Bending fracture behavior of freestanding (Gd0.9Yb0.1)2Zr2O7 coatings by using digital image correlation and FEM simulation with 3D geometrical reconstruction

Weiguo Mao, Yujie Wang, Jun Shi, Huiyu Huang, Yuncheng Wang, Liang Lv, Haoyong Yang, Chen Zou, Cuiying Dai*, Xiaolei Zhu, Daining Fang

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

18 Citations (Scopus)

Abstract

It is important to investigate the mechanical performances of (Gd0.9Yb0.1)2Zr2O7 (GYbZ) materials deposited on irregular substrates for improving new thermal barrier coatings. Three-point bending fracture characteristics of freestanding GYbZ coating prepared by supersonic plasma sprayed (SPS) technique were investigated with the help of digital image correlation technique. The cracking time, crack propagation path, and mechanical properties of GYbZ coating were obtained. Meanwhile, the X-ray computed tomography technique was introduced to scan the microstructure of freestanding GYbZ coatings, which are used to establish three-dimensional (3D) finite element model by using the Avizo software. The brittle cracking criterion was applied to describe the bending fracture process of GYbZ coatings. The critical cracking strain was estimated as 0.36%±0.03% by repeatedly comparing the difference between the experimental and simulated curves. The results would be extended to predict the dangerous region and failure mechanisms of GYbZ coatings deposited on irregular substrate during finite element simulations.

Original languageEnglish
Pages (from-to)564-575
Number of pages12
JournalJournal of Advanced Ceramics
Volume8
Issue number4
DOIs
Publication statusPublished - 1 Dec 2019

Keywords

  • X-ray computed tomography
  • bending fracture
  • cracking strain
  • geometrical reconstruction
  • thermal barrier coating

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