
Toolmaker Course
Master every core skill of the toolmaking trade, from precision measurement and manual machining to CNC programming, die fabrication, and heat treatment. This comprehensive course covers the full toolmaker workflow, giving you the hands-on knowledge employers demand. Build the technical foundation to work confidently in any toolroom or manufacturing environment.
What you will learn:
You will learn to read engineering drawings and apply GD&T callouts to real tooling work. You will operate engine lathes, milling machines, surface grinders, and EDM equipment to produce accurate components. The course covers jig and fixture design, blanking and piercing die fabrication, and injection mold basics. You will also develop CNC programming skills using both manual G-code and CAM software. Heat treatment processes, metrology techniques, and toolroom management round out your training. By the end, you will have the complete skill set required to perform as a qualified toolmaker.
How you study in practice Toolmaker Course
How you practice Toolmaker Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to Toolmaking Fundamentals
Introduction to Toolmaking Fundamentals
Lesson 1 • The Toolmaking Trade Overview
Defines the toolmaker role, industry scope, and career pathways. Establishes context for all subsequent technical learning in the course.
Lesson 2 • Engineering Drawing Basics
Introduces orthographic projection, dimensioning, and tolerance notation. Drawing literacy is prerequisite for interpreting all tooling specifications ahead.
Lesson 3 • Measurement and Inspection Basics
Teaches use of rules, calipers, and micrometers to verify dimensions. Accurate measurement underpins quality control in all subsequent work.
Lesson 4 • Toolmaking Materials Introduction
Surveys ferrous and non-ferrous metals, plastics, and carbide used in tooling. Material selection principles recur in every fabrication chapter.
Lesson 5 • Shop Safety and Hazard Control
Covers personal protective equipment, machine guarding, and chemical hazard handling. Safe habits established here apply throughout every practical chapter.
Chapter 2HideHide detailsSee detailsPrecision Measurement and Inspection
Precision Measurement and Inspection
Lesson 1 • Surface Plate and Layout Work
Introduces granite surface plates, height gauges, and angle plates for layout. Accurate layout transfers drawing dimensions to raw stock before machining.
Lesson 2 • Gauge Types and Applications
Covers plug, ring, snap, and thread gauges for go/no-go inspection. Gauge selection directly supports tolerance verification in tooling work.
Lesson 3 • Geometric Tolerancing Verification
Applies GD&T concepts to measure flatness, roundness, and perpendicularity. Connects drawing callouts from Chapter 1 to physical inspection methods.
Lesson 4 • Inspection Documentation and Reporting
Covers first-article inspection reports, measurement uncertainty, and traceability. Proper records support quality systems and tooling approval processes.
Lesson 5 • Dial Indicators and Comparators
Teaches setup and reading of dial indicators, test indicators, and bench comparators. These tools enable precise deviation measurement on finished components.
Chapter 3HideHide detailsSee detailsManual Machining Operations
Manual Machining Operations
Lesson 1 • Engine Lathe Setup and Operation
Covers chuck work, between-centers turning, and taper cutting on the engine lathe. Lathe skills form the core of rotational component production in toolmaking.
Lesson 2 • Milling Machine Fundamentals
Teaches knee mill setup, cutter selection, and climb vs. conventional milling. Milling produces flat surfaces, slots, and pockets central to die and fixture work.
Lesson 3 • Drilling, Reaming, and Tapping
Covers drill press setup, hole location, reaming to size, and hand tapping. Accurate holes are critical in die sets, fixtures, and mold components.
Lesson 4 • Surface Finish and Dimensional Control
Teaches finishing cuts, surface roughness measurement, and in-process gauging. Dimensional control during machining prevents costly rework on precision tooling.
Lesson 5 • Cutting Tool Geometry and Selection
Explains rake, relief, and clearance angles and their effect on tool life. Proper tool selection reduces cycle time and improves surface finish on tooling.
Chapter 4HideHide detailsSee detailsHeat Treatment and Material Properties
Heat Treatment and Material Properties
Lesson 1 • Tempering and Stress Relieving
Covers tempering cycles, double tempering, and stress relief annealing. Tempering reduces brittleness while retaining hardness in finished tooling components.
Lesson 2 • Metallurgy Essentials for Toolmakers
Covers iron-carbon phase diagrams, grain structure, and alloying effects. Metallurgical knowledge enables informed material and treatment selection for tooling.
Lesson 3 • Hardening and Quenching Processes
Explains austenitizing temperatures, quench media, and distortion control. Correct hardening produces the wear resistance required in cutting and forming tools.
Lesson 4 • Case Hardening Methods
Introduces carburizing, nitriding, and induction hardening for surface hardness. Case hardening extends tool life where core toughness must be preserved.
Lesson 5 • Post-Treatment Inspection and Correction
Teaches hardness testing methods, crack detection, and straightening distorted parts. Inspection after heat treatment ensures tooling meets specification before finishing.
Chapter 5HideHide detailsSee detailsGrinding and Finishing Operations
Grinding and Finishing Operations
Lesson 1 • Tool and Cutter Grinding
Teaches resharpening of end mills, drills, and form tools on the tool grinder. Maintaining sharp cutting tools reduces cost and maintains machining accuracy.
Lesson 2 • Cylindrical and Internal Grinding
Covers between-centers and centerless grinding of shafts, pins, and bores. Cylindrical grinding achieves the roundness and size tolerances needed in punch and die sets.
Lesson 3 • Lapping, Honing, and Polishing
Introduces abrasive lapping, bore honing, and hand polishing for final finishes. These processes achieve surface roughness and fit quality beyond grinding capability.
Lesson 4 • Surface Grinding Techniques
Teaches magnetic chuck setup, depth of cut, and cross-feed strategies. Surface grinding produces flat reference surfaces and precise thickness on tooling plates.
Lesson 5 • Grinding Wheel Selection and Dressing
Covers abrasive type, grit, grade, and bond selection for tool steel grinding. Correct wheel choice and dressing are prerequisites for accurate, burn-free grinding.
Chapter 6HideHide detailsSee detailsCNC Machining for Toolmakers
CNC Machining for Toolmakers
Lesson 1 • CNC Machine Fundamentals and Setup
Covers machine axes, coordinate systems, and work offset setting on CNC machining centers. Correct setup is the foundation for accurate CNC tooling production.
Lesson 2 • Process Optimization and Quality Verification
Teaches feeds and speeds optimization, in-process probing, and first-article verification on CNC parts. Optimized processes reduce cycle time while maintaining tooling tolerances.
Lesson 3 • CNC Turning for Tooling Components
Covers turning center setup, live tooling, and sub-spindle operations for round tooling parts. CNC turning complements milling for complete tooling component production.
Lesson 4 • CAM Software for Tooling Applications
Introduces CAM toolpath strategies for 2.5D and 3D tooling surfaces. CAM output is verified against manual programming knowledge to catch errors before cutting.
Lesson 5 • G-Code Programming Essentials
Teaches modal and non-modal G-codes, M-codes, and canned cycles for toolmaking operations. Manual programming builds understanding that supports CAM verification and editing.
Chapter 7HideHide detailsSee detailsJig and Fixture Design and Fabrication
Jig and Fixture Design and Fabrication
Lesson 1 • Locating and Clamping Principles
Explains the 3-2-1 locating principle, datum selection, and clamping force direction. These principles govern all fixture designs produced in this and later chapters.
Lesson 2 • Drill Jig Design and Construction
Covers jig body design, drill bushing selection, and leaf vs. box jig configurations. Drill jigs ensure repeatable hole location across production quantities.
Lesson 3 • Fixture Fabrication and Assembly
Covers material selection, component machining, and assembly sequence for fixtures. Fabrication skills from Chapters 3 and 5 are applied to produce complete assemblies.
Lesson 4 • Fixture Verification and Tryout
Teaches dimensional verification of locators, trial machining, and fixture sign-off. Verified fixtures prevent scrap and ensure process capability before production.
Lesson 5 • Milling and Turning Fixture Design
Teaches vise-jaw, angle-plate, and rotary-table fixture configurations for milling. Proper fixture design reduces setup time and improves part-to-part consistency.
Chapter 8HideHide detailsSee detailsDie and Punch Design and Fabrication
Die and Punch Design and Fabrication
Lesson 1 • Blanking and Piercing Die Design
Covers clearance calculation, punch and die size relationships, and strip layout. Correct clearance determines cut quality and die life in blanking operations.
Lesson 2 • Die Assembly, Tryout, and Sharpening
Teaches assembly sequence, press tryout, and die sharpening to restore cutting edges. Proper tryout and maintenance extend die life and maintain part quality.
Lesson 3 • Forming and Bending Die Design
Explains springback compensation, bend radius selection, and blank development. Forming die geometry must account for material behavior to achieve final part shape.
Lesson 4 • Die Set Components and Terminology
Introduces die shoes, guide posts, bushings, punches, and stripper plates. Component knowledge is essential before designing or fabricating any die assembly.
Lesson 5 • Die Component Machining and Grinding
Covers wire EDM, profile grinding, and jig boring for die block production. Precision machining methods from earlier chapters are applied to die component fabrication.
Your valid completion certificate
This course is for you:
Entry-level machinist: wants to move into higher-skilled, better-paid toolroom work.
Manufacturing technician: needs formal toolmaking knowledge to advance on the job.
Vocational student: building a skilled trade foundation before entering the workforce.
Career changer: transitioning from unrelated work into precision manufacturing trades.
Hobbyist metalworker: ready to apply professional-grade techniques to serious projects.
Maintenance mechanic: looking to fabricate custom tooling and fixtures independently.
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