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논문 기본 정보

자료유형
학술저널
저자정보
Zamurrad Arshad (University of Engineering and Technology) Muhammad Ali Nasir (University of Engineering and Technology) Yasir Baig (Beijing University of Aeronautics and Astronautics) Muhammad Zeeshan (National Textile University) Rizwan Ahmed Malik (University of Engineering and Technology) Khubab Shaker (National Textile University) Azhar Hussain (University of Engineering and Technology) M. Latif (Inha University) Maryam Sattar (Institute of Space Technology) Hussein Alrobei (Prince Sattam bin Abdul aziz University)
저널정보
한국고분자학회 폴리머 폴리머 제44권 제5호
발행연도
2020.9
수록면
610 - 617 (8page)
DOI
10.7317/pk.2020.44.5.610

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This work focuses on the synthesis of a novel hybrid composite, fabricated by utilizing jute and carbon fibers reinforced epoxy composites through hand layup technique to replace pure carbon-epoxy fiber composites. The mechanical properties were evaluated by drop weight impact and tension-tension fatigue tests. The tension-tension fatigue test was conducted to monitor the dynamic stiffness and fatigue life degradation of hybrid composite materials by varying the layers of jute fiber. The maximum peak load during the impact test was observed as 1081.7 N in case of carbon/jute/ carbon/jute/carbon (CJCJC) stacking sequence composite materials. Finally, the surface morphology of hybrid composite materials was studied with scanning electron microscopy (SEM) after mechanical tests to check the delamination, fiber pull-out and matrix cracks. It can be concluded from the obtained mechanical results that the newly developed composite with 15% jute/carbon-epoxy hybrid materials has the potential to swap carbon-epoxy composite without much loss of fatigue life along with relatively enhanced ductility as well as impact strength.

목차

Abstract
Introduction
Experimental
Results and Discussion
Conclusions
References

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