Lead Mechanical Design Engineer
Listed on 2026-02-16
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Engineering
Aerospace / Aviation / Avionics, Mechanical Engineer
When you join Honeywell, you become a member of our global team of thinkers, innovators, dreamers and doers who make the things that make the future.
That means changing the way we fly, fueling jets in an eco-friendly way, keeping buildings smart and safe and even making it possible to breathe on Mars.
Working at Honeywell isn’t just about developing cool things. That’s why our employees enjoy access to dynamic career opportunities across different fields and industries.
Are you ready to help us make the future? You will report directly to our Mechanical Design Engineering Manager of the Installation and Externals group within the Engines and Power Systems organization and will work out of our Phoenix, Arizona location on a hybrid work schedule
Honeywell Aerospace (Use the "Apply for this Job" box below). and services are found on virtually every commercial, defense, and space aircraft in the world. We build aircraft engines, cockpit and cabin electronics, wireless connectivity systems, mechanical components, and more, and connect many of them via our high-speed Wi‑Fi offerings. Our solutions create healthier air travel, more fuel‑efficient and better‑maintained aircraft, more direct and on‑time flight arrivals, safer skies and airports, and more comfortable flights, along with several innovations and services that reflect exciting and emerging new transportation methods such as autonomous and supersonic flight.
ResponsibilitiesKEY RESPONSIBILITIES
- Imagine, design and develop products and systems as part of a highly engaged and integrated engineering team.
- You will collaborate across Honeywell Aerospace engineering teams to create solutions and systems that meet the evolving needs of our customers.
- You will participate in all phases of product development and will be a coach and mentor to less experienced engineers.
- Refine your engineering talents in a team‑based culture by working with innovative products and technologies.
- Leads world‑class project teams to establish effective solutions to complex engineering problems.
- Improve the world by leading teams that develop modern solutions to complex problems.
- Engineering analysis and weight optimization
- Design for Manufacturing and cost estimation
- Voice of Customer
- Bachelor’s degree in aerospace engineering or mechanical engineering
- 8 plus years’ of industry design experience in the aerospace sector developing either gas turbine engines (APUs, turbo shafts, turbofans or turboprops) or rocket engines (solid or liquid propulsion), or their associated systems (Core propulsion, externals or installations)
- Demonstrated proficiency using Siemens NX CAD software in 3D modeling & 2D drafting applications
- Demonstrated proficiency creating & releasing 2D drawings, including:
View creation, dimensioning & tolerancing and drawing notes - Working knowledge of Teamcenter
- Fundamental understanding of ASME Y14.5‑2009 GD&T principles, including:
Datum structures, Profile tolerances, positional tolerances, machining symbology and tolerances of mating parts - Ability to perform 2D tolerance stack analyses
- Experience in design of aerospace propulsion systems’ installations & externals, including:
Plumbing systems, Electrical harnesses, LRU component placement/integration, ducts/venting layouts, anti‑icing systems, lubrication systems, fuel systems, fire detection systems, mounts, gearboxes and vehicle installation concepts - Fundamental understanding of overall gas turbine engine operations and/or individual engine modules, for example:
Inlet/AGB, Compressor, Combustor, Exhaust or Mechanical Systems - Experience with metallic or non‑metallic Additive Manufacturing (AM) design, theory or fabrication
- Understanding of Requirements Based Engineering (RBE) with a baseline understanding of requirements decomposition, definition, verification & validation
- Experience compiling system‑level Bill of Materials (BOM), Parts Lists (PL) and Weight reports
- Fundamental understanding of relative characteristics of various aerospace‑grade materials, including Stainless steels, Nickel alloys, heat‑resistant coatings, abrasion‑resistant coatings and lubricants
- Fundamental understanding of…
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