Principal Design EngineerDeltaHawk Engines, Inc. • Racine, Wisconsin, United States
Principal Design Engineer
DeltaHawk Engines, Inc.
- Racine, Wisconsin, United States
- Racine, Wisconsin, United States
À propos
Job Summary:
Reporting to the Director of Engineering, the Principal Design Engineer is a senior technical leader responsible for the conceptualization, design, analysis, validation, and production readiness of advanced engine and engine system architectures. This role drives engineering excellence from initial specification development through certification and production support, with a strong emphasis on performance, durability, manufacturability, and cost optimization.
The ideal candidate brings deep engine design expertise, systems-level thinking, and a passion for high-performance propulsion, preferably within or associated with aviation and/or high-performance applications.
Essential Duties & Responsibilities:
An individual in this position must be able to successfully perform the duties and responsibilities listed below. Reasonable accommodation may be made to enable individuals with disabilities to perform essential functions. Additional duties may be assigned.
Engine & System Design Leadership:
- Lead the design and development of engine and airframe systems and components beginning with first-principles engineering analysis.
- Develop engine specifications and translate high-level requirements into robust, manufacturable mechanical designs.
- Perform and/or define analytical requirements including FEA, CFD, fatigue life prediction, durability assessment, and engine performance simulation and optimization.
- Execute stack-up tolerance analyses to ensure designs meet fit, form, and functional requirements.
- Prepare detailed engineering drawings in accordance with ASME drafting standards, including advanced GD&T application.
- Conduct and lead Design Failure Mode & Effects Analysis (DFMEA) activities.
- Develop validation requirements, test standards, and qualification protocols for engines and subsystems.
- Analyze test data and implement design improvements to meet durability, reliability, and performance objectives.
- Apply Design for Six Sigma (DMAIC methodology) to reduce variation and improve product robustness.
- Design for manufacturability and assembly (DFMA), ensuring efficient production processes and minimized lifecycle cost.
- Select appropriate materials and manufacturing processes considering strength, fatigue, heat
Compétences linguistiques
- English
Avis aux utilisateurs
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