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Superalloys Jobs (NOW HIRING)

Tundish Builder

Long Beach, CA · On-site

$25.76 - $27.82/hr

Our site Superalloys of Long beach, based in California specializes in the production of high-performance vacuum refined superalloys serving the aerospace, Industrial Gas Turbine, and automotive ...

Head of Materials & Process

Seattle, WA · On-site

$160K - $227K/yr

Partner daily with development and production teams to optimize LPBF processes, focusing heavily on nickel-based superalloys. * Drive Failure Analysis: Lead rapid root-cause investigations using ...

Experience in aerospace, turbomachinery, or power generation industries Background machining alloy steels and superalloys (e.g., Inconel, MP159) Familiarity with ISO/AS9100 quality standards and ...

PPM Helper (SUPERALLOYS) 8.2

Waco, TX · On-site

$13.25 - $16.75/hr

About Us We are a leading industrial mechanical, electrical, and civil construction services provider for the fossil and nuclear power, pulp and paper, chemical, mining, and general manufacturing ...

Our vacuum melted superalloys, machining, performance coatings and hot isostatic pressing for high performance parts enable the next generation of quieter, cleaner and more fuel-efficient aerospace ...

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Superalloys information

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How much do superalloys jobs pay per hour?

As of Jul 25, 2026, the average hourly pay for superalloys in the United States is $23.65, according to ZipRecruiter salary data. Most workers in this role earn between $19.71 and $26.92 per hour, depending on experience, location, and employer.

What are superalloys?

Superalloys are a group of high-performance alloys designed to withstand extreme environments, such as high temperatures, stress, and corrosion. They are primarily composed of nickel, cobalt, or iron and are commonly used in applications like jet engines, gas turbines, and power plants. Superalloys maintain their mechanical strength and resist oxidation and creep, making them ideal for aerospace, energy, and industrial uses. Their complex composition and manufacturing processes contribute to their exceptional durability and performance.

What are some common challenges faced when working as a superalloys engineer in the manufacturing industry?

Superalloys engineers often encounter challenges related to maintaining material integrity under extreme temperatures and stress, as these alloys are used in demanding environments like aerospace and power generation. Ensuring precise composition and microstructure during production is critical, requiring attention to detail and adherence to strict quality standards. Additionally, engineers must frequently collaborate with cross-functional teams, including metallurgists, machinists, and quality assurance specialists, to troubleshoot issues and optimize processes. Staying updated on new advancements and manufacturing techniques is also essential for success in this dynamic field.

What are the key skills and qualifications needed to thrive as a Superalloys Metallurgist, and why are they important?

To thrive as a Superalloys Metallurgist, you need a solid background in materials science, metallurgy, and alloy processing, typically supported by a degree in materials engineering or a related field. Familiarity with technical tools such as scanning electron microscopes (SEM), X-ray diffraction (XRD), and metallurgical analysis software, as well as certifications like NACE or ASM, are often required. Strong problem-solving abilities, attention to detail, and effective communication skills help professionals excel in this specialized field. These skills and qualifications are crucial for ensuring the development and quality control of high-performance alloys used in demanding industries like aerospace and energy.

What is the difference between Superalloys vs Metallurgists?

AspectSuperalloysMetallurgists
Required CredentialsBachelor's or higher in materials science or metallurgyBachelor's or higher in metallurgy, materials science, or related fields
Work EnvironmentManufacturing plants, aerospace, power generationResearch labs, manufacturing facilities, consulting
Industry UsageUsed in high-temperature applications like turbines and enginesDesign, analysis, and development of metals and alloys
Common Search/ComparisonSuperalloys vs Metallurgists

Superalloys are specialized materials used in high-temperature environments, while metallurgists are professionals who develop, analyze, and improve metals and alloys, including superalloys. The two are interconnected, as metallurgists often work with superalloys to optimize their properties for industrial applications.

More about Superalloys jobs
Infographic showing various Superalloys job openings in the United States as of July 2026, with employment types broken down into 89% Full Time, 1% Part Time, 1% Contract, and 9% Nights. Highlights an 100% Physical job distribution, with an average salary of $49,183 per year, or $23.6 per hour.
Materials Engineer, Additive Manufacturing

Materials Engineer, Additive Manufacturing

SpaceX

Hawthorne, CA

$115K - $140K/yr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 17 days ago


SpaceX rating

8.8

Company rating: 8.8 out of 10

Based on 146 frontline employees who took The Breakroom Quiz

8th of 63 rated aerospace companies


Job description

MATERIALS ENGINEER, ADDITIVE MANUFACTURING

Our Propulsion Materials team is responsible for developing and qualifying laser powder bed fusion (LPBF) processes for nickel-based superalloys used in next-generation rocket engines. In this role you will own process development, parameter optimization, and material characterization for high-performance components on Raptor engines. You will work daily with design and manufacturing teams to push the limits of what is possible with LPBF nickel superalloys and other materials. If you have significant hands-on experience developing and qualifying LPBF processes for nickel-based superalloys and want to apply that expertise to the most demanding propulsion applications, this is the role for you. 

RESPONSIBILITIES: 

  • Provide materials and process support for propulsion system designs and manufacturing 
  • Increase reliability of internal designs and manufacturing processes through material and process development 
  • Develop physical, mechanical, and thermal properties for materials 
  • Improve our additive processes and materials through characterization and development, with a primary focus on laser powder bed fusion of nickel-based superalloys 
  • Work directly with our additive engineering and manufacturing teams daily 
  • Perform root cause investigations using fractography, metallography, and testing 
  • Provide technical reviews and advice for design efforts specifically related to drawings, specifications, and material requirements 
  • Collaborate with other engineers, subject matter experts, and technicians to solve complex material and processing challenges on our current and next-generation vehicles 

BASIC QUALIFICATIONS: 

  • Bachelor's degree in materials engineering or other engineering discipline with emphasis on materials 
  • 1+ years of professional work experience developing or qualifying laser powder bed fusion processes for nickel-based superalloys (e.g., Inconel 718, 625) 

PREFERRED SKILLS AND EXPERIENCE: 

  • Master's degree or PhD in materials engineering or related field 
  • 3+ years of professional work experience developing or qualifying laser powder bed fusion processes for nickel-based superalloys (e.g., Inconel 718, 625) 
  • Direct experience with LPBF parameter development, build optimization, and post-processing (HIP, heat treatment, surface finishing) 
  • Experience with metallurgical characterization and mechanical testing of additively manufactured nickel alloys 
  • Experience with one or more of the following manufacturing methods: additive (laser powder bed fusion), direct energy deposition (DED), casting, forging, brazing, heat treating 
  • Understanding of mechanical testing methods for metals including fracture and fatigue 
  • Familiarity with standard testing methods for materials and development of design allowables 
  • Experience with failure analysis and fractography including characterization techniques such as Scanning Electron Microscopy (SEM) and metallographic analysis 
  • Knowledge of aerospace metals including nickel-based alloys, stainless steels, aluminum alloys, and titanium alloys 
  • Hands-on experience in a manufacturing environment 
  • Understanding of non-destructive test methods for fracture control 
  • Proven track record developing design allowables or material specifications for LPBF nickel alloys 
  • Experience with fracture mechanics, fatigue, and creep testing of additively manufactured superalloys 
  • Hands-on experience with process monitoring, in-situ sensors, or advanced process control for LPBF 

ADDITIONAL REQUIREMENTS: 

  • Extended hours and weekend work may be required to support critical project and mission milestones 
  • Up to 10% domestic travel is expected 

COMPENSATION AND BENEFITS:
Pay Range:
Level 1: $100,000.00 - $117,500.00
Level 2: $115,000.00 - $140,000.00

Your actual level and base salary will be determined on a case-by-case basis and may vary based on the following considerations: job-related knowledge and skills, education, and experience.

Base salary is just one part of your total rewards package at SpaceX. You may also be eligible for long-term incentives, in the form of company stock or long-term cash awards, as well as potential discretionary bonuses and the ability to purchase additional stock at a discount through an Employee Stock Purchase Plan. You will also receive access to comprehensive medical, vision, and dental coverage, access to a 401(k) retirement plan, short and long-term disability insurance, life insurance, paid parental leave, and various other discounts and perks. You may also accrue 3 weeks of paid vacation and will be eligible for 10 or more paid holidays per year. Employees accrue paid sick leave pursuant to Company policy which satisfies or exceeds the accrual, carryover, and use requirements of the law.


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