À propos de cet article

Citez

Othman R, Ismail NI, Pahmi MAAH, Basri MHM, Sharudin H, Hemdi AR. Application of Carbon Fiber Reinforced Plastics in Automotive Industry: A Review. J. Mech. Manuf. 2018;1:144-154. Othman R Ismail NI Pahmi MAAH Basri MHM Sharudin H Hemdi AR. Application of Carbon Fiber Reinforced Plastics in Automotive Industry: A Review . J. Mech. Manuf . 2018 ; 1 : 144 - 154 . Search in Google Scholar

Rasheed A, Khalid FA. Fabrication and properties of CNTs reinforced polymeric matrix nanocomposites for sports applications. IOP Conf. Ser. Mater. Sci. Eng. 2014;60:012009. Rasheed A Khalid FA. Fabrication and properties of CNTs reinforced polymeric matrix nanocomposites for sports applications . IOP Conf. Ser. Mater. Sci. Eng . 2014 ; 60 :012009. Search in Google Scholar

Kośla K, Kubiak P, Łandwijt M, Urbaniak W, Kucharska-Jastrząbek A. Fragment-Resistant Property Optimization within Ballistic Inserts Obtained on the Basis of Para-Aramid Materials. Materials 2022;15:1–16. Kośla K Kubiak P Łandwijt M Urbaniak W Kucharska-Jastrząbek A. Fragment-Resistant Property Optimization within Ballistic Inserts Obtained on the Basis of Para-Aramid Materials . Materials 2022 ; 15 : 1 16 . Search in Google Scholar

Clifton S, Thimmappa BHS, Selvam R, Shivamurthy B. Polymer nanocomposites for high-velocity impact applications-A review. Compos. Commun. 2020;17:72–86. Clifton S Thimmappa BHS Selvam R Shivamurthy B. Polymer nanocomposites for high-velocity impact applications-A review . Compos. Commun . 2020 ; 17 : 72 86 . Search in Google Scholar

Liu TQ, Liu X, Feng P. A comprehensive review on mechanical properties of pultruded FRP composites subjected to long-term environmental effects. Compos. Part B. 2020;194:107958. Liu TQ Liu X Feng P. A comprehensive review on mechanical properties of pultruded FRP composites subjected to long-term environmental effects . Compos. Part B . 2020 ; 194 : 107958 . Search in Google Scholar

Shao Y, Kouadio S. Durability of fiberglass composite sheet piles in water. J. Compos. Constr. 2002;6:280–287. Shao Y Kouadio S. Durability of fiberglass composite sheet piles in water . J. Compos. Constr . 2002 ; 6 : 280 287 . Search in Google Scholar

Yuan H, Cai R, Meng Q, Wang, L. Investigation of flexural properties and failure behaviour of biaxial braided CFRP. Polym. Test. 2020;87:106545. Yuan H Cai R Meng Q Wang L. Investigation of flexural properties and failure behaviour of biaxial braided CFRP . Polym. Test . 2020 ; 87 : 106545 . Search in Google Scholar

Kim J, Cha J, Chung B, Ryu S, Hong SH. Fabrication and mechanical properties of carbon fiber/epoxy nanocomposites containing high loadings of noncovalently functionalized graphene nanoplatelets. Compos. Sci. Technol. 2020;192:108101. Kim J Cha J Chung B Ryu S Hong SH. Fabrication and mechanical properties of carbon fiber/epoxy nanocomposites containing high loadings of noncovalently functionalized graphene nanoplatelets . Compos. Sci. Technol . 2020 ; 192 : 108101 . Search in Google Scholar

Lee JM, Min BJ, Park JH, Kim DH, Kim BM, Ko DC. Design of lightweight CFRP automotive part as an alternative for steel part by thickness and lay-up optimization. Materials. 2019; 12: 2309. Lee JM Min BJ Park JH Kim DH Kim BM Ko DC. Design of lightweight CFRP automotive part as an alternative for steel part by thickness and lay-up optimization . Materials . 2019 ; 12 : 2309 . Search in Google Scholar

Keller T. Recent all-composite and hybrid fibre-reinforced polymer bridges and buildings. Prog. Struct. Eng. Mater. 2001;3:132–140. Keller T. Recent all-composite and hybrid fibre-reinforced polymer bridges and buildings . Prog. Struct. Eng. Mater . 2001 ; 3 : 132 140 . Search in Google Scholar

Turner MK, Harries KA, Petrou MF, Rizos D. In situ structural evaluation of a GFRP bridge deck system. Compos. Struct. 2004;65:157–165. Turner MK Harries KA Petrou MF Rizos D. In situ structural evaluation of a GFRP bridge deck system . Compos. Struct . 2004 ; 65 : 157 165 . Search in Google Scholar

Kobayashi Y, Kobayashi S. Accelerated thermo-oxidative aging for carbon fiber reinforced polycyanate under high pressure atmosphere. Adv. Compos. Mater. 2017;26:451-464. Kobayashi Y Kobayashi S. Accelerated thermo-oxidative aging for carbon fiber reinforced polycyanate under high pressure atmosphere . Adv. Compos. Mater . 2017 ; 26 : 451 - 464 . Search in Google Scholar

Sarker M, Hadigheh SA, Dias-da-Costa D. A performance-based characterisation of CFRP composite deterioration using active infrared thermography. Compos. Struct. 2020;241:112134. Sarker M Hadigheh SA Dias-da-Costa D. A performance-based characterisation of CFRP composite deterioration using active infrared thermography . Compos. Struct . 2020 ; 241 : 112134 . Search in Google Scholar

Fasana A, Ferraris A, Airale A.G, Polato DB, Carello M. Oberst and aging tests of damped CFRP materials: New fitting procedure and experimental results. Compos. Part B. 2018;148:104-113. Fasana A Ferraris A Airale A.G Polato DB Carello M. Oberst and aging tests of damped CFRP materials: New fitting procedure and experimental results . Compos. Part B . 2018 ; 148 : 104 - 113 . Search in Google Scholar

Guzmán E, Cugnoni J, Gmür T. Multi-factorial models of a carbon fibre/epoxy composite subjected to accelerated environmental ageing. Compos. Struct. 2014;111:179–192. Guzmán E Cugnoni J Gmür T. Multi-factorial models of a carbon fibre/epoxy composite subjected to accelerated environmental ageing . Compos. Struct . 2014 ; 111 : 179 192 . Search in Google Scholar

Cysne Barbosa AP, Fulco AP, Guerra E, Arakaki FK, Tosatto M, Costa MCB, Melo JDD. Accelerated aging effects on carbon fiber/epoxy composites. Compos. Part B. 2017;110:298–306. Cysne Barbosa AP Fulco AP Guerra E Arakaki FK Tosatto M Costa MCB Melo JDD. Accelerated aging effects on carbon fiber/epoxy composites . Compos. Part B . 2017 ; 110 : 298 306 . Search in Google Scholar

Fidan S, Özgür Bora M, Çoban O, Akagündüz E. The scratch behavior of accelerated aged carbon fiber-reinforced epoxy matrix composite. Polym. Compos. 2016;37:3527–3534. Fidan S Özgür Bora M Çoban O Akagündüz E. The scratch behavior of accelerated aged carbon fiber-reinforced epoxy matrix composite . Polym. Compos . 2016 ; 37 : 3527 3534 . Search in Google Scholar

Ofoegbu SU, Quevedo MC, Bastos AC, Ferreira MGS, Zheludkevich ML. Electrochemical characterization and degradation of carbon fibre reinforced polymer in quiescent near neutral chloride media. NPJ Mater Degrad. 2022;6:49. Ofoegbu SU Quevedo MC Bastos AC Ferreira MGS Zheludkevich ML. Electrochemical characterization and degradation of carbon fibre reinforced polymer in quiescent near neutral chloride media . NPJ Mater Degrad . 2022 ; 6 : 49 . Search in Google Scholar

Ofoegbu, SU, Ferreira, MGS, Zheludkevich, ML. Galvanically Stimulated Degradation of Carbon-Fiber Reinforced Polymer Composites: A Critical Review. Materials 2019;12:651. Ofoegbu SU Ferreira MGS Zheludkevich ML. Galvanically Stimulated Degradation of Carbon-Fiber Reinforced Polymer Composites: A Critical Review . Materials 2019 ; 12 : 651 . Search in Google Scholar

Santos TFA, Vasconcelos GC, de Souza WA, Costa ML, Botelho EC. Suitability of carbon fiber-reinforced polymers as power cable cores: Galvanic corrosion and thermal stability evaluation. Materials & Design (1980-2015), 2015;65:780-788. Santos TFA Vasconcelos GC de Souza WA Costa ML Botelho EC. Suitability of carbon fiber-reinforced polymers as power cable cores: Galvanic corrosion and thermal stability evaluation . Materials & Design (1980-2015) , 2015 ; 65 : 780 - 788 . Search in Google Scholar

Yang Y, Silva MAG, Silva, RJC. Material degradation of cfrp-to-steel joints subjected to salt fog. Composites Part B: Engineering 2019;173:106884. Yang Y Silva MAG Silva RJC. Material degradation of cfrp-to-steel joints subjected to salt fog . Composites Part B: Engineering 2019 ; 173 : 106884 . Search in Google Scholar

Miriyala S, Tucker W, Rockett T, Brown R. Degradation of carbon reinforced polymer composites under galvanic coupling conditions. AIAA 1992-2553. 33rd Structures. Paper presented at: Structural Dynamics and Materials Conference. April 1992. Miriyala S Tucker W Rockett T Brown R. Degradation of carbon reinforced polymer composites under galvanic coupling conditions . AIAA 1992-2553. 33rd Structures. Paper presented at: Structural Dynamics and Materials Conference . April 1992 . Search in Google Scholar

Alias MN, Brown R. Corrosion behavior of carbon fiber composites in the marine environment. Corrosion Science 1993;35:395-402. Alias MN Brown R. Corrosion behavior of carbon fiber composites in the marine environment . Corrosion Science 1993 ; 35 : 395 - 402 . Search in Google Scholar

Whitman BW, Miller D, Davis R, Brennan J, Swain GM. Effect of galvanic current on the physicochemical, electrochemical and mechanical properties of an aerospace carbon fiber reinforced epoxy composite. Journal of The Electrochemical Society. 2017; 164(13): C881-C891. Whitman BW Miller D Davis R Brennan J Swain GM. Effect of galvanic current on the physicochemical, electrochemical and mechanical properties of an aerospace carbon fiber reinforced epoxy composite . Journal of The Electrochemical Society . 2017 ; 164 ( 13 ) : C881-C891. Search in Google Scholar

Geretschläger KJ, Wallner GM. Aging characteristics of glass fiber-reinforced polyamide in hot water and air. Polym. Compos. 2018;39:997–1005. Geretschläger KJ Wallner GM. Aging characteristics of glass fiber-reinforced polyamide in hot water and air . Polym. Compos . 2018 ; 39 : 997 1005 . Search in Google Scholar

Davies P, Le Gac PY, Le Gall M, et al. Marine Ageing Behaviour of New Environmentally Friendly Composites. In: Durability of Composites in a Marine Environment 2. In: Davies P, and Rajapakse Y. editors. Publisher: Springer, Switzerland, 2018; 245, pp. 225–237. Davies P Le Gac PY Le Gall M . Marine Ageing Behaviour of New Environmentally Friendly Composites . In: Durability of Composites in a Marine Environment 2 . In: Davies P and Rajapakse Y . editors. Publisher: Springer , Switzerland , 2018 ; 245 , pp. 225 237 . Search in Google Scholar

Lu T, Solis-Ramos E, Yi Y, Kumosa M. UV degradation model for polymers and polymer matrix composites. Polymer Degradation and Stability 2018; 154: 203-210. Lu T Solis-Ramos E Yi Y Kumosa M. UV degradation model for polymers and polymer matrix composites . Polymer Degradation and Stability 2018 ; 154 : 203 - 210 . Search in Google Scholar

Yousif E, Haddad R. Photodegradation and photostabilization of polymers, especially polystyrene: review. Springerplus. 2013;2:398. Yousif E Haddad R. Photodegradation and photostabilization of polymers, especially polystyrene: review . Springerplus . 2013 ; 2 : 398 . Search in Google Scholar

Guillet JE. Fundamental Processes in the UV degradation and stabilization of polymers. In: Rado R. editor, Chemical Transformations of Polymers, Butterworth-Heinemann, 1972, pp. 135-144. Guillet JE. Fundamental Processes in the UV degradation and stabilization of polymers . In: Rado R . editor, Chemical Transformations of Polymers , Butterworth-Heinemann , 1972 , pp. 135 - 144 . Search in Google Scholar

Cysne Barbosa AP, Fulco APP, Guerra ESS, Arakaki FK, Tosatto M, Costa MCB, Melo JDD. Accelerated aging effects on carbon fiber/epoxy composites. Composites Part B: Engineering 2017;110:298-306. Cysne Barbosa AP Fulco APP Guerra ESS Arakaki FK Tosatto M Costa MCB Melo JDD. Accelerated aging effects on carbon fiber/epoxy composites . Composites Part B: Engineering 2017 ; 110 : 298 - 306 . Search in Google Scholar

Marouani S, Curtil L, Hamelin P. Ageing of carbon/epoxy and carbon/vinylester composites used in the reinforcement and/or the repair of civil engineering structures, Composites Part B: Engineering 2012;43:2020-2030. Marouani S Curtil L Hamelin P. Ageing of carbon/epoxy and carbon/vinylester composites used in the reinforcement and/or the repair of civil engineering structures , Composites Part B: Engineering 2012 ; 43 : 2020 - 2030 . Search in Google Scholar

Alessi S, Pitarresi G, Spadaro G. Effect of hydrothermal ageing on the thermal and delamination fracture behaviour of CFRP composites. Composites Part B: Engineering 2014;67:145-153. Alessi S Pitarresi G Spadaro G. Effect of hydrothermal ageing on the thermal and delamination fracture behaviour of CFRP composites . Composites Part B: Engineering 2014 ; 67 : 145 - 153 . Search in Google Scholar

Madej-Kiełbik L, Kośla K, Zielińska D, Chmal-Fudali E, Maciejewska E. Effect of accelerated ageing on the mechanical and structural properties of the material system used in protectors. Polymers. 2019;11:1263. Madej-Kiełbik L Kośla K Zielińska D Chmal-Fudali E Maciejewska E. Effect of accelerated ageing on the mechanical and structural properties of the material system used in protectors . Polymers . 2019 ; 11 : 1263 . Search in Google Scholar

Fejdyś M, Kucharska-Jastrząbek A, Kośla K. Effect of Accelerated Ageing on the Ballistic Resistance of Hybrid Composite Armour with Advanced Ceramics and UHMWPE Fibres. Fibres Text. East. Eur. 2020;28:71–80. Fejdyś M Kucharska-Jastrząbek A Kośla K. Effect of Accelerated Ageing on the Ballistic Resistance of Hybrid Composite Armour with Advanced Ceramics and UHMWPE Fibres . Fibres Text. East. Eur . 2020 ; 28 : 71 80 . Search in Google Scholar

Nikafshar S, Zabihi O, Ahmadi M, Mirmohseni A, Taseidifar M, Naebe M. The Effects of UV Light on the Chemical and Mechanical Properties of a Transparent Epoxy-Diamine System in the Presence of an Organic UV Absorber. Materials (Basel). 2017 Feb; 10(2): 180. Published online 2017 Feb 14. doi: 10.3390/ma10020180 Nikafshar S Zabihi O Ahmadi M Mirmohseni A Taseidifar M Naebe M. The Effects of UV Light on the Chemical and Mechanical Properties of a Transparent Epoxy-Diamine System in the Presence of an Organic UV Absorber . Materials (Basel) . 2017 Feb ; 10 ( 2 ): 180 . Published online 2017 Feb 14. doi: 10.3390/ma10020180 Open DOISearch in Google Scholar

Li Z, Wang X, Zhang Y, Jing C. Enhancing the Corrosion Resistance of Epoxy Coatings by Impregnation with a Reduced Graphene Oxide-Hydrophobic Ionic Liquid Composite. ChemElectroChem2018,5, 3300–3306 Li Z Wang X Zhang Y Jing C. Enhancing the Corrosion Resistance of Epoxy Coatings by Impregnation with a Reduced Graphene Oxide-Hydrophobic Ionic Liquid Composite . ChemElectroChem 2018 , 5 , 3300 3306 Search in Google Scholar