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Machine Tools Course
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Machine Tools Course

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Master every major machine tool process — from manual lathe turning to CNC programming and precision grinding. This course gives you the hands-on knowledge and technical skills that employers in manufacturing demand. Whether you're entering the trade or leveling up your shop floor expertise, you'll finish ready to produce accurate, high-quality parts.

Dedika for students

What your team will master:

You'll start with shop safety, measurement fundamentals, and blueprint reading, then move into cutting tool selection, lathe and milling operations, and hole-making processes. From there, you'll learn CNC G-code programming for both turning and machining centers, including coordinate systems, canned cycles, and tool compensation. The course also covers precision grinding, surface finishing, and dimensional inspection using statistical process control. Supplementary content introduces CAD/CAM toolpath generation, lean manufacturing, and emerging technologies like digital twins and in-process monitoring. By the end, you'll have a complete, job-ready skill set across the full machining workflow.

How your team learns in practice Machine Tools Course

How your team practices Machine Tools Course

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ActemiumFR
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CDHCN

Course Content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Introduction to Machine Tools

  • Lesson 1 • Workshop Layout and Material Handling

    Explains ergonomic shop layout, workpiece staging, and safe material transport. Efficient layout reduces cycle time and prevents workplace injuries.

  • Lesson 2 • Classification of Machine Tools

    Categorizes tools by operation type: turning, milling, drilling, grinding, and cutting. Establishes a taxonomy used throughout the course.

  • Lesson 3 • Measurement and Inspection Basics

    Introduces precision measuring instruments and their correct use in a machine shop. Accurate measurement underpins quality control in every subsequent chapter.

  • Lesson 4 • History and Evolution of Machine Tools

    Traces machine tool development from manual hand tools to CNC automation. Provides context for understanding modern machining capabilities and industry standards.

  • Lesson 5 • Shop Safety and Hazard Awareness

    Covers personal protective equipment, machine guarding, and emergency procedures. Safety compliance is a prerequisite for all hands-on lab activities.

Chapter 2See details

Engineering Drawings and Process Planning

  • Lesson 1 • Geometric Dimensioning and Tolerancing

    Covers GD&T symbols, datum references, and tolerance zones. Correct GD&T interpretation prevents costly machining errors and rework.

  • Lesson 2 • Material Properties and Machinability

    Reviews ferrous, non-ferrous, and composite materials and their machinability ratings. Material knowledge informs tool selection and cutting speed decisions.

  • Lesson 3 • Surface Finish Specifications

    Explains Ra, Rz, and other roughness parameters and their drawing callouts. Surface finish requirements directly influence tool selection and cutting parameters.

  • Lesson 4 • Reading Orthographic Projections

    Teaches first- and third-angle projection, views, and section cuts. Blueprint literacy is essential before any machining operation can be planned.

  • Lesson 5 • Process Planning and Operation Sheets

    Guides students through sequencing operations, selecting machines, and documenting setups. A complete operation sheet is the deliverable for this section.

Chapter 3See details

Cutting Tools and Tooling Systems

  • Lesson 1 • Milling Cutters and Arbor Systems

    Examines end mills, face mills, and indexable cutters along with arbor and collet systems. Proper toolholder runout directly affects dimensional accuracy.

  • Lesson 2 • Tool Life and Wear Mechanisms

    Identifies flank wear, crater wear, and built-up edge and their causes. Monitoring wear patterns enables timely tool changes and consistent part quality.

  • Lesson 3 • Turning Toolholders and Inserts

    Covers ISO insert designation, toolholder styles, and insert clamping methods. Correct insert selection reduces tool change frequency and improves surface finish.

  • Lesson 4 • Cutting Tool Geometry Fundamentals

    Defines rake, clearance, and cutting edge angles and their effect on chip formation. Geometry knowledge is the basis for all tool selection decisions.

  • Lesson 5 • Tool Materials and Coatings

    Compares HSS, carbide, ceramic, CBN, and diamond tools and their coating options. Material selection balances cost, speed, and workpiece compatibility.

Chapter 4See details

Lathe Operations and Turning Techniques

  • Lesson 1 • Thread Cutting on the Lathe

    Covers single-point thread cutting for external and internal threads in inch and metric forms. Thread accuracy is checked with thread gauges and optical comparators.

  • Lesson 2 • Facing, Turning, and Boring

    Teaches facing, straight turning, shoulder turning, and internal boring procedures. These are the core material removal operations on a lathe.

  • Lesson 3 • Lathe Components and Controls

    Identifies headstock, carriage, tailstock, and feed mechanisms and their functions. Component familiarity is required before any turning operation begins.

  • Lesson 4 • Workholding on the Lathe

    Covers three-jaw, four-jaw, and collet chucks plus between-centers and faceplate setups. Secure workholding prevents vibration and ensures concentricity.

  • Lesson 5 • Taper Turning Methods

    Explains compound rest, tailstock offset, and taper attachment methods for producing tapers. Taper accuracy is verified with taper gauges and blue-check fitting.

Chapter 5See details

Milling Machine Operations

  • Lesson 1 • Milling Machine Types and Components

    Distinguishes vertical, horizontal, and universal mills and identifies their key components. Understanding machine kinematics guides proper setup and operation.

  • Lesson 2 • Indexing and Dividing Head Operations

    Explains simple, compound, and differential indexing for gear and polygon machining. Indexing accuracy is critical for evenly spaced features on rotational parts.

  • Lesson 3 • Slot, Pocket, and Profile Milling

    Covers keyway slotting, rectangular pocket milling, and contour profiling techniques. These operations require precise cutter path planning and depth management.

  • Lesson 4 • Face Milling and Peripheral Milling

    Teaches climb vs. conventional milling, depth of cut selection, and feed rate calculation. Correct milling strategy improves surface finish and extends tool life.

  • Lesson 5 • Workholding and Fixturing for Milling

    Covers vises, clamps, angle plates, and modular fixtures for milling setups. Rigid workholding minimizes chatter and maintains positional accuracy.

Chapter 6See details

Drilling, Boring, and Hole-Making Operations

  • Lesson 1 • Reaming and Precision Hole Finishing

    Covers hand and machine reaming for achieving H7 and tighter tolerance holes. Reaming stock allowance and speed selection determine final hole quality.

  • Lesson 2 • Boring Operations and Boring Bars

    Teaches single-point boring on mills and boring machines for precise diameter and location. Boring corrects drill wander and achieves tolerances unreachable by drilling alone.

  • Lesson 3 • Tapping and Thread Milling

    Covers hand tapping, machine tapping, and thread milling for internal threads. Thread milling offers superior accuracy and is preferred for hard materials.

  • Lesson 4 • Drill Press Setup and Operation

    Covers drill press types, speed and feed selection, and workholding for drilling. Proper setup prevents drill breakage and ensures hole location accuracy.

  • Lesson 5 • Twist Drill Geometry and Grinding

    Explains point angle, helix angle, and web thickness and their effect on drilling performance. Correct drill grinding restores geometry and reduces thrust force.

Chapter 7See details

CNC Machine Tool Programming and Operation

  • Lesson 1 • G-Code and M-Code Programming

    Teaches modal and non-modal G-codes, canned cycles, and M-code functions. Students write complete programs for turned and milled features from drawings.

  • Lesson 2 • CNC Turning Center Operations

    Applies G-code programming to turning centers for OD, ID, and threading operations. Turret indexing and live tooling expand the range of machinable features.

  • Lesson 3 • CNC Machine Architecture and Controls

    Explains CNC axes, servo drives, encoders, and control panel functions. Understanding machine architecture is essential for safe and effective CNC operation.

  • Lesson 4 • CNC Machining Center Operations

    Covers tool magazine management, pallet systems, and 3-axis milling programs. Students produce a multi-feature part using a complete CNC machining center program.

  • Lesson 5 • Coordinate Systems and Work Offsets

    Covers machine zero, program zero, and work coordinate systems (G54–G59). Correct offset setup is the foundation of accurate CNC part production.

Chapter 8See details

Grinding, Finishing, and Quality Control

  • Lesson 1 • Dimensional Inspection and SPC

    Covers CMM operation, attribute gauging, and statistical process control charts. SPC data enables proactive process correction before out-of-tolerance parts are produced.

  • Lesson 2 • Cylindrical and Centerless Grinding

    Covers between-centers and centerless grinding for OD and ID precision finishing. These processes achieve tight roundness and diameter tolerances on shafts and bores.

  • Lesson 3 • Surface Grinding Operations

    Teaches magnetic chuck setup, cross-feed, and down-feed strategies for flat surface grinding. Surface grinding achieves flatness and parallelism within micron-level tolerances.

  • Lesson 4 • Grinding Wheel Selection and Dressing

    Covers abrasive type, grit, grade, and bond selection and wheel dressing procedures. Proper wheel selection and dressing are prerequisites for accurate grinding.

  • Lesson 5 • Honing, Lapping, and Superfinishing

    Explains honing for bore geometry correction, lapping for flat mating surfaces, and superfinishing for ultra-low roughness. Each process targets specific functional surface requirements.

Certification

Your valid completion certificate

This course is for you:

  • Aspiring machinist: wants structured training before entering the manufacturing workforce.

  • Production operator: runs machines daily but lacks formal setup and programming knowledge.

  • Mechanical engineering student: needs practical shop context to complement classroom theory.

  • Career changer: comes from construction or automotive and is pivoting into precision manufacturing.

  • Maintenance technician: supports CNC equipment but wants deeper machining process understanding.

  • Hobbyist machinist: owns or uses a lathe or mill and wants to work at a professional level.

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