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  4. Hardening by Transformation and Cold Working in a Hadfield Steel Cone Crusher Liner
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Hardening by Transformation and Cold Working in a Hadfield Steel Cone Crusher Liner

Journal
Metals
ISSN
2075-4701
Date Issued
2021
Author(s)
Monsalve-Gonzalez, A  
Carvajal-Ortega, L  
Artigas-Abuin, A  
Allende-Seco, R  
Bruna-Rivera, H  
DOI
https://doi.org/10.3390/met11060961
Abstract
This paper presents the characterization of a secondary cone crusher concave liner made of Hadfield steel used in Chilean mining after crushing copper minerals during all service life. During use, a cone crusher concave liner suffers indentation (cold working) and abrasion; this combination provides the concave with a layer that constantly renews itself, maintaining a surface highly resistant to abrasive wear. The results presented here were obtained using optical microscopy, microhardness test, measuring abrasion using the dry sand/rubber wheel apparatus, and x-ray diffraction peaks analysis through the classic Williamson–Hall method. After analysis of results, two hardened surfaces have been found—one a product of heat treatment and the other due to deformation during use. This work proposes ways to explain them; the first one uses a thermodynamic model to calculate stacking fault energy, and the second compares the liner with cold-rolled samples. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
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