Forged pistons

PEUGEOT 306 GTi6 2.0 16v XU10J4RS

WISECO Forged pistons - Engine RFS

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803,07 €+ VAT

VAT will only increase in the EU

Piston size

Ø piston 86,00mm - RC 8,5:1 - 22mmØ
Ø piston 86,50mm - RC 8,5:1 - 22mmØ
Ø piston 87,00mm - RC 8,5:1 - 22mmØ
Ø piston 86,00mm - RC 11,5:1 - 20mmØ
Ø piston 86,25mm - RC 11,5:1 - 20mmØ
Ø piston 86,50mm - RC 11,5:1 - 20mmØ
Ø piston 87,00mm - RC: 11,5:1 - 20mmØ

Extras

+77,44€

Quantity

Qty

Availability: 7 days

Description

Wiseco forged pistons for Peugeot 306 GTi6 2.0 16v XU10J4RS engine code RFS.
  Comp.Piston height: 34,00mm
  Options compression relation: 8,5:1 - 11,5:1
  Ø Piston pin: 20mm - 22mm

World renowned for our work building race winning pistons, Wiseco utilizes experience from a diverse background of the most sophisticated engines in such venues as Formula 1, Indy Racing League (IRL), NHRA Pro Stock, Moto GP, AMA Superbike, AMA Motocross and Supercross to design and manufacture the highest technology pistons available.

Extensive engineering goes into each Wiseco Automotive part to provide the maximum torque and horsepower ever driver wants. We offer Custom Pistons and Rotating Assemblies for a broad range of applications from the most popular Domestic models to Sport Compact, and Drag only use applications. 

Our Sport Compact pistons are made from dedicated forgings produced in-house to give you a light weight piston with superior strength and optimal design. Being the multivalve piston technology leader, the line features specially designed valve pockets, complex dome and crown shapes, the steel nitride/napier xx rings and optimized skirt profiles. The pistons come standard with our ArmorGlide® coating material for reduced friction and noise, freeing up horsepower.

The price is a for complet set and in all kits include, rings, pins, clip, sealing....etc. 

Compression height: 34mm
Rod lengtha: 158mm (centro a centro)
Piston pin: 20mm *

* Must be installed special conrods as follow recommended, origina piston pin is 22mm.

The image may not correspond to the model.