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Motor Rewinding Course
More than 2 million learners worldwide

Motor Rewinding Course

4.7

Master every stage of motor rewinding, from disassembly and winding design to impregnation and final testing. This course gives you the hands-on skills and technical knowledge to rewind AC and DC motors to nameplate specifications. Get job-ready with real workshop procedures used by professional rewinding technicians.

Dedika for businesses

What you will learn:

You will learn how to safely disassemble, inspect, and document failed motors before any rewinding begins. The course covers winding calculations, coil winding, slot insulation preparation, and complete stator rewinding procedures. You will apply varnish impregnation methods and perform electrical and mechanical tests to verify quality. DC motor armature rewinding, single-phase motors, and wound-rotor motors are also covered. You will also develop skills in job estimation, workshop management, and energy efficiency practices.

How you study in practice Motor Rewinding Course

How you practise Motor Rewinding 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 specific needs of your company.

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Course content

8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Workshop Safety and Tool Proficiency

  • Lesson 1 • Electrical Test Instruments

    Explains multimeters, megohmmeters, and surge testers used to evaluate winding condition. Accurate instrument use is foundational to fault diagnosis and quality verification.

  • Lesson 2 • Hand Tools and Measuring Instruments

    Introduces winding tools, slot wedge drivers, mallets, and precision measuring instruments. Correct tool use prevents winding damage and ensures accurate dimensional data.

  • Lesson 3 • Workshop Organisation and Housekeeping

    Addresses workbench layout, chemical storage, ventilation requirements, and waste disposal. A well-organised workspace reduces errors and supports consistent rewinding quality.

  • Lesson 4 • Electrical Safety Protocols

    Covers lockout/tagout procedures, arc flash awareness, and personal protective equipment selection. Safety compliance is mandatory before any hands-on motor work begins.

Chapter 2See details

Foundations of Electric Motor Technology

  • Lesson 1 • Electrical Fundamentals for Rewinders

    Reviews Ohm's law, resistance, inductance, and power factor as they relate to winding design. Ensures students can interpret electrical measurements taken during testing.

  • Lesson 2 • Motor Construction and Components

    Identifies stator, rotor, bearings, end bells, and insulation systems. Understanding each component's role is essential before disassembly and rewinding procedures begin.

  • Lesson 3 • Electric Motor Types and Applications

    Covers AC and DC motor classifications, their industrial uses, and key differences. Establishes context for selecting appropriate rewinding procedures throughout the course.

  • Lesson 4 • Core Electromagnetic Principles

    Explains magnetic flux, Faraday's law, and Lenz's law as applied to motor operation. Provides the theoretical basis for understanding winding behaviour and fault diagnosis.

Chapter 3See details

Motor Disassembly and Inspection

  • Lesson 1 • Systematic Motor Disassembly

    Covers step-by-step removal of end bells, bearings, rotor, and stator using correct tools. Proper sequence prevents mechanical damage and preserves reusable components.

  • Lesson 2 • Original Winding Data Collection

    Extracts coil pitch, turns per coil, wire gauge, and connection data from existing windings. This data forms the blueprint for accurate rewinding.

  • Lesson 3 • Pre-Disassembly Documentation

    Teaches marking, photographing, and recording all motor data before disassembly. Accurate records prevent assembly errors and preserve original design specifications.

  • Lesson 4 • Stator Core Inspection and Testing

    Evaluates core lamination condition, slot geometry, and core loss using loop tests. Core integrity directly affects rewound motor efficiency and longevity.

  • Lesson 5 • Winding Failure Analysis

    Identifies burn patterns, insulation breakdown, moisture damage, and mechanical faults. Failure analysis guides rewinding decisions and prevents repeat failures.

Chapter 4See details

Winding Design and Calculation

  • Lesson 1 • Winding Specification Sheet Preparation

    Compiles all calculated parameters into a complete winding specification document. This sheet guides coil winding, insertion, and connection throughout the rewinding process.

  • Lesson 2 • Turns and Wire Gauge Calculations

    Covers flux density, voltage per turn, and current density formulas to determine turns count and wire size. Correct calculations ensure rated performance and thermal compliance.

  • Lesson 3 • Coil Pitch and Pole Configuration

    Calculates coil pitch, pole pitch, and chording factors for single and three-phase motors. Pitch selection affects harmonic content and motor efficiency.

  • Lesson 4 • Winding Configuration Fundamentals

    Explains lap, concentric, and wave winding configurations and their performance trade-offs. Configuration selection determines coil layout and insertion strategy.

  • Lesson 5 • Slot Fill and Insulation Allowances

    Calculates slot fill ratios and allocates space for slot liners, phase separators, and wedges. Proper fill prevents insulation damage during insertion and ensures thermal performance.

Chapter 5See details

Coil Winding and Insulation Preparation

  • Lesson 1 • Slot Liner and Phase Insulation Preparation

    Covers cutting, forming, and installing slot liners, phase separators, and interlayer insulation. Correct insulation placement is critical to dielectric strength and long service life.

  • Lesson 2 • Hand and Machine Coil Winding

    Demonstrates hand winding and coil winding machine operation for accurate turn counts. Consistent tension and layer control produce coils that fit slots without damage.

  • Lesson 3 • Coil Former Setup and Adjustment

    Covers adjusting coil formers to match coil pitch, span, and depth from the winding specification. Correct former setup is the first step to dimensionally accurate coils.

  • Lesson 4 • Coil Dimensional Verification

    Measures finished coils against specification for pitch, overhang length, and cross-section. Dimensional accuracy prevents insertion damage and ensures correct end-turn clearance.

  • Lesson 5 • Magnet Wire Selection and Handling

    Identifies magnet wire insulation grades, temperature ratings, and handling requirements. Wire selection must match the motor's thermal class and operating environment.

Chapter 6See details

Stator Rewinding and Connection

  • Lesson 1 • Winding Connection Methods

    Covers star, delta, and series/parallel connection schemes with correct lead identification. Accurate connections determine voltage rating, speed, and torque characteristics.

  • Lesson 2 • Old Winding Removal Techniques

    Covers thermal stripping, mechanical removal, and slot cleaning without core damage. Clean slots with intact laminations are essential for quality coil insertion.

  • Lesson 3 • End-Turn Forming and Bracing

    Shapes end turns to correct overhang geometry and binds them for mechanical stability. Proper end-turn forming prevents vibration damage and maintains clearance.

  • Lesson 4 • Coil Insertion Procedures

    Demonstrates systematic coil insertion sequence, slot wedging, and phase separator placement. Correct insertion order prevents coil crossing and maintains designed coil pitch.

  • Lesson 5 • Pre-Impregnation Electrical Testing

    Performs resistance balance, insulation resistance, and surge tests before varnish treatment. Early fault detection avoids wasted impregnation materials and rework time.

Chapter 7See details

Varnish Impregnation and Curing

  • Lesson 1 • Dip and Bake Impregnation Process

    Covers pre-heat, dip, drain, and cure cycle parameters for dip-and-bake impregnation. Correct cycle control ensures full penetration and void-free insulation.

  • Lesson 2 • Cure Verification and Quality Checks

    Assesses cure completeness through hardness, colour, and post-cure insulation resistance tests. Verified cure quality is required before motor reassembly and final testing.

  • Lesson 3 • Varnish and Resin Systems Overview

    Compares solvent-based varnishes, solventless resins, and epoxy systems by thermal class and application. Material selection must match the motor's insulation class and service environment.

  • Lesson 4 • Trickle and Roller Impregnation

    Demonstrates trickle impregnation for in-place treatment and roller coating for small motors. These methods offer speed and economy for appropriate motor sizes and duty classes.

  • Lesson 5 • Vacuum Pressure Impregnation

    Explains vacuum pressure impregnation equipment, cycle programming, and resin management. VPI achieves superior void elimination for high-voltage and demanding duty motors.

Chapter 8See details

Motor Reassembly, Testing, and Commissioning

  • Lesson 1 • Mechanical Performance Testing

    Measures vibration, noise, bearing temperature, and shaft runout during no-load and load runs. Mechanical test results confirm assembly quality and bearing condition.

  • Lesson 2 • Mechanical Reassembly Procedures

    Guides rotor installation, end bell alignment, and fastener torque sequencing for correct assembly. Proper alignment prevents bearing overload and ensures smooth rotor rotation.

  • Lesson 3 • Commissioning and Return to Service

    Covers final documentation, test report preparation, and customer handover procedures. Complete records support warranty claims and future maintenance planning.

  • Lesson 4 • Bearing Selection and Installation

    Covers bearing type selection, fit tolerances, lubrication, and press-fit installation procedures. Correct bearing installation is critical to motor reliability and vibration levels.

  • Lesson 5 • Post-Assembly Electrical Testing

    Performs insulation resistance, winding resistance, and high-potential tests on the assembled motor. These tests confirm winding integrity after mechanical assembly stresses.

Certification

Your valid completion certificate

This course is for you:

  • Maintenance electrician: wants to handle motor repairs without outsourcing to specialists.

  • Industrial mechanic: needs rewind skills to reduce facility downtime and costs.

  • Apprentice electrician: building a specialized trade skill early in their career.

  • Career changer: transitioning from general labor into a technical, higher-paying trade.

  • Small workshop owner: looking to expand service offerings into motor rewinding.

  • Engineering student: seeking practical, hands-on knowledge to complement classroom theory.

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