πŸ› οΈ Lead Engineer – Mechanical Analysis | GE Aerospace | Bengaluru, India

August 28, 2025

Job Description

πŸ“ Summary

GE Aerospace is seeking a skilled and motivated Lead Mechanical Analysis Engineer to join its Mechanical Engineering team in Bengaluru, Karnataka. This is a mid-career engineering position responsible for finite element analysis (FEA), mechanical stress testing, and the structural evaluation of key jet engine components used in commercial aerospace platforms like GEnx, Catalyst, and GE90/GP.

If you have a passion for mechanical design, simulation, and structural analysis, and want to work on industry-leading gas turbine technology, this is a unique opportunity to advance your career with one of the world’s leading aerospace innovators.


πŸ“Œ Job Details at a Glance

Job TitleLead Engineer – Mechanical Analysis
LocationBengaluru, Karnataka, India
Job IDR5015523
DepartmentAviation Engineering
Experience LevelMid-Career (4+ years)
Employment TypeFull-Time
IndustryAerospace / Jet Engines / Mechanical Engineering
ShiftDay Shift
Relocation AssistanceYes
Tools & SkillsFEA (ANSYS, Hypermesh), NX, CAD, Structural Analysis

🧩 Role Overview

As a Lead Mechanical Analysis Engineer, you will:

  • Lead mechanical simulation and finite element analysis projects for rotor and structural parts used in commercial jet engines.
  • Evaluate and validate design concepts using advanced modeling techniques and digital engineering tools.
  • Coordinate across teams including Design, Lifecycle Engineering, Systems, and Life Management.
  • Own and deliver mechanical analysis work across multiple product lines like GEnx, Catalyst, and GE90/GP.

πŸ”§ Key Responsibilities

  • Perform mechanical analysis and FEA simulations using industry tools (NX, ANSYS, Hypermesh).
  • Lead complete analysis deliverables, from concept validation to implementation support.
  • Solve engineering problems of medium-to-high complexity through collaboration and innovation.
  • Recommend engineering approaches to meet technical and programmatic goals.
  • Drive process improvements, digital tool integration, and system-level design thinking.
  • Engage with cross-functional teams including Controlled Title Holders (CTHs) and project managers.
  • Document technical data, communicate project updates, and participate in design reviews.
  • Contribute to building aerospace simulation best practices and mechanical analysis excellence.

🎯 Required Qualifications

  • Bachelor’s, Master’s, or PhD in Mechanical Engineering, Aerospace Engineering, or a related discipline.
  • 4+ years of hands-on experience in mechanical design, finite element analysis, and jet engine components.
  • Strong foundation in mechanical design principles, structural analysis, and thermal performance.
  • Proficiency in FEA tools such as ANSYS, Hypermesh, and NX.
  • Excellent communication, teamwork, and project coordination skills.

βœ… Preferred Qualifications

  • Prior experience with aircraft engines or gas turbine systems.
  • Familiarity with multi-disciplinary optimization, design trade studies, and system-level simulation.
  • Understanding of mechanical systems like sumps, bearings, lubrication, and sealing systems.
  • Working knowledge of Lean and Six Sigma methodologies.
  • Strong problem-solving mindset and ability to challenge existing processes.
  • Leadership qualities including collaboration, initiative, and decision-making.

🌍 Why GE Aerospace?

  • Be part of a team that designs and analyzes the future of aviation.
  • Access to state-of-the-art technology and simulation platforms.
  • Work at the John F. Welch Technology Center (JFWTC) – a leading R&D center in India.
  • Contribute to global programs that impact safe, efficient, and sustainable flight.
  • Collaborate with diverse, high-performing engineers and scientists.

πŸ“₯ Apply Now

Are you ready to lead mechanical simulation projects that shape the future of flight?

πŸ‘‰ Click here to apply on the official GE Aerospace careers page

Join GE Aerospace in Bengaluru and help engineer the next generation of jet engine technology.