Finite Element Analysis of coated Gas Turbine Blade

Start Date : 2022
Status:Ongoing
Finite Element Analysis of coated Gas Turbine Blade
Finite Element Analysis of coated Gas Turbine Blade
Finite Element Analysis of coated Gas Turbine Blade

About Sponser

    Objective

    The immense strength and flexibility of graphene could revolutionize materials science. It could be used to create stronger, lighter composites and coatings, drastically improving the performance of many products, from aircraft to sports equipment

    About

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    Challenges

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    Conclusion

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    Other Research

    Carausel should be used here to show the other projects

    Graphene: The wonder Material of the Future Advance wear and corrosion resistance coating development and commercialisation In IndiaLow cost gram scale high quality and defect free graphene by scalable Plasma sprayingDevelopment of Robust and Superhydrophobic Plasma Sprayed Graphene reinforced TiAl Intermetallic membranes with improved Desalination in Membrane DistillationPlasma Sprayed Thermal Barrier Coating with Enhanced Mechanical and Thermal propertiesRole of Rare Earth oxides in high temperature applicationsDevelopment of Novel Si-B-C-N -based super hard thin films on metallic and ceramic machining tools and machining tool bitsFinite Element Analysis of coated Gas Turbine BladeInvestigation of Mechanical and Tribological Behaviour of Plasma Sprayed Alumina (Al2O3) Thermal Barrier coating with and without Bond CoatCFD-Enabled Study of Pin-on-Disc Wear Behavior in Thermal Spray Coatings

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