The 2P-3120 CPSSB Dowty gear pump is designed to handle a wide range of hydraulic fluids, including mineral oils, synthetic fluids, and water-glycol mixtures.
It operates at a maximum pressure of 3000 psi (pounds per square inch) and has a displacement of 2.75 cubic inches per revolution. The pump's maximum speed is 3600 revolutions per minute (RPM), allowing for efficient fluid transfer and system performance.
One of the key features of the 2P-3120 CPSSB Dowty gear pump is its compact size and lightweight design. This makes it suitable for applications where space is limited or weight restrictions are in place. Despite its small footprint, the pump delivers high-performance capabilities and reliable operation.
The pump consists of two intermeshing gears housed within a cast iron or aluminum housing. The gears are precisely machined to minimize leakage and ensure smooth operation. The pump's gears are helical, which reduces noise and vibration during operation, resulting in quieter performance.
To enhance the pump's durability and longevity, it is equipped with a pressure-balanced thrust plate.
This plate helps to distribute forces evenly, reducing wear and extending the lifespan of the pump. Additionally, the pump is designed with high-quality seals and bearings, ensuring leak-free operation and minimizing maintenance requirements.
The 2P-3120 CPSSB Dowty gear pump can be mounted in various orientations, allowing for flexible installation options. It can be mounted directly to a power source, such as an electric motor or an internal combustion engine, using a flexible coupling. Alternatively, it can be belt-driven or connected through a gearbox, depending on the specific application requirements.
The pump's versatility extends to its ability to handle a wide range of flow rates. It is capable of delivering a maximum flow rate of 14 gallons per minute (GPM) at 1800 RPM. The pump's flow rate can be adjusted by controlling the speed of the power source or by incorporating flow control valves into the hydraulic system.