BibTex RIS Kaynak Göster
Yıl 2018, Cilt: 1 Sayı: 1, 13 - 20, 01.01.2018

Öz

Kaynakça

  • Gui, W., Zhang, H., Yang, M., Jin, T., Sun, X., Zheng, Q. “Influence of type and morphology of carbides on stress-rupture behavior of a cast cobalt-base superalloy”, Journal of Alloys and Compounds 728 pp 145-151, (2017)
  • Pallos, K. J., “Gas Turbine Repair Technology,” Paper No. GER 3957B. (2001)
  • ASM Specialty Handbook Heat Resistant Materials, Metallurgy, Processing and Properties of Superalloys, p.237.
  • Gui W. , Zhang, H. , Yang, M. , Jin, T. , Sun, X. , Zheng, Q., The investigation of carbides evolution in a cobalt-base superalloy at elevated temperature, Journal of Alloys and Compounds 695, pp. 1271 – 1278. (2017)
  • Koul AK, Castillo R., “Assessment of service induced microstructural damage and its rejuvenation in turbine blades.” Metall Trans 1998;19(A):2049–56.
  • ASM Specialty Handbook Heat Resistant Materials, Metallurgy, Processing and Properties of Superalloys, p. 227.
  • Pettit, F.S., Maier, G., “Oxidation and Hot Corrosion of Superalloys”, Metallurgical and Materials Engineering Department, University of Pittsburgh, p.661.

Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy

Yıl 2018, Cilt: 1 Sayı: 1, 13 - 20, 01.01.2018

Öz

In this study, we carried out the failure analysis based on metallographic research of a cobalt superalloy material which had been used in jet turbine engine. The failure analysis was made by chemical composition analysis, hardness test and microstructural researches after metallographic sample preparation on the material which had operated about 30000 hours and damaged. Macro cracks which can be seen by visual inspection have been detected on the cobalt based superalloy nozzle material’s some surfaces which had exposed to high temperature and high pressure fuel-air mixture. After the metallographic sample preparation and optical and electron microscope investigation, it has been determined that the main reason of the failure is coarse and continuous morphology M7C3 carbide precipitations on the grain boundaries and as a result of that, stress corrosion cracking has moved through that grain boundaries which have been embrittled and weakened against high temperature corrosion. Also, after consideration of the chemical composition on the damaged area of material, it has been detected that, owing to the usage of carbon content fuel during operation, carbon diffusion at high temperature into the material had occurred. So, with high carbon content in the material, the type and morphology of the carbides had changed and caused the failure

Kaynakça

  • Gui, W., Zhang, H., Yang, M., Jin, T., Sun, X., Zheng, Q. “Influence of type and morphology of carbides on stress-rupture behavior of a cast cobalt-base superalloy”, Journal of Alloys and Compounds 728 pp 145-151, (2017)
  • Pallos, K. J., “Gas Turbine Repair Technology,” Paper No. GER 3957B. (2001)
  • ASM Specialty Handbook Heat Resistant Materials, Metallurgy, Processing and Properties of Superalloys, p.237.
  • Gui W. , Zhang, H. , Yang, M. , Jin, T. , Sun, X. , Zheng, Q., The investigation of carbides evolution in a cobalt-base superalloy at elevated temperature, Journal of Alloys and Compounds 695, pp. 1271 – 1278. (2017)
  • Koul AK, Castillo R., “Assessment of service induced microstructural damage and its rejuvenation in turbine blades.” Metall Trans 1998;19(A):2049–56.
  • ASM Specialty Handbook Heat Resistant Materials, Metallurgy, Processing and Properties of Superalloys, p. 227.
  • Pettit, F.S., Maier, G., “Oxidation and Hot Corrosion of Superalloys”, Metallurgical and Materials Engineering Department, University of Pittsburgh, p.661.
Toplam 7 adet kaynakça vardır.

Ayrıntılar

Diğer ID JA47JK88TM
Bölüm Araştırma Makalesi
Yazarlar

Ozan Çoban

Özgür C Arslan Bu kişi benim

Tuba Karahan

Yayımlanma Tarihi 1 Ocak 2018
Yayımlandığı Sayı Yıl 2018 Cilt: 1 Sayı: 1

Kaynak Göster

APA Çoban, O., Arslan, Ö. C., & Karahan, T. (2018). Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy. International Journal of Engineering and Natural Sciences, 1(1), 13-20.
AMA Çoban O, Arslan ÖC, Karahan T. Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy. IJENS. Ocak 2018;1(1):13-20.
Chicago Çoban, Ozan, Özgür C Arslan, ve Tuba Karahan. “Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy”. International Journal of Engineering and Natural Sciences 1, sy. 1 (Ocak 2018): 13-20.
EndNote Çoban O, Arslan ÖC, Karahan T (01 Ocak 2018) Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy. International Journal of Engineering and Natural Sciences 1 1 13–20.
IEEE O. Çoban, Ö. C. Arslan, ve T. Karahan, “Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy”, IJENS, c. 1, sy. 1, ss. 13–20, 2018.
ISNAD Çoban, Ozan vd. “Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy”. International Journal of Engineering and Natural Sciences 1/1 (Ocak 2018), 13-20.
JAMA Çoban O, Arslan ÖC, Karahan T. Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy. IJENS. 2018;1:13–20.
MLA Çoban, Ozan vd. “Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy”. International Journal of Engineering and Natural Sciences, c. 1, sy. 1, 2018, ss. 13-20.
Vancouver Çoban O, Arslan ÖC, Karahan T. Failure Analysis of Jet Turbine Engine High Pressure Nozzle Material Made of Cobalt Based Super Alloy. IJENS. 2018;1(1):13-20.