Collection: PIX Muscle SPZ Section Wedge Belts 10x8mm

PIX Muscle SPZ Section Wedge Belts 10x8mm

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PIX Muscle XS3 is the ultimate V Belt, super high power rating, maintenance free and eco friendly, exceptionally high power rating - up to 40 percent more than conventional standard V-belt. 10mm top width, 8mm thickness

PIX's overwhelming desire to be at the "Cutting Edge" in this field has culminated in the launch of the 'MUSCLE' range of 'maintenance-free' Belts. Put simply, 'MUSCLE', is the ultimate V-Belt, superior-high power rating, maintenance-free, and eco-friendly Belt.

Years of consultation with their customers, and taking into account the new requirements of the changing world we find ourselves in, has resulted in, PIX providing the “Perfect Solution”……….

These Belts are produced to comply with the latest REACH directives & RoHS regulations.
The special Belt compound does not emit any toxic substances, either during manufacture, or when running during use.
The revolutionary design of the compound performs well in adverse conditions, such as high temperatures, UV or Ozone exposure, and chemically aggressive environments.
'MUSCLE' shows remarkable performance characteristics in terms of elongation and slippage – minimising energy loss.
These Belts are maintenance-free, no retensioning is required.

Features
Exceptionally high power rating - up to 40% more than conventional standard V-belt
Maintenance free property of the belt ensures less machine downtime and an extended service life
High transmission efficiency up to 98% providing optimum output
Complies with ISO 1813 - having antistatic property
Temperature range from -35 to +130 degrees allows the belt to perform even at increasing ambient temperatures
Space saving potential - Lesser number of belts required
REACH & RoHS compliant provides an eco-friendly system
High dimensional stability offering the best wedging effect between the belt and the pulley flanges
Increased performance due to the engineered belt design
Smooth running operation
Minimal belt tension loss