Estudio de la evolución de esfuerzos residuales debido al ataque de depósitos VÍtreos (CMAS) en recubrimientos de barrera térmica

Translated title of the contribution: Study of the evolution of residual stresses due to glassy deposits (CMAS) attack in thermal barrier coatings

Pedro Yáñez-Contreras, José Dolores Oscar Barceinas-Sánchez, Carlos Agustín Poblano-Salas, José Martín Medina-Flores, Adrián Luís García-García, Iván Domínguez-López

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

This work was conceived as an integral project aimed to understand and tackle thermal barrier coating (TBC) spalling and delamination phenomena occurring in gas turbines due to CMAS attack. Such attack is thought to have an influence on the magnitude of residual stresses in the coating and, in turn, on the integrity of TBCs. A thermal barrier coating was manufactured by deposition of two layers of different chemical composition, i. e., CoNiCrAlY and yttria-stabilized zirconia (YSZ) on an AISI 304 stainless steel substrate. Both layers were deposited by employing thermal spraying processes, the bonding metallic layer (BC) was deposited by employing a HVOF gun, whereas the ceramic component (TC) by atmospheric plasma spray (APS). The TBCs were heat treated at 1250 °C, with CMAS attack by concentration of 10 mg/cm2 for different soaking times (2, 4 & 6 hours), in order to evaluate CMAS effect on the magnitude of the state of residual stresses in the coating. The stress state of the coating was determined by employing the Modified Layer Removal Method for Duplex Coatings (MLRMDC). It was noted that longer exposure times at high temperature resulted in an increase in the state of residual compressive stress in the TC, due to the effect of CMAS. Furthermore, it is confirmed that with increasing the thickness of thermally grown oxide (TGO), the magnitude of the compressive residual stresses increased.

Translated title of the contributionStudy of the evolution of residual stresses due to glassy deposits (CMAS) attack in thermal barrier coatings
Original languageSpanish
Pages (from-to)554-559
Number of pages6
JournalDyna (Spain)
Volume91
Issue number5
DOIs
StatePublished - 1 Sep 2016

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