Micro- and Macro-Indentation Behaviour of Ba0.5Sr0.5C0.8Fe0.2O3d Perovskite

  • Chanda, A.
  • Huang, B.X.
  • Malzbender, J.
  • Steinbrech, R.W.
Publication date
January 2011
Publisher
Elsevier BV

Abstract

Ba0.5Sr0.5Co0.8Fe0.2O3-d (BSCF) is a candidate material for the application as oxygen separation membrane. However, the requisite mechanical reliability needs to be warranted. Indentation tests on dense BSCF yielded data for hardness, stiffness and fracture toughness up to a temperature of 340 degrees C. Complementary to this, the fracture toughness was also evaluated up to 800 degrees C based on an indentation-strength method.Up to 200 degrees C, the values of all characteristic mechanical parameters decreased. At high temperatures they increased. The morphology of the indentation cracks depended on the applied indentation load. This was taken into account while selecting suitable expressions for calculating indentation toughness. The temp...

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