The Fatigue Life Prediction for EB-PVD Thermal Barrier Coating

Article Preview

Abstract:

The electron beam-physical vapor deposition (EB-PVD) coatings were selected to analyze the fatigue life. Firstly the failure mechanisms of oxidation and thermal fatigue of TBCs were considered together. The weight of thermally grown oxide (TGO) were measured during oxidation experiments and modeled. Thermal fatigue experiments were induced by thermal mismatched stress and thermal fatigue with holding time. The failure mechanism was obtained by the finite element analyses. The life prediction model was modified by the shear and normal strain range close to the interface of the top coat and TGO. Based on the experiment data, the life prediction model of thermal fatigue of TBCs was set up for EB-PVD coatings. Finally, using the life prediction model, the life of TBCs was predicted under the designed load case. The life prediction model was verified and all experiment data fall into the factor of 3 scatter band.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 989-994)

Pages:

648-651

Citation:

Online since:

July 2014

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Sheffler K: J Eng Gas Turb Power. Vol. 110 (1988), p.605.

Google Scholar

[2] Robert Eriksson, Hakan Brodin : Surf Coat Tech. Vol. 205(2011), p: 5422.

Google Scholar

[3] Qi Hongyu, Yang Xiaoguang: Comp Materi Scie. Vol. 57 (2012), p: 38.

Google Scholar

[4] Zhu D. M, Miller A: Surf Coat Tech. Vol. 160 (2004), p: 293.

Google Scholar

[5] Dae-Jin Kim, In-Hwan Shin: Surf Coat Tech. Vol. 205 (2010), p: 451.

Google Scholar

[6] Qi Hongyu, Yang Xiaoguang: Key Eng Mater. Vol. 324 (2006), p: 595.

Google Scholar

[7] M.T. Hernandez, D. Cojocaru: Comp Mater Scie. Vol. 50 (2011), p: 2561.

Google Scholar

[8] Gabe D, Green W: Comp Technol. Vol. 67 (2005), p: 81.

Google Scholar

[9] Taimas E, Mullejans S: Acta Mater. Vol. 48 (2000), p: 4699.

Google Scholar

[10] Cruse T. A.: J Eng Gas Turb Power. Vol. 110 (1988), p: 110.

Google Scholar

[11] Grecing D, Shadley J: J Therl Spr Technol. Vol. 3(1995), p: 371.

Google Scholar

[12] Chang G. C, Phucharoen W, Miller R: Surf Coat Tech. Vol. 132(1987), p: 307.

Google Scholar

[13] I.T. Spitsberg, D.R. Mumm, A.G. Evans: Mater Scie Eng. Vol,. 394(2005), p: 176.

Google Scholar

[14] Himanshu Bhatnagar, Somnath Ghosh: Int J Sol Str. Vol. 43 (2006), p: 4384.

Google Scholar

[15] L. Yang, Q.X. Liu, Y.C. Zhou: J Mater Scie –Tech. Vol. 30 (2014), p: 371.

Google Scholar