13 ΡΠ°ΡΠΎΠ² Π½Π°Π·Π°Π΄
Mechanical Engineer (Aerospace)
ΠΡΡΡ & Π‘ΠΎΠΏΡΠΎΠ²ΠΎΠ΄
ΠΠ»Ρ ΠΌΡΡΡΠ° Ρ ΡΡΠΎΠΉ Π²Π°ΠΊΠ°Π½ΡΠΈΠ΅ΠΉ Π½ΡΠΆΠ΅Π½ Plus
ΠΠΏΠΈΡΠ°Π½ΠΈΠ΅ Π²Π°ΠΊΠ°Π½ΡΠΈΠΈ
Π’Π΅ΠΊΡΡ:
TL;DR
Mechanical Engineer (Aerospace) (Composite Aircraft Structures): Designing structural and mechanical systems for full-size autonomous cargo aircraft with an accent on CAD design, mechanism development, composite and metallic structures, and finite element analysis. Focus on validating strength and load paths, creating manufacturable flight hardware, and supporting prototype testing and aircraft assembly.
Location: On-site in the San Francisco Bay Area
Company
develops and operates full-size autonomous cargo aircraft, including a seaplane and a STOL aircraft designed to carry two tons of payload over more than a thousand nautical miles.
What you will do
- Design aircraft structures, mechanisms, tooling, and subsystem mounting systems using CAD software.
- Perform finite element analysis to validate strength, stiffness, and load paths in composite and metallic components.
- Create detailed part and assembly drawings, manufacturing documentation, and inspection documentation.
- Develop linkages, control-surface mechanisms, fixtures, and test rigs.
- Collaborate with manufacturing, aerodynamics, and test teams to develop practical, cost-effective, and easy-to-assemble flight hardware.
- Maintain CAD libraries, revision control, and configuration management for aircraft assemblies.
Requirements
- Degree in Mechanical Engineering, Aerospace Engineering, or a related field.
- Proficiency with CAD software such as Fusion, SolidWorks, CATIA, or NX.
- Strong understanding of structural design, stress analysis, and mechanical systems.
- Experience with FEA tools such as ANSYS, Fusion Simulation, Nastran, or similar.
- Ability to apply GD&T and mechanical tolerancing to production drawings.
- Familiarity with composite and metallic fabrication methods, flight mechanics, aircraft dynamics, and hands-on prototype work.
Nice to have
- Experience with bonded composite structures, hybrid assemblies, actuation systems, linkages, or motion mechanisms.
- Knowledge of vibration, fatigue, or modal analysis.
- Hands-on experience with machining, additive manufacturing, or assembly tooling.
- Familiarity with design for manufacturing and design for assembly.
- Proficiency in MATLAB or Python, or exposure to aerospace certification and flight-test environments.
Culture & Benefits
- Full-time, on-site work in a fast-paced, early-stage aerospace environment.
- Competitive salary and meaningful early-stage equity.
- Relocation support if applicable.
- Employee health benefit plans and 6% retirement matching.
- Flexible PTO, office meals and snacks, and AI tools and subscriptions.
ΠΡΠ΄ΡΡΠ΅ ΠΎΡΡΠΎΡΠΎΠΆΠ½Ρ: Π΅ΡΠ»ΠΈ ΡΠ°Π±ΠΎΡΠΎΠ΄Π°ΡΠ΅Π»Ρ ΠΏΡΠΎΡΠΈΡ Π²ΠΎΠΉΡΠΈ Π² ΠΈΡ ΡΠΈΡΡΠ΅ΠΌΡ, ΠΈΡΠΏΠΎΠ»ΡΠ·ΡΡ iCloud/Google, ΠΏΡΠΈΡΠ»Π°ΡΡ ΠΊΠΎΠ΄/ΠΏΠ°ΡΠΎΠ»Ρ, Π·Π°ΠΏΡΡΡΠΈΡΡ ΠΊΠΎΠ΄/ΠΠ, Π½Π΅ Π΄Π΅Π»Π°ΠΉΡΠ΅ ΡΡΠΎΠ³ΠΎ - ΡΡΠΎ ΠΌΠΎΡΠ΅Π½Π½ΠΈΠΊΠΈ. ΠΠ±ΡΠ·Π°ΡΠ΅Π»ΡΠ½ΠΎ ΠΆΠΌΠΈΡΠ΅ "ΠΠΎΠΆΠ°Π»ΠΎΠ²Π°ΡΡΡΡ" ΠΈΠ»ΠΈ ΠΏΠΈΡΠΈΡΠ΅ Π² ΠΏΠΎΠ΄Π΄Π΅ΡΠΆΠΊΡ. ΠΠΎΠ΄ΡΠΎΠ±Π½Π΅Π΅ Π² Π³Π°ΠΉΠ΄Π΅ β
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