HighTemp1.3
Up-scaling the Size of TiAl Components made via Ingot Metallurgy
Up-scaling the Size of TiAl Components made via Ingot Metallurgy
Monday, June 16, 2014: 9:00 AM
Sun 4 (Gaylord Palms Resort )
The quality of wrought discs made from large Ti-45Al-5Nb-0.2B-0.2C (at. %) ingots has been assessed at various stages of processing. Such components suffer from different types of defects that can usually be traced back to structural and chemical inhomogeneities that are present in the starting ingot. In conventional manufacturing routes the imparted mechanical strain is often insufficient for complete dynamic recrystallisation, particularly for large parts. In an attempt to overcome these problems, a new multi-stage method has been developed, which has the advantages that:
i) the strain is significantly higher than that imparted using conventional routes,
ii) the flow direction of the material is inverted between processing stages, and
iii) the geometrical constraints associated with the production of large components from ingots can be overcome.
The reliability of the method has been assessed by metallographic and mechanical characterisation. The challenges that have to be addressed for the new technique to be employed for the manufacture of large components are discussed.
i) the strain is significantly higher than that imparted using conventional routes,
ii) the flow direction of the material is inverted between processing stages, and
iii) the geometrical constraints associated with the production of large components from ingots can be overcome.
The reliability of the method has been assessed by metallographic and mechanical characterisation. The challenges that have to be addressed for the new technique to be employed for the manufacture of large components are discussed.
See more of: Emerging High Temperature Materials
See more of: High Temperature and Aeroengine Materials
See more of: High Temperature and Aeroengine Materials