Synchrotron tomography of porosity in single-crystal nickel-base superalloys
โ Scribed by T. Link; S. Zabler; A. Epishin; A. Haibel; M. Bansal; X. Thibault
- Publisher
- Elsevier Science
- Year
- 2006
- Tongue
- English
- Weight
- 550 KB
- Volume
- 425
- Category
- Article
- ISSN
- 0921-5093
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โฆ Synopsis
Porosity in the single-crystal nickel-base superalloys CMSX-6, SRR99, CMSX-4 and CMSX-10 was investigated by synchrotron X-ray tomography, supplying information about the three dimensional distribution of pores and a statistical database of pore sizes and shapes. Tomography investigations were completed by scanning electron microscopy. In undeformed superalloys the porosity was found to increase with the content of refractory elements. In CMSX-4 creep tested at 1100 โข C a deformation induced growth of porosity was observed. Shape and size of the pores was analysed quantitatively as a function of applied load and creep time. The growth was found to be based on the enlargement of pre-existing pores in the interdendritic areas and on the generation of new small pores. Growth processes at creep temperature result in polyhedral pores. Formation and shape transformation of the creep pores is discussed.
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The creep resistance of nickel-base superalloy single crystals is determined by the stability of the raft structure that forms at elevated temperatures under applied tensile stresses. This paper proposes a mechanism of stabilization and coarsening of the raft structure, based on the analysis of the