yarı-tek yönlü cam kıvrımsız elyaf (KE) takviyeli kompozit plakaların mekanik davranışları deneysel olarak incelenmiştir. Üç farklı çapraz-katlı ve üç farklı yarı-izotropik elyaf sıralaması kullanılarak vakum destekli reçine transfer yöntemi ile kompozit plakalar üretilmiştir. Üretilen plakalardan deney numunelerinin hazırlanması ve pim bağlantısı deneyleri ASTM D-5961 test standardına göre yapılarak farklı malzeme ve bağlantı sistemleriyle karşılaştırılmıştır. Son olarak delik çevresinde kesit alınarak hasar mekanizmaları optik mikroskopta incelenmiştir.

References

  • Lomov, S. V., Non-crimp fabric composites: manufacturing, properties and applications Elsevier, 2011.
  • Bibo, G., Hogg, P., Backhouse, R. and Mills, A., Carbon-fibre non-crimp fabric laminates for cost-effective damage-tolerant structures, Composites Science and Technology, 58(1), 129-143, 1998.
  • Bibo, G., Hogg, P. and Kemp, M., Mechanical characterisation of glass-and carbon-fibre-reinforced composites made with non-crimp fabrics, Composites Science and Technology, 57(9), 1221-1241, 1997.
  • Hogg, P. J., Ahmadnia, A. and Guild, F. J., The mechanical properties of non-crimped fabric-based composites, Composites, 24(5), 423-432, 1993.
  • Drapier, S. and Wisnom, M. R., Finite-element investigation of the compressive strength of non-crimp-fabric-based composites, Composites Science and Technology, 59(8), 1287-1297, 1999.
  • Drapier, S. and Wisnom, M. R., A finite-element investigation of the interlaminar shear behaviour of non-crimp-fabric-based composites, Composites Science and Technology, 59(16), 2351-2362, 1999.
  • Mattsson, D., Joffe, R. and Varna, J., Damage in NCF composites under tension: effect of layer stacking sequence, Engineering Fracture Mechanics, 75(9), 2666-2682, 2008.
  • Mattsson, D., Joffe, R. and Varna, J., Methodology for characterization of internal structure parameters governing performance in NCF composites, Composites Part B: Engineering, 38(1), 44-57, 2007.
  • Joffe, R., Mattsson, D., Modniks, J. and Varna, J., Compressive failure analysis of non-crimp fabric composites with large out-of-plane misalignment of fiber bundles, Composites Part A: Applied Science and Manufacturing, 36(8), 1030-1046, 2005.
  • Edgren, F., Mattsson, D., Asp, L. E. and Varna, J., Formation of damage and its effects on non-crimp fabric reinforced composites loaded in tension, Composites Science and Technology, 64(5), 675-692, 2004.
  • Mikhaluk, D., Truong, T., Borovkov, A., Lomov, S. V. and Verpoest, I., Experimental observations and finite element modelling of damage initiation and evolution in carbon/epoxy non-crimp fabric composites, Engineering Fracture Mechanics, 75(9), 2751-2766, 2008.
  • Miller, A., The effect of microstructural parameters on the mechanical properties of non-crimp fabric composites, Cranfield University, 1996.
  • Eriksson, I., On the bearing strength of bolted graphite/epoxy laminates, Journal of Composite Materials, 24(12), 1246-1269, 1990.
  • Park, H.-J., Effects of stacking sequence and clamping force on the bearing strengths of mechanically fastened joints in composite laminates, Composite Structures, 53(2), 213-221, 2001.
  • Öndürücü, A., Esendemir, Ü. and Tunay, R. F., Progressive failure analysis of glass–epoxy laminated composite pinned-joints, Materials & Design, 36, 617-625, 2012.
  • Ataş, A. and Soutis, C., Subcritical damage mechanisms of bolted joints in CFRP composite laminates, Composites Part B: Engineering, 54, 20-27, 2013.
  • Khashaba, U., Sebaey, T., Mahmoud, F., Selmy, A. and Hamouda, R., Experimental and numerical analysis of pinned-joints composite laminates: Effects of stacking sequences, Journal of Composite Materials, 47(27), 3353-3366, 2013.
  • Wu, P. and Sun, C., Modeling bearing failure initiation in pin-contact of composite laminates, Mechanics of Materials, 29(3), 325-335, 1998.
  • Datasheet for L300E10C, Metyx A.Ş.
  • Vallons, K., Adolphs, G., Lucas, P., Lomov, S. V. and Verpoest, I., Quasi-UD glass fibre NCF composites for wind energy applications: a review of requirements and existing fatigue data for blade materials, Mechanics & Industry, 14(3), 175-189, 2013.
  • ASTM "D 5961/D 5961 M-05 Standard Test Method for Bearing Response of Polymer Matrix Composite Laminates". (2001).
  • Ataş, A. and Soutis, C., Application of cohesive zone elements in damage analysis of composites: Strength prediction of a single-bolted joint in CFRP laminates, International Journal of Non-Linear Mechanics, 66, 96-104, 2014.
  • Ataş, A. and Soutis, C., Strength prediction of bolted joints in CFRP composite laminates using cohesive zone elements, Composites Part B: Engineering, 58, 25-34, 2014.
  • İnal, O., Kıvrımsız Cam Elyaf Takviyeli Kompozit Plakalarda Cıvata Bağlantılarının Deneysel ve Nümerik olarak İncelenmesi, Master's Thesis, Balıkesir University, Balıkesir, 2017.
Year 2018, , 1445 - 1458, 19.12.2018
https://doi.org/10.17341/gazimmfd.416441

Abstract

References

  • Lomov, S. V., Non-crimp fabric composites: manufacturing, properties and applications Elsevier, 2011.
  • Bibo, G., Hogg, P., Backhouse, R. and Mills, A., Carbon-fibre non-crimp fabric laminates for cost-effective damage-tolerant structures, Composites Science and Technology, 58(1), 129-143, 1998.
  • Bibo, G., Hogg, P. and Kemp, M., Mechanical characterisation of glass-and carbon-fibre-reinforced composites made with non-crimp fabrics, Composites Science and Technology, 57(9), 1221-1241, 1997.
  • Hogg, P. J., Ahmadnia, A. and Guild, F. J., The mechanical properties of non-crimped fabric-based composites, Composites, 24(5), 423-432, 1993.
  • Drapier, S. and Wisnom, M. R., Finite-element investigation of the compressive strength of non-crimp-fabric-based composites, Composites Science and Technology, 59(8), 1287-1297, 1999.
  • Drapier, S. and Wisnom, M. R., A finite-element investigation of the interlaminar shear behaviour of non-crimp-fabric-based composites, Composites Science and Technology, 59(16), 2351-2362, 1999.
  • Mattsson, D., Joffe, R. and Varna, J., Damage in NCF composites under tension: effect of layer stacking sequence, Engineering Fracture Mechanics, 75(9), 2666-2682, 2008.
  • Mattsson, D., Joffe, R. and Varna, J., Methodology for characterization of internal structure parameters governing performance in NCF composites, Composites Part B: Engineering, 38(1), 44-57, 2007.
  • Joffe, R., Mattsson, D., Modniks, J. and Varna, J., Compressive failure analysis of non-crimp fabric composites with large out-of-plane misalignment of fiber bundles, Composites Part A: Applied Science and Manufacturing, 36(8), 1030-1046, 2005.
  • Edgren, F., Mattsson, D., Asp, L. E. and Varna, J., Formation of damage and its effects on non-crimp fabric reinforced composites loaded in tension, Composites Science and Technology, 64(5), 675-692, 2004.
  • Mikhaluk, D., Truong, T., Borovkov, A., Lomov, S. V. and Verpoest, I., Experimental observations and finite element modelling of damage initiation and evolution in carbon/epoxy non-crimp fabric composites, Engineering Fracture Mechanics, 75(9), 2751-2766, 2008.
  • Miller, A., The effect of microstructural parameters on the mechanical properties of non-crimp fabric composites, Cranfield University, 1996.
  • Eriksson, I., On the bearing strength of bolted graphite/epoxy laminates, Journal of Composite Materials, 24(12), 1246-1269, 1990.
  • Park, H.-J., Effects of stacking sequence and clamping force on the bearing strengths of mechanically fastened joints in composite laminates, Composite Structures, 53(2), 213-221, 2001.
  • Öndürücü, A., Esendemir, Ü. and Tunay, R. F., Progressive failure analysis of glass–epoxy laminated composite pinned-joints, Materials & Design, 36, 617-625, 2012.
  • Ataş, A. and Soutis, C., Subcritical damage mechanisms of bolted joints in CFRP composite laminates, Composites Part B: Engineering, 54, 20-27, 2013.
  • Khashaba, U., Sebaey, T., Mahmoud, F., Selmy, A. and Hamouda, R., Experimental and numerical analysis of pinned-joints composite laminates: Effects of stacking sequences, Journal of Composite Materials, 47(27), 3353-3366, 2013.
  • Wu, P. and Sun, C., Modeling bearing failure initiation in pin-contact of composite laminates, Mechanics of Materials, 29(3), 325-335, 1998.
  • Datasheet for L300E10C, Metyx A.Ş.
  • Vallons, K., Adolphs, G., Lucas, P., Lomov, S. V. and Verpoest, I., Quasi-UD glass fibre NCF composites for wind energy applications: a review of requirements and existing fatigue data for blade materials, Mechanics & Industry, 14(3), 175-189, 2013.
  • ASTM "D 5961/D 5961 M-05 Standard Test Method for Bearing Response of Polymer Matrix Composite Laminates". (2001).
  • Ataş, A. and Soutis, C., Application of cohesive zone elements in damage analysis of composites: Strength prediction of a single-bolted joint in CFRP laminates, International Journal of Non-Linear Mechanics, 66, 96-104, 2014.
  • Ataş, A. and Soutis, C., Strength prediction of bolted joints in CFRP composite laminates using cohesive zone elements, Composites Part B: Engineering, 58, 25-34, 2014.
  • İnal, O., Kıvrımsız Cam Elyaf Takviyeli Kompozit Plakalarda Cıvata Bağlantılarının Deneysel ve Nümerik olarak İncelenmesi, Master's Thesis, Balıkesir University, Balıkesir, 2017.
There are 24 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Makaleler
Authors

Oğuzcan İnal This is me

Akın Ataş

Publication Date December 19, 2018
Submission Date March 28, 2017
Acceptance Date January 18, 2018
Published in Issue Year 2018

Cite

APA İnal, O., & Ataş, A. (2018). Kıvrımsız cam elyaf takviyeli kompozit plakalarda pim bağlantılarının deneysel olarak incelenmesi. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 33(4), 1445-1458. https://doi.org/10.17341/gazimmfd.416441
AMA İnal O, Ataş A. Kıvrımsız cam elyaf takviyeli kompozit plakalarda pim bağlantılarının deneysel olarak incelenmesi. GUMMFD. December 2018;33(4):1445-1458. doi:10.17341/gazimmfd.416441
Chicago İnal, Oğuzcan, and Akın Ataş. “Kıvrımsız Cam Elyaf Takviyeli Kompozit Plakalarda Pim bağlantılarının Deneysel Olarak Incelenmesi”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 33, no. 4 (December 2018): 1445-58. https://doi.org/10.17341/gazimmfd.416441.
EndNote İnal O, Ataş A (December 1, 2018) Kıvrımsız cam elyaf takviyeli kompozit plakalarda pim bağlantılarının deneysel olarak incelenmesi. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 33 4 1445–1458.
IEEE O. İnal and A. Ataş, “Kıvrımsız cam elyaf takviyeli kompozit plakalarda pim bağlantılarının deneysel olarak incelenmesi”, GUMMFD, vol. 33, no. 4, pp. 1445–1458, 2018, doi: 10.17341/gazimmfd.416441.
ISNAD İnal, Oğuzcan - Ataş, Akın. “Kıvrımsız Cam Elyaf Takviyeli Kompozit Plakalarda Pim bağlantılarının Deneysel Olarak Incelenmesi”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 33/4 (December 2018), 1445-1458. https://doi.org/10.17341/gazimmfd.416441.
JAMA İnal O, Ataş A. Kıvrımsız cam elyaf takviyeli kompozit plakalarda pim bağlantılarının deneysel olarak incelenmesi. GUMMFD. 2018;33:1445–1458.
MLA İnal, Oğuzcan and Akın Ataş. “Kıvrımsız Cam Elyaf Takviyeli Kompozit Plakalarda Pim bağlantılarının Deneysel Olarak Incelenmesi”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, vol. 33, no. 4, 2018, pp. 1445-58, doi:10.17341/gazimmfd.416441.
Vancouver İnal O, Ataş A. Kıvrımsız cam elyaf takviyeli kompozit plakalarda pim bağlantılarının deneysel olarak incelenmesi. GUMMFD. 2018;33(4):1445-58.