S. No. | Centre Name | Research Verticals | Thrust Areas |
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2. | DIA-CoE, IIT Bombay | 1. Aero Engines: Small Turbo Fan Engine & Large Aero Engine (AE) | 1. Combustor Design and Combustor Component Technologies |
| | | 2. Rotor Design and Optimization |
| | | 3. Simulation and Design using Large Data |
| | | 4. Liners & Insulators Interaction |
| | | 5. Air Breathing Engine for Sub Mach 3 |
| | | 6. Advanced Technologies for Fan and Compressor |
| | | 7. AI/ML based Engine Health Monitoring Technologies |
| | | 8. Digital Twin |
| | 2. Solid Propulsion Technologies (SPT) | 1. Combustion Modelling - Simulation with Experimental Validation. |
| | | 2. Burn Rate Augmentation and Control |
| | | 3. Novel Solid Propellant Formulation. |
| | | 4. Next Generation Propulsion System for Novel Propellants. |
| | | 5. Niche Technologies for Advanced Turbo Machinery |
| | 3. Advanced Aircraft Structures (AAS) | 1. Advanced Aerofoil Design & Experimental Validation |
| | | 2. Wing Integrated Intake Design and Flow Control |
| | | 3. Mini Actuators for Morphing |
| | | 4. Novel Controller Design for Morphing |
| | | 5. Variable Configuration Design |
| | | 6. Reconfigurable Aero Structures |
| | | 7. Aircraft engine and subsystems technologies |
| | 4. Hypersonic Propulsion (HYP) | 1. SCRAMJET Engine Modelling, Simulation and Experimental Validation |
| | | 2. Long Duration Hypersonic Propulsion Technology |
| | | 3. Shock Boundaries Layer Interaction |
| | | 4. Supersonic Combustion and Stability |
| | | 5. Endothermic Fuels |
| | | 6. Creation and Measurement of Hypersonic Flow Field |
| | 5. Advanced Conventional Manufacturing Technology for Aero Engine Applications (ACMT) | 1. Abrasive Flow Machining of Ti-64 Aerofoil Blades |
| | | 2. Inductive High Frequency Pressure Welding (IHFPW) Machine to Repair Blisks |
| | | 3. Diffusion Bonding of Titanium Airfoil Struts |
| | | 4. Hydro Forming of Gas Turbine Parts |
| | | 5. Rotary Friction Welding |
| | | 6. Electron Beam Melting Additive Manufacturing |
| | | 7. Laser Drilling of Shaped Holes |
| | 6. Advanced Propulsion Technologies for Defence Applications (APT) | 1. Optimizing Energy and Entropy |
| | | 2. Hybrid Propulsion |
| | | 3. Electrical Propulsion |
| | | 4. Hydrogen Propulsion |
| | | 5. Nuclear Propulsion |
| | 7. Compound Semiconductor Technologies (CSCT) | 1. High Frequency Electronics, Opto-electronics, Emitters and Detectors, Quantum Applications. |
| | | 2. Material Design, Deposition and Characterization |
| | | 3. Device design, fabrication, characterization, modelling, packaging, qualification and reliability testing. |
| | | 4. ROIC Design |