Rupes expanded resin foam polishing pads are specially designed for the random orbital polishing system. They produce excellent results with substantial time saving and reduced compound consumption. BigFoot’s random orbital movement creates high mechanical stresses on the foam polishing pads, generating an increase in internal temperature.The innovative “open cell” structure of the BigFoot foam polishing pads prevents the build-up of heat generated during the polishing process. In addition, this particular structure guarantees maximum efficiency in the polishing process with minimum downward vertical pressure from the operator. The centre hole creates superior ventilation and heat dispersion through special channels in the backing pad. The innovative design of the truncated cone shape optimises the performance of the large diameter orbit, and at the same time protects against accidental contact between the backing pad and the work surface.
- Coarse Blue Foam Pad – Fast cutting performance with top class finishing level in this category. Available for dual action machine, random or gear driven, and for single action rotary. Different cell structure, resin and shape are fitting the different machine action and are optimised for the Rupes compound viscosity and lubrication
- Medium Green Foam Pad – Medium fast cut performance with a top class finishing level in his category. Available for dual action random orbital machine only. Optimised for Rupes compound viscosity and lubrication
- Fine Yellow Foam Pad – Fine cut with a deep gloss finish. Available for dual action machine, random or gear driven, and for single action rotary.Different cell structure resin and shape are fitting the different machine action and are optimised for Rupes compound viscosity and lubrication
- Ultra Fine White Foam Pad – Formulated for a show car finish. Available for dual action random orbital and for single action rotary. Different cell structure, resin and shape are fitting the different machine action and are optimised for Rupes compound viscosity and lubrication
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