Yıl: 2022 Cilt: 5 Sayı: 4 Sayfa Aralığı: 289 - 299 Metin Dili: İngilizce DOI: 10.31462/jseam.2022.04289299 İndeks Tarihi: 13-01-2023

Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites

Öz:
This study aims to produce glass fiber composite plates by vacuum infusion method and to determine the interlaminar shear strength (ILSS) under the short beam test. For this purpose, composite plates were produced under the effect of vacuum and temperature by adding glass fiber layers on a flat vacuum table. Short beam tests were carried out on the obtained laminated composite plates and the interlayer shear strength, which is generally characterized by delamination damage, was investigated. In the numerical part, the tests were modeled using the LS-DYNA finite element package program, and the Hashin damage criterion-based material model was used to see the damages that occurred in the composite structure after the tests.
Anahtar Kelime: Glass fiber composites Progressive failure analysis Short beam test LS-DYNA

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • [1] Espadas-Escalante JJ, Isaksson P (2019) A study of induced delamination and failure in woven composite laminates subject to short-beam shear testing. Eng Fract Mech 205:359–369. https://doi.org/10.1016/j.engfracmech.2018.10.015
  • [2] Sritharan R, Askari D (2021) Enhancing the short-beam strength of composite laminates using helical carbon nanotubes. Compos Part B Eng 221:108999. https://doi.org/10.1016/j.compositesb.2021.108999
  • [3] Allott NR, Czabaj MW (2021) Characterization of the interlaminar shear strength of IM7/8552 using small-scale short beam shear tests. Compos Part A Appl Sci Manuf 142:106200. https://doi.org/10.1016 /j.compositesa.2020.106200
  • [4] Tretiak I, Kawashita LF, Hallett SR (2022) Predicting short beam shear strength reduction in carbon/epoxy laminates containing voids. Compos Struct 290:115472. https://doi.org/10.1016/j.compstruct.2022.115472
  • [5] Demiral M, Tanabi H, Sabuncuoglu B (2020) Experimental and numerical investigation of transverse shear behavior of glass-fibre composites with embedded vascular channel. Compos Struct 252:112697. https://doi.org/10.1016/j.compstruct.2020.112697
  • [6] Gupta RK, Mahato A, Bhattacharya A (2021) Damage analysis of carbon fiber reinforced aluminum laminate under short beam and single edge notch beam bend test. Int J Mech Sci 198:106393. https://doi.org/10.1016/j.ijmecsci.2021.106393
  • [7] Kotik H, Ipiña JP (2015) Influence of Unifilo® Ply in the interlaminar shear fatigue resistance of GFRP. Procedia Mater Sci 8:139–147. https://doi.org/10.1016/j.mspro.2015.04.057
  • [8] Xin Z, Ma Y, Chen Y, Wang B, Xiao H, Duan Y (2023) Fusion-bonding performance of short and continuous carbon fiber synergistic reinforced composites using fused filament fabrication. Compos Part B Eng 248:110370. https://doi.org/10.1016/j.compositesb.2022.110370
  • [9] Sai Dinesh K, Gowthaman S (2021) Short beam shear behaviour of ZnO nanowire reinforced glass/epoxy composites. Mater Today Proc 44:821–826. https://doi.org/10.1016/j.matpr.2020.10.713
  • [10] Kapti S, Sayman O, Ozen M, Benli S (2010) Experimental and numerical failure analysis of carbon/epoxy laminated composite joints under different conditions. Mater Des 31(10):4933–4942. https://doi.org/10.1016/j.matdes.2010.05.018
  • [11] Shekar KC, Prasad BA, Prasad NE (2014) Interlaminar shear strength of multi-walled carbon nanotube and carbon fiber reinforced, epoxy–matrix hybrid composite. Procedia Mater Sci 6:1336–1343. https://doi.org/10.1016/j.mspro.2014.07.112
  • [12] Gere J, Goodno, BJ (2008) Mechanics of Materials. 7th ed. Cengage Learning.
  • [13] Albayrak M, Kaman MO, Bozkurt I (2022) Determination of LS-DYNA MAT162 material input parameters for low-velocity impact analysis of layered composites. Conference Proceedings, Paris, France.
  • [14] Hashin Z (1980) Failure criteria for unidirectional fiber composites. J Appl Mech Trans ASME 47(2):329–334. https://doi.org/10.1115/1.3153664
  • [15] Matzenmiller A, Lubliner J, Taylor RL (1995) A constitutive model for anisotropic damage in fiber-composites. Mech Mater 20(2):125–152. https://doi.org/10.1016/0167-6636(94)00053-0
  • [16] Xiao JR, Gama BA, Gillespie JW (2007) Progressive damage and delamination in plain weave S-2 glass/SC-15 composites under quasi-static punch-shear loading. Compos Struct 78(2):182–196. https://doi.org/ 10.1016/j.compstruct.2005.09.001
  • [17] Vescovini A, Balen L, Scazzosi R, da Silva AAX, Amico SC, Giglioa M, Manes A (2021) Numerical investigation on the hybridization effect in inter-ply S2-glass and aramid woven composites subjected to ballistic impacts. Compos Struct 276:114506. https://doi.org/10.1016/j.compstruct.2021.114506
  • [18] García-Moreno I, Caminero MÁ, Rodríguez GP, López-Cela JJ (2019) Effect of thermal ageing on the impact damage resistance and tolerance of carbon-fibre-reinforced epoxy laminates. Polymers (Basel) 11(1):10–12. https://doi.org/10.3390/polym11010160
  • [19] Gagani AI, Krauklis AE, Sæter E, Vedvik NP, Echtermeyer AT (2019) A novel method for testing and determining ILSS for marine and offshore composites. Compos Struct 220:431–440. https://doi.org/10.1016/j.compstruct.2019.04.040
APA albayrak m, aşan a, KAMAN M, bozkurt i (2022). Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. , 289 - 299. 10.31462/jseam.2022.04289299
Chicago albayrak mustafa,aşan ahmet murat,KAMAN METE ONUR,bozkurt ilyas Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. (2022): 289 - 299. 10.31462/jseam.2022.04289299
MLA albayrak mustafa,aşan ahmet murat,KAMAN METE ONUR,bozkurt ilyas Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. , 2022, ss.289 - 299. 10.31462/jseam.2022.04289299
AMA albayrak m,aşan a,KAMAN M,bozkurt i Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. . 2022; 289 - 299. 10.31462/jseam.2022.04289299
Vancouver albayrak m,aşan a,KAMAN M,bozkurt i Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. . 2022; 289 - 299. 10.31462/jseam.2022.04289299
IEEE albayrak m,aşan a,KAMAN M,bozkurt i "Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites." , ss.289 - 299, 2022. 10.31462/jseam.2022.04289299
ISNAD albayrak, mustafa vd. "Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites". (2022), 289-299. https://doi.org/10.31462/jseam.2022.04289299
APA albayrak m, aşan a, KAMAN M, bozkurt i (2022). Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. Journal of Structural Engineering & Applied Mechanics (Online), 5(4), 289 - 299. 10.31462/jseam.2022.04289299
Chicago albayrak mustafa,aşan ahmet murat,KAMAN METE ONUR,bozkurt ilyas Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. Journal of Structural Engineering & Applied Mechanics (Online) 5, no.4 (2022): 289 - 299. 10.31462/jseam.2022.04289299
MLA albayrak mustafa,aşan ahmet murat,KAMAN METE ONUR,bozkurt ilyas Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. Journal of Structural Engineering & Applied Mechanics (Online), vol.5, no.4, 2022, ss.289 - 299. 10.31462/jseam.2022.04289299
AMA albayrak m,aşan a,KAMAN M,bozkurt i Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. Journal of Structural Engineering & Applied Mechanics (Online). 2022; 5(4): 289 - 299. 10.31462/jseam.2022.04289299
Vancouver albayrak m,aşan a,KAMAN M,bozkurt i Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites. Journal of Structural Engineering & Applied Mechanics (Online). 2022; 5(4): 289 - 299. 10.31462/jseam.2022.04289299
IEEE albayrak m,aşan a,KAMAN M,bozkurt i "Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites." Journal of Structural Engineering & Applied Mechanics (Online), 5, ss.289 - 299, 2022. 10.31462/jseam.2022.04289299
ISNAD albayrak, mustafa vd. "Experimental and numerical determination of interlayer shear strength of glass fiber-reinforced epoxy composites". Journal of Structural Engineering & Applied Mechanics (Online) 5/4 (2022), 289-299. https://doi.org/10.31462/jseam.2022.04289299