Evolution of the residual stress in porous ceramic abradable coatings under thermal exposure

Yongjing Cui, Mengqiu Guo, Changliang Wang, Zhihui Tang, Laifei Cheng

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27 引用 (Scopus)

摘要

Porous dysprosium-stabilized zirconia (DySZ) based abradable coatings were fabricated on DD5 superalloy by atmospheric plasma spraying technique (APS). The residual stress of the porous coating after thermal aging at 1100 °C was characterized using Raman spectroscopy and Photoluminescence piezo-spectroscopy (PLPS) techniques. The results indicated that the residual stress of the porous topcoat was smaller than the theoretically predicted due to a large number of pores and cracks inside the coating. Based on the stress evolution behavior of the porous coating exposed to thermal aging, a rational failure threshold stress was suggested. In addition, the effect of coating depth, pores and monoclinic ZrO2 phase on the stress distribution were analyzed on the polished cross-section specimens. Meanwhile, the stress distribution along the TGO direction showed a strong correlation with the local geometry, and the number of points showing tensile stress increased with prolongation of thermal exposure. Evidence revealed that the initiation and propagation of micro-cracks prefer to occur at locations with high curvature and tip edge of the convex area. The research in this paper provides enlightenment for life prediction and structural optimization.

源语言英语
文章编号125915
期刊Surface and Coatings Technology
394
DOI
出版状态已出版 - 25 7月 2020

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