Principal Engineer - Wind Turbine Blade Bonding & Joints
Listed on 2026-08-05
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Engineering
Mechanical Engineer, Quality Engineering
Principal Engineer Bonding & Joints For Wind Turbine Blades
GE Vernova is seeking a Principal Engineer to provide technical leadership in Bonding & Joints for wind turbine blades—an area critical to structural integrity, safety, quality, and long-term performance. This Control Title Holder (CTH) role owns the technical underwriting of Bonding & Joints design concepts, specifications, practices, issue resolution approaches, and defect acceptance criteria across the full product lifecycle. Bonding & Joints represent the primary structural interfaces that integrate the wind blade into a complete system.
These interfaces include adhesive and resin-based bonded joints (co-infused and secondary bonded), as well as mechanical joints where applicable. Examples include web-to-shell bond lines, leading and trailing edge bond lines, joints between prefabricated components and shells, aero add-on bonding, repair interfaces, and select mechanical joints. In this role, you will define and enforce the technical rigor required to ensure design decisions result in safe, high-quality products and services that meet customer and regulatory expectations.
You will collaborate closely with blade design teams, cross-functional partners, and designated technical experts across Design, Systems, Quality, Supply Chain, and Manufacturing—providing both technical oversight and hands-on contribution as needed. You will support the Blades Chief Engineer in setting and executing strategy related to design robustness, factory and field issue resolution, and technology development within the Bonding & Joints domain.
A key responsibility of this role is mentoring and developing engineering talent, building sustainable technical depth within blade structural components. This is a senior technical leadership role requiring deep domain expertise, strong systems thinking, and disciplined problem-solving, while actively advancing organizational capability and engineering excellence.
Required Qualifications
- Bachelor's degree from an accredited university or college in Mechanical Engineering, Aerospace Engineering, Engineering Mechanics, or a related discipline.
- Minimum of 10 years of professional experience in composite bonding and joints design, testing, or closely related technical work.
- In-depth knowledge of composite mechanics, composite failure modes, and the building-block approach to structural validation.
- Working knowledge of composite manufacturing processes.
- Prior experience in technical leadership roles guiding teams through structured design processes to deliver safe, high-quality products.
Desired Characteristics
- Master's or PhD degree preferred.
- Direct experience with wind turbine blade composite structural design.
- Knowledge of APQP, TRL/MRL, and statistical process control methodologies.
- Demonstrated ability to lead multidisciplinary engineering teams, including globally distributed teams, through design reviews, technical assessments, and root cause investigations.
- Proven experience resolving complex technical issues through cross-functional collaboration and structured problem-solving tools such as FMEA and RCA / 8D.
- Knowledge of wind turbine industry standards and regulations applicable to blade structural components.
- Experience in project execution, translating high-level objectives into clear, actionable plans and driving disciplined operational execution.
- Track record of curiosity and passion for identifying, developing, and implementing new technologies, methods, and ideas that result in differentiated product outcomes.
- Experience coaching, mentoring, and developing engineering talent to support long-term professional growth and succession.
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