Effective Mechanical Properties of Fuzzy Fiber Composites

Abstract

In this paper we investigate the mechanical behavior of carbon fiber composites, where the carbon fibers are coated with radially aligned carbon nanotubes. For this purpose we develop a general micromechanics method for fiber composites, where fibers are coated with radially aligned microfibers ( fuzzy fiber composites). The mechanical effective properties are computed with a special extension of the composite cylinders method. The in-plane shear modulus is determined using an extended version of the Christensen s generalized self consistent composite cylinders method. The proposed methodology provides stress and strain concentration tensors. The results of the method are compared with numerical approaches based on the asymptotic expansion homogenization method. The combination of composite cylinders method and Mori Tanaka method allows us to compute effective properties of composites with multiple types of fuzzy fibers . Numerical examples of composites made of epoxy resin, carbon fibers and carbon nanotubes are presented and the impact of the carbon nanotubes length and volume fraction in the overall composite properties is studied.

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Document Details

Document Type
Technical Report
Publication Date
Mar 16, 2012
Accession Number
ADA584234

Entities

People

  • Dimitris C Lagoudas
  • Gary D. Seidel
  • George Chatzigeorgiou

Organizations

  • Virginia Tech

Tags

Communities of Interest

  • Advanced Electronics
  • Air Platforms
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Carbon Fibers
  • Carbon Nanotubes
  • Composite Materials
  • Fibers
  • Finite Element Analysis
  • Fullerenes
  • Graphene
  • Materials
  • Materials Testing
  • Mechanical Properties
  • Mechanics
  • Micromechanics
  • Modulus Of Elasticity
  • Nanocomposites
  • Shear Modulus
  • Stiffness
  • Stresses

Readers

  • Nanocomposite Materials Science
  • Reinforced Composite Materials
  • Wave Propagation and Nonlinear Chaotic Dynamics.