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Materials Engineer Jobs in Wisconsin (NOW HIRING)

This hands-on engineering opportunity offers the chance to lead material innovation initiatives, support new product development, optimize manufacturing processes, and drive continuous improvement ...

Engineer, WasteLAB Materials

Kohler, WI · On-site

$83K - $127K/yr

Engineer, WasteLAB Materials Work Mode: Onsite Location:  Onsite - Kohler, WI Opportunity Join KOHLER WasteLAB ® as an Engineer and play a pivotal role in transforming manufacturing waste into ...

Engineer, WasteLAB Materials

Kohler, WI · On-site

$83K - $127K/yr

Engineer, WasteLAB Materials Work Mode: Onsite Location: Onsite - Kohler, WI Opportunity Join KOHLER WasteLAB ® as an Engineer and play a pivotal role in transforming manufacturing waste into ...

This hands-on engineering opportunity offers the chance to lead material innovation initiatives, support new product development, optimize manufacturing processes, and drive continuous improvement ...

This hands-on engineering opportunity offers the chance to lead material innovation initiatives, support new product development, optimize manufacturing processes, and drive continuous improvement ...

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Showing results 1-20

Materials Engineer information

See Wisconsin salary details

$38.4K

$101.7K

$159.5K

How much do materials engineer jobs pay per year?

As of Jul 27, 2026, the average yearly pay for materials engineer in Wisconsin is $101,680.00, according to ZipRecruiter salary data. Most workers in this role earn between $80,700.00 and $117,600.00 per year, depending on experience, location, and employer.

What Is the Job of a Materials Engineer?

As a materials engineer, you develop, test, and process new materials. You may create new types of plastic, metal, or ceramic materials for use in various applications. You work with nanomaterials and other unusual substances to create products that meet specific chemical, electrical, or mechanical requirements. Depending on the company's needs and the status of a material's development, you typically work in a laboratory or an office setting. Many potential materials are modeled on computers before attempting manufacture, so familiarity with design software is paramount.

What are materials engineers?

Materials engineers are professionals who study, develop, and test materials used to create a wide range of products, from computer chips to aircraft components. They work with metals, ceramics, plastics, composites, and other substances to improve their properties and performance. Their work often involves selecting appropriate materials for specific applications, researching new materials, and troubleshooting issues related to material failures. Materials engineers play a critical role in advancing technologies in industries such as manufacturing, aerospace, automotive, and biomedical engineering.

What engineers make $500,000 a year?

Highly experienced engineers in specialized fields such as petroleum engineering, aerospace engineering, and certain senior roles in software or data engineering can earn $500,000 or more annually, often through a combination of base salary, bonuses, and stock options. These positions typically require advanced skills, extensive experience, and often involve leadership or executive responsibilities.

What engineers make $200,000 a year?

Senior materials engineers, especially those with extensive experience, advanced certifications, or working in high-demand industries like aerospace or oil and gas, can earn $200,000 or more annually. Achieving this level often requires specialized skills, leadership roles, and working in regions with high cost of living or competitive markets.

What jobs can materials engineers do?

Materials engineers design, develop, and test materials such as metals, polymers, ceramics, and composites for use in products and structures. They work in industries like aerospace, automotive, manufacturing, and electronics, often using tools like computer-aided design (CAD) and conducting laboratory testing. Their roles may include research, quality control, and process improvement, requiring knowledge of material properties and engineering principles.

What is the work of a Materials Engineer?

A Materials Engineer researches, develops, and tests materials such as metals, polymers, ceramics, and composites to improve their performance and suitability for specific applications. They analyze material properties, design new materials, and work with manufacturing processes, often using tools like microscopes and testing equipment to ensure quality and safety.

What are some common challenges Materials Engineers face when working on cross-functional project teams?

Materials Engineers often collaborate with professionals from design, manufacturing, and quality assurance departments. One common challenge is effectively communicating complex materials science concepts to team members without a technical background. Additionally, balancing the ideal material properties with project cost, manufacturability, and timeline constraints requires strong problem-solving and negotiation skills. Overcoming these challenges typically involves active participation in team meetings, clear documentation, and a willingness to adapt solutions based on feedback from various stakeholders.

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

To thrive as a Materials Engineer, you need a solid understanding of materials science, engineering principles, and typically a bachelor's degree in materials, chemical, or mechanical engineering. Familiarity with analytical tools like scanning electron microscopes (SEM), X-ray diffraction (XRD), and computer-aided design (CAD) software is often required. Effective problem-solving, project management, and strong communication skills help you collaborate with multidisciplinary teams and present findings clearly. These abilities are essential for developing innovative materials and ensuring product reliability and performance in various industries.

What is the difference between Materials Engineer vs Mechanical Engineer?

AspectMaterials EngineerMechanical Engineer
Required CredentialsBachelor's in Materials Science, Metallurgy, or related field; often includes certifications like ASM certificationsBachelor's in Mechanical Engineering; PE license may be preferred
Work EnvironmentResearch labs, manufacturing plants, quality controlDesign offices, manufacturing facilities, testing labs
Industry UsageMaterials development, failure analysis, quality assuranceProduct design, systems, and machinery development

Materials Engineers focus on developing and testing materials used in products, while Mechanical Engineers design and analyze mechanical systems. Both roles often collaborate but serve different core functions within manufacturing and product development industries.

What are the most commonly searched types of Materials Engineer jobs in Wisconsin? The most popular types of Materials Engineer jobs in Wisconsin are:
What cities in Wisconsin are hiring for Materials Engineer jobs? Cities in Wisconsin with the most Materials Engineer job openings:
Infographic showing various Materials Engineer job openings in Wisconsin as of July 2026, with employment types broken down into 95% Full Time, and 5% Contract. Highlights an 100% In-person job distribution, with an average salary of $101,680 per year, or $48.9 per hour.
Materials Engineer - Polymers

Full-time

Medical, Dental, Life, Retirement

Posted 7 days ago


A. O. Smith rating

7.3

Company rating: 7.3 out of 10

Based on 29 frontline employees who took The Breakroom Quiz

303rd of 486 rated machine equipment manufacturers


Job description

Company / Location Information

A.O. Smith is a global leader applying innovative technologies and energy-efficient solutions to products manufactured and marketed worldwide. The company is one of the world’s leading manufacturers of residential and commercial water heating equipment and boilers, as well as a manufacturer of water treatment products for residential and light commercial applications. A. O. Smith is headquartered in Milwaukee, Wisconsin, with approximately 12,000 employees at operations in the United States, Canada, China, India, Mexico, the Netherlands, and the United Kingdom. 

Primary Function

The Materials Engineer – Polymers will be a part of our Lloyd R. Smith Corporate Technology Center (CTC) Team in Milwaukee, WI. The CTC contains a multidisciplinary team of engineers and technicians with the purpose of researching, developing, and supporting technologies on a 3-5 year time horizon. This role will serve as the organization’s Subject Matter Expert for plastics, rubbers, elastomers, and other polymeric materials used in water heating and water treatment equipment. The engineer will support global business units, manufacturing plants, quality teams, sourcing, suppliers, and product engineering by providing technical guidance on material selection, qualification, failure analysis, root cause investigation, product performance issues, and application suitability. The role will also develop analytical approaches and test methods to assess material performance and will conduct forward-looking research into new materials, additives, compounds, processing methods, and manufacturing technologies.

Responsibilities
  • Serve as the organization’s Subject Matter Expert for polymeric materials, including plastics and rubbers, and educate the organization on material behavior, degradation mechanisms, chemical compatibility, processing effects, supplier variation, emerging material technologies, and best practices for material selection and use.
  • Lead materials-related failure analysis and root cause investigations for plastics, rubbers, elastomers, seals, gaskets, molded components, and other polymeric materials, including development of structured investigation plans, use of appropriate characterization methods, interpretation of evidence, documentation of findings, and recommendations for corrective actions.
  • Provide technical support to business units, manufacturing plants, quality teams, sourcing, suppliers, and product engineering teams on polymer-related product complaints, performance issues, material substitutions, and application suitability questions; develop analytical approaches and test methods needed to assess material performance and application suitability.
  • Support business unit needs by making recommendations for selecting, evaluating, and qualifying polymeric materials, including thermoplastics, thermosets, rubbers, elastomers, and composite materials, for water-contact, high-temperature, pressure-bearing, sealing, and chemically exposed applications.
  • Conduct forward-looking research into new polymeric materials, additives, compounds, processing methods, manufacturing technologies, and supplier capabilities that could improve product performance, reliability, cost, sustainability, manufacturability, or competitive differentiation.
  • Work with internal and external testing labs to verify material and product performance, develop new test methods as needed, and translate test data into well-communicated, practical recommendations for design, quality, manufacturing, and supplier decisions.
Qualifications
  • Master’s or PhD in Polymer Engineering, Materials Science, Chemical Engineering, Mechanical Engineering, or related field.
  • 7 years of relevant experience. Candidates with less experience may be considered based on depth of expertise.
  • Demonstrated expertise in polymer engineering, materials failure analysis, root cause investigation, and technical problem solving; experience with adjacent materials such as metals, enamels, foams, adhesives, or coatings is beneficial.
  • Significant experience with plastics, rubbers, elastomers, and polymer characterization methods, including mechanical testing, thermal analysis such as DSC, TGA, and DMA, rheology and melt flow evaluation, spectroscopy such as FTIR, microscopy including SEM/EDS, hardness testing, compression set, chemical compatibility and swelling evaluation, aging studies, and other methods used to assess polymer composition, degradation, processing effects, and application performance.
  • Experience evaluating polymer degradation, environmental stress cracking, chemical attack, swelling, embrittlement, creep, fatigue, wear, aging, compression set, sealing performance, and other application-specific failure modes.
  • Ability to document and communicate technical findings clearly to engineering, quality, manufacturing, sourcing, supplier, and leadership audiences through concise reports, presentations, and recommendations.
  • Great communication and organizational skills, including the ability to facilitate and foster good cross-functional, multi-disciplinary teamwork.
  • Strong time management and prioritization skills to balance multiple projects within a defined schedule and budget.
  • Domestic and International travel required.
Education
Bachelor's Degree in Engineering
We Offer

Competitive compensation package and comprehensive benefits plans which include medical and dental insurance, company-sponsored life insurance, retirement security savings plan, short- and long-term disability programs and tuition assistance.
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ADA Statement & EEO Statement

In developing this job description care was taken to include all competencies needed to successfully perform in this position. However, for Americans with Disabilities Act (ADA) purposes, the essential functions of the job may or may not have been described for purposes of ADA reasonable accommodation. All reasonable accommodation requests will be reviewed and evaluated on a case-by-case basis.

We consider all applicants for employment without regard to race, color, religion, gender, sexual orientation, national origin, age, disability, gender identity and expression, marital or military status. We also provide reasonable accommodations to qualified individuals with disabilities in accordance with the Americans with Disabilities Act and applicable state and local law.


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