Courses

Our industry-focused courses are designed to equip students with hands-on skills and job-ready expertise in key areas. Developed with leading global knowledge partners, AMTEC’s programs bridge the gap between classroom learning and industrial application—preparing learners to thrive in a fast-evolving global economy.

At AMTEC Finishing School, we’re committed to providing industry-specific training that makes students ready to meet the challenges of the modern Plastic Production industry. Our courses are designed to bridge the skill gaps, enabling our aspirants to thrive in today’s global market.

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NX CAD – Tool, Mould & Product Design

Duration: 75 Hours
Key Objective: Gain expertise in NX CAD software for designing tools, moulds, and products. Learn advanced design techniques used in the plastics and manufacturing industries.
Key Learnings:
  • 2D sketching, extruding, and revolving
  • Assembly and drafting techniques
  • Core-cavity extraction and mould design
  • Surface modeling and sheet metal design
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AutoCAD

Duration: 80 Hours
Key Objective: Learn technical design and drafting skills using AutoCAD for industrial applications in plastics, engineering, and manufacturing.
Key Learnings:
  • 2D drafting and drawing fundamentals
  • Orthographic projections and isometric views
  • Sections and technical detailing
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Fusion 360

Duration: 120 Hours
Key Objective: Master Fusion 360 for 3D modeling, drafting, and design, essential for engineering and manufacturing applications.
Key Learnings:
  • Solid modeling
  • Assembly and drafting
  • Advanced surfacing and sheet metal design
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3D Printing – Basic

Duration: 20 Hours
Key Objective: Learn the fundamentals of 3D printing, different technologies, materials, and their industrial applications.
Key Learnings:
  • Introduction to 3D printing technologies
  • Software training and workflow
  • Hands-on experience with FDM printers
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3D Printing – Advanced

Duration: 70 Hours
Key Objective: Gain in-depth expertise in 3D printing technologies, processes, and post-processing techniques.
Key Learnings:
  • Learn about Advanced 3D printing technologies (DLP, SLA, SLS etc.)
  • Design for 3D printing and material properties
  • Maintenance and troubleshooting
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Reverse Engineering (3D Scanning)

Duration: 45 Hours
Key Objective: Learn 3D scanning and reverse engineering to create CAD models for manufacturing, legacy parts, and prototyping.
Key Learnings:
  • Introduction to metrology and scanning
  • 3D CAD model generation
  • Quality inspection and tolerance measurement
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Computer-Aided Manufacturing (CAM)

Duration: 75 Hours
Key Objective: Learn CAM programming to enhance manufacturing efficiency and precision.
Key Learnings:
  • CNC programming fundamentals
  • Practical Machine operations and surface finishing
  • Quality control and advanced toolpaths
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Waste Management, Sorting Automation & Recycling

Duration: 77 Hours
Key Objective: A combination of theoretical learning, case studies, practical exercises, and industry exposure to understand waste management, recycling technologies, and sustainability practices in the plastics industry.
Key Learnings:
  • Waste sorting and recycling processes
  • Environmental regulations and compliance
  • Waste management & recycling processes and technologies
  • Environmental and regulatory aspects
  • Practical training and field visits
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Hot Runner Systems

Duration: 75 Hours
Key Objective: Gain knowledge of hot runner systems for efficient plastic injection molding.
Key Learnings:
  • Working principles of hot runner technology
  • Troubleshooting and maintenance
  • Application in injection molding
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