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Aircraft Manufacturing Engineer Jobs (NOW HIRING)

As an aircraft manufacturer, industrialist, industrial service provider and logistician, Daher ... Interpret engineering drawings, blueprints, and measurements to build parts to specification

As an aircraft manufacturer, industrialist, industrial service provider and logistician, Daher ... Interpret engineering drawings, blueprints, and measurements to build parts to specification

As an aircraft manufacturer, industrialist, industrial service provider and logistician, Daher ... Engineer) is responsible for leading the Final Assembly Line technical support team in Stuart. This ...

As an aircraft manufacturer, industrialist, industrial service provider and logistician, Daher ... Engineer) is responsible for leading the Final Assembly Line technical support team in Stuart. This ...

As an aircraft manufacturer, industrialist, industrial service provider and logistician, Daher ... Interpret engineering drawings, blueprints, and measurements to build parts to specification

Manufacturing Engineer

Wichita, KS · On-site

$65K - $84K/yr

Experience in manufacturing engineering, aircraft parts/assembly, production support to nonconformance parts of Aero structures metallic and/or composite structures * Exposure to Repair Design ...

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Aircraft Manufacturing Engineer information

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$48.5K

$80.8K

$119K

How much do aircraft manufacturing engineer jobs pay per year?

As of Aug 16, 2026, the average yearly pay for aircraft manufacturing engineer in the United States is $80,789.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,500.00 and $95,500.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an aircraft manufacturing engineer, and why are they important?

To thrive as an Aircraft Manufacturing Engineer, you need a solid background in aerospace engineering or a related field, along with strong knowledge of manufacturing processes and quality standards. Familiarity with CAD software, manufacturing execution systems (MES), and industry certifications such as Six Sigma or AS9100 are commonly required. Strong problem-solving, attention to detail, and communication skills set top performers apart in this role. These abilities are crucial for ensuring aircraft components are manufactured efficiently, safely, and in compliance with rigorous industry regulations.

What is the difference between Aircraft Manufacturing Engineer vs Aircraft Design Engineer?

AspectAircraft Manufacturing EngineerAircraft Design Engineer
Primary FocusOversees manufacturing processes, assembly, and production efficiencyDesigns aircraft components and systems, focusing on innovation and specifications
Required SkillsManufacturing techniques, quality control, production planningCAD software, aerodynamics, structural analysis
Work EnvironmentFactories, production plants, manufacturing facilitiesDesign studios, engineering labs, CAD environments
CertificationsOften requires FAA or EASA manufacturing certificationsDesign certifications like EASA Part 21 or FAA Part 23

While both roles are integral to aircraft development, Aircraft Manufacturing Engineers focus on the production and assembly processes, ensuring efficient and compliant manufacturing. In contrast, Aircraft Design Engineers concentrate on creating and developing aircraft designs and specifications. Both roles require specialized skills and certifications but differ mainly in their focus within the aircraft lifecycle.

What does an aircraft manufacturing engineer do?

An Aircraft Manufacturing Engineer is responsible for designing, developing, and overseeing the manufacturing processes of aircraft and their components. They work to ensure that all parts and assemblies meet strict safety, quality, and regulatory standards. Their duties often include collaborating with design teams, troubleshooting production issues, optimizing manufacturing methods, and implementing new technologies to improve efficiency. Additionally, they may be involved in testing prototypes and conducting inspections to ensure that finished products meet engineering specifications.

What are some common challenges faced by aircraft manufacturing engineers during the production process?

Aircraft Manufacturing Engineers often encounter challenges such as meeting tight production deadlines while ensuring strict adherence to safety and quality standards. Coordinating between multidisciplinary teams—such as design, quality assurance, and assembly—can be complex, especially when integrating new technologies or addressing unexpected issues on the production line. Additionally, maintaining compliance with regulatory requirements and adapting to continuous process improvements are ongoing aspects of the role. Strong problem-solving skills and effective communication are key to overcoming these challenges.
More about Aircraft Manufacturing Engineer jobs

What cities are hiring for Aircraft Manufacturing Engineer jobs?

Cities with the most Aircraft Manufacturing Engineer job openings:

Infographic showing various Aircraft Manufacturing Engineer job openings in the United States as of August 2026, with employment types broken down into 89% Full Time, 4% Part Time, 4% Contract, and 3% Nights. Highlights an 95% Physical, 2% Hybrid, and 3% Remote job distribution, with an average salary of $80,789 per year, or $38.8 per hour.

Aircraft Manufacturing Engineer

AVTECH Global

Savannah, GA • On-site

$55 - $62/hr

Full-time

Medical, Retirement

Posted 10 days ago


Job description

Aviation Technology Associates (AVTECH Global) is looking for a Manufacturing Engineer.

Pay Rate: $55.00 to $62.00 per hour (depending on experience, location, etc.)

Job Type: Full-time, Contract

Contract Duration: 12 months (w/opportunity for extension)

Benefits:

  • coverage of up to one-half of employee's medical insurance premium for a base plan
  • eight (8) paid holidays
  • per diem split (if qualified)
  • opportunity to become a direct hire after ninety (90) days
  • 401(k) with matching

Experience/Education:

  • Bachelor's degree in mechanical, manufacturing engineering or related curriculum required or equivalent combination of education and experience sufficient to successfully perform the essential functions of the job.
  • Experience requirement ranges from eighteen (18) months to four (4) years manufacturing engineering, planning, or related technical experience.

Unique Skills:

  • Valid driver's license may be required.
  • Participation in a DOT/FAA drug and alcohol program may be required.

Purpose:

Prepare, conduct, and evaluate analyses for planning improvements and problem solving for manufacturing issues (production methods and procedures) in a specific function (including layout, production flow, tooling and production equipment, material fabrication, assembly methods and planning) in a production or post-production environment.

Level II Essential Functions and Responsibilities:

  • Perform technical studies of a complex nature, conduct analysis of operations (existing or proposed). Prepare a report of recommendations for equipment needed and correct methods of manufacturing (including sequence of operations and detailed methodology of complex assemblies and installations as well as detail components).
  • Author detailed work instructions that optimize manufacturing process efficiency and opportunity for zero defects with functional operations engineer.
  • Author DRDI/DMT rework instructions to support effective corrective actions.
  • Author MBOM in SAP/Solumina/Corridor (as applicable) to ensure all parts defined by engineering are installed during the assembly/installation process.
  • Assist in make-or-buy proposals and recommend corrective actions for areas of responsibility; evaluate vendors, attend vendor negotiations, and assist in resolving vendor problems.
  • Conduct research, investigation, and analysis in connection with assigned planning or other assigned projects, to ensure conformance to requirements.
  • Investigate and assist in preparing justification for equipment and facility requests.
  • Perform productibility studies from engineering drawings to identify opportunities to enhance manufacturing ability to meet requirements. Participate in design for manufacturing assessments with engineering.
  • Apply statistical methods to estimate future manufacturing requirements and potential; make necessary computer inputs and generate data or reports as needed.
  • Perform audit of co-workers output based on defined requirements and procedures. Must demonstrate knowledge of ME policies and procedures.
  • Incorporate lean manufacturing methodology into existing and future processes.
  • With minimal supervision, lead/coordinate the implementation of projects between multiple organizations.
  • Apply lean and six sigma principles to manufacturing methods as a team member or leader.
  • Support all safety, sustainability and ergonomic initiatives.
  • Aid in development and maintenance of business continuity plan.
  • Ensure quality policies are being practiced; make recommendations and implement procedures to improve quality.
  • Initiate and maintain accurate daily/weekly activity status based on work output, as required.

Level III Essential Functions and Responsibilities:

  • Perform technical studies of complex nature, conduct analysis of operations (existing or proposed). Prepare a report of recommendations for equipment needed and correct methods of manufacturing (including sequence of operations and detailed methodology of complex assemblies and installations as well as detail components).
  • Author detailed work instructions that optimize manufacturing process efficiency and opportunity for zero defects with functional operations engineer.
  • Author DRDI/DMT rework instructions to support effective corrective actions.
  • Author MBOM in SAP/Solumina/Corridor (as applicable) to ensure all parts defined by engineering are installed during the assembly/installation process.
  • Generate make-or-buy proposals and recommend corrective actions for areas of responsibility; evaluate vendors, attend vendor negotiations, and assist in resolving problems.
  • Conduct research, investigation, and analysis in connection with assigned planning or other assigned projects, to ensure conformance to requirements.
  • Investigate and assist in preparing justification for equipment and facility requests.
  • Perform productibility studies from engineering drawings.
  • Apply statistical methods to estimate future manufacturing requirements; make necessary computer inputs and generate data or reports as needed.
  • Prioritize workloads based on schedules and needs; provide completion dates and work estimates based on available resources, past performance schedules, etc.
  • Keep current on state-of-the-art manufacturing developments.
  • Incorporate lean manufacturing methodology into existing and future processes.
  • Develop business case and present to management for process improvement approval.
  • Assume the duties of the ME group head in his/her absence.
  • Assign and review work of subordinate personnel.
  • Supervise and train subordinates in work methods and procedures in the efficient and effective use of company resources to resolve work-related or quality problems.
  • Lead/coordinate the implementation of projects between multiple orgs.
  • Apply lean and six sigma principles to manufacturing methods as a team member/leader.
  • Support all safety, sustainability and ergonomic initiatives.
  • Ensure quality policies are being practiced; make recommendations to improve quality.
  • Complete understanding and experience implementing lean manufacturing concepts: 5S, JIT, SMED, KanBan, VSM, One Piece Flow, etc.
  • Working knowledge of six-sigma or other data-driven decision-making experience highly desirable.
  • Lean six-sigma green belt, equivalent certification, or proven experience in a lean six-sigma environment highly desirable.

Other Requirements:

  • Proven knowledge and understanding of lean and/or six sigma principles and processes.
  • Knowledgeable of engineering configuration requirements, tooling, quality control, plant safety, blueprint reading, and shop math.
  • Ability to operate computerized equipment, such as personal computers, CADAM, CATIA, Solumina, SAP, Corridor.
  • Must be able to read, write, speak, and understand the English language.
  • Performs other duties as assigned.
Employment Type: FULL_TIME