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Radial compressive behavior of hand-laid GFRP pipes: an experimental and numerical study
被引:0
|作者:
Zaman, Yasir
[1
]
Amin, Fayiz
[2
]
Iqbal, Munir
[2
]
Gerges, Michael
[3
]
Asif, Muhammad
[4
]
Majid, Khan Abdul
[4
]
Hussain, Babar
[1
]
机构:
[1] Ghulam Ishaq Khan Inst, Fac Mech Engn, Topi 23460, Pakistan
[2] Ghulam Ishaq Khan Inst, Dept Civil Engn, Topi 23460, Pakistan
[3] Univ Wolverhampton, Fac Sci & Engn, Wolverhampton, England
[4] China Three Gorges Univ, Yichang, Hubei, Peoples R China
关键词:
Compression test;
Radial stresses;
Glass fiber reinforced polymer pipe;
Composites;
FEM analysis;
GFRP;
PERFORMANCE;
PRESSURE;
D O I:
10.1007/s41939-024-00710-1
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
The growing interest in composite materials is due to their exceptional strength, stiffness, and fatigue resistance. Glass Fiber Reinforced Polymer (GFRP) pipes are ideal for aerospace applications like drone arms, needing to withstand payload weight, forces, vibrations, environmental effects, impacts, altitude changes, air density variations, and extreme temperatures. This study investigates the compressive behavior under radial loading of GFRP pipes specifically fabricated with a six-ply laminate sequence [0/90/0/90/0/90]. An experimental evaluation was conducted using a universal testing machine according to standard ASTM D2412 to assess the compressive response, and the acquired data was subsequently validated through finite element method (FEM) employing Abaqus software. The percentage difference between the experimental and FEM results is 4.72%, indicating a strong correlation between the two. Experimental findings confirmed a compressive strength of 0.49 MPa and a maximum load capacity of 0.49 kN for the six-ply GFRP laminate. FEM analysis validated these results. Furthermore, the influence of varying the number of plies on the GFRP pipe was studied, and the results show an increasing strength trend with additional plies. As the number of plies increases from 6 to 15, the ultimate compressive strength, represented by the peak stress value on each curve, also increases. This research establishes GFRP pipes as a promising candidate for applications requiring lightweight and robust materials.
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页数:15
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