The TUTHILL 3RCS-RHX636 Stripped Pump Series Lubrication Pump Tuthill is a high-performance internal gear pump designed specifically for lubrication and fluid transfer in heavy-duty industrial systems. Built to deliver precision and reliability, this stripped pump model provides the core pumping elements without motor or drive, allowing for flexible integration into custom system configurations. It is ideally suited for applications in oil circulation, lubrication systems, and general fluid handling across sectors such as manufacturing, processing, and power generation.
Engineered with Tuthill’s proven internal gear technology, the 3RCS-RHX636 ensures smooth, pulse-free flow and high volumetric efficiency, even with fluids of varying viscosities. Its robust internal construction, including hardened and precision-machined gears, allows it to operate efficiently under continuous-duty conditions and across a broad range of operating temperatures. This pump is capable of handling lubricants, light oils, and synthetic fluids with ease, maintaining consistent performance and low internal slippage over time.
The stripped design of the TUTHILL 3RCS-RHX636 offers maximum installation flexibility, enabling system engineers to select the most suitable motor and coupling for their application. The pump’s compact and modular form factor simplifies integration into lubrication skids, centralized oiling systems, or custom-built lubrication units. Heavy-duty bearings and high-quality sealing options support dependable operation, reducing the risk of leakage and downtime in critical systems.
The TUTHILL 3RCS-RHX636 Stripped Pump Series Lubrication Pump Tuthill stands out for its reliability, adaptability, and efficient performance. Whether used in OEM equipment, industrial lubrication packages, or high-volume oil transfer applications, this pump provides the essential flow control and durability required for long-term service. Its rugged design and proven gear technology make it a trusted component for professionals seeking precision and longevity in demanding lubrication systems.