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Engineer – Stress Analyst III – Lunar Permanence

Engineer – Stress Analyst III – Lunar Permanence

CompanyBlue Origin
LocationSeattle, WA, USA
Salary$117498 – $164497.2
TypeFull-Time
DegreesBachelor’s
Experience LevelSenior

Requirements

  • Minimum of a B.S. degree in mechanical, aerospace or civil engineering
  • Level 2 Requirement: 5+ years of experience
  • Solid foundation of structural static/dynamic fundamentals
  • Passion for spacecraft structural/environmental loads development/validation
  • Ability to solve a variety of static and dynamic structural problems using physics-based analytical methods (hand calculations, in-house tools, and 3rd party commercial analytical tools)
  • Must be a U.S. citizen or national, U.S. permanent resident (current Green Card holder), or lawfully admitted into the U.S. as a refugee or granted asylum.

Responsibilities

  • Analysis of load path from conceptual to drawing release and hardware creation
  • Analysis of primary and secondary spacecraft structures
  • Integration of structural analysis with loads and dynamics environments
  • Finite Element Model development, refinement, validation, and correlation to tests
  • Strength checks and analysis report generation
  • Test and verification plan and report generation
  • Support configuration development and trade studies

Preferred Qualifications

  • Vehicle load path definition and strength analysis
  • Analysis of metallic and/or composite structures (skin-stringer, fittings, sandwich panels, etc)
  • Composite design and analysis skills in any thermoset, thermoplastic, metal matrix and ceramic matrix composites
  • Manufacturing methods, material selection, testing, characterization & allowables development
  • Experience testing materials, joints, components and vehicles
  • Structural optimization using standard industry codes (Optistruct, HyperSizer, Nastran Sol 200, Abaqus, Adams)
  • Experience with ProEngineer Wildfire 4 / Creo Parametric or greater
  • Experience with Human spaceflight
  • Experience with composites