Structural Systems Engineer II

NASA Jet Propulsion Laboratory
•$114,608 - $139,880•Onsite

About The Position

New ideas are all around us, but only a few will change the world. That’s our focus at JPL. We ask the biggest questions, then search the universe for answers—literally. We build upon ideas that have guided generations, then share our discoveries to inspire generations to come. Your mission—your opportunity—is to seek out the answers that bring us one step closer. If you’re driven to discover, create, and inspire something that lasts a lifetime and beyond, you’re ready for JPL. Located in Pasadena, California, JPL has a campus-like environment situated on 177 acres in the foothills of the San Gabriel Mountains and offers a work environment unlike any other: we inspire passion, foster innovation, build collaboration, and reward excellence. This unique opportunity is part of the Mechanical and Control Systems Division (35), which creates advanced mechanical, robotics, thermal, propulsion, onboard GNC, and electronic packaging systems. Division 35 develops hardware and systems from early architecture through design, fabrication, subsystem, and system-level integration and test. You will be working as a Structural Systems Engineer within the Mechanical Engineering, Integration, and Test Section, which leads the design, analysis, development, integration, and test of flight mechanical and robotic systems for spacecraft, payloads, and ground-based systems.

Requirements

  • Bachelor’s degree in Mechanical Engineering or related technical discipline with a minimum of 3 years of related experience; or a Master’s degree with a minimum of 1 year related experience or PhD in similar disciplines.
  • Experience and knowledge in structural engineering, analysis, and verification of flight structures (spacecraft or instruments), composite structures, mechanisms, and/or opto-mechanical assemblies.
  • Experience in MSC.Nastran, NX-Nastran, FEMAP, Abaqus, MSC.ADAMS or LS-DYNA.
  • General knowledge of industry and/or academic practices and standards related to structural mechanics, finite element analysis, and structural verification testing.

Nice To Haves

  • Experience in completing structural analysis of complex and unique flight mechanical systems and detailed analysis of its components.
  • Ability to present structural margins & analyses to project management and provide design recommendations.
  • Ability to develop and conduct structural verification test programs for space flight hardware.
  • Ability to troubleshoot mechanical, mechanism, and/or structural anomalies and failures.
  • Ability to develop innovative design solutions to meet design requirements and resolve technical challenges.
  • Knowledge of Standards for Geometric Dimensioning and Tolerancing (GD&T) per American Society of Mechanical Engineers (ASME) Y14.5.
  • Excellent verbal and written communication skills.
  • Excellent collaboration skills and ability to work across subject areas and organizations.

Responsibilities

  • Perform structural design and analysis to ensure the structural integrity of subsystem and system-level hardware and the associated support structures.
  • Perform structural analysis utilizing classical solutions and finite element analysis (FEA) method for flight projects and/or technology tasks and/or proposal developments.
  • Perform detailed stress/structural analysis, dynamic analysis, and pre-test analysis.
  • Build finite element models from scratch, using hand calculations when appropriate, to determine critical areas in structure and determine efficient and adequate approaches for analysis independently.
  • Contribute to the design process of mechanical assemblies from engineering requirements to engineering drawings including suggestions and feedback on areas of concern based on analysis, mechanical intuition, and engineering judgement.
  • Support and present analysis results at team, line management, and technical reviews.
  • Support and conduct static and dynamic tests and develop test reports.
  • Perform tasks under the direction of the group supervisor, project management, and project technical leads, work independently and within a team environment, and collaborate on tasks that span a spectrum of disciplines.

Benefits

  • variety of health, dental, vision, wellbeing, and retirement plans
  • paid time off
  • learning
  • rideshare
  • childcare
  • flexible schedule
  • parental leave
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