GEARBOX PROTECTION KIT WITH RDX AND 316 STAINLESS STEEL FITTINGS
Complete protection for gearboxes with RDX and 316 stainless steel fittings. Durability, corrosion resistance and efficient filtration for industrial equipment.
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Introduction
The system combines the RDX Desiccant Breather and the Gearbox Protection Kit for effective protection of industrial equipment.
Description
The RDX, with aluminum and polycarbonate housing, uses silica gel and alumina to remove moisture and gases, and has filter blankets that retain particles up to 3 microns. A set of valves prevents air return, and a visual indicator monitors desiccant saturation. The Gearbox Protection Kit protects against external impacts, improves filtration and has an oil collection point for analysis. All connections and quick couplings are made of 316 stainless steel, ensuring durability and corrosion resistance. The system facilitates maintenance and extends the life of hydraulic components, ensuring operational safety and efficiency.
The breather has a robust aluminum housing and a high-thickness translucent acrylic visor, providing superior mechanical resistance and durability, in addition to allowing internal viewing of the desiccant. It uses high-efficiency silica gel as a primary desiccant, responsible for absorbing moisture present in the air, ensuring that the oil remains free of contamination and increasing the equipment's lifespan. The inclusion of alumina in the system improves the efficiency of gas retention, working in conjunction with silica to protect the oil against atmospheric contaminants. Equipped with high-precision filter blankets, it is capable of retaining particles up to 3 microns, ensuring a clean internal environment and preventing the entry of harmful particles. A set of valves located at the base of the RDX prevents the return of internal air through the silica, optimizing the absorption process and ensuring greater efficiency and longevity of the desiccant. It includes a visual indicator that signals the level of saturation by particulate matter, allowing precise monitoring of the need for replacement for continuous maintenance of system efficiency.




