Journal of
Chemical Engineering and Materials Science

  • Abbreviation: J. Chem. Eng. Mater. Sci.
  • Language: English
  • ISSN: 2141-6605
  • DOI: 10.5897/JCEMS
  • Start Year: 2010
  • Published Articles: 97

Full Length Research Paper

Super reinforcement of MWCNT/Epoxy by considering thermal fatigue resistance management technology

Anvari A.
  • Anvari A.
  • Department of Mechanical and Aerospace Engineering, University of Missouri-Columbia, Columbia, Missouri, U.S.A.
  • Google Scholar


  •  Received: 20 October 2018
  •  Accepted: 16 November 2018
  •  Published: 30 November 2018

References

Anvari A (2014). Fatigue life prediction of unidirectional carbon fiber/epoxy composite in Earth orbit. International Journal of Applied Mathematics and Mechanics 10(5):58-85.

 

Anvari A (2017). Fatigue Life Prediction of Unidirectional Carbon Fiber/Epoxy Composite on Mars. Journal of Chemical Engineering and Materials Science. 8(8):74-100
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Anvari A (2018). Thermal Life of Carbon Structures: From the Earth to after the Titan. International Journal of Aerospace Engineering Vol. 2018 Article ID 7628614:6 pages 
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Camargo PHC, Satyanarayana KG, Wypych F (2009). Nanocomposites: Synthesis, Structure, Properties and New Application Opportunities. Materials Research 12(1):1-39
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Fitzer E, Gkogkidis A, Heine M (1984). Carbon fibres and their composites (A Review). High Temperatures-High Pressures 16:363-392

 

Genedy M, Daghash S, Soliman E, Taha MMR (2015). Improving Fatigue Performance of GFRP Composite Using Carbon Nanotubes. Fibers 3: 13-29; 
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Hussain F, Hojjati M, Okamoto M, Gorga RE (2006). Review article: Polymer-matrix Nanocomposites, Processing, Manufacturing, and Application: An Overview. Journal of COMPOSITE MATERIALS 40(17):1511-1575
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Lorenz R and Mitton J (2002). Lifting Titan's Veil; Exploring the giant moon of Saturn. Cambridge University Press.

 

Mallick PK, Zhou Y (2003). Yield and fatigue behavior of polypropylene and polyamide-6 nanocomposites. JOURNAL OF MATERIALS SCIENCE 3(8):3183-3190
Crossref

 

Okpala CC (2013). Nanocomposites – An Overview. International Journal of Engineering Research and Development 8(11):17-23

 

Park SY, Choi HS, Choi, WJ, Kwon H (2012). Effect of vacuum thermal cyclic exposures on unidirectional carbon fiber/epoxy composites for low earth orbit space applications. Composites: Part B. 43:726-738.
Crossref

 

Petersson H, Motte D, Bjarnemo R (2013). Carbon Fiber Composite Materials in Modern Day Automotive Production Lines – A Case Study. Proceedings of the ASME 2013 International Mechanical Engineering Congress & Exposition IMECE2013 November 15-21, San Diego, California, USA

 

Regius C (2016). Titan: Pluto's Big Brother, The Cassini-Huygens spacecraft and the darkest moon of Saturn. 1th edition.

 

Shearer CJ, Slattery AD, Stapleton AJ, Shapter JG and Gibson CT (2016). Accurate thickness measurement of graphene. Nanotechnology 27(125704):1-10
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Shirasu K, Nakamura A, Yamamoto G, Ogasawara T, Shimamura Y, Inoue Y, Hashida T (2017). Potential use of CNTs for production of zero thermal expansion coefficient composite materials: An experimental evaluation of axial thermal expansion coefficient of CNTs using a combination of thermal expansion and uniaxial tensile tests. Composites: Part A 95:152-160.
Crossref

 

Tamilarasana U, Karunamoorthyb L, Palanikumarc K (2015). Mechanical Properties Evaluation of the Carbon Fibre Reinforced Aluminium Sandwich Composites. Materials Research 18(5):1029-1037.
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Tyagi M, Tyagi D (2014). Polymer Nanocomposites and their Applications in Electronics Industry. International Journal of Electronic and Electrical Engineering 7(6):603-608.