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Aerospace Jobs in Raleigh, NC (NOW HIRING)

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Aerospace information

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$13

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$49

How much do aerospace jobs pay per hour?

As of Jun 16, 2026, the average hourly pay for aerospace in Raleigh, NC is $26.11, according to ZipRecruiter salary data. Most workers in this role earn between $17.98 and $29.90 per hour, depending on experience, location, and employer.

What are aerospace engineers?

Aerospace engineers are professionals who design, develop, test, and supervise the manufacturing of aircraft, spacecraft, satellites, and missiles. They work on the science and technology behind flight within the Earth's atmosphere (aeronautical engineering) and beyond (astronautical engineering). Their responsibilities often include improving fuel efficiency, safety, and environmental impact of flight vehicles. Aerospace engineers work for government agencies, defense contractors, and private companies involved in aviation and space exploration.

What jobs in the US pay 300,000 a year?

In the aerospace industry, senior roles such as aerospace engineering managers, program directors, and chief engineers can earn $300,000 or more annually, especially with extensive experience, advanced degrees, and leadership responsibilities. These positions often require specialized skills, certifications, and oversight of complex projects or teams.

What jobs can I get with aerospace?

Aerospace careers include roles such as aerospace engineer, aircraft technician, flight test engineer, and systems analyst. These jobs often require knowledge of aerodynamics, propulsion systems, and materials, along with relevant certifications or degrees in engineering or related fields.

What Is an Aerospace Job?

An aerospace job is a position that focuses on either aeronautical and astronautical technology. Aeronautical engineers develop aircrafts that stay in the earth’s atmosphere, such as helicopters, jets, and commercial airplanes. Astronautical engineers work on aircrafts that can break the atmosphere, such as missiles, rockets, satellites, and spacecraft. An aerospace job may fill any role vital to a company’s development of new flight technologies.

What are the different jobs in aerospace?

Aerospace jobs include aerospace engineers, who design and develop aircraft and spacecraft; avionics technicians, who maintain electronic systems; and manufacturing specialists, who assemble aircraft components. Other roles include quality assurance inspectors, project managers, and research scientists, often requiring knowledge of CAD software, materials science, and safety standards.

What is the difference between Aerospace vs Mechanical Engineer?

AspectAerospaceMechanical Engineer
Required CredentialsBachelor's in Aerospace Engineering or related field; often requires FAA certificationsBachelor's in Mechanical Engineering; licensure optional
Work EnvironmentAircraft, spacecraft, defense systems; labs and manufacturing facilitiesFactories, design firms, R&D labs; diverse industries
Industry UsagePrimarily aerospace, defense, space explorationAutomotive, energy, manufacturing, robotics

While both aerospace and mechanical engineers design and develop complex systems, aerospace engineers specialize in aircraft and spacecraft, often requiring specific certifications and working in aerospace-focused environments. Mechanical engineers have a broader scope across various industries, focusing on mechanical systems and machinery.

What job makes $10,000 a month without a degree?

In the aerospace industry, roles such as experienced aircraft technicians, project managers, or sales directors can earn $10,000 or more monthly without a traditional degree, often relying on extensive experience, certifications, or specialized skills. High-paying positions typically require technical training, industry certifications, or proven expertise rather than formal college degrees.

What are the key skills and qualifications needed to thrive in an aerospace engineering role, and why are they important?

To thrive in aerospace engineering, you need a solid foundation in physics, mathematics, and engineering principles, typically supported by a bachelor’s or advanced degree in aerospace engineering or a related field. Familiarity with CAD software, simulation tools like MATLAB or ANSYS, and relevant industry certifications such as EIT or PE are highly valuable. Strong problem-solving, teamwork, and communication skills help you collaborate effectively and tackle complex design challenges. These skills are crucial for ensuring innovation, safety, and reliability in the development of aerospace systems and technologies.

What are some common challenges faced when working on multidisciplinary teams in the aerospace industry?

In the aerospace industry, professionals often collaborate with multidisciplinary teams that include engineers, project managers, technicians, and specialists from various fields. One common challenge is effective communication, as each discipline may use different technical language or have distinct priorities. Coordinating complex projects requires strong organizational skills and adaptability to shifting requirements or deadlines. Successfully navigating these challenges can lead to more innovative solutions and provides valuable experience for career advancement.
What are the most commonly searched types of Aerospace jobs in Raleigh, NC? The most popular types of Aerospace jobs in Raleigh, NC are:
What are popular job titles related to Aerospace jobs in Raleigh, NC? For Aerospace jobs in Raleigh, NC, the most frequently searched job titles are:
What cities near Raleigh, NC are hiring for Aerospace jobs? Cities near Raleigh, NC with the most Aerospace job openings:
Aerospace Structural Engineer

Aerospace Structural Engineer

Collier Aerospace

Raleigh, NC • On-site

Full-time

Medical, Life, Retirement, PTO

Posted 19 days ago


Job description

Our Why
At Collier Aerospace, our mission is to help our customers reach their unique structural analysis and design goals with more accurate results in less time. We are a team of passionate employees who want to contribute to each customer's goal in the best way possible across space launch, reusable rocket, commercial airframe, business jet, eVTOL, bike frame, and speed boat applications. We accomplish this with our leading software, HyperX, through software development and engineering support. As you join our team, you join our company mission and become an integral partner in increasing efficiency and innovation throughout the world.
Our Culture
We foster a highly supportive and collaborative environment where our meetings are a mix of brainstorming, analysis, and humor. When you're stuck, our employees are always eager to lend a helping hand. We offer a relaxed and casual dress code to promote a comfortable atmosphere. Our passion and drive fuel us as we strive to make a lasting impact on our company, customers, and industry.
Requirements
  • Candidates should have comprehensive experience in performing aerospace structural stress analysis and design. The candidates should have many of the following capabilities:
  • Bachelor's Required; Master's Preferred
  • (0-2) years' experience - entry level
  • Following aerospace industry practices, capability to perform structural analysis and design with composite materials. Additionally experience with metals a plus.
  • Understanding of overall load paths and an intuitive feel for the efficient use of structural concepts and materials. Experience performing classical hand stress analysis and finite element analysis (FEA) with either Nastran/Abaqus/Optistruct; FEM meshers Hyperworks/FEMAP/Ansa; and a plus to have CAD competence with Catia/3DX/NX.
  • Proficiency in applying appropriate failure theories, preparing structural analysis reports, and identifying critical load conditions and margins-of-safety.
  • Knowledge of panel buckling, local buckling, crippling, and material strength as well as classical in-plane laminate stress analysis. Experience with both ply based (max strain, Tsai-Wu) and laminate based (AML, polynomial) strength prediction approaches and associated material allowables, including damage.
  • Experience with analysis of composite fasteners for bearing and bypass, and bonded joints for out-of-plane interlaminar shear and peel stress analysis, or residual strength energy solutions.
  • Experience sizing structures for minimum weight and practical design experience of composite laminates, including ply drop ratios and layup patterns on complicated surfaces, such as padups around cutouts and bolted joints.
  • Strong documentation, communication, and presentation skills.
  • US Citizen.

Roles and Responsibilities
  • Ability to learn and use HyperX for preliminary and detail analysis/design sizing optimization of full airframe and space vehicles. Candidates must be adept at using engineering software tools, learning new software and analysis methods, and working in a Windows OS environment.
  • Use HyperX and other software tools to analyze and design customer airframes and space launch vehicles.
  • Perform trade studies for weight savings and part producibility. Perform both preliminary and detail design and analysis. Document design and analyses results.
  • Candidates will be reporting directly to NASA and industry OEM customers and must be able to verify and describe the application of external loadings and their resolution into critical internal mechanical and thermal load paths, and to the resulting optimum design and their margins of safety.
  • Ensure project issues are resolved in a timely fashion with your related experience and competence and an ability to create workaround procedures when needed. Escalate urgent problems requiring more in-depth knowledge to appropriate engineering leads.
  • Participate in overall HyperX software testing and provide your suggestions to development and modification of the software.

Benefits
  • Competitive salary and benefits (PTO, 401(k), health insurance, HSA/HRA eligibility, life and disability insurances)
  • Exposure and involvement with many companies and their current aircraft designs (commercial transports/UAM eVTOLS/military planes) and space launch designs (commercial rockets/space tourism vehicles/demonstrator X planes)
  • Occasional travel to customer facilities
  • Small company, large impact
  • Passionate coworkers
  • Company events and conferences