Overview In this role you will lead structural analysis work to ensure airframe integrity for legacy and new Boeing programs. You will work within the Air Vehicle Engineering team to validate loads, develop and verify FE models, and support certification and in-service improvements. You'll collaborate across groups and with regulators to define and substantiate structural requirements, balancing legacy 2D drawing challenges with modern model-based methods. This is a hands-on, onsite opportunity to shape safe, reliable airframes at scale.
Compensation / Benefits- relocation assistance
- health insurance
- flexible spending accounts
- health savings accounts
- retirement savings plans
- life and disability insurance
Responsibilities- Develop, integrate, and document structural requirements for airframe stress design and FE modeling
- Verify structural integrity by defining analytical methods and FE models to characterize airframe performance
- Coordinate with other engineering groups to define environment and load paths
- Guide design and assess structural integrity using classical methods and FE analyses across product lifecycle
- Develop test plans, support testing, and report results to validate requirements
- Document certification and test results for customers and regulatory agencies
- Investigate failures in-service and propose improvements
- Develop analytical processes/tools to enhance analysis efficiency and quality
- Oversee adherence to stress analysis and FE modeling methodologies
- Explore emerging technologies for future designs
- Navigate challenges of legacy 2D-drawing certifications vs Model Based approaches
Key requirements- Bachelor of Science in Engineering
- Experience in classical methods of structural analysis
- Experience with Finite Element Models (FEM)
- Strong written, verbal communications and presentation skills
- Ability to independently construct, execute, review, and manage structural FE models
- Ability to obtain U.S. Secret Clearance
- 5+ years of experience in structural analysis
- Strong written and verbal communication
- Independent work capability
- Cross-team collaboration
- Classical structural analysis methods
- Finite Element Modeling (FEM)
- Hypermesh (preferred)