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Moldflow Simulation Jobs (NOW HIRING)

Analyze Moldflow simulation results, implement solution in new mold, and define molding process window * Manage the technical part and mold tuning loops from Off Tool to Initial samples, manage the ...

Analyze Moldflow simulation results, implement solution in new mold, and define molding process window * Manage the technical part and mold tuning loops from Off Tool to Initial samples, manage the ...

Analyze Moldflow simulation results, implement solution in new mold, and define molding process window * Manage the technical part and mold tuning loops from Off Tool to Initial samples, manage the ...

Ability to operate and understand/communicate results from structural FEA software as well as moldflow simulation * Generation and interpretation of 2D prints and associated tolerance stack up ...

Ability to operate and understand/communicate results from structural FEA software as well as moldflow simulation * Generation and interpretation of 2D prints and associated tolerance stack up ...

Plastics Design Engineer

Arlington, VT · On-site

$75K - $95K/yr

Ability to operate and understand/communicate results from structural FEA software as well as moldflow simulation * Generation and interpretation of 2D prints and associated tolerance stack up ...

Moldflow and Ansys FEA * Industrial Design using Simulation or Rendering packages a plus * Critical thinking, able to use logic and reasoning. * Complex problem solving (root cause analysis ...

Moldflow and Ansys FEA * Industrial Design using Simulation or Rendering packages a plus * Critical thinking, able to use logic and reasoning. * Complex problem solving (root cause analysis ...

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Moldflow Simulation information

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$39K

$123.4K

$190.5K

How much do moldflow simulation jobs pay per year?

As of Jun 7, 2026, the average yearly pay for moldflow simulation in the United States is $123,399.00, according to ZipRecruiter salary data. Most workers in this role earn between $92,000.00 and $146,500.00 per year, depending on experience, location, and employer.

What is Moldflow Simulation?

Moldflow Simulation refers to the use of specialized software to analyze, predict, and optimize the injection molding process for plastic parts. It enables engineers to simulate how melted plastic fills a mold, cools, and solidifies, helping to identify potential defects such as warpage, air traps, or sink marks before manufacturing begins. By using Moldflow Simulation, companies can save time and costs by reducing the need for physical prototypes and minimizing production issues. This technology is widely used in industries like automotive, consumer goods, and medical devices to ensure high-quality plastic parts.

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

To thrive as a Moldflow Simulation Engineer, you need a solid background in engineering (often mechanical or plastics engineering), deep understanding of injection molding processes, and proficiency in simulation analysis. Expertise in Autodesk Moldflow software, CAD tools, and sometimes certifications in simulation or plastics processing are commonly required. Strong analytical thinking, problem-solving, and effective communication skills help you interpret results and collaborate with cross-functional teams. These skills and qualifications are essential for optimizing part design and manufacturing processes, reducing defects, and ensuring product quality.

What is the difference between Moldflow Simulation vs Mold Design Engineer?

AspectMoldflow SimulationMold Design Engineer
Primary FocusAnalyzing and optimizing plastic part and mold designs using simulation softwareDesigning and developing physical molds for manufacturing
Required SkillsCAD, CAE software, material properties, troubleshootingCAD, mechanical design, manufacturing processes
Work EnvironmentEngineering offices, simulation labsManufacturing plants, design studios
CertificationsOften requires CAD/CAE certificationsMechanical engineering degrees, CAD certifications

While Moldflow Simulation specialists focus on virtual analysis to improve mold and part designs, Mold Design Engineers create the physical molds used in manufacturing. Both roles require CAD skills and industry knowledge, but their core tasks differ: one emphasizes simulation and analysis, the other physical mold creation.

What are some common challenges faced by professionals working in Moldflow Simulation, and how can they be addressed?

Professionals in Moldflow Simulation often encounter challenges such as accurately modeling complex part geometries, ensuring material data accuracy, and interpreting simulation results to make actionable recommendations. Staying updated with the latest software features and collaborating closely with design and manufacturing teams can help address these issues. Regular communication with tooling engineers and product designers ensures that simulation insights are effectively integrated into the design and production process, ultimately improving part quality and reducing costly manufacturing iterations.
Engineering Specialist, Simulation

Engineering Specialist, Simulation

Albany International Corp.

Rochester, NH • On-site

Full-time

Posted 4 hours ago


Job description

Job Purpose:
The Simulation Process Specialist will be responsible for leading advanced modeling efforts to predict composite performance and optimize components and manufacturing processes across research, development, and production activities. This role selects appropriate solution strategies by combining commercial simulation tools with custom-developed computational routines when needed. The specialist applies expertise in solid mechanics, heat transfer, and fluid flow to model different physical behaviors and support data-driven decision making. A key focus of the role is enhancing current modeling workflows by streamlining, automating, and improving their overall robustness and efficiency. Strong programming skills are essential, as the position involves building and refining in-house simulation capabilities.
Job Responsibilities:
In performing their respective tasks and duties, all employees are expected to adhere to Albany's current values: Albany Wins Together, Count on Each Other, Own Your Actions, Care About Each Other, and Share Your Enthusiasm. Safety must always come first; we never compromise on safety for the sake of achieving another objective. Employees are also responsible for the health and safety of themselves and each other.
  • Lead the development and execution of advanced simulation models to predict composite performance and support design and manufacturing decisions.
  • Select and implement effective solution strategies using commercial simulation tools and custom-developed computational routines.
  • Apply expertise in solid mechanics, heat transfer, and fluid flow to analyze and model complex physical behaviors.
  • Streamline, automate, and enhance existing modeling workflows to improve efficiency, robustness, and scalability.
  • Develop, maintain, and extend in-house simulation tools and scripts through strong programming and software development skills.
  • Development of experimentally validated process modeling methods such as weaving, forming, and Resin Transfer Molding (RTM) using numerical simulations.
  • Work closely with simulation technology specialists, as well as design and process engineers, in developing methods, requirements and validation of implemented methods.

Supervisory Responsibility: No
Qualifications/Characteristics:
Knowledge/ Experience:
  • MSc or PhD in Mechanical Engineering or a related field. (e.g., Aerospace, Civil or Applied Math); or an appropriate combination of education and relevant experience.
  • 10+ year experience using numerical simulation tools such as Finite Element Analysis or Computational Fluid Dynamics in a Research & Development or academic research setting
  • Demonstrated experience developing from first principles mathematical models of physical processes
  • Strong fundamental knowledge base in engineering mechanics, including solids, fluids, and heat transfer
  • Knowledge of mechanical behavior and structural test methods for composite materials

Skills:
  • Demonstrated capability in modeling composite materials and manufacturing processes (such as weaving, braiding, RTM, ATL/AFP, forming)
  • Strong knowledge of numerical methods such as Finite Element Analysis (FEA) and/or Computational Fluid Dynamics (CFD)
  • Experience with commercial computer aided engineering (CAE) software such as PAM-RTM, MoldFlow, StarCCM+, Fluent, Abaqus, LS-Dyna, ANSYS, NASTRAN, etc.
  • Microsoft Office proficient: Excellent written and oral communication.

Abilities:
  • Demonstrated problem-solving skills within collaborative, team-based environments
  • Ability to assess complex technical landscapes and extract key insights and guiding principles
  • Willingness to learn new concepts, tools, and technologies
  • Willingness to engage in hands-on work in a dynamic environment
  • Strong action orientation with a results-driven mindset, sound decision-making abilities, and a focus on customer success
  • High level of attention to detail and commitment to quality

Working Conditions:
Indoor production environment, duties performed indoors, adequate lighting and comfortable temperatures. Occasional exposure to moderate noise and machinery with mechanical moving parts. Ability to work 24/7 schedule and be available as business situations required, Travel may be required.
Physical requirements:
Occasionally positions self to move an office item >10 lbs.
Frequently move about the production floor and office area to attend meetings or trainings
Must be able to remain in a stationary position up to 75% of the time
Frequently operates a computer, enters data into systems, verifies information, etc...
Nothing in this document restricts management's right to assign or reassign duties and responsibilities to this job at any time.