Structural Engineer UAV H/F

Alta Ares
Toulouse
On-site

Who this role is best for

Strong fit for structural engineers with aerospace experience who design and analyze composite structures for UAVs, working in cross-functional teams in Toulouse.

Best fit for

  • Candidates with 3+ years in aerospace structural engineering, particularly UAV platforms, and composite design expertise
    — “3+ years’ experience in aerospace or aircraft structural engineering, ideally including UAV/drone platforms
  • Individuals who can balance structural optimization with aerodynamic and propulsion constraints
    — “Work with Aerodynamics and Propulsion teams to balance structural mass, CG, and vibration constraints against flight performance targets
  • Engineers with hands-on knowledge of composite fabrication and 3D printing for practical design implementation
    — “Get hands-on with composite fabrication and bonding to understand how parts are actually built, not just how they're modeled

Things to consider

  • The role demands a high level of integration with aerodynamics, propulsion, and manufacturing teams
    — “Work closely with Aerodynamics, Propulsion, and Manufacturing engineers to resolve cross-disciplinary design conflicts
  • Candidates must be capable of analyzing and interpreting complex load cases and failure modes
    — “Perform structural and stress analysis combining hand calculations and finite element analysis (FEA) to justify margins under static, dynamic, and high-acceleration loads

How to stand out

  • Emphasize experience with carbon-fiber composites and sandwich panel design in your resume and interviews
    — “Experience designing lightweight carbon-fibre composite structures, including laminate design and sandwich panels
  • Highlight your ability to correlate analytical results with FEA and test data
    — “Ability to perform hand calculations and correlate analytical results with FEA and structural test data
  • Showcase your practical understanding of polymer 3D printing and its impact on load paths
    — “Experience designing parts for polymer 3D printed components, with a practical understanding of print orientation and load paths
Pace · SteadyCollaboration · HighAutonomy · MediumDecision Impact · Company

Derived from job-description analysis by Serendipath's career intelligence engine.

What success looks like

  • Designed and analyzed composite structures
  • Optimized structural weight
Typical background
Aerospace or aircraft structural engineering

Skills & requirements

Required

Structural EngineeringComposite MaterialsFinite Element AnalysisCADAerospace Engineering

Preferred

Uav/drone IntegrationPayload Integration

Stack & domain

Finite Element Analysis (fea)CADComposite Laminate DesignBonding/joining StrategiesAeroelasticity AnalysisCommunicationCollaborationAerospaceDefenseAI

About the role

Original posting from Alta Ares via Ashby

ABOUT ALTA ARES

Alta Ares is an air defense Neoprime. We build AI-guided interceptors to counter drones and cruise missiles, along with the software platform that powers them.

Our customers are NATO-aligned militaries and defense institutions, and our systems are regularly deployed during live exercises and operational demonstrations across Europe, the Middle East, and Asia.

Founded in 2024, we have grown to 90 people, raised over $60M, and increased revenue 40× this year. We are now entering a new phase of international expansion, industrial scaling, fundraising, and product development.

ROLE & Missions:

STRUCTURAL DESIGN & ANALYSIS

  • Design and analyze the primary and secondary composite structures of our interceptor airframes (fuselage, wings/control surfaces, internal load-bearing components)
  • Perform structural and stress analysis combining hand calculations and finite element analysis (FEA) to justify margins under static, dynamic, and high-acceleration loads
  • Define and document load paths, free-body diagrams, and failure modes for all major structural elements
  • Own composite laminate design, layup schedules, and bonding/joining strategies for carbon fiber structures

WEIGHT & PERFORMANCE OPTIMIZATION

  • Aggressively optimize structural weight without compromising strength, given the platform's speed and maneuverability requirements
  • Work with Aerodynamics and Propulsion teams to balance structural mass, CG, and vibration constraints against flight performance targets
  • Evaluate design trade-offs between composite and metallic/CNC solutions where each makes sense

TESTING & VALIDATION

  • Support structural, vibration, shock, and environmental qualification testing of airframe components and subassemblies
  • Analyze test and flight data to identify failure modes, including:
  • Fatigue and fracture
  • CG shifts
  • Vibration-induced damage
  • Support fast structural repairs and troubleshooting during flight test campaigns

MANUFACTURABILITY & PRODUCTION

  • Work directly with manufacturing partners and internal fabrication teams to ensure designs are manufacturable, repeatable, and cost-effective at scale
  • Get hands-on with composite fabrication and bonding to understand how parts are actually built, not just how they're modeled
  • Support the transition of airframe structures from prototype to serial production

CROSS-FUNCTIONAL COLLABORATION

  • Work closely with Aerodynamics, Propulsion, and Manufacturing engineers to resolve cross-disciplinary design conflicts
  • Communicate structural decisions and analysis clearly to non-structural stakeholders
  • Contribute to design reviews and structural documentation standards as the team scales

CANDIDATE PROFILE

  • 3+ years’ experience in aerospace or aircraft structural engineering, ideally including UAV/drone platforms
  • Demonstrated experience analysing and sizing airframe structures for aerodynamic, manoeuvre, propulsion, and inertial loads, with the ability to interpret, validate, and apply aircraft aerodynamic load cases
  • Proficiency in finite element analysis (FEA) for static strength, stiffness, buckling and vibration modelling
  • Strong CAD capability (e.g. CATIA, SolidWorks, Autodesk or comparable tools), with the ability to support detailed design and internal component integration
  • Familiarity with UAV/drone specific integration challenges, including payloads, batteries, avionics, propulsion mounting, and practical field repairability, would be a strong advantage
  • Experience designing lightweight carbon-fibre composite structures, including laminate design and sandwich panels and knowledge of composite manufacturing methods and processes
  • Experience designing parts for polymer 3D printed components, with a practical understanding of print orientation and load paths
  • Ability to perform hand calculations and correlate analytical results with FEA and structural test data
  • Strong communication and multidisciplinary collaboration skills across aerodynamics, systems and manufacturing teams
  • Experience with aeroelasticity analysis, including flutter, divergence, structural deflection, and vibration assessment, would be a strong advantage

Source: Alta Ares careers (Ashby)

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