2024-03-28T16:20:24Zhttp://digital.csic.es/dspace-oai/requestoai:digital.csic.es:10261/43592020-04-29T10:20:22Zcom_10261_35com_10261_5col_10261_288
DIGITAL.CSIC
author
Mayoral Gastón, María del Carmen
author
Andrés Gimeno, José Manuel
author
Bona, M.T.
author
Higuera, V.
author
Belzunce, F. J.
2008-05-20T09:30:32Z
2008-05-20T09:30:32Z
2007-08-08
Surface & Coatings Technology 202(9): 1816-1824 (2008)
0257-8972
http://hdl.handle.net/10261/4359
10.1016/j.surfcoat.2007.07.068
Three different projection system are used to prepare NiCrAlY bond coats over metallic substrates: atmospheric plasma spray (APS), high velocity oxyfuel (HVOF) and high frequency pulse detonation (HFPD). These coatings were tested in hot corrosion experiments with sprayed Na2SO4 at 1000ºC for 20
and 100 hours experiments in air. Coatings surface composition after thermal treatment was
characterised by XRD and SEM. Cross section of coatings were analysed by SEM-EDX. A relationship
between microstructural characteristics of initial coatings and final performance in hot corrosion was
found in terms of porosity percentage: plasma sprayed coatings present higher percentage of porosity
compared to HVOF and HFPD projection systems for the same composition and Al is heavily consumed
in interparticle oxidation. This Al depletion in turn involves intrinsic chemical failure and surface layer
is comprised by a porous spinel of mixed oxides. On the other hand, high energy projection systems
produce dense coatings allowing the Al migration to external alumina layer, particularly in the case of
HVOF coating.
eng
openAccess
NiCrAlY bond coats
Hot corrosion
Al depletion
HVOF
HFPD
Aluminium depletion in NiCrAlY bond coatings by hot corrosion as a function
artículo
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URL
https://digital.csic.es/bitstream/10261/4359/1/S%26CT_2007.pdf
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S&CT_2007.pdf
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https://digital.csic.es/bitstream/10261/4359/4/S%26CT_2007.pdf.txt
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S&CT_2007.pdf.txt