Amir Kazemi
Chassis Structure, Suspension and Steering CAE Engineer at General Motors
- Role
- Chassis Structure, Suspension and Steering Cae Engineer at General Motors
- Location
- Auburn Hills, MI, US
- LinkedIn followers
- 500 followers
About Amir Kazemi
Accomplished Mechanical Engineer with a proven track record in automotive and academic environments. Demonstrated expertise in fastening and joining, mechanical systems, and product integration. Recognized for integrating deep technical knowledge with strategic insight to deliver innovative solutions and advance cross-functional objectives. Strong communication and leadership skills, with a problem-solving mindset and familiarity with manufacturing processes and production environments.
Experience
Chassis Structure, Suspension and Steering Cae Engineer
May 2024 — Present · US
Lead analysis activities for Chassis structure, Suspension, Driveline and Steering systems in support of vehicle program. • Develop block cycle tests and perform structural and fatigue analyses to support design and validation at component, subsystem, and system levels. • Conduct virtual simulations and assess strength, stiffness, durability, NVH performance, and drive technical design solutions.• Support vehicle architecture development team through advanced CAE analysis, providing strategic input on mechanical systems integration and design feasibility.• Collaborate with design, validation and manufacturing teams to troubleshoot and resolve complex issues and accelerate product development.• Deliver design analysis insights to stakeholders and collaborate with cross-functional teams to shape product design strategy.• Actively engage in Product Development Teams, Statement of Requirements, Engineering Peer Reviews, Component Readiness Valves, VDDV Global Focus Group, Virtual Vehicle Assessments, and Scaled Agile Framework meetings.• Lead and manage all aspects of supplier-coordinated CAE activities.• Apply strategic thinking to optimize CAE processes, ensuring alignment of mechanical systems and product integration with design objectives. • Enhance virtual analysis capabilities to improve accuracy, speed, and develop new simulation methods enabling an all-virtual future. • Correlate virtual results with physical test data to validate models and improve prediction accuracy.
Education
University of Tabriz
Master of Science, Mechanical Engineering, Applied Mechanics
2006 — 2009
Shiraz University
Bachelor of Science, Mechanical Engineering, Heat and Fluid Mechanics
2002 — 2006
Massachusetts Institute of Technology
Architecture and Systems Engineering
2018 — 2019
Oakland University
PhD, Mechanical Engineering
2011 — 2017
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