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Metallurgy Engineering Jobs in Tennessee (NOW HIRING)

Support involves using Metallurgy/Material Science experience and classroom knowledge to develop ... systems and engineering principles, ABS and reliability tools to drive problems to root cause.

NSMEM Metallurgist

Memphis, TN · On-site

$91K - $142K/yr

Minimum Qualifications: * BS degree in Metallurgical Engineering, Materials Science & Engineering, or equivalent engineering field. * Minimum of 10 years steel making or manufacturing experience in a ...

Support involves using Metallurgy/Material Science experience and classroom knowledge to develop ... systems and engineering principles, ABS and reliability tools to drive problems to root cause.

Support involves using Metallurgy/Material Science experience and classroom knowledge to develop ... systems and engineering principles, ABS and reliability tools to drive problems to root cause.

NSMEM Metallurgist

Memphis, TN · On-site

$91K - $142K/yr

Minimum Qualifications: * BS degree in Metallurgical Engineering, Materials Science & Engineering, or equivalent engineering field. * Minimum of 10 years steel making or manufacturing experience in a ...

Support involves using Metallurgy/Material Science experience and classroom knowledge to develop ... systems and engineering principles, ABS and reliability tools to drive problems to root cause.

Support involves using Metallurgy/Material Science experience and classroom knowledge to develop ... systems and engineering principles, ABS and reliability tools to drive problems to root cause.

Must have a bachelor's degree in Material Science, Metallurgy, or a related field from an ... systems and engineering principles, ABS and reliability tools to drive problems to root cause.

Support involves using Metallurgy/Material Science experience and classroom knowledge to develop ... systems and engineering principles, ABS and reliability tools to drive problems to root cause.

Qualifications/Experience Bachelor's degree or above in Quality/Industrial or Metallurgical, Materials, Chemical, Mechanical Engineering, or a related technical discipline • 10+ years of ...

Quality Manager

Clarksville, TN · On-site

$110 - $140/hr

Partner with Operations, Metallurgy, Maintenance, Engineering, Laboratory, Supply Chain, EHS, Commercial, and Project teams to resolve quality issues. * Build and lead the quality organization ...

... Metallurgical Engineering, or a related discipline and hands-on knowledge of XRD and materials testing. This opportunity is well suited for an early-career engineer who enjoys laboratory work ...

Bachelor's degree in Metallurgical Engineering, Materials Science, Ceramics, or Chemical Engineering from an accredited institution. * 5 years of related experience in a Metallurgical or Materials ...

Bachelor's degree in Metallurgical Engineering, Materials Science, Ceramics, or Chemical Engineering from an accredited institution. * 5 years of related experience in a Metallurgical or Materials ...

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Showing results 1-20

Metallurgy Engineering information

See Tennessee salary details

$30K

$85.3K

$132.1K

How much do metallurgy engineering jobs pay per year?

As of Sep 7, 2026, the average yearly pay for metallurgy engineering in Tennessee is $85,343.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,300.00 and $98,500.00 per year, depending on experience, location, and employer.

What is metallurgy engineering?

Metallurgy engineering is a branch of engineering that focuses on the study, design, and processing of metals and their alloys. Metallurgy engineers work to understand the properties of metals, how they can be extracted from ores, and how they can be manipulated to create materials with specific qualities for various applications. These professionals are crucial in industries such as automotive, aerospace, construction, and manufacturing, where the performance and reliability of metal components are essential. Their work includes research, testing, and developing new metal products or improving existing materials for better efficiency and sustainability.

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

To thrive as a Metallurgy Engineer, you need a solid background in materials science, chemistry, and engineering principles, typically supported by a bachelor's or master's degree in metallurgical or materials engineering. Familiarity with metallurgical analysis tools, such as electron microscopes, spectrometers, and industry-standard software like CAD, is often required. Strong problem-solving skills, effective communication, and attention to detail help you collaborate with cross-functional teams and troubleshoot material issues. These skills ensure the development, testing, and improvement of metals and alloys that meet safety, performance, and cost requirements in various industries.

What are some common challenges metallurgy engineers face when working on new materials development projects?

Metallurgy engineers often encounter challenges such as balancing material properties (like strength, ductility, and corrosion resistance) while meeting cost and manufacturing constraints. Developing new alloys or improving existing ones requires extensive testing, iterative design, and close collaboration with production and quality teams. Staying updated with the latest advancements in metallurgical processes and equipment is also essential, as is troubleshooting unexpected issues during scale-up from laboratory to industrial production. These challenges make the role dynamic and rewarding for those interested in problem-solving and innovation.

What is the difference between Metallurgy Engineering vs Materials Science Engineering?

AspectMetallurgy EngineeringMaterials Science Engineering
FocusStudy of metals and alloys, extraction, processing, and properties of metallic materialsStudy of all materials, including polymers, ceramics, and composites, along with metals
Work EnvironmentManufacturing plants, metal production facilities, research labsResearch labs, manufacturing, academia, diverse industries
CredentialsBachelor's in Metallurgy, Materials Science, or related fields; certifications varyBachelor's in Materials Science, Engineering, or related fields; certifications vary

Metallurgy Engineering primarily focuses on metals and their processing, while Materials Science Engineering covers a broader range of materials. Both fields share similar credentials and work environments, but metallurgy is more specialized in metallic materials, making it ideal for careers in metal production and processing.

Are metallurgy engineers in demand?

Metallurgy engineers are in steady demand in industries such as manufacturing, aerospace, and energy, where expertise in materials science and corrosion resistance is valued. Employment opportunities often require knowledge of laboratory testing, computer-aided design, and relevant certifications. Job growth is expected to be stable as these industries continue to rely on advanced materials and processes.

What does metallurgical engineering do?

Metallurgical engineering involves studying and applying the science of metals and alloys to develop, process, and improve materials for various industrial applications. Metallurgical engineers analyze properties, conduct testing, and oversee manufacturing processes using tools like microscopy and spectrometry to ensure quality and performance.

What jobs can a metallurgy engineer do?

A metallurgy engineer can work in roles such as materials engineer, process engineer, quality control engineer, or research and development engineer. They typically work in industries like aerospace, automotive, manufacturing, or energy, utilizing skills in materials testing, metallurgical analysis, and process optimization.

What are popular job titles related to Metallurgy Engineering jobs in Tennessee?

For Metallurgy Engineering jobs in Tennessee, the most frequently searched job titles are:

What job categories do people searching Metallurgy Engineering jobs in Tennessee look for?

The top searched job categories for Metallurgy Engineering jobs in Tennessee are:

Infographic showing various Metallurgy Engineering job openings in Tennessee as of August 2026, with employment types broken down into 90% Full Time, 6% Part Time, 3% Contract, and 1% Nights. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $85,343 per year, or $41 per hour.

Principal Casting and Metallurgical Engineer

LeoForce

Maryville, TN • On-site

$100 - $140/hr

Other

Posted 7 days ago


Job description

Principal Casting & Metallurgical Engineer

Location: Maryville,TN, US

Job DescriptionExperience

Senior Level

Salary

$100,000 - $140,000 per year

Job Details

What You'll Do:

  • Serve as the technical expert for casting, melting, and molten metal processes across multiple manufacturing locations.
  • Lead complex troubleshooting efforts involving casting quality, metal recovery, process variability, and operational performance.
  • Develop and implement best practices to improve quality, productivity, recovery, and cost efficiency.
  • Partner with plant leadership, engineering, operations, quality, and R&D teams to solve critical manufacturing challenges.
  • Lead cross-functional technology and process improvement initiatives.
  • Analyze operational and production data to identify opportunities for continuous improvement.
  • Support new technology evaluations and implementation of emerging casting and metallurgical processes.
  • Train and mentor engineers, metallurgists, and operations personnel.
  • Standardize technical practices and drive knowledge sharing across facilities.
  • Support capacity improvement initiatives through process optimization and workflow enhancements.
  • Promote a culture of operational excellence, safety, and continuous improvement.
QualificationsRequired
  • Bachelor's degree in Metallurgical Engineering, Materials Science, Materials Engineering, Chemical Engineering, or a related technical discipline.
  • 5+ years of experience supporting casting, metallurgy, molten metal processing, or manufacturing operations.
  • Experience with casting process optimization, defect reduction, root cause analysis, and process improvement.
  • Strong troubleshooting and problem-solving skills in a manufacturing environment.
  • Ability to collaborate effectively with cross-functional teams and drive technical initiatives.
Preferred
  • Master's degree or PhD in Metallurgical Engineering, Materials Science, Materials Engineering, or a related field.
  • 7+ years of experience in casting, molten metal processing, melting, recycling, or process metallurgy.
  • Experience with ingot, slab, billet, foundry, or other large-scale casting operations.
  • Background in metallurgical characterization, process modeling, simulation, or manufacturing technology development.
  • Experience supporting multiple facilities or large-scale manufacturing organizations.
  • Six Sigma, Lean Manufacturing, or continuous improvement experience.
A bit about us

A leading North American manufacturer is seeking a Principal Casting & Metallurgical Engineer to serve as a technical leader supporting multiple production facilities. This individual will act as the organization's subject matter expert for molten metal processing, casting technology, metallurgical troubleshooting, process development, and operational excellence initiatives.

This role offers the opportunity to drive large-scale improvements across multiple manufacturing sites, lead complex technical investigations, support research and development activities, and mentor engineering teams throughout the organization.

Why join us?
  • High-impact corporate technical leadership role.
  • Opportunity to influence operations across multiple manufacturing locations.
  • Exposure to advanced manufacturing and process technologies.
  • Significant visibility with engineering, operations, and executive leadership teams.
  • Strong career growth potential within a technically driven organization.
  • Opportunity to shape best practices, mentor engineers, and leave a lasting technical legacy.

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