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Home Environment

Full range of special lubricants for wind power plants

September 20, 2022
in Environment
Full range of special lubricants for wind power plants
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The spotlight is firmly on the uptake of clean energy sources as the government aims to increase its share of renewable energy in its energy mix from 11% to 41% by 2030. This means the deployment of 11.8 GW of large-scale renewable energy capacity, translating into significant opportunities for both investors and Independent Power Producers (IPPs).

Despite South Africa having some of the best solar and wind energy resources in the world, these only make up about 8% of the country’s energy mix at present. Solar and wind plants can be constructed in a two-year timeframe and have very low running costs.

Modern wind power plants must have the highest possible effectiveness to generate electricity efficiently. Optimum design of the machine elements is required to achieve this over a plant lifetime often exceeding 20 years. Minimising friction in the entire system is critical, but avoiding wear is even more important. Once the moving components such as roller bearings or gear wheels show initial signs of wear, this is irreversible, with a dramatic impact on the service life of components.

In particular, the pitch and yaw bearings in wind power plants are subject to high requirements from a tribological point of view due to the adverse environmental conditions. Conventional greases do not provide adequate wear protection in this instance. The use of solid lubricants has proven to be effective in isolating running surfaces and rolling elements from one another during static and mixed friction phases, thus preventing wear. Due to their high physio-mechanical pressure resistance, these solid lubricants, unlike oils and simple greases, remain between and isolate the surfaces of the components, even under high surface pressures.

Through many years of research activities involving close partners from the wind power industry, FUCHS has succeeded in developing a special mixture of reactive white solid lubricants. Triggered by the action of a defined load, the white solid lubricants form a protective reactive layer on the contact surfaces. This reactive layer reduces friction and above all the wear of the components of the roller bearing.

When it comes to the maintenance of wind power plants, FUCHS offers a full range of special lubricants. “Whether in hot, cold, dry, or aggressive saline environments – wherever wind power stations generate energy – we do everything to ensure that no energy is lost unnecessarily,” comments Ernst Bekker, Specialist Technical Sales, Lubritech Division.

“We have developed specialty lubricants for this purpose which clearly contribute to reducing the wear on equipment and thus significantly reduce your maintenance effort and expenditure, all for ideally smooth generation with no loss of energy and with optimal frictional wear protection,” adds Giles Cutter, Export Divisional Manager.

For pitch and yaw bearings, GLEITMO 585 K is a well-proven, fully synthetic special lubricant containing reactive white solid lubricants. This synergistic combination offers excellent protection against wear, even under critical operation conditions like vibration and small oscillations under high load, which are typical for pitch and yaw bearings in wind turbines. It is also ideal for gear lubrication of pitch and yaw bearings using lubrication pinions.

STABYL LX 460 SYN is a fully synthetic high-performance grease developed especially for use in wind turbines. Due to its wide operating temperature range, high mechanical stability, and outstanding load-carrying capacity, this grease is ideal for the lubrication of the main rotor bearings. Moreover, it can also be used as a multifunctional grease in the demanding lubricating areas of azimuth and pitch bearings due to its special properties.

CEPLATTYN BL WHITE is a white adhesive lubricant with reactive solid lubricants. It is used as a lubricant for machines and machine components operating under difficult conditions and subject to extreme temperature fluctuations and environmental influences. A specialised application is the lubrication of azimuth and pitch gear rings in wind turbines.

URETHYN XHD 2 is a soft lubricating grease with a synthetic hydrocarbon base oil and a very temperature-resistant polyurea thickener. A selected additive package provides excellent wear protection, even at fluctuating speeds, temperatures, and loads.

Tags: energylubricantssolar
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  • Home
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  • Intro
    • About Us
    • Your Road Map to a Safer Workplace
    • Mining Safety in SA
    • Zero Injuries
    • Prevent Repeat Accidents at Mines
  • Vehicles
    • Tyre Safety
      • Introduction to Tyre Safety
      • The Different Machines And Their Applications
      • Tyre Use
      • Factors affecting tyre wear life
      • Machine Inspection
      • Tyre Inspection
      • Mounting & Demounting Tyres
      • Tyre Inflation
      • Twinning Tyres
      • Ballasting the Tyres
      • Regrooving Tyres
      • Tyre Repairs
      • Tyre Retreading
      • Tyre Handling and Storage
      • Tyre Workshops
      • Glossary
      • Tyre safety, Fires and Explosions in Mines
      • Minimising Tyre Fires and Explosions at our Mines
    • Safe Working/Driving Conditions at Mines
    • Transportation of Dangerous Goods
      • Behaviour Based Safety and Accidents
      • Transportation of Chemicals and AARTO
      • Awareness of Chemicals in Transit
      • Steps to Transport Dangerous Goods Safely
    • Traffic Calming
    • 4×4 Off-Road Driving
      • 4×4 Off-Road Driving Techniques
      • 4×4 Water Crossings
      • 4×4 Driving Hills & Rocky Surfaces
      • 4×4 Driving with Mud Tyres and Mud Driving
      • 4×4 Sand Driving Safety
      • Tools and Spare Parts for Safe 4×4 Driving
      • 4×4 Jacking & Snatch Recovery
      • 4×4 Terrain Knowledge
      • 4×4 Off-Road Driving and Conservation
      • 4×4 Winter Driving
      • 4×4 Driving and Usage of Recovery Straps
      • 4X4 Winch Guide
      • 4×4 Driving and Vehicle Insurance
    • Ctrack Fleet Management
    • Vehicle Maintenance
    • Driver Fitness
    • Rail /Level Crossings and Mining Safety
    • Safe Driving Techniques
    • Fleet Management in the Mining Industry
    • Overloading of Vehicles
  • Tools
    • Essential Tips for Power Tool Safety
    • Prevent and Control Fires when Welding
  • Health
    • Medical Condition
      • Alcohol and Drugs
      • Back Pain
      • Cholera
      • Cholesterol
      • Diabetes
      • Malaria
      • Nutrition
      • STI’S and HIV
      • Tuberculosis
      • Steps to Safer, Healthier Mining Employees
      • Respiratory Silicosis
    • Battery Charging Rooms
    • Vision
      • Eyesight
      • Eye Care and Mining Safety
      • Eye Conditions
      • Clear Vision and Mining Safety
    • Fitness
      • Fatigue
      • Driver Fatigue
    • Hearing
    • Trauma Counseling
  • Gear And Clothing
    • Eye Protection
    • Protective Clothing
    • Preventing Hand Injuries
    • Gloves for Mining Safety
    • Gloves Selection
    • Harness Safety
      • Selection, Fit and Use
      • Equipment Hazards
      • Adjustment of Harnesses
      • Inspection and Maintenance
  • Machinery
    • Lock Out Machinery in the Mining Industry
    • Safety and Mining Machinery
    • Preventing Amputations
      • Introduction
      • Recognizing Amputation
      • Controlling Amputation Hazards Part 1
      • Controlling Amputation Hazards Part 2
      • Specific Machine Hazards Part 1
      • Specific Machine Hazards Part 2
    • Avoiding Accidents
    • Live Testing in the Mining Industry
  • Emergency
    • How to Handle an Emergency!
    • Accident Scene Safety
    • CPR and Mining Safety
    • Post-Traumatic Stress After An Accident
    • Trapped Miner Locators
    • Emergency Preparedness and Response
    • Emergency Medical Response
  • Environment
    • Spill Prevention
    • Environmental Sensing Instruments
  • Training
    • Young Workers Safety at Mines
    • First Rule of Safety: Know Your Job
    • Incident and non-conformance management in the Mining Industry
    • Reducing Mining Accidents by Evaluating Behavior
    • The effect of training on the risk tolerance of workers
    • Hazard Identification at the Mining Site
    • Special Lifting Situations
    • Zero Incidents through SLAM

© 2021 Mining Safety - Mining Safety and Health Education, Information and Advice.