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  1. International Journal of Precision Engineering and Manufacturing
  2. International Journal of Precision Engineering and Manufacturing : Volume 17
  3. International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 2, February 2016
  4. Life prediction of thermal barrier coating considering degradation and thermal fatigue
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International Journal of Precision Engineering and Manufacturing : Volume 18
International Journal of Precision Engineering and Manufacturing : Volume 17
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 12, December 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 11, November 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 10, October 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 9, September 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 8, August 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 6, June 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 5, May 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 4, April 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 3, March 2016
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 2, February 2016
Tension control of wire rope in winch spooler using magneto rheological brake
A percussion performance analysis for rock-drill drifter through simulation modeling and experimental validation
Construction of processing maps based on expanded data by BP-ANN and identification of optimal deforming parameters for Ti-6Al-4V alloy
Durability of polymer gear-paired with steel gear manufactured by wire cut electric discharge machining and hobbing
Development of post processor for five-axis machine of non-orthogonal head tilting type
Performance of ion plating TiAlN coating on YG8
Understanding the anomalously long duration time of the transmitted pulse from a soft specimen in a kolsky bar experiment
Investigation of vibration damping characteristics of automotive air conditioning pipeline systems
Incremental forming of 3D structured aluminum sheet
Electrically assisted bake hardening of complex phase ultra-high strength steels
Development of L-sectioned ring for construction machines by profile ring rolling process
Life prediction of thermal barrier coating considering degradation and thermal fatigue
Negative dielectrophoretic force based cell sorter with simplified structure for high reliability
Simulation and experimental evaluation of selective heating characteristics of 13.56 MHz radiofrequency hyperthermia in phantom models
Laser-assisted hybrid processes: A review
International Journal of Precision Engineering and Manufacturing : Volume 17, Issue 1, January 2016
International Journal of Precision Engineering and Manufacturing : Volume 16
International Journal of Precision Engineering and Manufacturing : Volume 15
International Journal of Precision Engineering and Manufacturing : Volume 14
International Journal of Precision Engineering and Manufacturing : Volume 13
International Journal of Precision Engineering and Manufacturing : Volume 12
International Journal of Precision Engineering and Manufacturing : Volume 11
International Journal of Precision Engineering and Manufacturing : Volume 10

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Life prediction of thermal barrier coating considering degradation and thermal fatigue

Content Provider Springer Nature Link
Author Song, Hyunwoo Kim, Yongseok Lee, Jeong Min Yun, Junghan Kim, Dae Jin Koo, Jae Mean Seok, Chang Sung
Copyright Year 2016
Abstract A thermal barrier coating (TBC) is used to protect gas turbine components from extreme environments. Typically, the TBC system consists of two parts: a ceramic top coat and metallic bond coat. Thus, the TBC system is exposed to thermal fatigue owing to the mismatch between the thermal expansions of the ceramic top coat and metallic bond coat. The durability of the TBC decreases with repeated thermal fatigue and degradation under high-temperature conditions, which can eventually result in failure. Therefore, the life of the TBC should be predicted while considering degradation and thermal fatigue. In this study, TBC specimens were produced under different degradation and thermal fatigue conditions, and the bond test was performed on these specimens. Based on the bond test results, the life of the TBC was predicted according to degradation and thermal fatigue.
Starting Page 241
Ending Page 245
Page Count 5
File Format PDF
ISSN 22347593
Journal International Journal of Precision Engineering and Manufacturing
Volume Number 17
Issue Number 2
e-ISSN 20054602
Language English
Publisher Korean Society for Precision Engineering
Publisher Date 2016-02-10
Publisher Place Seoul
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Thermal barrier coating Thermal fatigue Degradation Life prediction Bond strength test Industrial and Production Engineering Materials Science
Content Type Text
Resource Type Article
Subject Industrial and Manufacturing Engineering Mechanical Engineering Electrical and Electronic Engineering
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