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Original Articles

Progress in life time modeling of APS-TBC Part II: critical strains, macro-cracking, and thermal fatigue

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Pages 77-86 | Published online: 02 Jan 2014

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D. Renusch, H. Echsler & M. Schütze. (2004) Progress in life time modeling of APS-TBC Part I: residual, thermal and growth stresses including the role of thermal fatigue. Materials at High Temperatures 21:2, pages 65-76.
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ZeWei MENG, YongBao LIU, WangTian YIN, YuHao JIA & Xing HE. (2023) A life prediction model of thermal barrier coatings on turbine blades based on crack propagation. SCIENTIA SINICA Technologica 53:4, pages 631-643.
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Jang Gyun Lim & Moon Ki Kim. (2019) Development of a durability evaluation model to optimize rare-earth-element-based thermal barrier coatings. Ceramics International 45:15, pages 19223-19236.
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Alice Young, Sam Henderson, Liam Buchanan, Daniel Hall & Catherine Bishop. (2018) Failure of commercial extruded catalysts in simple compression and bulk thermal cycling. International Journal of Applied Ceramic Technology 15:1, pages 74-88.
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Robert Eriksson, Zhe Chen & Krishna Praveen Jonnalagadda. (2017) Bending Fatigue of Thermal Barrier Coatings. Journal of Engineering for Gas Turbines and Power 139:12.
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Robert Vaßen, Stephan Giesen & Detlev Stöver. (2009) Lifetime of Plasma-Sprayed Thermal Barrier Coatings: Comparison of Numerical and Experimental Results. Journal of Thermal Spray Technology 18:5-6, pages 835-845.
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D. Renusch, M. Schorr & M. Schütze. (2008) The role that bond coat depletion of aluminum has on the lifetime of APS‐TBC under oxidizing conditions. Materials and Corrosion 59:7, pages 547-555.
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Daniel Renusch, H. Echsler & Michael Schütze. (2004) The Role that Interacting Failure Mechanisms Have on the Lifetime of APS-TBC under Oxidizing Conditions. Materials Science Forum 461-464, pages 729-736.
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