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Materials Engineering Jobs in Florida (NOW HIRING)

Materials Engineering Co-Op helps deliver a wide range of raw material characterization and qualification projects by performing a variety of engineering and research assignments. Additionally, the ...

Develop reverse engineering materials test plans to be sent to outside labs. * Provide support in preparation of documentation required to send first article and production parts to outside Materials ...

Develop reverse engineering materials test plans to be sent to outside labs. * Provide support in preparation of documentation required to send first article and production parts to outside Materials ...

$15.50 - $20.25/hr

Materials Engineering CO-OP helps deliver a wide range of raw material characterization and qualification projects by performing a variety of engineering and research assignments. Additionally, the ...

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Materials Engineering information

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$10

$19

$33

How much do materials engineering jobs pay per hour?

As of Sep 11, 2026, the average hourly pay for materials engineering in Florida is $19.96, according to ZipRecruiter salary data. Most workers in this role earn between $14.57 and $24.62 per hour, depending on experience, location, and employer.

What is materials engineering?

Materials engineering is a branch of engineering focused on the discovery, design, and development of new materials, as well as improving existing materials for various applications. Materials engineers study the properties and structures of metals, ceramics, polymers, composites, and other substances to understand how they can be used or enhanced. Their work is essential in industries such as aerospace, automotive, electronics, construction, and healthcare, where selecting the right material can impact performance, safety, and cost. Materials engineers often collaborate with other engineers and scientists to solve complex problems and create innovative products.

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

Materials engineers often encounter challenges such as balancing cost, performance, and manufacturability when selecting or designing materials for new products. They must work closely with design, manufacturing, and quality teams to ensure that chosen materials meet all technical and regulatory requirements without exceeding budget constraints. Additionally, materials engineers need to stay updated on emerging technologies and standards, which can make decision-making more complex but also rewarding as it drives innovation and professional growth.

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 strong background in materials science, chemistry, and physics, usually supported by a bachelor's or master's degree in materials engineering or a related field. Familiarity with computer-aided design (CAD) tools, materials characterization instruments, and industry-specific certifications (such as EIT or PE) is often required. Strong analytical thinking, problem-solving abilities, and effective communication skills help you excel when collaborating with multidisciplinary teams and presenting findings. These skills are essential for developing innovative materials, ensuring product quality, and supporting the advancement of technology in various industries.

What is the difference between Materials Engineering vs Mechanical Engineering?

AspectMaterials EngineeringMechanical Engineering
Required CredentialsBachelor's in Materials Science or Engineering, possibly a master'sBachelor's in Mechanical Engineering, possibly a master's
Work EnvironmentResearch labs, manufacturing plants, R&D centersDesign offices, manufacturing facilities, testing labs
Industry UsageMaterials development, failure analysis, quality controlProduct design, thermodynamics, mechanical systems

Materials Engineering focuses on developing and testing materials used in various industries, while Mechanical Engineering emphasizes designing and analyzing mechanical systems. Both fields share similar credentials and often work in overlapping environments, but their core focuses differ significantly.

Is there a demand for materials engineers?

Materials engineering is a growing field with steady demand in industries such as aerospace, automotive, electronics, and energy. Materials engineers are needed to develop new materials, improve manufacturing processes, and ensure product quality, often requiring knowledge of CAD software and materials testing techniques. Job prospects are strong for those with specialized skills and relevant certifications.

What does a materials engineer do?

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, use tools like microscopes and testing equipment, and often work in laboratories or manufacturing environments to innovate and solve material-related problems.

What jobs can I get with a materials engineering degree?

Materials engineering graduates can pursue roles such as materials engineer, quality control engineer, process engineer, or research scientist. These positions often involve working with metals, polymers, ceramics, or composites in manufacturing, research labs, or development environments, and may require knowledge of testing methods and materials properties.

What cities in Florida are hiring for Materials Engineering jobs?

Cities in Florida with the most Materials Engineering job openings:

Infographic showing various Materials Engineering job openings in Florida as of August 2026, with employment types broken down into 83% Full Time, 13% 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 $41,525 per year, or $20 per hour.

Materials Engineering Manager

Jupiter, FL • On-site

Kratos Defense
National Security and International Affairs • 1 - 5K employees

Full-time

Posted 28 days ago


Kratos Defense & Security Solutions rating

7.8

Company rating: 7.8 out of 10

Based on 10 frontline employees who took The Breakroom Quiz


Job description

Are you ready to embark on an exciting career with a leading turbomachinery and jet engine aerospace engineering company? At Florida Turbine Technologies (FTT), we're not just about cutting-edge products; we're about shaping the future of aerospace innovation. If you're looking for a workplace that thrives on creativity, collaboration, and expertise, you've found your home!

Located in the stunning setting of Jupiter, Florida, FTT is a growing world-class turbomachinery company with a vibrant team of over 300 engineers and technicians, bringing together more than 4,000 years of combined experience in aerospace (military and commercial), industrial, and space turbomachinery. For 25 years, we've been at the forefront of next-generation technologies, specializing in rocket turbopumps, aircraft engines, and high-performance jet engines for cruise missiles and unmanned aerial systems (UAS).

At FTT, we offer a comprehensive suite of services including design, aerodynamics, performance, heat transfer, rotor dynamics and bearing design, structural analysis, manufacturing, testing, and field support. Our Turbine Technologies division also provides innovative engineering services, testing, and material solutions for military and commercial engines, space propulsion, and industrial power applications.

With additional offices in Derby, UK, and Wildau, Germany, we proudly extend our reputation for engineering excellence to the European marketplace, enhancing our access to cutting-edge manufacturing capabilities and a robust supply chain.

Our parent company, Kratos Defense and Security Solutions, empowers us to leverage cross-industry capabilities, delivering innovative and cost-effective solutions that benefit our customers.

This role is restricted to U.S. persons (i.e., U.S. citizens, permanent residents, and other protected individuals under the Immigration and Naturalization Act, 8 U.S.C. 1324b(a)(3)) due to access to export-controlled technology. FTT will require proof of status prior to employment.

General Job Summary:

The Turbomachinery Materials Discipline Lead will have the training and experience to provide support of company projects for aerospace turbomachinery alloys and coatings characterization, manufacturing, repair and testing tasks. The candidate must be able to provide technical input as a lead member involved with design, manufacture, assembly, and test of aerospace turbomachinery components.

Essential Job Functions:

  • Develop quality specifications, procedures, standard methods, training material, and related documentation for manufacturing operations and processing of aerospace turbomachinery components. Develop standard work, procedures, and integrate aerospace industry-standard best practices.
  • Evaluate material non-conformances and effect on properties. Provide recommendations on corrective actions.
  • Work with suppliers to define and document requirements, address technical concerns, and provide project status.
  • Lead significant projects critical to improve manufacturing process capability & quality performance (ISO 9001 and AS9100).
  • Work closely with internal programs and manufacturing suppliers to provide in-situ evaluations, sampling and testing services.
  • Perform significant interaction with design engineers, manufacturing engineers, quality assurance, systems designers, external suppliers and other program stakeholders.
  • Support program component technical analysis and lifing tasks through alloy and coating property specification and review.
  • Define material testing requirements and create test plans for characterizing materials per program requirements.
  • Willingness to perform hands-on tasks and maintain laboratory equipment and facilities as required.
  • Identify new equipment to expand laboratory capability and improve responsiveness.
  • Willingness to mentor less experienced engineers and laboratory personnel.
  • Other job duties as assigned.

Supervisory Responsibilities: Yes


  • Possess a deep understanding through experience of metallurgical properties of alloy and coating systems for turbomachinery and aerospace applications for new product development and repair operations.
  • Strong background in manufacturing operations and processing of aerospace turbomachinery components including, but not limited to casting, machining, joining (welding and brazing), heat treatment.
  • Possess deep understanding of raw material melt and processing with knowledge of the effects on properties and the thermal treatment response.
  • Experience in analytical/characterization of materials in a laboratory environment (including etching, macro/micro imaging, hardness testing and fracture surface analysis of metals).
  • Experience with the failure analysis of materials (structural metals, fasteners, etc.) and fracture mechanics.
  • Possess the discipline and follow-through to fully document problem statements, observations, conclusions, calculations and recommendations.
  • Ability to review and sign-off on component drawings for Materials Engineering discipline.
  • Solid background in laboratory materials analysis and testing per industry standard test methods.
  • Strong communication skills, both written and verbal, to be able to effectively summarize, document, and communicate results to program stakeholders. Ability to make technical presentations internally and to customers.

Education and Experience:

  • Minimum B.S./M.S. in Material Science and Engineering, Chemical Engineering, Mechanical Engineering or related field with a minimum 10-years of experience.

Work Environment/Physical Requirements:

  • Office and/or manufacturing environment.
  • Some light physical effort is required.
  • Will be required to perform occasional lifting of materials and packaging.
  • Ability to sit and stand for long periods of time.
  • Ability to perform repetitive motion (keyboarding, mouse, phones, rotating wrist, using tools/equipment).

Travel Requirements:

Yes, travel and off-site support to suppliers and manufacturing facilities per program support requirements.



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