Impact Strength and Toughness of Fiber Composite Materials

Abstract

In recent years the development of advanced high performance fiber composite materials was mainly concerned with achieving high modulus and strength materials. However, high strength and stiffness by themselves may not be adequate for many structural applications as this combination of properties usually produces a brittle material. For example, carbon fiber composites possess superior stiffness and strength to weight ratios, but are quite brittle and have very low energy absorption capability. The energy absorption capability of glass fiber reinforced epoxy and carbon fiber reinforced epoxy composites has been studied by performing instrumented drop weight impact tests on beams. A drop weight impact machine was designed and built for this purpose. The strength and energy absorption of the composite beams has been measured as a function of impact velocity, impact mass, beam geometry, and also as a function of several composite material parameters. It has been shown that the strength and energy absorption of a beam are a function of impact velocity and the amount of energy supplied compared to the energy absorbed. The energy absorption is also a function of lamination plane orientation.

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Document Details

Document Type
Technical Report
Publication Date
Nov 01, 1972
Accession Number
AD0753101

Entities

People

  • Assa Rotem
  • Lawrence J. Broutman

Organizations

  • Illinois Institute of Technology

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Air Force
  • Cameras
  • Carbon Fibers
  • Composite Materials
  • Epoxy Composites
  • Failure Mode And Effect Analysis
  • Glass Fibers
  • Impact Tests
  • Laminated Glass
  • Laminates
  • Materials Engineering
  • Materials Science
  • Materials Testing
  • Mechanics
  • Photographs
  • Photography
  • Stress Strain Relations

Fields of Study

  • Materials science

Readers

  • Polymer Science and Engineering.
  • Pulsed Power and Plasma Physics.
  • Structural Health Monitoring of Composite Structures.