Influence of crystallographic orientation on creep behavior of aluminized Ni-base single crystal superalloys

F. H. Latief, K. Kakehi, H. Murakami, K. Kasai

研究成果: Conference contribution

2 被引用数 (Scopus)


The effect of chemical compositions and secondary crystallographic orientation dependence on the formation of diffusion layer and creep behavior were investigated. Three alloys of different generations: PWA 1480 (1 st generation), CMSX-4 (2nd generation) and TMS-75 (3 rd generation), were studied. After aluminized coating process, creep rupture test were performed at 900 °C and 392 MPa. The creep rupture properties of the alloys with and without the aluminized coating treatment were compared. The coating treatment resulted in a significant decrease in rupture lives for three alloys. No reductions in rupture elongation were observed. Creep strength was significantly degraded with aluminide coating due to the diffusion layers formed under coating layer. Creep fractures of the coated materials were essentially controlled by the crack nuclei in the coated layer. It was also found that the specimens with (100) side-surface showed longer creep rupture life than the specimens with (110) side-surface, which means the results were anisotropic with respect to the secondary orientation which is normal to the primary orientation. The anisotropic creep behavior was caused by the different arrangement of {111}<101> slip systems between the two side-surface specimens. The results obtained in this study suggest the importance of secondary orientation normal to the component surface on designing the single-crystalline turbine blades.

ホスト出版物のタイトルSuperalloys 2012 - Proceedings of the 12th International Symposium on Superalloys
出版ステータスPublished - 2012 12月 1
イベント12th International Symposium on Superalloys, Superalloys 2012 - Seven Springs, PA, United States
継続期間: 2012 9月 92012 9月 13


名前Proceedings of the International Symposium on Superalloys


Other12th International Symposium on Superalloys, Superalloys 2012
国/地域United States
CitySeven Springs, PA

ASJC Scopus subject areas

  • 材料科学(全般)
  • 凝縮系物理学


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