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Materials Engineer Jobs in Seneca, SC (NOW HIRING)

Design Engineer

Easley, SC · On-site

$75K - $90K/yr

ABOUT ENGINEERED PRODUCTS At Engineered Products, our mission is to maximize space efficiency and redefine material handling and storage solutions. As a privately held company with over 70 years of ...

MP&L Planner

Lavonia, GA · On-site

$95K/yr

Must have experience with automotive materials analysis, ideally in a JIT environment Requirements of the Material Planner * Bachelor's degree in Business Administration, Engineering, or supply chain ...

Must have experience with automotive materials analysis, ideally in a JIT environment Requirements of the Material Planner * Bachelor's degree in Business Administration, Engineering, or supply chain ...

Industrial Engineer

Anderson, SC · On-site

$64K - $86K/yr

Manage network SKU slotting and fixed material handling utilization, as well as develop ... Requires a 4-year degree in engineering, operations, or related field; with 1-2 years of related ...

Fenner Dunlop, a Michelin Group company, designs and manufactures the widest range of bulk material ... Technical Support, Engineering & Continuous Improvement • Provide technical leadership for ...

The mechanical Engineer supports the design from start to finish and provides technical guidance to Supply chain and Material Management in global and local locations to support New Product ...

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Materials Engineer information

See Seneca, SC salary details

$36.2K

$95.9K

$150.4K

How much do materials engineer jobs pay per year?

As of Aug 21, 2026, the average yearly pay for materials engineer in Seneca, SC is $95,871.00, according to ZipRecruiter salary data. Most workers in this role earn between $76,100.00 and $110,900.00 per year, depending on experience, location, and employer.

What is a materials engineer?

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 does a materials engineer do?

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 the key skills and qualifications needed to thrive as a materials engineer?

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 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 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.

Is it hard to get a job as a materials engineer?

Getting a job as a materials engineer can be competitive, especially without relevant experience or advanced degrees. Strong skills in materials analysis, proficiency with engineering software, and professional certifications can improve employment prospects. Entry-level positions may be easier to obtain with internships or co-op experience.

What are popular job titles related to Materials Engineer jobs in Seneca, SC?

For Materials Engineer jobs in Seneca, SC, the most frequently searched job titles are:

What cities near Seneca, SC are hiring for Materials Engineer jobs?

Cities near Seneca, SC with the most Materials Engineer job openings:

Infographic showing various Materials Engineer job openings in Seneca, SC as of August 2026, with employment types broken down into 1% As Needed, 79% Full Time, 16% Part Time, 1% Temporary, 2% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $95,871 per year, or $46.1 per hour.

$75K - $90K/yr

Full-time

Re-posted 10 days ago


Job description

ABOUT ENGINEERED PRODUCTS
At Engineered Products, our mission is to maximize space efficiency and redefine material handling and storage solutions. As a privately held company with over 70 years of industry experience, we have earned the trust of businesses worldwide by delivering customized storage solutions tailored to their unique needs. Our innovative approach not only streamlines space utilization and reduces costs for our clients but also offers dynamic career opportunities across all departments. We foster a culture of innovation and empowerment, where every team member contributes to our success by embodying our core values: building strong internal relationships, approaching challenges with optimism and a proactive mindset, and embracing continuous learning and collaboration. If you're ready to join a dynamic team and make a meaningful impact in the material handling industry, apply now and become part of our exciting journey!
POSITION SUMMARY
Position: Design Engineer
Reports to: Design Manager
Location: Greenville, SC
AREAS OF RESPONSIBILITIES
The Design Engineer is responsible for developing accurate, manufacturable racking system designs that meet customer requirements while optimizing cost, safety, and production efficiency. This role owns the creation and release of 2D drawings, 3D models, and bills of material, ensuring alignment with engineering standards and shop capabilities. The Design Engineer works cross-functionally with project management, manufacturing, and installation teams to deliver high-quality, custom storage solutions.
  • Lead Design Reviews with Customers to ensure all requirements are captured
  • Create and release complete drawing packages and BOMs for production
  • Ensure all designs are aligned with manufacturing capabilities, tooling, and standard parts
  • Manage revision control and engineering changes throughout project lifecycle
  • Collaborate directly with production to validate design feasibility
  • Participate in shop floor reviews, first-article builds, and troubleshooting
  • Incorporate feedback from fabrication and installation teams into future designs
SKILLS AND ABILITIES
  • Proficiency in Autodesk 2D and Inventor, with experience creating detailed drawings, models, and renderings.
  • Strong understanding of structural design principles, materials, and manufacturing processes.
  • Ability to analyze project requirements and provide innovative, cost-effective design solutions.
  • Strong problem-solving skills with attention to detail and accuracy.
  • Effective communication and collaboration skills for working cross-functionally with project management, engineering, and manufacturing teams.
  • Time management and organizational skills to manage multiple projects with competing deadlines.
  • Ability to adapt designs based on feedback, changes in scope, or evolving project needs.
  • Working knowledge of RMI / ANSI MH16.1 standards (or willingness to learn quickly)
  • Experience with structural steel design, load calculations, and connection detailing
  • Understanding of fabrication processes (laser, punching, forming, welding, powder coating)
  • Ability to design for DFM/DFA (Design for Manufacturability and Assembly)
EDUCATION AND/OR TRAINING
  • Bachelor’s degree in Mechanical Engineering
  • 2–4 years of relevant design engineering experience, preferably in structural racking, steel fabrication, or related industry.
  • Training and hands-on experience with Autodesk 2D and Inventor required.
  • Familiarity with rendering software and design documentation best practices preferred
KEY PERFORMANCE OBJECTIVES
  • Produce accurate, production-ready drawings with minimal revision cycles ( lt;X% rework)
  • Meet design-to-release timelines aligned with project schedules
  • Optimize designs for cost (material utilization, manufacturability, labor efficiency)
  • Maintain BOM and drawing accuracy in ERP system
  • Reduce engineering change orders caused by design errors
  • Support quote accuracy through early design input
WORK ENVIRONMENT
This role is based in an office setting, with the majority of work conducted at a desk/computer using design software. Regular collaboration on the production floor is required to review designs and ensure alignment with manufacturing processes. Travel ( lt;10%) may be required for customer meetings or project site visits.
PHYSICAL DEMANDS
This position predominantly involves sitting for extended periods while working at a computer. Some tasks may require walking or standing on the production floor to review equipment or project builds. Good manual dexterity and coordination are required for design work. The role does not involve frequent physical activity or heavy lifting.