Role summary
Our system strengthens supply chains, reduces congestion, and gives people time back. With more than 140 million commercial autonomous miles safely flown, the organization is redefining access to healthcare, consumer products, and food across the globe.
Responsibilities
- Own the organization's crash safety analysis strategy for full-vehicle and component-level events; define load cases, failure modes, analysis methods, acceptance criteria, and reporting standards.
- Design and develop custom mechanical test equipment supporting impact, crush, penetration, drop, abuse, fire, vibration, and structural testing of batteries and aircraft hardware.
- Build and execute nonlinear explicit-dynamics models for aircraft and component crash, impact, drop, crush, penetration, and abuse events. Evaluate structural deformation, energy absorption, load paths, battery containment, electrical isolation, and other post-crash hazards.
- Translate analysis results into design changes that improve containment, isolation, damage tolerance, and safe post-crash behavior.
- Own durability analysis for powertrain components including busbars, motors, batteries, mounts, and supporting structures. Evaluate static and dynamic strength, modal response, random vibration, shock, harmonic loading, thermal-mechanical cycling, and fatigue life.
- Develop rapid first-principles studies and reduced-order models to guide design trades before committing to detailed simulation. Deliver clear engineering guidance quickly as aircraft and component configurations evolve.
- Build and maintain vehicle-level and detailed finite element models with appropriate fidelity for global load paths, local stresses, nonlinear contact, material behavior, joints, interfaces, and failure modes.
- Plan analysis correlation with the test team: define pre-test predictions, instrumentation needs, data-processing methods, and post-test correlation workflows.
- Support crash safety, abuse, and structural validation campaigns by rapidly developing new test capabilities and modifying existing equipment.
- Collaborate daily with design, powertrain, battery, systems, reliability, and test teams to drive part development and product-level decision making with respect to crash safety and structural performance.
- Minimum of 5 years of experience in CAE, structural analysis, crash safety, durability, or an equivalent discipline.
- Demonstrated ownership of full-vehicle or component crash analysis, preferably in automotive, aerospace, motorsports, or other safety-critical industries.
- Deep capability with nonlinear finite element analysis and explicit dynamics. Experience with LS-DYNA, Abaqus/Explicit, Radioss, PAM-CRASH, or equivalent tools.
- History of performing durability analysis involving fatigue, random vibration, shock, harmonic response, thermal-mechanical cycling, and bolted joints.
- Knowledge of powertrain hardware such as motors, busbars, and battery packs.
- Proficiency with Nastran, FEMAP, ANSA, HyperMesh, nCode, ANSYS, Simcenter 3D, or equivalent CAE software.
- Proficiency with NX, SolidWorks, or equivalent CAD software.
- Proficiency with Python, MATLAB, or equivalent scripting tools to automate model creation, post-processing, data reduction, and engineering reports.
- Strong engineering fundamentals in mechanics, energy absorption, nonlinear material behavior, plasticity, contact, joint modeling, fasteners, composites, metals, polymers, and failure modes.
- Proven track record of analysis correlation: defining pre-test predictions, selecting instrumentation, processing test data, evaluating model agreement, and updating models based on hardware results.
- Must-have traits: clear owner mentality with rapid decision cadence, tolerance for ambiguity, and disciplined documentation habits.
- Must be eligible to work in the US.
Requirements
The organization builds autonomous delivery aircraft and ground systems that operate daily in demanding field environments. Safe products begin with rigorous analysis and validation. As a Senior CAE Engineer you will evaluate structural integrity, crashworthiness, battery safety, and failure modes of components and assemblies under extreme loading conditions. You will work closely with the Powertrain and Battery teams to ensure that our powertrain components and energy storage systems remain safe throughout their lifecycle, including impact, crush, vibration, thermal, and post-crash events. You will drive a tight design-test-analysis loop that supports the development of robust mechanical test equipment that reproduces real world conditions safely, accurately, and repeatably. You will accelerate product development while generating the engineering evidence needed to make confident design decisions. This role reports into the Structural Analysis Lead and is based at the organization's manufacturing and test facility in South San Francisco.
How to know if it's you: You’ve built your own prototypes to get quick answers, pencil and paper calculations are always your first step, you prefer simple and fast over detailed and large, you are on the floor during system testing. On any given day you could be building test articles in our prototype labs, developing simple models to inform design trade studies, performing structural tests to validate analysis, working across disciplines to tackle complex system level challenges, or in the field supporting system tests.
The organization was founded by engineers dedicated to making the world a better place. We are building a new global industry and are looking for a talented engineer who takes a hands-on approach and will use analysis to drive design. The ideal candidate will be someone who excels in a fast paced, dynamic environment and is excited to own and drive simple, elegant solutions to complex problems.
Standards
- ISO 26262 Road Vehicles - Functional Safety
- ISO 21448 SOTIF - Safety of the Intended Functionality
- ISO/SAE 21434 Road Vehicles - Cybersecurity Engineering
