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Ceramic Process Engineer Jobs in Texas (NOW HIRING)

... glass, ceramic, and materials science. From the depths of the ocean to the farthest reaches of ... Tailor the product development process to meet project-specific requirements * Mentor junior ...

Corning is one of the world's leading innovators in glass, ceramic, and materials science. From the ... Tailor the product development process to meet project-specific requirements * Mentor junior ...

Corning is one of the world's leading innovators in glass, ceramic, and materials science. From the ... Tailor the product development process to meet project-specific requirements * Mentor junior ...

Sr Change Management Engineer

Keller, TX · On-site

$91K - $126K/yr

Corning is one of the world's leading innovators in glass, ceramic, and materials science. From the ... Identify process gaps and support continuous improvement actions * Provide user guidance on change ...

Corning is one of the world's leading innovators in glass, ceramic, and materials science. From the ... Identify process gaps and support continuous improvement actions * Provide user guidance on change ...

Sr Change Management Engineer

Keller, TX · On-site

$91K - $126K/yr

Corning is one of the world's leading innovators in glass, ceramic, and materials science. From the ... Identify process gaps and support continuous improvement actions * Provide user guidance on change ...

... glass, ceramic, and materials science. From the depths of the ocean to the farthest reaches of ... Identify process gaps and support continuous improvement actions * Provide user guidance on change ...

Senior CNC Programmer

Midland, TX · On-site

$26 - $35.50/hr

Troubleshoot process issues and implement permanent, data-driven solutions * Drive cycle-time ... Proven and demonstrated experience in machining with ceramic cutting tools, e.g., alumina, silicon ...

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Ceramic Process Engineer information

What does a Ceramic Process Engineer do?

A Ceramic Process Engineer specializes in designing, optimizing, and overseeing the manufacturing processes for ceramic materials and products. They work with raw materials, develop processing techniques, and ensure product quality by controlling variables like temperature, pressure, and composition. Their responsibilities often include troubleshooting production issues, improving efficiency, and collaborating with other engineers or scientists to develop new ceramic products. Ceramic Process Engineers are employed in industries such as electronics, aerospace, automotive, and construction, where ceramics are used for their unique properties like heat resistance and electrical insulation.

What are some typical challenges a Ceramic Process Engineer faces when scaling up from laboratory to full-scale production?

Ceramic Process Engineers often encounter challenges such as maintaining material consistency, controlling firing conditions, and ensuring product quality when transitioning from lab-scale experiments to industrial production. Variability in raw materials, differences in equipment, and the need for precise temperature control can affect the final product's properties. Close collaboration with production teams, quality assurance, and R&D is essential to troubleshoot issues and optimize processes for efficiency and reliability at scale.

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

To excel as a Ceramic Process Engineer, a strong background in materials science, ceramics engineering, and process optimization—often supported by a relevant engineering degree—is essential. Familiarity with tools like CAD software, thermal analysis instruments, and quality control systems is typically required. Analytical thinking, attention to detail, and effective communication are crucial soft skills for solving complex problems and collaborating with multidisciplinary teams. These competencies are vital to ensure efficient production, high product quality, and innovation in ceramic manufacturing processes.

What is the difference between Ceramic Process Engineer vs Materials Engineer?

AspectCeramic Process EngineerMaterials Engineer
Required CredentialsBachelor's in Ceramic Engineering, Materials Science, or related fieldBachelor's or higher in Materials Science, Metallurgy, or related field
Work EnvironmentManufacturing plants, R&D labs focused on ceramicsResearch labs, manufacturing, product development across various materials
Industry UsageSpecialized in ceramic materials for electronics, aerospace, and industrial applicationsBroader industry applications including metals, polymers, composites, and ceramics

The main difference is that Ceramic Process Engineers focus specifically on the manufacturing and processing of ceramic materials, while Materials Engineers work with a wider range of materials, including metals, polymers, and composites. Both roles require similar educational backgrounds and may work in overlapping environments, but their specialization areas differ significantly.

What job categories do people searching Ceramic Process Engineer jobs in Texas look for? The top searched job categories for Ceramic Process Engineer jobs in Texas are:
What cities in Texas are hiring for Ceramic Process Engineer jobs? Cities in Texas with the most Ceramic Process Engineer job openings:
Infographic showing various Ceramic Process Engineer job openings in Texas as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.
Senior Engineer, Materials (R5258)

Senior Engineer, Materials (R5258)

Shield AI

Dallas, TX

Full-time

Posted 7 days ago


Job description

Founded in 2015, Shield AI is a venture-backed defense-tech company with the mission of protecting service members and civilians with intelligent systems. Its products include Hivemind autonomy software and V-BAT and X-BAT aircraft. With offices and facilities across the U.S., Europe, the Middle East, and Asia-Pacific, Shield AI's technology actively supports operations worldwide. For more information, visit www.shield.ai. Follow Shield AI on LinkedIn, X, Instagram, and YouTube. 

Job Description:

As a Materials and Failure Analysis (MFA) Engineer at Shield AI, you will be responsible for driving failure analysis investigations and materials characterization activities for the XBAT vehicle. As part of the hardware reliability team, you'll work closely with design, manufacturing, and supply chain to lead materials development, understand failure mechanisms, define corrective actions, and eliminate recurrence across product design, manufacturing processes, and supply chain sourcing. You will engage in hands-on lab work across instruments including SEM, EDS, X-ray, cross-section preparation, and optical microscopy, and outsource when capabilities are not available internally. You will be responsible for establishing SOPs and materials lab practices that enhance sample preparation and physicochemical materials characterization outputs to achieve top-quality investigation results. You will analyze metals, ceramics, polymers, and composite materials. The work you do will directly drive materials selection, materials processing, and design update decision-making for hardware designs across the vehicle.

What you'll do:
  • Operate and continuously improve world-class materials and failure investigation laboratory spanning equipment including, but not limited to, SEM/EDS, x-ray, CT, optical microscopy, and cross-section preparation.
  • Develop and implement lab procedures spanning materials characterization, failure analysis investigations, and reporting of results to various stakeholders.
  • Perform failure analysis on electronic failures and recommend corrective actions to address identified failure mechanisms across metallic, ceramic, polymeric, and composite materials.
  • Drive failure analysis investigations using common methods including 8D, fault-tree, fishbone, and FRACAS.
  • Conduct mechanical cross-sectioning to prepare samples for subsequent analysis.
  • Perform dye-and-pry and CSAM to reveal cracks and voids.
  • Utilize X-ray inspection methods (2D and computed tomography) for electronics failure analysis.
  • Operate Scanning Electron Microscopes and conduct Energy Dispersive X-ray Spectroscopy.
  • Execute thermal analysis work on materials, including DSC, TGA, DMA, TMA, and FTIR.
  • Manage procurement and maintenance of lab consumables.
  • Oversee the maintenance, organization, and safety of all laboratory equipment and work areas.
  • Work with external laboratories to perform materials and failure analysis work as necessary.
  • Educate stakeholders on materials science fundamentals to improve material selection and materials processing practices across the design, supply chain, and manufacturing teams.
  • Stay current with industry trends, advancements, and best practices in all aspects of electronic materials and related failure mechanisms.
Required qualifications:
  • 2+ years of experience in a materials engineering role, preferably with a focus on aerospace or automotive applications.
  • Candidate must be self-starting and come with a growth mindset, with excellent problem-solving skills and attention to detail.
  • Bachelor's degree in Materials Science, Materials Engineering, or Chemical Engineering. Degrees in Mechanical OR Reliability Engineering also are accepted.
  • Familiarity with electronics (PCBs, PCBAs, electronic components) and moving mechanical assemblies. Knowledgeable in failure mechanisms including solder fatigue, intermetallic growth, conductive anodic filaments, tin whiskers, electromigration, and corrosion.
  • Team-player with clear and concise written and oral communication skills.
  • Experience working with interdisciplinary teams to execute product design from concept to production.
  • Experience with management of technical projects.
  • 2+ years of hands-on experience operating expensive lab instruments, including SEMs, microscopes, and x-ray systems.
  • Familiarity with relevant industry standards, including IPC, JEDEC, MIL, and ASTM standards.
Preferred qualifications:
  • 5+ years of experience in a materials engineering role, preferably with a focus on aerospace or automotive applications.
  • Master's degree in Materials Science, Materials Engineering, or Chemical Engineering.
  • Proficiency in failure analysis techniques and materials characterization methods. Direct application to electronics is preferred.
  • Prior experience running a materials characterization and/or failure analysis lab.
  • Experience with environmental testing, including temperature cycling, vibration, highly accelerated limit testing (HALT), and highly-accelerated stress screening (HASS).
  • Familiarity with PCB fabrication, SMT, and polymerics application manufacturing processes.
  • Significant knowledge of materials engineering principles, methods, and tools.
  • Proficiency in Python, including NumPy, Pandas, SciPy, Plotly, and Matplotlib.
$110,000 - $170,000 a year
#LI-DM2
#LC

Full-time regular employee offer package:
Pay within range listed + Bonus + Benefits + Equity
 
Temporary employee offer package:
Pay within range listed above + temporary benefits package (applicable after 60 days of employment)
 
Salary compensation is influenced by a wide array of factors including but not limited to skill set, level of experience, licenses and certifications, and specific work location. All offers are contingent on a cleared background and possible reference check. Military fellows and part-time employees are not eligible for benefits. Please speak to your talent acquisition representative for more information.
 
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Shield AI is proud to be an equal opportunity workplace and is an affirmative action employer. We are committed to equal employment opportunity regardless of race, color, ancestry, religion, sex, national origin, sexual orientation, age, marital status, disability, gender identity or Veteran status. If you have a disability or special need that requires accommodation, please let us know. 
We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.
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