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[국내논문] Carbon fiber coating with MWCNT in the presence of polyethyleneimine of different molecular weights and the effect on the interfacial shear strength of thermoplastic and thermosetting carbon fiber composites 원문보기

Carbon letters, v.31 no.3, 2021년, pp.407 - 417  

Lee, Dongkyu ,  Kim, Youngeun ,  Kwon, Oh Hyeong ,  Park, Won Ho ,  Cho, Donghwan

초록이 없습니다.

참고문헌 (38)

  1. Energy Policy F Cuenot 37 3832 2009 10.1016/j.enpol.2009.07.036 Cuenot F (2009) CO2 emissions from new cars and vehicle weight in Europe: how the EU regulation could have been avoided and how to reach it? Energy Policy 37:3832 

  2. Compos Struc DH Kim 131 742 2015 10.1016/j.compstruct.2015.06.028 Kim DH, Kim HG, Kim HS (2015) Design optimization and manufacture of hybrid glass/carbon fiber reinforced composite bumper beam for automobile vehicle. Compos Struc 131:742 

  3. J Mater Sci Lett D Cho 15 1786 1996 10.1007/BF00275342 Cho D (1996) A microstructural study on the improved ablation resistance of carbon/phenolic composites fabricated using H3PO4-coated carbon fibres. J Mater Sci Lett 15:1786 

  4. J Adhes D Cho 79 1 2003 10.1080/00218460309559 Cho D, Choi Y, Drzal LT (2003) Characterization, properties, and processing of LaRC PETI-5 as a high-temperature sizing material. III. Adhesion enhancement of carbon/BMI composites. J Adhes 79:1 

  5. Carbon Lett D Cho 19 1 2016 10.5714/CL.2016.19.001 Cho D, Drzal LT (2016) Phenylethynyl-terminated polyimide, exfoliated graphite nanoplatelets, and the composites: an overview. Carbon Lett 19:1 

  6. PE Morgan 2005 Carbon fibers and their composites 10.1201/9781420028744 Morgan PE (2005) Carbon fibers and their composites. CRC Press, Taylor & Francis Group, Boca Raton 

  7. AB Strong 2008 Fundamentals of composites manufacturing: materials, methods, and applications 2 Strong AB (2008) Fundamentals of composites manufacturing: materials, methods, and applications, 2nd edn. Society of Manufacturing Engineers, Dearborn 

  8. Appl Surf Sci HS Lee 328 241 2015 10.1016/j.apsusc.2014.12.012 Lee HS, Ohsawa I, Takahashi J (2015) Effect of plasma surface treatment of recycled carbon fiber on carbon fiber-reinforced plastics (CFRP) interfacial properties. Appl Surf Sci 328:241 

  9. Compos Sci Technol AK Pathak 135 28 2016 10.1016/j.compscitech.2016.09.007 Pathak AK, Borah M, Gupta A, Yokozeki T, Dhakate SR (2016) Improved mechanical properties of carbon fiber/graphene oxide-epoxy hybrid composites. Compos Sci Technol 135:28 

  10. Polym Eng Sci J George 41 1471 2001 10.1002/pen.10846 George J, Sreekaka MS, Thomas S (2001) A review on interface modification and characterization of natural fiber reinforced plastic composites. Polym Eng Sci 41:1471 

  11. Compos Sci Technol FH Gojny 65 2300 2005 10.1016/j.compscitech.2005.04.021 Gojny FH, Wichmann MHG, Feidler B, Schulte K (2005) Influence of different carbon nanotubes on the mechanical properties of epoxy matrix composites-a comparative study. Compos Sci Technol 65:2300 

  12. Prog Polym Sci Z Spitalsky 35 357 2010 10.1016/j.progpolymsci.2009.09.003 Spitalsky Z, Tasis D, Papagelis K, Galiotis C (2010) Carbon nanotube-polymer composites: chemistry, processing, mechanical and electrical properties. Prog Polym Sci 35:357 

  13. Polymer SC Roh 55 1527 2014 10.1016/j.polymer.2014.02.015 Roh SC, Choi EY, Choi YS, Kim CK (2014) Characterization of the surface energies of functionalized multi-walled carbon nanotubes and their interfacial adhesion energies with various polymers. Polymer 55:1527 

  14. Carbon MC Paiva 42 2849 2004 10.1016/j.carbon.2004.06.031 Paiva MC, Zhou B, Fernando KAS, Lin Y, Kennedy JM, Sun YP (2004) Mechanical and morphological characterization of polymer-carbon nanocomposites from functionalized carbon nanotubes. Carbon 42:2849 

  15. Euro Polym J P Liu 41 2693 2005 10.1016/j.eurpolymj.2005.05.017 Liu P (2005) Modifications of carbon nanotubes with polymers. Euro Polym J 41:2693 

  16. Carbon YS Song 43 1378 2005 10.1016/j.carbon.2005.01.007 Song YS, Youn JR (2005) Influence of dispersion states of carbon nanotubes on physical properties of epoxy nanocomposites. Carbon 43:1378 

  17. Compos Part A PC Ma 41 1345 2010 10.1016/j.compositesa.2010.07.003 Ma PC, Siddiqui NA, Marom G, Kim JK (2010) Dispersion and functionalization of carbon nanotubes for polymer-based nanocomposites: a review. Compos Part A 41:1345 

  18. Compos Sci Technol DC Davis 71 1089 2011 10.1016/j.compscitech.2011.03.014 Davis DC, Wilkerson JW, Zhu J, Hadjiev VG (2011) A strategy for improving mechanical properties of a fiber reinforced epoxy composite using functionalized carbon nanotubes. Compos Sci Technol 71:1089 

  19. Carbon Lett JK Park 17 33 2016 10.5714/CL.2016.17.1.033 Park JK, Lee JY, Cho D, Drzal LT (2016) Flexural properties, interlaminar shear strength and morphology of phenolic matrix composites reinforced with xGnP-coated carbon fibers. Carbon Lett 17:33 

  20. Carbon Lett J Cheon 26 107 2018 Cheon J, Yoon BI, Cho D (2018) The synergetic effect of phenolic anchoring and multi-walled carbon nanotubes on the yarn pull-out force of para-aramid fabrics at high speed. Carbon Lett 26:107 

  21. J Indus Eng Chem A Ashori 38 37 2016 10.1016/j.jiec.2016.04.003 Ashori A, Menbari S, Bahrami R (2016) Mechanical and thermo-mechanical properties of short carbon fiber reinforced polypropylene composites using exfoliated graphene nanoplatelets coating. J Indus Eng Chem 38:37 

  22. Carbon Lett KJ Kim 26 95 2018 Kim KJ, Huh MY, Kim WS, Song JH, Lee HS, Kim JY, Lee SR, Seo WS, Yang SM, Park YS (2018) The effect of carbon nanotube diameter on the electrical, thermal, and mechanical properties of polymer composites. Carbon Lett 26:95 

  23. Polym Sci Technol CH Yoon 18 4 2007 Yoon CH, Lee HS (2007) Carbon nanocomposite. Polym Sci Technol 18:4 

  24. Compos Part A T Kamae 43 1569 2012 10.1016/j.compositesa.2012.02.016 Kamae T, Drzal LT (2012) Carbon fiber/epoxy composite property enhancement through incorporation of carbon nanotubes at the fiber-matrix interphase-Part 1: the development of carbon nanotube coated carbon fibers and the evaluation of their adhesion. Compos Part A 43:1569 

  25. Carbon AW Kevin 49 24 2011 10.1016/j.carbon.2010.08.034 Kevin AW, Billy AS, Kaitlin ES, Hannah KW, Stephen RD, Fairbrother DH (2011) Surface and structural characterization of multi-walled carbon nanotubes following different oxidative treatments. Carbon 49:24 

  26. Surf Coat Technol Y Xue 358 409 2019 10.1016/j.surfcoat.2018.11.072 Xue Y, Chen W, Zhao Q, Fu YQ (2019) Electroless carbon fibers: a new route for improving mechanical property and wettability of composites. Surf Coat Technol 358:409 

  27. Surf Coat Technol C Deng 272 176 2015 10.1016/j.surfcoat.2015.04.008 Deng C, Jiang J, Liu F, Fang L, Wang J, Li D, Wu J (2015) Influence of graphene oxide coating on carbon fiber by ultrasonically assisted electrophoretic deposition on its composite interfacial property. Surf Coat Technol 272:176 

  28. Surf Coat Technol J Moosburger-Will 311 223 2017 10.1016/j.surfcoat.2017.01.017 Moosburger-Will J, Bauer M, Schubert F, Kunzmann C, Lachner E, Zeininger H, Maleika M, Hönisch B, Küpfer J, Zchoerper N, Horn S (2017) Methyltrimethoxysilane plasma polymerization coating of carbon fiber surfaces. Surf Coat Technol 311:223 

  29. Mater Today: Proc A Patil 4 3807 2017 Patil A, Patel A, Purohit R (2017) An overview of polymeric materials for automotive applications. Mater Today: Proc 4:3807 

  30. Mater Today Proc BJ Lopes 8 719 2019 10.1016/j.matpr.2019.02.013 Lopes BJ, d'Almeida JRM (2019) Initial development and characterization of carbon fiber reinforced ABS for future Additive Manufacturing applications. Mater Today Proc 8:719 

  31. Compos Part B SS Yao 142 241 2018 10.1016/j.compositesb.2017.12.007 Yao SS, Jin FL, Rhee KY, Hui D, Park SJ (2018) Recent advances in carbon-fiber-reinforced thermoplastic composites: a review. Compos Part B 142:241 

  32. Compos Part A F Meng 109 207 2018 10.1016/j.compositesa.2018.03.011 Meng F, McKechnie J, Pickering SJ (2018) An assessment of financial viability of recycled carbon fibre in automotive applications. Compos Part A 109:207 

  33. Procedia Manufact L Kroll 33 224 2019 10.1016/j.promfg.2019.04.027 Kroll L, Meyer M, Nendel W, Schormair M (2019) Highly rigid assembled composite structures with continuous fiber-reinforced thermoplastics for automotive applications. Procedia Manufact 33:224 

  34. Thermochim Acta A John 654 140 2017 10.1016/j.tca.2017.05.014 John A, Zapata H, Crossley S, Grady BP (2017) Influence of tapped density on the degradation profile of multiwall carbon nanotubes. Thermochim Acta 654:140 

  35. Colloid Surf A Physicochem Eng Asp A Bismarck 159 331 1999 10.1016/S0927-7757(99)00261-7 Bismarck A, Springer J (1999) Characterization of fluorinated PAN-based carbon fibers by zeta-potential measurements. Colloid Surf A Physicochem Eng Asp 159:331 

  36. Colloid Surf A Physicochem Eng Asp A Bismarck 159 341 1999 10.1016/S0927-7757(99)00262-9 Bismarck A, Richter D, Wuertz C, Springer J (1999) Basic and acidic surface oxides on carbon fiber and their influence on the expected adhesion to polyamide. Colloid Surf A Physicochem Eng Asp 159:341 

  37. Mater Horiz F De Luca 5 668 2018 10.1039/C7MH00917H De Luca F, Clancy AJ, Carrero NR, Anthony DB, De Luca HG, Shaffer MSP, Bismarck A (2018) Increasing carbon fiber composite strength with a nanostructure “brick-and-mortar” interphase. Mater Horiz 5:668 

  38. Nanoscale Y Liu 9 7508 2017 10.1039/C7NR00818J Liu Y, Su Y, Cao J, Guan J, Xu L, Zhang R, He M, Zhang Q, Fan L, Jiang Z (2017) Synergy of the mechanical, antifouling and permeation properties of a carbon nanotube nanohybrid membrane for efficient oil/water separation. Nanoscale 9:7508 

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