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Injection Molding Simulation Jobs in Duncan, SC (NOW HIRING)

Manufacturing Technology Engineer

Duncan, SC · On-site

$67K - $86K/yr

Manufacturing Technology Engineer - Injection Molding & Tooling About Us AFL manufactures industry ... Simulation Analysis : Review and interpret Moldflow simulations (fill, pack, warp, and cooling) to ...

Injection Molding Simulation information

See Duncan, SC salary details

$10.1K

$62.3K

$112K

How much do injection molding simulation jobs pay per year?

As of Aug 29, 2026, the average yearly pay for injection molding simulation in Duncan, SC is $62,338.00, according to ZipRecruiter salary data. Most workers in this role earn between $40,600.00 and $73,300.00 per year, depending on experience, location, and employer.

What is injection molding simulation?

Injection molding simulation is the use of specialized software to predict and analyze the behavior of plastic materials as they are injected into a mold during the manufacturing process. This simulation helps engineers optimize mold design, minimize defects, and reduce production costs by identifying potential issues before physical molds are made. It allows for virtual testing of different materials, mold geometries, and processing conditions, making the manufacturing process more efficient and reliable.

What are the key skills and qualifications needed to thrive as an injection molding simulation engineer?

To excel as an Injection Molding Simulation Engineer, you need a solid background in mechanical or manufacturing engineering, with expertise in polymer processing and simulation principles. Familiarity with simulation software such as Moldflow, Moldex3D, or Autodesk Simulation, along with CAD tools, is typically required, and relevant certifications can be advantageous. Strong problem-solving abilities, attention to detail, and effective communication skills help you interpret simulation data and collaborate with cross-functional teams. These competencies ensure accurate mold designs, optimized manufacturing processes, and reduced production costs and defects.

What are some typical challenges faced in an injection molding simulation role, and how can I prepare to address them?

Professionals in Injection Molding Simulation often encounter challenges such as accurately predicting material flow, minimizing defects like warpage or sink marks, and optimizing process parameters for cost efficiency. To address these, it's vital to stay current with simulation software updates, develop strong communication skills to collaborate with design and manufacturing teams, and cultivate a solid understanding of polymer materials. Gaining hands-on experience with real-world molding processes and troubleshooting will also help bridge the gap between virtual simulations and practical outcomes.

What is the difference between Injection Molding Simulation vs Injection Molding Technician?

AspectInjection Molding SimulationInjection Molding Technician
Primary FocusUsing software to model and optimize molding processesOperating and maintaining molding equipment on the production floor
Required SkillsCAD/CAM software, process analysis, troubleshootingMachine operation, quality control, basic troubleshooting
Work EnvironmentDesign labs, engineering departments, software environmentsManufacturing floor, production lines
CredentialsEngineering degree or technical training, software proficiencyTechnical diploma or certification, hands-on experience

Injection Molding Simulation specialists focus on virtual modeling to improve manufacturing processes, while Injection Molding Technicians operate and maintain the equipment on the factory floor. Both roles are essential in the injection molding industry but differ in their focus, skills, and work environment.

What are popular job titles related to Injection Molding Simulation jobs in Duncan, SC?

For Injection Molding Simulation jobs in Duncan, SC, the most frequently searched job titles are:

Manufacturing Technology Engineer

Duncan, SC • On-site

AFL
Telecommunications • 1 - 5K employees

$67K - $86K/yr

Full-time

Medical, Dental, Vision, Life, Retirement

Re-posted 15 hours ago


Job description

Manufacturing Technology Engineer - Injection Molding & Tooling
About Us
AFL manufactures industry-leading fiber optic cable, connectivity, and accessories, and provides engineering and installation services for some of the largest telecom customers in the world. Founded in 1984 with a single fiber optic cable, we now manufacture thousands of products, generate in excess of $4 Billion in revenue, and employ approximately 12,000 associates worldwide.
At AFL, we recognize that our employees are our greatest asset. We hire and train each individual, investing in them to ensure success in their careers. With a commitment to professional development and growth, let us connect you to your next career opportunity.
What We Offer
  • Flexibility: Hybrid work schedule for qualifying employees and flexible time off policy.
  • Financial Security: 401K company match up to 4% (dollar-for-dollar match).
  • Growth: Professional development, training, and tuition reimbursement programs.
  • Health & Wellness: Excellent medical, dental, vision, and life insurance policy options.
  • Advancement: Opportunities for career progression with an industry leader.

Job Summary
The Manufacturing Technology Engineer - Injection Molding & Tooling is a technical authority overseeing AFL's external global network of outsourced molding and tooling suppliers. Operating at the critical intersection of New Product Development (NPD), Supply Chain, and external manufacturing, this role is responsible for the design, build, commissioning, and maintenance of injection and compression mold tooling across the product lifecycle.
This position requires a "hands-on" technical expert who will work closely with Product Development and Design Engineering to optimize plastic part design, mandate robust DFM standards, approve tool designs, and manage the technical validation process to evolve AFL's telecommunications product portfolio.
Key Responsibilities
  1. New Product Development & DFM Partnership
  • Design Optimization: Partner directly with Product Development and Design Engineering early in the product lifecycle to optimize plastic part designs for injection and compression molding.
  • DFM Leadership: Lead comprehensive Design for Manufacturability (DFM) reviews covering features, draft angles, wall thickness uniformity, gating locations, knit lines, and sink management.
  • Simulation Analysis: Review and interpret Moldflow simulations (fill, pack, warp, and cooling) to make data-driven design decisions before tooling kickoff.
  1. Tooling Procurement & Supplier Management
  • RFQ Strategy: Author technical RFQ packages for new tooling, specifying mold classifications (SPI Class 101/102), steel types, cavitation strategy, and hot/cold runner systems to obtain precise tooling and part quotes.
  • Primary Interface: Act as a primary technical interface between AFL, external toolmakers, and third-party molders to scope, implement, and track tooling changes.
  • Project Management: Lead projects to design, build, and commission mold tooling, tracking schedules to ensure suppliers hit critical milestones from steel cutting through tool acceptance.
  1. Mold Design Approval & Tooling Validation
  • Design Approvals: Critically review and formally approve detailed 3D mold designs and modifications submitted by external vendors, verifying parting lines, cooling line layouts, slider/lifter mechanisms, and ejection systems.
  • Quality Validation: Support engineering and quality teams during the plastic part approval process. Review FAI, IQ/OQ/PQ validation protocols, and Statistical Process Control data (Cpk).
  • Hands-on Troubleshooting: Travel to external tool machine shops and supplier molding facilities to troubleshoot sample runs, resolve defects, and optimize process windows using scientific molding principles.
  1. Material Selection & Lifecycle Support
  • Material Strategy: Provide expertise on plastic material properties and resin selection (e.g., Polycarbonate, ABS, blends, glass-filled resins) tailored for telecom and fiber optic environments.
  • Sustaining Engineering: Work collaboratively with Product Engineering to scope and implement changes to released injection and compression tooling, using engineering analysis to solve complex, real-world failures.
  • Safety & Compliance: Work within an ISO-9001 quality management system environment and strictly adhere to and promote the environmental, health, and safety policies of AFL.

Personal Qualities
  • Initiative: A self-starter with a willingness to take on additional responsibilities and drive projects forward independently.
  • Teamwork: Collaborates effectively in a cross-functional team environment featuring product management, quality, and manufacturing engineering.
  • Communication: Possesses strong written, verbal, and interpersonal influencing skills to align internal and external stakeholders.
  • Detail-Oriented: Demonstrates a high level of precision and rigorous attention to detail in tool designs, data analysis, and drawing reviews.
  • Flexible: Mentally agile and able to quickly adapt to shifting project priorities, deadlines, and business needs.

Required Qualifications
  • Education: Bachelor of Science in Mechanical Engineering, Plastics Engineering, or a highly relevant technical discipline.
  • Experience: Minimum of 3+ years (7+ preferred for Senior level) of dedicated experience designing, building, and/or troubleshooting injection mold tooling.
  • Hands-On Foundation: Proven physical troubleshooting experience in a tool room, mold-making shop, or injection molding shop floor operations.
  • CAD Proficiency: Solid experience with parametric solid modeling (SolidWorks highly preferred) to interrogate, review, and modify complex plastic part and tooling designs.
  • Technical Knowledge: Robust understanding of plastic part design practices, plastic material properties, metrology, and mold flow simulation.
  • Quality Systems: Experience working within an ISO-9001 quality management system.
  • Travel: Ability to work in an office environment with a willingness to travel up to 25% domestically and internationally to audit suppliers and support tool builds.

Preferred Skills & Experience (Not Required)
  • 5+ years of experience designing and/or building injection and compression mold tooling.
  • 2+ years of direct experience designing plastic parts.
  • Fiber optic industry experience, specifically regarding telecom design, development, and/or component applications.

Equal Opportunity Employer Statement
AFL is an Equal Opportunity Employer. The contractor will not discharge or in any other manner discriminate against employees or applicants because they have inquired about, discussed, or disclosed their own pay or the pay of another employee or applicant. However, employees who have access to the compensation information of other employees or app)
licants as a part of their essential job functions cannot disclose the pay of other employees or applicants to individuals who do not otherwise have access to compensation information, unless the disclosure is (a) in response to a formal complaint or charge, (b) in furtherance of an investigation, proceeding, hearing, or action, including an investigation conducted by the employer, or (c) consistent with the contractor's legal duty to furnish information. 41 CFR 60-1.35(c
Equal Opportunity Employer/Protected Veterans/Individuals with Disabilities
This employer is required to notify all applicants of their rights pursuant to federal employment laws. For further information, please review the Know Your Rights notice from the Department of Labor.