Joby Aviation
Loads and Dynamics Engineer
About 2 months ago
About the Job
Overview
As a Loads and Dyanmics Engineer, you will play an integral role in the development of Joby loads and aeroelasticity efforts. Responsibilities include contributing to in-house tools, computation of loads and flutter analyses, updating and validating aeroelastic modeling, and working with DERs and FAA representatives to certify Joby’s cutting-edge VTOL aircraft. The position requires a solid mathematical and engineering background, a detailed conceptual understanding of aircraft dynamics and aerodynamics, and strong attention to detail. The applicant is expected to have experience with static and dynamic loads derivation for fixed or rotary wing aircraft. A background in flutter analysis is also desired.
The position will be in our Santa Cruz, CA location, and will actively work with various teams at Joby Aviation, including flight physics, flight testing, airframe, and actuators, integration and test, certification, and more. This role will operate in a fast-paced, demanding, and rewarding environment with very high expectations for individual contribution.
Responsibilities
Develop external loads and aeroelastic models and methods
Develop aerodynamic databases for use in aircraft aeroelastic models
Develop multi-DOF flight dynamics simulations for use in external loads and dynamics
Interpret experimental data to correlate and validate aircraft aeroelastic models
Implement loads database to be used by the structural design team
Determining and interpreting the certification basis and establishing compliance strategies – including means and methods of compliance
Developing, reviewing, and approving certification-related documents
Working with and mentoring multiple engineering teams with a mix of aerospace and non-aerospace backgrounds
Interfacing with certification authorities as required (FAA, EASA, etc.)
Required
Experience with developing/authoring Certification documentation
B.S. in mechanical engineering, aerospace engineering, or a relevant discipline
3+ years of experience performing detailed loads analysis for fixed-wing aircraft or rotorcraft
Excellent understanding of aircraft external loads and aeroelasticity
Previous experience working on an aircraft certification program
Comfortable with analysis tools such as MATLAB, Python, and Excel
Ability to code engineering tools in MATLAB, Python and/or C and to run analysis tools on high performance compute platforms
Desired
M.S. in mechanical engineering, aerospace engineering, or a relevant discipline
Expert knowledge of FAR 23 and/or 27, but Part 25 and/or 29 is also applicable
Demonstrated ability to quantify and develop aircraft and component external loads
5-7+ years of working experience in the aircraft certification industry
Demonstrated knowledge and/or extensive experience correlating and validating loads models using experimental data
Demonstrated knowledge and/or experience with Interactions of Systems of Structures and/or computing loads for aircraft with fly-by-wire control systems
Demonstrated knowledge and/or experience with structural dynamics, AeroServoElastic (ASE) analyses, and/or certification requirements
Demonstrated knowledge and/or experience with NASTRAN, RCAS, or other aeroelastic analysis tools
Demonstrated knowledge and/or experience with ground loads and landing gear multibody dynamic analysis
Compensation at Joby is a combination of base pay and Restricted Stock Units (RSUs). The target base pay for this position is $91,500 - $151,900/yr. The compensation package will be determined by job-related knowledge, skills, and experience.
Joby also offers a comprehensive benefits package, including paid time off, healthcare benefits, a 401(k) plan with a company match, an employee stock purchase plan (ESPP), short-term and long-term disability coverage, life insurance, and more.
Additional Information
Joby Aviation is an equal opportunity employer.
About the Company

Joby Aviation
Joby Aviation develops a new generation of electric personal aircraft created to revolutionize personal mobility. Its strength is in composite airframe design and fabrication, aerodynamic analysis, high-performance electric motor development, and cutting-edge battery pack design, enabling clients to create a paradigm shift in transportation with safe, quiet, fast and affordable electric vertical takeoff.
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