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Full Time Discrete Element Method Jobs (NOW HIRING)

Senior Software Engineer, Geometry

San Mateo, CA · On-site

$139K - $183K/yr

Tackle discrete math and computational geometry challenges, applying linear algebra, numerical ... element methods). * Mathematically Minded: You have a passion for solving complex geometry problems ...

Propulsion Engineer III

Madison, WI · On-site

$100K - $138K/yr

Determine and develop approaches to solutions while serving as the owner of discrete technical ... Experience with finite element analysis (FEA) tools such as Abaqus or NASTRAN. * Knowledge of ...

Showing results 21-40

Full Time Discrete Element Method information

What is a full time discrete element method (DEM) job?

A Full Time Discrete Element Method (DEM) job typically involves using computational techniques to model and analyze the behavior of systems composed of discrete particles, such as grains, powders, or rocks. Professionals in this field work on developing, implementing, and running DEM simulations to solve engineering problems in industries like mining, pharmaceuticals, agriculture, and civil engineering. The role may require knowledge of physics, material science, and programming, as well as experience with DEM software. Tasks could include designing experiments, interpreting simulation results, and collaborating with multidisciplinary teams. Full-time positions often require at least a bachelor's or master's degree in engineering, physics, or a related field.

What are some common challenges faced by professionals working with the discrete element method (DEM) in a full-time role?

Professionals working full-time with the Discrete Element Method often encounter challenges such as handling large datasets and computational intensity, which can require advanced simulation hardware and efficient coding practices. Additionally, translating real-world material behaviors into accurate DEM models can be complex and time-consuming, especially when calibrating model parameters. Collaboration with multidisciplinary teams—such as mechanical engineers, material scientists, and software developers—is essential to ensure the simulations align with both theoretical and practical project goals. Staying updated with the latest DEM software and best practices is also crucial for success in this field.

What are the key skills and qualifications needed to thrive as a discrete element method (DEM) engineer, and why are they important?

To thrive as a Discrete Element Method (DEM) Engineer, you need a strong background in mechanical or civil engineering, applied mathematics, and computational modeling, usually supported by a relevant engineering degree. Familiarity with DEM simulation software (such as EDEM or LIGGGHTS), programming languages like Python or C++, and experience with high-performance computing are typically required. Problem-solving, analytical thinking, and effective communication are essential soft skills for interpreting results and collaborating with multidisciplinary teams. These abilities ensure accurate simulations, innovative solutions, and successful project outcomes in complex engineering environments.

What is the difference between Full Time Discrete Element Method vs Full Time Finite Element Analyst?

AspectFull Time Discrete Element MethodFull Time Finite Element Analyst
CredentialsEngineering degrees, certifications in DEM softwareEngineering degrees, certifications in FEA software
Work EnvironmentResearch labs, manufacturing, simulation firmsEngineering firms, aerospace, automotive industries
Industry UsageMining, pharmaceuticals, granular material analysisStructural analysis, stress testing, product design

Both roles involve advanced simulation skills, but Discrete Element Method specialists focus on particle-based modeling, while Finite Element Analysts work on structural and continuum mechanics simulations. The choice depends on the industry and specific project needs.

What are the most commonly searched types of Discrete Element Method jobs?

The most popular types of Discrete Element Method jobs are:

What states have the most Full Time Discrete Element Method jobs?

States with the most job openings for Full Time Discrete Element Method jobs include:

What job categories do people searching Full Time Discrete Element Method jobs look for?

The top searched job categories for Full Time Discrete Element Method jobs are:

Infographic showing various Full Time Discrete Element Method job openings in the United States as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Materials Process Engineer - Metals

Benson, NC • On-site

Full-time

Re-posted 4 days ago


Job description

Vulcan Elements is manufacturing American rare-earth permanent magnets for a secure, resilient future. With a focus on national security and economic resiliency, we serve critical industries such as defense, aerospace, and automotive powering a high-technology future. Vulcan Elements is building a team of ambitious professionals committed to Mission Focus, Technical Excellence and Transparency.

As a Materials and Process Engineer with a metals focus, you will build and validate computational models of fluid dynamics, heat transfer, electromagnetic behavior, and mechanical response across key process steps, providing engineering insight that drives process optimization and supports product development. This is a technical role requiring strong fundamentals in computational mechanics, experience with commercial simulation platforms, and the ability to translate modeling results into actionable manufacturing guidance. This role begins in Durham, NC and is expected to move to Benson, NC upon completion of new facility. 

Responsibilities

  • Model thermal conditions during manufacturing processes such as sintering, heat treatment, and casting.
  • Create representative models for various manufacturing processes including fluid dynamics, mechanical behavior, heat transfer, and electromagnetic phenomena.
  • Use models combined with process data to support process improvement and optimization.
  • Build and refine simulations using ANSYS (Mechanical, Maxwell, ROCKY, Fluent), COMSOL Multiphysics, or equivalent commercial simulation platforms.
  • Collaborate with process, materials, and data engineers to integrate simulation outputs into process development and optimization workflows.
  • Design simulation studies to evaluate process sensitivities, identify failure modes, and guide experimental campaigns.
  • Document modeling assumptions, boundary conditions, validation results, and recommendations in a structured manner consistent with quality system requirements.
  • Support development of custom scripts and automation tools (Python, MATLAB, or similar) for pre/post-processing of simulation data.

Responsibilities and tasks outlined are not exhaustive and may change as determined by the needs of the business.

Qualifications

  • B.S. or higher in Mechanical Engineering, Aerospace Engineering, Materials Science and Engineering, or a closely related field.
  • Demonstrated experience building and validating process models using ANSYS (e.g., Mechanical, Maxwell, ROCKY, Fluent), COMSOL Multiphysics, or equivalent commercial simulation software.
  • Strong working knowledge of computational fluid dynamics (CFD), heat transfer modeling, and mechanical stress/strain analysis.
  • Proficiency with scripting languages (Python, MATLAB, or similar) for simulation setup, data extraction, and post-processing.
  • Ability to work independently, manage multiple concurrent modeling efforts, and communicate results clearly to cross-functional teams.

Must be a U.S. Person due to required access to U.S. export-controlled information or facilities.

Preferred Qualifications

  • Experience modeling metal manufacturing processes such as sintering, casting, powder compaction, forging, or heat treatment.
  • Experience modeling particle-level interactions including powder packing, granular flow, or discrete element methods (DEM).
  • Experience with electromagnetic modeling and simulation (e.g., ANSYS Maxwell) for magnetic field analysis or electromagnetic process design.
  • Familiarity with phase-field, CALPHAD, or other microstructure-evolution modeling approaches.
  • Experience with Multiphysics coupled simulations (e.g., thermo-mechanical, fluid-structure interaction).
  • Familiarity with GPU-accelerated computing, HPC environments, or cloud-based simulation platforms.
  • Experience in a production, industrial, or R&D environment with exposure to manufacturing constraints and process validation.

Physical and Environmental Requirements

The position requires regular presence on the production floor and the ability to navigate all areas of the facility. Candidates must be able to climb stairs, stand and walk for extended periods, and work in environments that may be hot, humid, or noisy. The role also requires the use of personal protective equipment, including respirators, and adherence to all applicable safety policies, procedures, and regulatory requirements. Employees must be able to complete required fit testing, wear appropriate PPE for the duration of assigned tasks, and respond safely to changing conditions within the production environment.

#ProcessEngineering #ProductionEngineering