Fiber metal laminates for high strain rate applications with layerwise shock impedance tuning Articles uri icon

authors

  • PAI, ANAND
  • RODRIGUEZ MILLAN, MARCOS
  • Kini, Chandrakant R.
  • MALLYA, RAVINDRA
  • BEKAL, CHANDRAKANTHA
  • NAYAK, SUHAS YESHWANT
  • SHENOY, SATISH B.

publication date

  • October 2023

start page

  • 1

end page

  • 17

volume

  • 13

International Standard Serial Number (ISSN)

  • 2045-2322

abstract

  • Novel materials such as fiber-metal laminates (FMLs) have demonstrated significant potential in a variety of applications. They must contend with problems such fatigue, creep, high-speed projectile impact, and deformation at high strain rates while in use. When employed as structural materials in aircraft, especially when exposed to shock wave impact and high velocity impact, fiber-metal laminates high strain rate characteristics become crucial. Shock impedance matching is a revolutionary approach used for shock-tuning the separate layers. The novelty of the current work is in developing custom shielding laminates, with in-depth analysis on the response of the shock impedance tuning of individual layers on the laminate behaviour at high strain rates. In the current study, five stackups of FMLs comprising metallic (AA 6061-T6) and fiber-reinforced polymer (FRP) plies, were formulated, incorporating shock impedance matching. The fiber-polymer plies used in the FMLs include ultra-high molecular weight polyethylene (UHMWPE), p-aramid for supplementing the impact resistance. Transmission loss functions (TL) estimated from the impedance tube experiments were used to indicate the shock tuning of the various laminates. The laminates underwent testing using a Split Hopkinson Pressure Bar (SHPB) apparatus to determine their properties at high strain rates...

subjects

  • Materials science and engineering
  • Mechanical Engineering

keywords

  • engineering; materials science; mathematics and computing