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Material Science Engineering Jobs in Texas (NOW HIRING)

Ph.D. in Civil Engineering or Material Science (with a focus on cement-based materials), or Master's with 3+ years of industry experience, or BS in Civil Engineering /Material Science Engineering ...

Ph.D. in Civil Engineering or Material Science (with a focus on cement-based materials), or Master's with 3+ years of industry experience, or BS in Civil Engineering /Material Science Engineering ...

... Science, Planetary Sciences, Spacecraft Systems Engineering, or a related technical subject area. * Experience with material compatibility, tribology, contamination control, or coupon testing for ...

Materials Scientist or Engineer

Houston, TX · On-site

$110K - $150K/yr

Interlune is seeking early-career professionals with backgrounds in either engineering or science who can support material compatibility and durability assessments for lunar surface systems operating ...

You will collaborate cross-functionally with teams in Material Science, Engineering, Manufacturing, and Program Management to build and maintain a resilient, multi-regional supply chain. Your efforts ...

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Material Science Engineering information

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$12

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How much do material science engineering jobs pay per hour?

As of Jun 22, 2026, the average hourly pay for material science engineering in Texas is $24.89, according to ZipRecruiter salary data. Most workers in this role earn between $18.12 and $30.67 per hour, depending on experience, location, and employer.

Is material science engineering a good career?

Material science engineering is a viable career that involves developing and testing materials used in industries such as aerospace, automotive, and electronics. It requires strong knowledge of chemistry, physics, and engineering principles, often involving laboratory work and technical problem-solving. Job prospects are generally good with opportunities for advancement and specialization.

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

To thrive as a Material Science Engineer, you need a solid background in materials science, chemistry, physics, and engineering principles, typically supported by at least a bachelor's degree in material science or a related field. Familiarity with analytical tools like scanning electron microscopes (SEM), X-ray diffraction (XRD), and materials modeling software is commonly required. Strong problem-solving skills, attention to detail, and effective teamwork are crucial soft skills for success in this role. These skills ensure the development, testing, and improvement of materials that meet industry performance and safety standards.

What engineers make $500,000?

Senior engineers in specialized fields such as petroleum, aerospace, or software engineering can earn $500,000 or more annually, often through a combination of base salary, bonuses, and stock options. Achieving this level typically requires extensive experience, advanced skills, and working in high-demand industries or leadership roles.

What are some common challenges material science engineers face when working on interdisciplinary projects?

Material science engineers often collaborate with professionals from mechanical, chemical, and electrical engineering, which can present challenges in aligning project goals and communication styles. Navigating differences in technical language and priorities requires adaptability and strong teamwork skills. Additionally, integrating new materials into existing manufacturing processes may involve troubleshooting unforeseen issues, making flexibility and creative problem-solving essential. These challenges ultimately foster valuable cross-disciplinary experience and can lead to innovative solutions.

What is material science engineering?

Material science engineering is a multidisciplinary field that focuses on the discovery, design, and development of new materials and the improvement of existing ones. Engineers in this field study the structure, properties, and performance of materials such as metals, ceramics, polymers, and composites. Their work is essential for advancing technology in industries like aerospace, electronics, automotive, and healthcare. Material science engineers play a critical role in creating materials with enhanced strength, durability, or other specialized properties to meet the needs of modern applications.

What can I do with a material science engineering degree?

A material science engineering degree prepares individuals for careers in research and development, manufacturing, quality control, and product design across industries such as aerospace, automotive, electronics, and energy. Graduates often work as materials engineers, research scientists, or quality assurance specialists, utilizing skills in microscopy, testing, and computer-aided design. Certifications and knowledge of industry standards can enhance job prospects in this field.

What engineers make $300,000 a year?

Senior engineers in specialized fields such as petroleum, aerospace, or software engineering can earn $300,000 or more annually, especially with extensive experience, advanced skills, and leadership roles. These positions often require advanced degrees, certifications, and working in high-demand industries or executive-level positions.

What is the difference between Material Science Engineering vs Metallurgical Engineering?

AspectMaterial Science EngineeringMetallurgical Engineering
CredentialsBachelor's or Master's in Materials Science or EngineeringBachelor's or Master's in Metallurgical Engineering
Work EnvironmentResearch labs, manufacturing, product developmentMining, metal production, refining facilities
Industry UsageElectronics, aerospace, automotive, consumer productsMining, metal extraction, alloy development
Common Search/ComparisonMaterial Science EngineeringMetallurgical Engineering

Material Science Engineering and Metallurgical Engineering share overlapping skills in metals and materials but differ in focus. Material Science emphasizes a broader range of materials, including polymers and ceramics, and their applications across various industries. Metallurgical Engineering concentrates specifically on metals, extraction, and refining processes. Both fields are vital in manufacturing and industry, but their core areas of expertise and work environments differ.

What are the most commonly searched types of Material Science Engineering jobs in Texas? The most popular types of Material Science Engineering jobs in Texas are:
What cities in Texas are hiring for Material Science Engineering jobs? Cities in Texas with the most Material Science Engineering job openings:
Materials Engineer II

Materials Engineer II

ICON

Austin, TX

Other

Posted 29 days ago


Job description

ICON is looking for a Materials Engineer to join the Materials Science team. The Materials Engineer will be responsible for developing and optimizing cement-based 3D-printable materials. Additionally, in this role, you will assist with developing, designing, and executing material performance evaluation and improvement programs. You will support cross-functional initiatives and serve as the point of contact for various ICON teams. This role will report to the Director of Concrete Materials, and it is based out of our Austin, TX campus.
RESPONSIBILITIES
  • Assist in the development of new formulations of cement-based 3D-printable materials and optimize the performance of existing formulations and mix designs.
  • Execute testing programs focused on the performance evaluation of 3D-printed materials and structures.
  • Participate in full-scale material testing campaigns and collaborate with other teams on their successful execution.
  • Troubleshoot material performance in ICON's Vulcan and Magma systems and provide feedback to the technology teams on possible solutions and performance improvements.
  • Support the development of ICON's projects (development, design, construction, post-construction).
  • Generate test reports and presentations to effectively communicate material performance across various ICON teams.
  • Assist with the development of R&D initiatives, programs, and proposals.
  • Participate in the development of one-off test methods and adapt standardized testing procedures to 3D-printed applications.
  • Provide support and training to laboratory personnel.
  • Must be willing to perform a wide range of tasks on a daily basis in both office and laboratory/field environments.

MINIMUM QUALIFICATIONS
  • Ph.D. in Civil Engineering or Material Science (with a focus on cement-based materials), or Master's with 3+ years of industry experience, or BS in Civil Engineering /Material Science Engineering with 5+ years of industry experience.
  • Knowledge of the fundamentals of concrete and cement-based materials science and technology.
  • Experience in the evaluation of cement-based materials using standardized (ASTM, EN, ISO) and one-off test methods and procedures.
  • Experience in the development, optimization, and performance troubleshooting of concrete mixtures and/or other cement-based products (grouts, dry mortars, etc.)
  • Sound understanding of concrete structural performance.
  • Experience in the development of concrete specifications.
  • A quick learner capable of understanding the operational aspects of hardware, electrical, controls, and software systems utilized by the company.
  • Experience in analyzing large data sets and the ability to draw data-driven conclusions.
  • Exceptional technical and problem-solving skills and reasoning ability.
  • Ability to prioritize and stay cool in a dynamic start-up environment.
  • Strong verbal and written communication skills.
  • Must be able to lift 50 pounds.
  • This position may require travel up to up 30%.

PREFERRED SKILLS AND EXPERIENCE
  • Previous start-up experience, and/or a resourceful, innovative nature with an ability to streamline or develop efficient processes.
  • An engineer in nature, eager to learn various aspects of the large-scale 3D printing process (hardware, control, and software systems, architecture, and design).
  • A skilled user and/or ability to quickly learn how to use various software tools for data analysis, data acquisition, and cement-based materials performance modeling.