Define the best engineering optimization practice from component to system levels as part of the product development cycle.
Perform structural and dynamic analysis
Perform Multiphysics analysis across various physical domains to reflect real use case conditions and feedback to design improvement
Produce and maintain models generated from in-house and commercially available software codes that simulate mechanical loading conditions, dynamic environments (Shock&Vibration), and thermos-mechanical simulations
Familiar with customized coding for commercially available tool to further expand the tool capability
Document analysis through formal reports that are clear, detailed, and timely
Present analysis reports and test results at program reviews
Provide rapid analysis results to support conceptual studies and rapid prototype development
Assess and propose new simulation strategies to improve product development
Mentor junior engineers and cross-train other engineering fields
Requirements
Master's degree in Engineering/Structural Mechanics or equivalent experience; Ph.D. in Engineering/Structural Mechanics preferred
10+ yrs of relevant experience
Robust understanding of Static/Structural Dynamics/ Multiphysics analysis and experience with finite element modeling
Proficient with plastic and metallic structures fabricated by various manufacturing methods, general composite technology, and associated structural analysis
Proven ability to collaborate effectively with adjacent teams (e.g., systems engineering, thermal, mechanical design, test) in a highly integrated team environment
Experience with ANSYS, LS-Dyna, Matlab, CREO or similar modeling tools.
Familiarity with modern substructure modeling, assembly technology, and component mode synthesis
Creativity/innovation to implement root cause analysis related to failures