Idaho National Laboratory

High Temperature Composite Materials Postdoctoral Research Associate

Aerospace & Defense
5 - 7 years of experience
Job Overview by Ladders

Qualifications

  • PhD in Materials Science, Materials Engineering, or relevant field completed within the last 5 years.
  • Knowledge of ceramic materials, processing, and complex phase diagrams.
  • Experience with microstructure characterization and prior publications in high-impact journals.
  • Understanding of materials performance in extreme environments.
  • Strong communication skills to effectively work in interdisciplinary teams.
  • Self-motivated with a collaborative approach.

Responsibilities

  • Conduct hands-on research and development in high temperature composite materials.
  • Manage projects with compressed timelines effectively.
  • Characterize materials using advanced techniques like SEM, TEM, and XRD.
  • Analyze experimental data to understand sintering behaviors and mechanisms.
  • Collaborate with internal and external researchers to advance field-assisted sintering.
  • Prepare and publish research findings in peer-reviewed journals.
  • Contribute to research proposals and project reports.

Benefits

  • Medical, Dental, Vision, and Flexible Spending Accounts.
  • 401(k) with a 4.2% employer contribution and matching options.
  • Paid personal leave.
  • Tuition assistance through Employee Education Program.
  • Comprehensive Relocation Package.
Full Job Description
Job Description

Idaho National Laboratory's Materials Properties and Performance group is seeking a highly motivated Postdoctoral Researcher with Materials Science experience in high temperature material composites space to drive work on the design, synthesis, advanced microstructure characterization, and properties evaluation of high temperature composites such as oxide-oxide, non-oxide, and carbon-carbon fiber reinforced ceramic matrix composite materials.

The selected candidate will have the opportunity to develop a deep understanding of the material chemistry-process-microstructure-property-performance paradigm; to utilize advanced testing methodologies to assess material and composite performance; to examine new structural/functional materials and composite systems designed for advanced reactors and other harsh high temperature environments. As well as perform modeling activities on thermal, electrical, and mechanical behavior to tailor processing conditions. Our team works a 9x80 schedule located out of our Idaho Falls facility with every other Friday off.

The High Temperature Composite Materials Postdoctoral Researcher will join the on-going and future efforts in the Advance Manufacturing Group with a focus on:
  • Optimize the processing of newly developed composite and layered materials, oxide-oxide, and ceramic/carbon composite systems to obtain optimal size distribution, densification, and sintering behavior.
  • Explore novel chemical, thermal, and mechanochemical powder synthesis techniques for ceramic matrix and composite precursor materials.
  • Optimize sintering and densification routes and microstructural development in composites using state-of-the-art spark plasma/electric field assisted sintering as well as other techniques.
  • Study the microstructure of newly developed materials and composites, and the environmental degradation of novel materials and composite systems, using mechanical (fracture mechanics) as well as other advanced characterization techniques.
  • Design, fabricate, and characterize carbon-carbon fiber composites, including fiber architecture selection, matrix densification, and evaluation of thermal and mechanical performance under extreme environments.
  • Perform continuum scale modeling of composite materials and structures using commercially available methods and software.
  • Conduct research into the underlying mechanisms behind the microstructural evolution and degradation of ceramics and composites subjected to extreme environments.
  • Perform thermodynamic modeling to understand the effect of compositional and processing condition changes on the equilibrium state of ceramic and composite material systems


The position will allow significant interaction with researchers with varying backgrounds and additional opportunities for professional development. Ideal candidates will have background/experience in topics such as ceramic and composite processing, phase transformation, microstructural characterization, mechanical properties, finite element analysis modeling of thermal and mechanical material behavior, and fiber reinforced composites.

Key Responsibilities:
  • Conduct hands-on research, development in the areas outlined above.
  • Project management support for projects with compressed timeline. Characterize/understand how to interpret data collected from materials using advanced techniques such as scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), and mechanical testing.
  • Analyze experimental data and develop models to understand the sintering behavior and mechanisms of formation in materials.
  • Understanding of mechanical properties such as tensile, creep, fatigue, and Charpy-V notch toughness.
  • Collaborate with other researchers and engineers within INL and with external partners to advance the understanding and application of field assisted sintering as it pertains to materials for harsh environments.
  • Prepare and publish research findings in peer-reviewed journals and present at scientific conferences.
  • Contribute to the preparation of research proposals.
  • Contribute to the preparation of research project reports

Required:
  • PhD in Materials Science and Engineering, Materials Science, or other related and relevant discipline.
  • PhD requirements must be completed by commencement of appointment and within the previous 5 years of graduation.
  • This position requires the ability to obtain and maintain a Department of Energy "Q" clearance, which requires US Citizenship.
  • Knowledge of ceramic materials, ceramic processing, sintering, and complex phase diagrams required.
  • Understanding of materials performance issues for materials under extreme environments is required.
  • Prior publications in high impact journals with microstructure characterization is required.
  • Excellent communications skills, both verbal and written.
  • Strong asset to our interdisciplinary R&D team and demonstrated ability to work effectively both independently and as a team member.
  • Self-motivated, but also works collaboratively with peers and multi-disciplinary teams.
  • Fluency in the English language and excellent oral and written communication skills.

Physical Requirements:

While performing the duties of this classification, the employee is frequently required to stand, walk, sit, stoop, kneel, bend, and work in an office and laboratory environment. The job requires hand/finger dexterity to keyboard or type, handle materials, manipulate tools, and reach with hands and arms. The job requires operation of job-related equipment and driving a vehicle. The employee must occasionally lift and/or move up to 50 pounds. Sufficient visual acuity and hearing capacity to perform the essential functions and interact with people is required. Position requires the ability to smell. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

Job Information:
  • The pay for this position is $105,144.00 Annually. At Idaho National Laboratory compensation decisions are determined using factors such as education, relevant experience, and other credentials.
  • TDP: This is a testing designated position; you will be required to submit to a pre-employment drug screen and periodic drug testing throughout the term of your employment.


Benefits and Relocation

  • Medical, Dental, Vision, and Flexible Spending Accounts
  • 401(k) with a 4.2% employer contribution and up to 4.8% match (regular positions) or self-contribute access (postdoctoral positions)
  • Paid time off (personal leave)
  • Employee Education Program (tuition assistance for eligible positions)
  • Comprehensive Relocation Package
  • Benefit eligibility subject to multiple factors, including employment status and position classification.


At this time, BEA will not sponsor any H1-B visas obtained outside of the United States of America (U.S.A.), including consular visas.

About Idaho National Laboratory

Idaho National Laboratory (INL) is a science-based, applied engineering national laboratory dedicated to supporting the U.S. Department of Energy's mission in nuclear energy research, science, and national defense. INL is operated by Battelle Energy Alliance, LLC, a partnership between Battelle, BWX Technologies, Inc., and Texas A&M University System. INL's work is focused on delivering solutions to some of the nation's most pressing challenges in energy, national security, science, and the environment. INL's research and development capabilities are organized into four primary areas: Nuclear Science and Technology, National and Homeland Security, Energy and Environment, and Biological Science and Engineering.
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