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Lead Structures & Analysis Engineer

Job in Los Alamitos, Orange County, California, 90721, USA
Listing for: jobr.pro
Full Time position
Listed on 2026-06-20
Job specializations:
  • Engineering
    Mechanical Engineer, Materials Engineering, Aerospace / Aviation / Avionics
Salary/Wage Range or Industry Benchmark: 125000 - 160000 USD Yearly USD 125000.00 160000.00 YEAR
Job Description & How to Apply Below

About Brelle

“Energy for what moves us” defines our mission ed in California, Brelle engineers next-generation platforms for supercars and superbikes, working alongside high-performance brands in the US and Europe. Our innovations are built on a novel battery pack architecture, a full-stack software platform, and automated manufacturing. Joining the team means working on making electric vehicles—on the road and on the racetrack—lighter, more engaging, safer, and capable of charging in minutes.

Our engineering teams are structured like small Skunk works teams – nimble, cross-functional, and technical. Engineers are encouraged to explore new concepts and materials and expected to rapidly go from idea to prototype.

We move fast, obsess over the details, and believe the hardest problems are the ones worth solving. Nothing is impossible. If it sounds impossible, it's probably worth working on.

About the Role

As a Lead Structures & Analysis Engineer, you will own the structural integrity of our products — from material selection and first-order sizing through detailed FEA, physical test, and correlation back to the model. You’ll work at the intersection of structures, materials, and the wider system.

Our hardware lives in a demanding multi-physics environment (i.e. mechanical loads interacting with thermal, electrical, and safety requirements), so we’re especially interested in engineers who have worked on battery packs, energy storage, EV structures, spacecraft, aircraft, or motor sport, and who understand how structural decisions ripple through the rest of the system. You’ll have direct influence over architecture and a mandate to build the analysis capability you think the team needs.

What

You'll Do
  • Guide design from day one: Embed with design, manufacturing, and systems engineers to influence architecture early — load paths, joints, materials, and mass. Support mass-optimization, manufacturing and cost/weight/performance trades.

  • Build and develop the team: Set the technical standard, grow engineers at all levels, and create an environment where the team does rigorous, independent work.

  • Own structural analysis end-to-end: Define load cases and environments, develop load paths, and perform sizing of primary and secondary structures using both classical hand calculations and finite element methods (linear and non-linear static, buckling, modal, random vibration, shock, fatigue, and fracture/damage tolerance).

  • Drive material selection: Lead research, trade studies across metallics, composites, polymers, and adhesives; account for environmental effects, manufacturing variability, and joint behavior.

  • Lead structural test campaigns: Define test plans, instrumentation (strain gauges, accelerometers, thermocouples, DIC), and pass/fail criteria for coupon, component, and assembly-level tests — static, dynamic, drop, crush, and abuse.

  • Close the loop on failures: Lead root-cause investigations of structural failures in test, production, or the field, and drive corrective actions back into design rules.

  • Communicate effectively across domains: Serve as the structural SME for your domain — present margins, risks, and recommendations clearly at design reviews and to leadership, and translate complex analysis into language the broader team can act on.

Qualifications
  • B.S. in Mechanical, Aerospace, Materials, or related engineering field (M.S. preferred).

  • 8+ years of structural analysis experience on safety- or performance-critical hardware (automotive/EV, aerospace, launch, defense, motor sport, or similar), including time as a technical lead or responsible engineer.

  • Deep grounding in statics, dynamics, mechanics of materials, fatigue, and fracture.

  • Expert proficiency with at least one commercial FEA suite (Ansys, Abaqus, Nastran, etc.) including pre/post tools (Hyper Mesh, Femap, etc.) — and a track record of validating models against physical test.

  • Strong materials background: selection, properties, allowables development, and testing of metallic and/or composite structures; familiarity with non-linear material behavior (plasticity, elastomers, adhesives).

  • Scripting ability in Python or MATLAB for analysis automation, data…

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