Thermal shock resistance of thermal barrier coatings for nickel-based superalloy by supersonic plasma spraying

Jia Sun, Qian Gang Fu, Guan Nan Liu, He Jun Li, Yong Chun Shu, Gao Fan

科研成果: 期刊稿件文章同行评审

41 引用 (Scopus)

摘要

Abstract Double-layer thermal barrier coatings (TBCs), including a top ZrO2 layer and an inner CoNiCrAlY layer, were deposited on nickel-based superalloy using supersonic atmospheric plasma spraying (SAPS). Thermal shock resistance of the TBCs between 1200°C and room temperature was investigated. After thermal shock test, the adhesive strength of the coatings was evaluated through scratch test. The SAPS-TBCs present good thermal shock resistance, exhibiting only 0.26% mass gain up to 150-time thermal cycling. Before thermal cyclic treatment, SAPS-TBCs exhibited a strong adhesion with the absence of the thermally grown oxide (TGO) between out and inner layer. With the increasing of thermal cycles, the TGO layer was formed and its thickness firstly increased and then dropped down. The critical load fell down by about 32% for topcoat-bondcoat adhesion (up to 50 cycles) and 35% or so for TBCs-substrate adhesion (up to 150 cycles) compared to the counterpart of as-sprayed specimens. The strain introduced by the existence of TGO and mixed oxides resulted in a varied adhesion for TBCs on nickel-based alloy during thermal cycling.

源语言英语
文章编号10484
页(从-至)9972-9979
页数8
期刊Ceramics International
41
8
DOI
出版状态已出版 - 1 9月 2015

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