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Industrial Lubrication Course
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Industrial Lubrication Course

Master every aspect of industrial lubrication, from viscosity selection and contamination control to oil analysis and program management. This course gives maintenance technicians and reliability professionals the practical knowledge to reduce equipment failures, extend machine life, and cut lubrication-related costs across any industrial facility.

Dedika for students

What your team will master:

You will learn how lubricant properties, chemistry, and delivery systems work together to protect industrial machinery. The course covers viscosity selection for bearings, gears, hydraulic systems, and compressors using real engineering methods. You will study contamination control strategies, filtration standards, and ISO cleanliness codes that directly impact equipment reliability. Oil analysis techniques, sampling procedures, and report interpretation are covered in full detail. You will also learn how to build and manage a complete plant lubrication program, including task schedules, storage standards, and performance KPIs.

How your team learns in practice Industrial Lubrication Course

How your team practices Industrial Lubrication 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

Fundamentals of Industrial Lubrication

  • Lesson 1 • Core Functions of Lubricants

    Defines the five primary lubricant functions: friction reduction, cooling, sealing, cleaning, and corrosion protection. Links each function to machine reliability.

  • Lesson 2 • Lubrication Regimes

    Explains hydrodynamic, elastohydrodynamic, mixed, and boundary lubrication regimes. Students match operating conditions to the correct regime.

  • Lesson 3 • Lubricant Physical Properties

    Introduces viscosity, density, flash point, and pour point as key selection criteria. Connects each property to specific machine operating requirements.

  • Lesson 4 • Overview of Lubricant Types

    Surveys mineral oils, synthetic fluids, semi-synthetics, and greases at an introductory level. Sets the stage for detailed study in later chapters.

  • Lesson 5 • Friction and Wear Basics

    Covers friction types, wear mechanisms, and their impact on machine life. Provides the physical foundation for understanding why lubrication is essential.

Chapter 2See details

Lubricant Chemistry and Base Stocks

  • Lesson 1 • Synthetic Base Stock Chemistry

    Covers PAOs, esters, polyglycols, and silicones as synthetic base stocks. Highlights performance advantages over mineral oils in extreme conditions.

  • Lesson 2 • Mineral Base Oil Chemistry

    Analyzes paraffinic, naphthenic, and aromatic hydrocarbon structures in mineral oils. Explains how molecular composition drives viscosity and oxidation stability.

  • Lesson 3 • Grease Composition and Thickeners

    Explains soap and non-soap thickener systems, base oil content, and additive packages in grease. Connects thickener type to temperature and load performance.

  • Lesson 4 • Additive Chemistry and Function

    Details antioxidants, anti-wear agents, extreme-pressure additives, and detergents. Students explain how each additive class extends lubricant service life.

  • Lesson 5 • Additive Interactions and Compatibility

    Examines synergistic and antagonistic additive interactions and base stock compatibility. Prevents formulation errors that cause lubricant degradation.

Chapter 3See details

Viscosity and Lubricant Selection

  • Lesson 1 • Selecting Lubricants for Machine Elements

    Guides selection for rolling bearings, plain bearings, gears, and hydraulic systems. Integrates viscosity, additive, and base stock decisions into one process.

  • Lesson 2 • Load, Speed, and Viscosity Selection

    Applies bearing DN values, gear pitch-line velocity, and load factors to viscosity selection. Ensures film thickness adequacy under real operating conditions.

  • Lesson 3 • Viscosity Measurement and Standards

    Covers ISO VG, SAE, and AGMA viscosity classification systems and measurement methods. Enables accurate cross-referencing across industry standards.

  • Lesson 4 • Environmental and Operational Constraints

    Incorporates ambient temperature range, contamination risk, and regulatory requirements into lubricant selection. Balances performance with environmental compliance.

  • Lesson 5 • Viscosity-Temperature Relationships

    Analyzes viscosity index, ASTM blending charts, and temperature correction factors. Students calculate required viscosity at actual operating temperature.

Chapter 4See details

Lubrication Systems and Delivery Methods

  • Lesson 1 • Automatic Lubricators and Grease Systems

    Examines single-point automatic lubricators and multi-point grease systems. Addresses setting discharge rates and verifying delivery to remote lubrication points.

  • Lesson 2 • Centralized Lubrication Systems

    Covers single-line, dual-line, progressive, and oil-mist centralized systems. Students match system type to machine complexity and lubrication frequency needs.

  • Lesson 3 • Circulating Oil Systems

    Details forced-feed circulating systems including pumps, filters, coolers, and reservoirs. Connects system components to continuous film maintenance in critical machinery.

  • Lesson 4 • Manual Lubrication Methods

    Covers oil cans, grease guns, wick oilers, and drip-feed systems used in manual lubrication. Establishes baseline practices before introducing automated systems.

  • Lesson 5 • Splash and Bath Lubrication Systems

    Explains oil bath, splash, and ring-oiler systems used in gearboxes and bearings. Students determine correct oil levels and identify failure indicators.

Chapter 5See details

Contamination Control and Filtration

  • Lesson 1 • Water and Gas Contamination Removal

    Addresses dehydration methods including vacuum dehydration, coalescers, and desiccant breathers. Covers dissolved and free gas removal from circulating systems.

  • Lesson 2 • Sources and Types of Contamination

    Classifies particulate, water, air, and chemical contamination sources in lubricated systems. Establishes the contamination control mindset central to reliability programs.

  • Lesson 3 • Contamination Control Program Design

    Integrates exclusion, removal, and monitoring into a plant-wide contamination control program. Students build a contamination control plan for a representative facility.

  • Lesson 4 • Filtration Technology and Selection

    Covers filter media types, beta ratio, micron rating, and filter placement strategies. Students select filters that achieve target cleanliness without excessive pressure drop.

  • Lesson 5 • Cleanliness Standards and Codes

    Explains ISO cleanliness codes, NAS classes, and SAE cleanliness standards for hydraulic and lubricating oils. Students assign target cleanliness levels to machine types.

Chapter 6See details

Oil Analysis and Condition Monitoring

  • Lesson 1 • Physical and Chemical Oil Tests

    Covers viscosity, acid number, base number, water content, and oxidation tests. Students interpret each result against new-oil and alarm limits.

  • Lesson 2 • Correct Oil Sampling Techniques

    Demonstrates live-zone sampling, vacuum pump extraction, and sample bottle handling to prevent contamination. Correct technique is the single largest variable in data quality.

  • Lesson 3 • Oil Analysis Program Design

    Establishes sampling frequency, sample point selection, and laboratory test slate for a new program. Aligns program scope with machine criticality and failure risk.

  • Lesson 4 • Report Interpretation and Action Limits

    Teaches statistical trending, alarm limit setting, and corrective action decision trees. Students convert lab data into maintenance work orders and fluid change decisions.

  • Lesson 5 • Wear Debris and Particle Analysis

    Applies ICP spectrometry, ferrography, and particle counting to detect machine wear. Students distinguish normal wear from abnormal failure-mode particles.

Chapter 7See details

Lubrication Program Management

  • Lesson 1 • Lubricant Consolidation and Rationalization

    Reduces the number of lubricant products on-site through compatibility analysis and OEM requirement review. Fewer products lower cost, training burden, and cross-contamination risk.

  • Lesson 2 • Lubrication Routes and Scheduling

    Organizes tasks into efficient technician routes and integrates them with the maintenance management system. Reduces travel time and ensures no lubrication point is missed.

  • Lesson 3 • Lubricant Storage and Handling

    Establishes standards for lubricant receiving, storage, labeling, and dispensing to prevent contamination and cross-mixing. Proper storage protects lubricant quality before use.

  • Lesson 4 • Lubrication Task Development

    Creates lubrication task descriptions including lubricant type, quantity, method, and interval. Proper task definition is the foundation of consistent field execution.

  • Lesson 5 • Program KPIs and Continuous Improvement

    Defines lubrication program KPIs including compliance rate, oil analysis findings, and lubricant consumption. Students use KPI data to drive program improvement cycles.

Chapter 8See details

Advanced Lubrication for Critical Equipment

  • Lesson 1 • Compressor and Turbine Lubrication

    Examines lubricant requirements for reciprocating, rotary screw, and centrifugal compressors and gas turbines. Addresses varnish, oxidation, and deposit control.

  • Lesson 2 • Extreme Condition Lubrication Strategies

    Develops lubrication solutions for very high temperatures, cryogenic conditions, vacuum environments, and radiation exposure. Applies specialty lubricants to non-standard operating conditions.

  • Lesson 3 • Gear and Gearbox Lubrication

    Applies viscosity selection, additive requirements, and thermal management to enclosed and open gear systems. Covers worm, helical, bevel, and planetary gear types.

  • Lesson 4 • Lubrication of Rolling Element Bearings

    Covers grease quantity calculation, relubrication intervals, and purge methods for rolling bearings. Addresses over-greasing as the leading cause of bearing failure.

  • Lesson 5 • Hydraulic System Lubrication

    Addresses hydraulic fluid selection, cleanliness requirements, and system flushing procedures. Connects fluid condition to pump, valve, and actuator reliability.

Certification

Your valid completion certificate

This course is for you:

  • Maintenance technician: ready to move beyond reactive repairs into precision lubrication.

  • Reliability engineer: seeking a structured framework to reduce machinery-related downtime.

  • Mechanical engineer: transitioning into asset management and equipment reliability roles.

  • Plant supervisor: wanting to understand lubrication well enough to lead their team.

  • Industrial apprentice: building foundational skills for a long-term maintenance career.

  • Quality or safety professional: expanding expertise into equipment care and compliance.

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