OBERON F231

SUPERIOR TEXTILE SPINDLE AND THREAD LUBRICANT


DESCRIPTION

Oberon F231 is a superior quality-blended textile spindle and thread oil. It does not stain, mark or damage fabrics in any way. It is engineered to provide maximum protection to withstand spindle movement up to 20,000 rpm.


CHARACTERISTICS

Exceptional Stain Resistance 

Oberon F231 is completely scourable (clear out by the force of water flowing through it) and does not stain, mark, discolour or damage fabrics, thus saving the large expenses of removing the stains. Oberon F231 does not form scums when scoured. 


Anti-Static Protection 

Oberon F231 provides for safer operation by preventing the build-up of static electricity on the thread.


Excellent Impact Resistance 

Oberon F231 is fortified with impact-resistant properties designed to withstand the high speed movement of the spindle. By inhibiting shock, load and pressure, it prevents damage and wear and ultimately, premature machinery breakdown.


Superior “Cling-On” Qualities 

Oberon F231 penetrates into the ultra-fine space between the ‘blade’ and ‘bolster’ on textile spindles, which ensures that all parts of machinery are given complete protection during high speed operations. Oberon F231 forms a superior "clingability" with the high speed spindle mechanism and remains in position despite fluctuating speed actions. With Oberon F231, textile machinery can be operated at speeds of more than 20 000 revolutions per minute - without the risk of thread breaking.


Excellent Oxidation Protection 

The anti-oxidation, anti-rust agents in Oberon F231 enhance its lubricity and ensure minimal drag. Oberon F231 resists the build-up of damaging surface gums and deposits on friction areas, ensuring a smooth operation.


Low Viscosity 

High speeds increase oil film thickness. Given its function in high-speed operations, Oberon F231 has a very low viscosity to minimise power loss from internal friction. The tough film strength in Oberon F231 enables it to be used in high-speed, high-load applications with optimum efficiency.