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An experimental study on grinding fir-tree root forms using vitrified CBN wheels
- Publication Year :
- 2014
- Publisher :
- Trans Tech Publications, 2014.
-
Abstract
- An experimental study was undertaken to explore the conditions and performance on rough and finish grinding fir-tree root forms of turbine blades made of a nickel-based alloy using vitrified CBN wheels and water-based grinding fluid. This work was motivated by switching the grinding of fir-tree root forms from grinding with conventional abrasive wheels to vitrified CBN wheels for reducing overall production cost and enhancing productivity. Grinding experiments were conducted to measure grinding forces, power, surface roughness, and stress near the blade roots under various dressing and grinding conditions. Wheel re-dressing life in terms of the total number of good parts ground between dressing was tested with the condition producing the maximum material removal rate while satisfying preset part quality and process requirements. It was found that the maximum material removal rate achievable in rough grinding was restricted by the stress limit and the wheel re-dressing life was dominated by the radial wheel wear limit. The targeting part quality and process requirements were achieved. It was proved that vitrified CBN grinding process is feasible and very promising to machine fir-tree root forms.<br />17th International Symposium on Advances in Abrasive Technology, ISAAT 2014, 22 September 2014 through 25 September 2014
- Subjects :
- Materials science
Turbine blade
Vitrified cbn wheels
Alloy
engineering.material
Nickel based alloy
Tree root
law.invention
Stress (mechanics)
Surface roughness
Blades
law
Nickel
Wheels
Iron alloys
Process requirements
Grinding wheels
Grinding
Abrasive
Metallurgy
General Engineering
Material removal
Forestry
Turbomachine blades
Abrasives
Roots
Production cost
Vitrified CBN
engineering
Material removal rate
Abrasion
Grinding conditions
Wheel dressing
Grinding (machining)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....e9c614eb847204c0c67e41d8854e14fc
- Full Text :
- https://doi.org/10.4028/www.scientific.net/amr.1017.55