
Lubrication Course
Master every aspect of industrial lubrication, from base oil chemistry and grease technology to contamination control and oil analysis. This course gives maintenance professionals the practical knowledge to reduce equipment failures, cut lubricant costs, and extend asset life. If you work with machinery, this is the technical edge your career needs.
What you'll learn:
This course covers lubrication science from the ground up, starting with friction, wear mechanisms, and lubricant properties, then moving into base oil chemistry, additive functions, and viscosity grade systems. You will learn how to select the right lubricant for bearings, gearboxes, hydraulic systems, and compressors. Grease technology, centralised delivery systems, and contamination control strategies are covered in detail. You will also develop hands-on skills in oil sampling, lab report interpretation, and wear debris analysis. The final chapters show you how to design, assess, and continuously improve a plant-wide lubrication programme.
How you study in practice Lubrication Course
How you practise Lubrication Course
For businesses looking to train their team
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 detailsFundamentals of Lubrication Science
Fundamentals of Lubrication Science
Lesson 1 • Wear Mechanisms and Failure Modes
Examines adhesive, abrasive, corrosive, and fatigue wear. Links each mechanism to specific lubrication failures observed in the field.
Lesson 2 • Friction and Its Industrial Impact
Covers static, kinetic, and rolling friction types and their energy costs. Establishes why friction control is central to lubrication practice.
Lesson 3 • Lubrication Regimes
Introduces hydrodynamic, elastohydrodynamic, mixed, and boundary lubrication regimes. Connects regime selection to operating conditions and component life.
Lesson 4 • Overview of Lubricant Types
Surveys mineral oils, synthetic oils, semi-synthetics, greases, and solid lubricants. Provides context for detailed product study in subsequent chapters.
Lesson 5 • Properties of Lubricants
Defines viscosity, viscosity index, flash point, pour point, and density. These properties form the basis for lubricant selection in later chapters.
Chapter 2HideHide detailsSee detailsBase Oils and Additive Chemistry
Base Oils and Additive Chemistry
Lesson 1 • Base Oil Classification Groups
Covers industry base oil group classifications by saturation and viscosity index. Explains how group selection affects performance and compatibility.
Lesson 2 • Synthetic Base Stock Chemistry
Examines PAOs, esters, polyglycols, and silicones at a molecular level. Connects chemical structure to thermal stability, biodegradability, and compatibility.
Lesson 3 • Oxidation Inhibitors and Detergents
Covers antioxidant mechanisms, detergent-dispersant chemistry, and their effect on oil life. Explains how these additives maintain cleanliness and extend drain intervals.
Lesson 4 • Viscosity Modifiers and Other Additives
Explains viscosity index improvers, pour point depressants, foam inhibitors, and corrosion inhibitors. Completes the additive picture needed for formulation decisions.
Lesson 5 • Antiwear and Extreme-Pressure Additives
Details ZDDP, phosphate esters, and sulfur-based EP additives and their activation mechanisms. Guides correct additive selection for load and temperature conditions.
Chapter 3HideHide detailsSee detailsLubricant Selection and Specification
Lubricant Selection and Specification
Lesson 1 • Industry Performance Standards
Reviews API, ACEA, AGMA, and OEM performance categories and their test requirements. Enables students to read and interpret lubricant data sheets accurately.
Lesson 2 • Hydraulic and Compressor Fluid Selection
Identifies viscosity, cleanliness, and additive requirements for hydraulic systems and compressors. Highlights fire-resistant and biodegradable fluid options for special environments.
Lesson 3 • Viscosity Grade Systems
Covers ISO VG, SAE engine, SAE gear, and NLGI grease grade systems. Provides the classification framework used throughout lubricant selection.
Lesson 4 • Selecting Lubricants for Bearings
Applies speed factor, load, and temperature criteria to rolling and plain bearing selection. Bridges theory from earlier chapters to practical bearing lubrication decisions.
Lesson 5 • Gear and Gearbox Lubricant Selection
Covers spur, helical, bevel, and worm gear lubrication requirements and viscosity selection. Addresses EP additive needs based on gear geometry and contact stress.
Chapter 4HideHide detailsSee detailsGrease Technology and Application
Grease Technology and Application
Lesson 1 • Grease Compatibility and Changeover
Explains thickener incompatibility risks and safe procedures for switching grease types. Prevents equipment damage during lubricant changeover projects.
Lesson 2 • Grease Performance Characteristics
Covers dropping point, oil separation, oxidation stability, and water washout resistance. Connects each property to field performance and relubrication intervals.
Lesson 3 • Grease Composition and Structure
Explains base oil, thickener, and additive roles in grease performance. Establishes the structural basis for understanding grease behaviour under load and temperature.
Lesson 4 • Grease Application Methods
Details manual, automatic, and centralised grease delivery systems and their correct use. Addresses overgreasing and undergreasing consequences for bearing life.
Lesson 5 • Thickener Chemistry and Properties
Compares lithium, calcium, polyurea, and complex soap thickeners by temperature range and water resistance. Guides thickener selection for specific operating environments.
Chapter 5HideHide detailsSee detailsLubrication Systems and Delivery Methods
Lubrication Systems and Delivery Methods
Lesson 1 • Circulating Oil Systems
Details forced-feed circulating systems including pumps, filters, coolers, and reservoirs. Connects system design to cleanliness, temperature control, and reliability.
Lesson 2 • Centralised Lubrication Systems
Covers single-line, dual-line, progressive, and oil-air centralised systems. Addresses installation, commissioning, and troubleshooting of automated delivery networks.
Lesson 3 • Manual Lubrication Practices
Covers oil can, grease gun, and hand-pump methods with correct technique and scheduling. Establishes baseline practices before introducing automated systems.
Lesson 4 • Mist and Minimum Quantity Lubrication
Introduces oil mist and minimum quantity lubrication for high-speed and machining applications. Highlights environmental and health considerations for mist systems.
Lesson 5 • Splash and Bath Lubrication Systems
Explains oil bath, splash, and ring-oiling systems used in gearboxes and bearings. Covers oil level management and temperature effects on film formation.
Chapter 6HideHide detailsSee detailsContamination Control and Filtration
Contamination Control and Filtration
Lesson 1 • Kidney Loop and Off-Line Filtration
Explains off-line filtration circuits for continuous oil polishing independent of main system flow. Covers sizing, flow rate, and integration with existing lubrication systems.
Lesson 2 • Breathers, Seals, and Exclusion Devices
Covers desiccant breathers, lip seals, labyrinth seals, and positive-pressure exclusion. Addresses contamination prevention at the source before filtration is needed.
Lesson 3 • Cleanliness Standards and Targets
Explains ISO cleanliness codes and how to set targets based on component sensitivity. Provides the measurement framework for contamination control programmes.
Lesson 4 • Sources and Effects of Contamination
Catalogues built-in, ingressed, and generated contamination and their damage mechanisms. Quantifies the relationship between particle count and bearing fatigue life.
Lesson 5 • Filter Types and Selection
Compares depth, surface, and magnetic filters by media, micron rating, and beta ratio. Guides filter selection to achieve and maintain target cleanliness levels.
Chapter 7HideHide detailsSee detailsOil Analysis and Condition Monitoring
Oil Analysis and Condition Monitoring
Lesson 1 • Contamination Identification and Control
Identifies water, fuel, coolant, dirt, and cross-contamination sources in oil samples. Connects contamination type to corrective maintenance actions.
Lesson 2 • Interpreting Oil Analysis Reports
Teaches alarm limit setting, trend analysis, and report interpretation for actionable decisions. Integrates oil analysis into a broader predictive maintenance programme.
Lesson 3 • Wear Debris and Particle Analysis
Covers spectrometric, ferrographic, and particle count analysis for detecting machine wear. Identifies wear particle morphology linked to specific failure mechanisms.
Lesson 4 • Physical and Chemical Oil Tests
Explains viscosity, acid number, base number, water content, and flash point tests. Links each test result to specific lubricant degradation or contamination conditions.
Lesson 5 • Oil Sampling Techniques
Covers sampling location, frequency, and equipment to obtain representative oil samples. Correct sampling is the foundation of reliable oil analysis data.
Chapter 8HideHide detailsSee detailsLubrication Programme Management
Lubrication Programme Management
Lesson 1 • Lubrication Task Development
Creates detailed lubrication routes, task cards, and frequency schedules based on equipment criticality. Ensures consistent execution of lubrication tasks across shifts and crews.
Lesson 2 • Lubrication Programme Assessment
Uses gap analysis and audit tools to evaluate current lubrication practices against best standards. Identifies priority improvement areas to guide programme development.
Lesson 3 • Lubricant Consolidation and Standardisation
Reduces lubricant SKU count through cross-referencing and rationalisation without compromising performance. Lowers procurement costs and cross-contamination risk.
Lesson 4 • Key Performance Indicators and Continuous Improvement
Defines lubrication KPIs including bearing life, oil consumption, and failure rates. Applies continuous improvement cycles to sustain and advance programme performance.
Lesson 5 • Lubricant Storage and Handling
Establishes proper storage conditions, labelling, dispensing, and disposal practices for lubricants. Prevents contamination and degradation before lubricants reach equipment.
Your valid completion certificate
This course is for you:
Maintenance Technician: wants structured knowledge to back up years of hands-on experience.
Reliability Engineer: needs a deeper lubrication foundation to reduce recurring asset failures.
Mechanical Engineer: looking to expand practical skills beyond design into equipment upkeep.
Maintenance Supervisor: responsible for team performance and wants to raise lubrication standards.
Industrial Millwright: ready to move into a specialist reliability or lubrication analyst role.
Career Changer: transitioning into industrial maintenance and building credibility from the ground up.
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