Used GOULDS 3196 #9013762 for sale

GOULDS 3196
Manufacturer
GOULDS
Model
3196
ID: 9013762
Pump Size: 1 x 1.5 - 6 Imp diameter: 4.25 3600 rpm Material: 316 SS Motor: Sterling, 5 HP, 3475 rpm.
GOULDS 3196 pump is a medium-pressure centrifugal pump designed with a frame mount, enclosed impeller, and closed-coupled construction. 3196 is a multistage pump, meaning it uses a series of impellers and secondary stages to increase the pressure of the liquid being pumped. A single GOULDS 3196 pump is capable of pumping liquids up to 600 psi in pressure. 3196 pump features a fluid-dynamic thrust balancing system, which helps reduce the Pump's axial thrust. This balancing system works by using contoured impellers that re-direct the liquid during operation to minimize the axial thrust on the impellers. This helps reduce the amount of thrust generated on the bearings and in turn extends the life of the pump. GOULDS 3196 pump has a close-coupled design, which means that the pump and motor are connected directly. The motor acts as part of the pump support, which helps reduce vibration during operation. The motor is also slim in size and helps reduce the pump's overall footprint. 3196 pump has a self-venting bearing system. This design allows the bearings to be cooled by the fluid being pumped while also allowing any air/gas in the pump to escape through a vent. This helps reduce the potential for bearing failure due to gas/air buildup. GOULDS 3196 pump has a high-efficiency impeller design that features a volute-less inlet, which helps reduce friction and increase the flow rate of the pump. The volute-less design also reduces cavitation, which can cause damage to the impellers. 3196 pump is made from a strong and corrosion-resistant constructed material making it suitable for a wide range of applications. The material is also resistant to a variety of chemicals, making it suitable for multiple fluids and environments. GOULDS 3196 is a reliable and durable pump that is perfect for a range of engineering projects, from irrigation to chemical pumping. Its efficiency, flexibility, and durability make it a great choice for any engineer.
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