Fractographic approach to metallurgical coke failure analysis. Part 2: Cokes from binary coal blends

Fractographic approach to metallurgical coke failure analysis. Part 2: Cokes from binary coal blends •Failure profiles were constructed for cokes from single coals and binary blends.•Fractography was used to examine and quantify the coke breakage behaviour.•Non-linear effects were seen in the breakage behaviour of cokes from binary blends.•The grain boundaries have a significant effect on the metallurgical coke strength. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Fuel Elsevier

Fractographic approach to metallurgical coke failure analysis. Part 2: Cokes from binary coal blends

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Publisher
Elsevier
Copyright
Copyright © 2016 Elsevier Ltd
ISSN
0016-2361
D.O.I.
10.1016/j.fuel.2016.04.022
Publisher site
See Article on Publisher Site

Abstract

•Failure profiles were constructed for cokes from single coals and binary blends.•Fractography was used to examine and quantify the coke breakage behaviour.•Non-linear effects were seen in the breakage behaviour of cokes from binary blends.•The grain boundaries have a significant effect on the metallurgical coke strength.

Journal

FuelElsevier

Published: Sep 15, 2016

References

  • Validation of a model for impact breakage incorporating particle size effect
    Shi, F.N.; Kojovic, T.
  • Determination of material properties relevant to grinding by practicable labscale milling tests
    Vogel, L.; Peukert, W.
  • Characterization of different origin coking coals and their blends by Gieseler plasticity and TGA
    Diaz-Faes, E.; Barriocanal, C.; Diez, M.A.; Alvarez, R.
  • Coal blending theory for dry coal charging process
    Nomura, S.; Arima, T.; Kato, K.
  • Interactions between coking coals in blends
    Sakurovs, R.

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