Repair of Aerospace Composite Structures Using Liquid Thermoplastic Resin
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作者:
Khan, Tayyab
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Khalifa Univ Sci & Technol, Dept Aerosp Engn, POB 127788, Abu Dhabi, U Arab EmiratesKhalifa Univ Sci & Technol, Dept Aerosp Engn, POB 127788, Abu Dhabi, U Arab Emirates
Khan, Tayyab
[1
]
Hafeez, Farrukh
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机构:
Univ Birmingham, Sch Engn, Dept Mech Engn, POB 341799, Birmingham, England
Dubai Int Acad City, POB 341799, Dubai, U Arab EmiratesKhalifa Univ Sci & Technol, Dept Aerosp Engn, POB 127788, Abu Dhabi, U Arab Emirates
Hafeez, Farrukh
[2
,3
]
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机构:
Umer, Rehan
[1
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机构:
[1] Khalifa Univ Sci & Technol, Dept Aerosp Engn, POB 127788, Abu Dhabi, U Arab Emirates
[2] Univ Birmingham, Sch Engn, Dept Mech Engn, POB 341799, Birmingham, England
[3] Dubai Int Acad City, POB 341799, Dubai, U Arab Emirates
In this study, two types of carbon-fiber-reinforced plastic (CFRP) composite scarf geometries were created using two scarf angles, i.e., 1.43 degrees and 5.71 degrees. The scarf joints were adhesively bonded using a novel liquid thermoplastic resin at two different temperatures. The performance of the repaired laminates was compared with pristine samples in terms of residual flexural strength using four-point bending tests. The repair quality of the laminates was examined by optical micrographs, and the failure modes after flexural tests were analyzed using a scanning electron microscope. The thermal stability of the resin was evaluated by thermogravimetric analysis (TGA), whereas the stiffness of the pristine samples was determined using dynamic mechanical analysis (DMA). The results showed that the laminates were not fully repaired under ambient conditions, and the highest recovery strength at room temperature was only 57% of the total strength exhibited by pristine laminates. Increasing the bonding temperature to an optimal repair temperature of 210 degrees C resulted in a significant improvement in the recovery strength. The best results were achieved for laminates with a higher scarf angle (5.71 degrees). The highest residual flexural strength was recorded as 97% that of the pristine sample repaired at 210 degrees C with a scarf angle of 5.71 degrees. The SEM micrographs showed that all the repaired samples exhibited delamination as the dominant failure mode, whereas the pristine samples exhibited dominant fiber fracture and fiber pullout failure modes. The residual strength recovered using liquid thermoplastic resin was found to be much higher than that reported for conventional epoxy adhesives.
机构:
Grupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, VenezuelaGrupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, Venezuela
Porras, Juan
Morales, Maria A.
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Grupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, VenezuelaGrupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, Venezuela
Morales, Maria A.
Hernandez, Camilo
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机构:
Sustainable Design in Mechanical Engineering Research Group (DSIM), Department of Mechanical Engineering, Escuela Colombiana de Ingeniería Julio Garavito, Bogotá, ColombiaGrupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, Venezuela
Hernandez, Camilo
Maranon, Alejandro
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机构:
Structural Integrity Research Group, Department of Mechanical Engineering, Universidad de los Andes, Bogotá, VenezuelaGrupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, Venezuela
Maranon, Alejandro
Michaud, Véronique
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机构:
Laboratory for Processing of Advanced Composites (LPAC), Institute of Materials, Ecole Polytechnique Fédérale de Lausanne (EPFL), EPFL-STI-IMX-LPAC, Lausanne, SwitzerlandGrupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, Venezuela
Michaud, Véronique
Porras, Alicia
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机构:
Grupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, VenezuelaGrupo de Diseño de Productos y Procesos (GDPP), Department of Chemical and Food Engineering, Universidad de los Andes, Bogotá, Venezuela