Vedant Shimpi
| Aerospace Engineer | š« Product Design Engineer | NPD | PDM | Certified Six Sigma | CATIA-V5 | PTC CREO | GD&T Expert | Value Engineering | ANSYS | CFD | Ex - HAL intern
- Role
- Project Intern at Iksc Knowledge Bridge Pvt. Ltd
- Location
- Pune, IN
- LinkedIn followers
- 500 followers
About Vedant Shimpi
About Me Iām an enthusiastic Aerospace Engineering graduate with 1+ years of hands-on experience in advanced design tools such as CATIA V5, PTC Creo, NX, and ANSYS. Passionate about crafting innovative and efficient mechanical designs, I possess a strong foundation in fluid mechanics, thermodynamics, aerodynamics, and materials science. My expertise spans across GD & T, new product design, hydraulic and electro-mechanical systems, as well as manufacturing and heat treatment processes. I enjoy working on challenging projects that merge engineering principles with practical design solutions. Beyond engineering, Iām also a passionate physics enthusiast with a deep curiosity about the fundamental laws of nature. I continuously explore and apply physics concepts to solve real-world problems, drive innovation, and expand my understanding of the universe. I believe engineering and physics go hand-in-hand, shaping the future of technology and exploration. Always eager to learn, collaborate, and push the boundaries of design and science.
Experience
Project Intern
Iksc Knowledge Bridge Pvt. Ltd
Jan 2024 ā Present Ā· Pune, IN
Analysed system requirements and design intent to develop 3D models and detailed designs of a Turbo Fan Mechanical component of engine and its key components, including Fan Rotor, Fan Stator, Low-Pressure Compressor, Reduction Gear Assembly, Accessory Gearbox, Axial/Centrifugal High-Pressure Compressor, Customer Bleed Ports, Combustor, High-Pressure Turbines, Low-Pressure Turbines, Intake Cone, Nozzle, and Inlet Case, ensuring complete assembly integration.⢠Created accurate 2D drawings in compliance with ASME standards, applying GD & T and tolerance stack-up analysis to ensure dimensional accuracy, manufacturability, and optimal fit for components and sub-systems.⢠Material selection: for all components based on operational stresses (thermal, mechanical, chemical) using advanced materials:⢠Titanium alloys (Ti-6242), Nickel-based Superalloys, Aluminum Alloys(7075/2024), Carbon-fiber Composites, Stainless Steels and Thermal Barrier Coatings (TBCs).⢠Applied Design for Manufacturability (DFM) and Design for Assembly (DFA) principles to optimize designs for cost reduction.⢠Supported engineering change requests (ECR), manufacturing concessions, and process improvement initiatives, while maintaining detailed documentation, including design files, revision history, BOMs, and assembly instructions to ensure production efficiency, traceability, and quality assurance.⢠Perform a steady-state CFD simulation of an industrial blower aimed to boost pressure head, air as the working fluid using Ansys.⢠Redesign the area where vortices are generating due to obstructions, to get a uniform flow and increase in pressure head.⢠Utilize parametric modelling techniques using CATIA V5 to create detailed 3D models of BET, BKU, BEM, and Shell and Fin Type heat exchangers. ⢠Optimized heat exchanger designs for improved fluid flow dynamics and heat transfer efficiency, aligning with design for manufacturability (DFM) principles and process improvements.
Education
Sandip University
B.tech of aerospace engineering, B.TECH Aerospace Engineering.
2019 ā 2023
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