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Titanium Safe Ceramic Assembly Grease 100g hBN Anti Seize WR-HT-NLGI 1

Titanium Safe Ceramic Assembly Grease 100g hBN Anti Seize WR-HT-NLGI 1

Regular price £34.99 GBP
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Titanium Safe Ceramic Assembly Grease 100g hBN Anti Seize WR-HT-NLGI 1 is an advanced hex Boron Nitride (hBN) based anti seize assembly paste. 
Especially useful on high end components that use Titanium parts as these have a high potential for inducing galvanic corrosion.  
WR - Water resistant
HT - High Temperature
NLGI 1 thickness.
Specified especially for multi material use this grease effectively prevents galvanic corrosion between dissimilar metals including: Stainless Steel, Chrome, Aluminium, Other Steels, Aluminium, Brass and importantly Titanium.
Good mechanical stability, exceptional load carrier 
Wide Temperature range -40ºC to +1200ºC (based on ceramic content) 
Worked penetration 310 - 340 - NLGI 1 viscosity (very soft)
Highly water resistant with good sealing properties 
Clean white grease free from graphite and heavy metals
Highly electrically non conductive - prevents galvanic effects
Specified to be usable for complex components and assemblies that use different metal types, this ceramic assembly grease offers significant advantages over other types of anti seize (Copper, Aluminium, Nickel, Zinc, Lead etc).
This superiority comes from the use of Boron Nitride a ceramic lubricant which offers excellent stability at extremes of temperature and very high electrical resistivity. This resistivity makes Ceramic Assembly Grease an optimal choice in preventing galvanic corrosion between dissimilar metals, which could cause parts to become chemically welded to one another over time. Formulated for superior water resistance it maintains lubricity in extreme conditions. 
Assembly grease is for the assembly of parts that while not usually moving, require the ability to be removed easily in the future. Applications include cycle assembly (pedals etc especially where steel meets aluminium), automotive brakes, exhaust parts, fuel injectors etc. 
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