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Archoil AR8300 Severe Duty Biodegradable Synthetic Grease

PRODUCT CODE: AR8300 DEFAULT
AR8300 is the culmination of 10 years of extensive research and development.
Variant Title Product Code
Archoil AR8300 Severe Duty Biodegradable Synthetic Grease - 100gm Jar AR8300 100
Archoil AR8300 Severe Duty Biodegradable Synthetic Grease - 400gm Tube AR8300 400
Archoil AR8300 Severe Duty Biodegradable Synthetic Grease - 400lb Drum AR8300 DRUM
Archoil AR8300 Severe Duty Biodegradable Synthetic Grease - 35lb Pail AR8300 PAIL

Availability: In Stock

RRP: £10.94

Our Price From Excl. VAT: £7.46 From Incl. VAT: £8.95

You Save: £1.99 (18%)

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Product Description

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AR8300 is the culmination of 10 years of extensive research and development. It contains an array of complex minerals, each chosen for their unique characteristics when reduced to nanometers in size. The base oil is the highest quality PAO Durasyn 148 selected for its extreme temperature capabilities. AR8300 actively restores worn surfaces in areas where friction is present.

The minerals interact with each other and the host metal creating a chemical reaction for the bonding and reconstructive process, resulting in a surface with a friction coefficient of 0.003 and 5 times stronger than the host metal. AR8300 remains active on the surface under heavy loads rated at 1,813,000 PSI. This is a tribological breakthrough. AR8300 is for use in extreme environments such as heavy load bearings, curved rail tracks, wind turbines, or wherever the present grease is over-challenged or exceptional lubrication and performance properties are desirable. Greasing intervals may be extended up to 3- 6 times or more.

AR8300 forms a new surface on the host metal, which eliminates corrosion, hydrogen embrittlement and micro-pitting with no chemical reactions to the host oil’s additive package.

FEATURES / BENEFITS

  • Restores areas worn by friction
  • Extends the life of components and bearings
  • Eliminates corrosion
  • Extremely low water washout at 0.05
  • Forms an ionic ceramic bond to the host alloy
  • Reduces heat generation
  • Coefficient of Friction (COF) = 0.003
  • Extreme temperature of ceramic surface withstands 3500ºF
  • Five times harder than the host metal
  • Eliminates hydrogen embrittlement

Falex Pin & Vee Test: Compared to a previous Nanoceramic formulation

  • Decrease of COF from 0.014 to 0.003 (4.5 times)
  • Increase in the linear dimensions of parts (weight gain roller test rig at 0.03 grams)
  • Reduction of linear wear from Ih=6.3x10 -8 = 2.3x10 -8 (3 times)
  • Increase in critical loads from pcr=7.35 MPa to pcr 14.40 MPa (2 times)
  • Restores efficiency
  • Doubles the life of railroad tracks and wheels

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