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Metal Forming Simulation Jobs in Athens, TN (NOW HIRING)

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... forming of high precision, tight tolerance metal parts, and design fixtures and jigs * Leads ... Coordinates with E&E simulation team for design for manufacturability and formability on complex or ...

Metal Forming Simulation information

See Athens, TN salary details

$32.7K

$103.4K

$159.6K

How much do metal forming simulation jobs pay per year?

As of Aug 26, 2026, the average yearly pay for metal forming simulation in Athens, TN is $103,374.00, according to ZipRecruiter salary data. Most workers in this role earn between $77,100.00 and $122,700.00 per year, depending on experience, location, and employer.

What is metal forming simulation?

Metal forming simulation is the use of computer-aided engineering (CAE) software to model and analyze metal forming processes such as stamping, forging, rolling, or extrusion. These simulations help engineers predict material behavior, identify potential defects, and optimize tool design before physical production begins. By using metal forming simulation, manufacturers can reduce prototyping costs, improve product quality, and minimize waste. It plays a crucial role in industries like automotive, aerospace, and manufacturing where precise metal shaping is required.

What are some typical challenges faced by professionals in metal forming simulation, and how can they be addressed?

Professionals in Metal Forming Simulation often encounter challenges such as inaccuracies in material modeling, complex geometry handling, and ensuring simulation results match real-world outcomes. Addressing these issues typically involves staying updated with the latest simulation software, collaborating closely with design and manufacturing teams, and validating simulations with experimental data. Developing strong problem-solving skills and continuously learning about new materials and forming technologies can also help overcome these common hurdles.

What are the key skills and qualifications needed to thrive as a metal forming simulation engineer, and why are they important?

To thrive as a Metal Forming Simulation Engineer, you need a solid background in mechanical or materials engineering, along with expertise in metal forming processes and finite element analysis (FEA). Proficiency in simulation software such as AutoForm, LS-DYNA, or Abaqus, and familiarity with CAD systems, are typically required, and certifications in FEA tools are advantageous. Strong problem-solving skills, attention to detail, and effective communication are essential soft skills for interpreting complex data and collaborating with diverse teams. These skills ensure accurate simulation results and optimized manufacturing processes, which are critical for cost efficiency and product quality.

What is the difference between Metal Forming Simulation vs Metal Manufacturing Engineer?

AspectMetal Forming SimulationMetal Manufacturing Engineer
Primary FocusUsing software to model and optimize metal forming processesOverseeing and improving metal manufacturing operations
Required SkillsKnowledge of simulation software, materials science, and process parametersManufacturing processes, quality control, and production management
Work EnvironmentDesign labs, engineering offices, software environmentsFactories, production lines, manufacturing plants
Common CertificationsEngineering degrees, CAD/CAE software certificationsManufacturing certifications, Six Sigma, quality management

Metal Forming Simulation specialists focus on modeling and optimizing metal forming processes through simulation software, while Metal Manufacturing Engineers oversee the actual production processes on the factory floor. Both roles require engineering knowledge, but their work environments and daily tasks differ significantly.

Tool and Die Engineer (Automotive Manufacturing)

E & E Manufacturing Inc

Athens, TN • On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 9 days ago

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E&E Manufacturing rating

6.1

Company rating: 6.1 out of 10

Based on 5 frontline employees who took The Breakroom Quiz


Job description

The Tooling Engineer will facilitate the fabrication of stamping tools for E&E’s Athens facility. This position will include input into the conceptual design of tooling and process selection, project management of tooling fabrication, and implementation of tooling into the manufacturing processes. Ensures compliance with E&E quality systems, policies, procedures, and best practices, as well as all local, state, federal and E&E safety regulations, policies, and procedures.


Essential Duties and Responsibilities:

To perform this job successfully, an individual must be able to perform each essential duty satisfactorily. The requirements listed below are representative of the knowledge, skill, and/or ability required. Reasonable accommodations may be made to enable individual with disabilities to perform the essential job functions. Also, additional job duties may be assigned.


  • Work with internal and external tooling vendors in the design of stamping tools, to include station development, forming of high precision, tight tolerance metal parts, and design fixtures and jigs
  • Leads complex tooling projects from conception through production start-up; coordinates official tool milestone completion in accordance with E&E Critical Path, including tool delivery and material receipt to E&E
  • Work with tooling suppliers on schedules, tool design reviews, process selection, and project implementation
  • Review product designs and make recommendations on tooling projects to ensure they are designed for manufacturability, efficiency, and cost-savings
  • Participate in tool design reviews and ensure they are conducted in accordance with E&E guidelines and adhere to E&E design and build standards
  • Coordinates with E&E simulation team for design for manufacturability and formability on complex or potentially risky parts; when applicable, works with mechanical engineering to optimize part design
  • Oversee all record retention for tooling. This will include required follow-up on action items resulting from preliminary tool designs through production startups on both internally designed and built tooling and all sub-contracted work
  • Monitors construction of dies and gauges, ensures tooling vendors are operating to the agreed schedule; ensures projects are delivered on time and within budget
  • Leads production buy-off (PSO) process for new stamping dies and engineering changes
  • Provide sourcing input for tooling suppliers and interact with them on regular basis to ensure that services meet expectations
  • Monitor project schedules with tooling suppliers and ensure that projects are completed on time in accordance with master program schedule and according to customer design requirements
  • When applicable, coordinates and leads any project recovery efforts with internal and external tooling vendors to include timing plan, site visits, and process changes; escalates issues as required to management to allow timely response and successful program launch
  • Develop a business case to support tooling modifications to improve the quality and cost of components and tooling
  • Work with reverse engineering principles and rapid prototype resources as needed.
  • Utilize basic to advanced understanding of dimensioning, tolerance, and inspection practices

Expectations

Employees are expected to follow all standards listed below:

·          Consistently exhibit appropriate attendance habits, working the hours necessary to perform the job

·          Organize and maintain efficiency of personal work area

·          Provide necessary, accurate, and timely feedback of all pertinent information to co-workers and management

·          Effectively communicate with co-workers and management personnel to enhance teamwork and communication initiatives

·          Consistently adhere to and support company policies and procedures, including ISO14001, IATF16949, and safety regulations

·         Accept instructions and duties in a positive manner

·         Treat all co-workers with dignity and respect

·         Actively support the E&E values

Work Environment

Work environment characteristics are representative of those that must be met by an employee to successfully perform the essential functions of this job. Employees also may be subject to certain environments such as working near loud moving mechanical parts. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. The following environments include:                                      

Noise Level

The noise level in the working environment will be moderate with slight traffic and the sound of presses and machinery. Ear protection may be required.

Physical Demands

The physical demands describes below are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. The following physical demands include:

·         Standing               

·         Walking                

·         Sitting                                                      

 

Special Vision Requirements

·         Depth perception (three-dimensional vision, ability to judge distances and spatial relationships)

Education/Experience/Certifications:

To effectively carry out duties and responsibilities in the job position the following education, experience, or certifications are preferred:


Education: 

·         Bachelor’s degree in Engineering or related field is required

Experience:

·         Eight or more years of experience as a Mechanical/Tooling Engineer in an automotive manufacturing environment is required

·         Ten or more years of automotive manufacturing experience is strongly preferred

·         Certification and/or work experience in a Continuous Improvement environment (Lean, Six Sigma, TPM) is strongly preferred

 

Additional Skills Required:

To effectively carry out duties and responsibilities in the job position the following skills are required:

Computer skills:

·         Experience with basic computer systems

·         Proficient with Microsoft Operating System as well as MS Excel, Word, and Project

Communication skills:

·         Speak effectively with fellow employees or customers

·         Ability to read, write and converse in English

·         Read and interpret documents such as safety rules, operating and maintenance instructions, procedure manuals, etc.

·         Interpret a variety of instructions furnished in written, oral, diagram, or schedule form

Mathematical skills:

·         Apply mathematical skills including addition, subtraction, multiplication, and division, as well as basic algebra

Other Skills:

·         Detail oriented

·         Organized and able to meet deadlines while performing multiple duties

·         Solve practical problems and deal with a variety of concrete variables in situations where only limited standardization exists

·         Familiar with APQP disciplines: FMEA, PFMEA, SPC, DOE, PPAP, etc.

Company Description

Metal Stamping and Assembly Automotive Manufacturing Supplier


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