
Tooling Course
Master every stage of industrial tooling — from shop safety and precision measurement to CNC setup, tool management, and advanced machining strategies. This course gives machinists, tooling technicians, and manufacturing engineers the hands-on knowledge to reduce scrap, cut downtime, and boost productivity on the shop floor.
What you will learn:
You will build a complete foundation in tooling terminology, safety regulations, and tool classification systems used across manufacturing industries. You will develop precision measurement skills, interpret engineering tolerances, and apply GD&T to real part specifications. You will analyze cutting tool materials, coatings, and geometries to make confident tool selections for any operation. You will master workholding principles, CNC offset management, and presetting procedures that reduce setup time and first-part scrap. You will also learn tooling inventory control, cost analysis, lean changeover methods, and data-driven strategies for high-performance machining.
How you study in practice Tooling Course
How you practice Tooling 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 detailsFoundations of Tooling and Shop Safety
Foundations of Tooling and Shop Safety
Lesson 1 • Regulatory and Quality Standards
Surveys workplace safety regulations and quality management frameworks relevant to tooling. Compliance awareness underpins safe and auditable practice throughout the course.
Lesson 2 • Personal Protective Equipment
Defines PPE categories required for tooling operations and correct usage procedures. Proper PPE selection is a prerequisite for all hands-on activities in later chapters.
Lesson 3 • Tooling Industry Overview
Introduces the scope of tooling across manufacturing sectors and defines key vocabulary. Establishes the professional context that frames all subsequent technical content.
Lesson 4 • Shop Environment and Hazard Awareness
Covers physical hazards present in machining and fabrication environments. Connects hazard recognition to the safety behaviors required throughout the course.
Lesson 5 • Tool Classification Systems
Presents standard systems for classifying cutting, forming, and holding tools. Classification fluency enables accurate tool selection and communication in subsequent chapters.
Chapter 2HideHide detailsSee detailsMeasurement, Inspection, and Tolerancing
Measurement, Inspection, and Tolerancing
Lesson 1 • Inspection Planning and Reporting
Guides students through creating inspection plans and recording measurement data. Structured reporting supports quality decisions and feeds into process improvement activities.
Lesson 2 • Hand Measurement Tools
Covers proper use of calipers, micrometers, and dial indicators for direct measurement. Proficiency with hand tools is required before operating machine-based gauging systems.
Lesson 3 • Geometric Dimensioning and Tolerancing
Introduces GD&T symbols, datums, and feature control frames as used on engineering drawings. GD&T literacy is essential for interpreting tooling and part specifications.
Lesson 4 • Measurement Principles and Units
Establishes the physical principles of dimensional measurement and unit systems. Accurate unit conversion and calibration awareness are foundational to all inspection tasks.
Lesson 5 • Surface Finish Measurement
Explains surface roughness parameters and the instruments used to quantify them. Surface finish directly affects tool life and part performance covered in later chapters.
Chapter 3HideHide detailsSee detailsCutting Tool Materials and Geometry
Cutting Tool Materials and Geometry
Lesson 1 • Cutting Tool Geometry Fundamentals
Defines rake angle, clearance angle, cutting edge angle, and nose radius parameters. Geometry understanding is prerequisite to optimizing chip formation and surface finish.
Lesson 2 • Tool Wear Mechanisms and Life
Describes flank wear, crater wear, built-up edge, and thermal failure modes. Recognizing wear patterns enables timely tool changes and process adjustments covered in later chapters.
Lesson 3 • Tool Coatings and Surface Treatments
Examines PVD, CVD, and other coating technologies that extend tool life and reduce friction. Coating selection is linked to workpiece material and cutting conditions discussed later.
Lesson 4 • Cutting Tool Material Types
Compares high-speed steel, carbide, cermet, ceramic, and superhard tool materials. Material selection directly determines cutting speed, feed, and tool life in machining operations.
Lesson 5 • Insert Identification and Standards
Decodes industry-standard insert designation systems for shape, size, and tolerance. Correct insert identification ensures accurate ordering and toolholder compatibility.
Chapter 4HideHide detailsSee detailsWorkholding and Fixturing Principles
Workholding and Fixturing Principles
Lesson 1 • Modular and Flexible Fixturing Systems
Examines modular fixturing components and quick-change systems for high-mix production. Flexible fixturing reduces setup time and supports the lean manufacturing concepts in later chapters.
Lesson 2 • Vises, Chucks, and Standard Workholding
Reviews machine vises, lathe chucks, collets, and magnetic chucks as standard workholding devices. Familiarity with standard devices accelerates setup time in machining operations.
Lesson 3 • Fixture Design and Error Analysis
Introduces fixture design workflow and sources of positional error in workholding setups. Error analysis skills connect directly to tolerance verification covered in the measurement chapter.
Lesson 4 • Degrees of Freedom and Locating
Explains the six degrees of freedom concept and the 3-2-1 locating principle. Proper constraint of workpiece motion is the foundation of all fixturing design decisions.
Lesson 5 • Clamping Methods and Forces
Covers strap clamps, toggle clamps, hydraulic clamps, and clamping force calculations. Correct clamping prevents workpiece movement without inducing distortion during cutting.
Chapter 5HideHide detailsSee detailsMachining Operations and Process Parameters
Machining Operations and Process Parameters
Lesson 1 • Grinding and Finishing Operations
Introduces surface, cylindrical, and centerless grinding along with honing and lapping. Finishing operations achieve the surface finish and tolerance levels specified in engineering drawings.
Lesson 2 • Milling Operations and Parameters
Addresses face milling, peripheral milling, slotting, and contouring with correct cutter engagement. Milling parameter optimization requires workholding and tool geometry knowledge from prior chapters.
Lesson 3 • Turning Operations and Parameters
Covers external and internal turning, facing, grooving, and threading on lathes. Parameter selection for turning builds directly on tool geometry and material knowledge from earlier chapters.
Lesson 4 • Cutting Theory and Chip Formation
Explains orthogonal cutting mechanics, chip types, and heat generation in the cutting zone. Theoretical understanding of chip formation guides parameter selection in all machining operations.
Lesson 5 • Drilling, Reaming, and Boring
Presents hole-making operations from spot drilling through precision boring and reaming. Hole accuracy requirements connect to the tolerancing and inspection skills developed earlier.
Chapter 6HideHide detailsSee detailsTooling Setup, Presetting, and Offsets
Tooling Setup, Presetting, and Offsets
Lesson 1 • Toolholder Types and Interfaces
Compares CAT, BT, HSK, and capto toolholder interfaces for machining centers and lathes. Interface selection affects rigidity and runout, which directly impacts surface finish and tool life.
Lesson 2 • Tool Assembly and Runout Control
Covers correct insert seating, screw torque, and shrink-fit assembly to minimize runout. Runout control is critical for achieving the tolerances and surface finishes specified in drawings.
Lesson 3 • Tool Presetting Equipment and Methods
Explains optical, contact, and laser presetting systems for measuring tool length and diameter. Presetting off-machine eliminates manual touch-off errors and reduces spindle downtime.
Lesson 4 • CNC Tool Length and Radius Offsets
Guides entry and verification of tool length compensation and cutter radius compensation values. Correct offset management is essential for dimensional accuracy on CNC machining centers.
Lesson 5 • Work Coordinate Systems and Datum Setting
Establishes work coordinate system concepts and methods for setting part zero on CNC machines. Accurate datum setting ties workholding alignment to programmed tool paths for correct part geometry.
Chapter 7HideHide detailsSee detailsTooling Management and Inventory Control
Tooling Management and Inventory Control
Lesson 1 • Tool Cost Analysis and Optimization
Quantifies cost per edge, cost per part, and total tooling cost as optimization metrics. Cost analysis connects tool management decisions to overall manufacturing profitability.
Lesson 2 • Tool Life Tracking and Usage Data
Explains methods for recording tool usage cycles, edge counts, and remaining life estimates. Usage data enables predictive replacement and feeds cost-per-part analysis in the next section.
Lesson 3 • Tool Crib Organization and Storage
Covers physical storage layouts, shadow boards, and controlled dispensing for tool cribs. Organized storage reduces search time and prevents damage to precision cutting tools.
Lesson 4 • Inventory Replenishment and Procurement
Addresses reorder point calculation, vendor lead times, and consignment stocking agreements. Effective replenishment prevents production stoppages caused by tool stockouts.
Lesson 5 • Tool Identification and Coding Systems
Introduces barcode, RFID, and alphanumeric coding schemes for unique tool identification. Consistent identification is the prerequisite for accurate inventory tracking and usage data collection.
Chapter 8HideHide detailsSee detailsAdvanced Tooling Strategies and Optimization
Advanced Tooling Strategies and Optimization
Lesson 1 • Tooling Strategy for Difficult Materials
Addresses tooling selection and parameter strategies for titanium, Inconel, hardened steel, and composites. Difficult-material strategies synthesize all prior knowledge of geometry, coatings, and parameters.
Lesson 2 • High-Performance Machining Strategies
Covers trochoidal milling, high-feed milling, and dynamic toolpaths for aggressive material removal. These strategies build on parameter and geometry knowledge from earlier machining chapters.
Lesson 3 • Vibration, Chatter, and Stability
Explains chatter mechanisms, stability lobe diagrams, and damping solutions for tooling systems. Chatter suppression is essential for achieving tight tolerances at high cutting parameters.
Lesson 4 • Cutting Fluid and Coolant Strategies
Evaluates flood coolant, minimum quantity lubrication, and dry machining for different applications. Coolant strategy affects tool life, surface finish, and environmental compliance simultaneously.
Lesson 5 • Process Monitoring and Adaptive Control
Introduces spindle load monitoring, acoustic emission sensing, and adaptive feed control systems. Real-time monitoring enables automatic parameter adjustment to protect tools and maintain quality.
Your valid completion certificate
This course is for you:
Machinist: wants to move beyond trial-and-error into systematic tooling decisions.
Manufacturing technician: needs structured knowledge to handle complex shop floor challenges.
CNC operator: ready to take ownership of setup, offsets, and tool selection.
Industrial engineering student: building practical skills to complement classroom theory.
Career changer: transitioning into manufacturing from an unrelated technical background.
Tool crib supervisor: seeking frameworks to control inventory costs and reduce downtime.
What our students say
Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to switch platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can switch chapters and skip content I don't need.

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