Postdoctoral Appointee – Mechanical Engineering

Argonne National Laboratory•Lemont, IL
•$72,879 - $121,465•Onsite

About The Position

Argonne National Laboratory, in the Applied Materials Division, has an immediate opening for a postdoctoral appointee. The candidate will develop physics-based models to predict the structure and performance of materials under extreme conditions. The candidate will work with a multidisciplinary team to develop models in the MOOSE multiphysics finite element framework. These models will include processing to structure models of additively manufactured metallic and ceramic materials and structure to performance models based on the crystal plasticity finite element method and similar micromechanical theories. The candidate will also be expected to apply these models to predict the engineering behavior of materials in service environments.

Requirements

  • Recent or soon-to-be-completed PhD (typically completed within the last 0-5 years) in mechanical engineering, materials science, civil engineering, structural engineering, or a closely related field.
  • Expertise in formulating and implementing micromechanical models, ideally including crystal plasticity methods.
  • Good grasp of numerical methods for implementing and solving complex physics-based models in the context of the finite element method.
  • Coding experience in C++ and/or python is required, along with the responsible use of AI-assisted coding tools.
  • Strong skills in oral and written communications and presentations.
  • Ability to model Argonne’s Core Values: Impact, Safety, Respect, Integrity, and Teamwork.
  • This position requires an on-site presence at the Argonne campus in Lemont, Illinois, five days per week.

Nice To Haves

  • Experience using the MOOSE simulation framework is highly desired.
  • Experience fitting complicated physics-based models against test data, including machine learning and Bayesian optimization approaches.
  • Specific experience modeling the performance of advanced engineering ceramics and/or the high temperature performance of metal alloys.

Responsibilities

  • Develop physics-based models to predict the structure and performance of materials under extreme conditions.
  • Work with a multidisciplinary team to develop models in the MOOSE multiphysics finite element framework.
  • Develop processing to structure models of additively manufactured metallic and ceramic materials.
  • Develop structure to performance models based on the crystal plasticity finite element method and similar micromechanical theories.
  • Apply these models to predict the engineering behavior of materials in service environments.

Benefits

  • Comprehensive benefits are part of the total rewards package.
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