EBARA CNA-CNC split case pump is characterized by its ability to virtually eliminate radial loads by hydraulically balancing the liquid within the casing. This balancing ability is made possible by the unique double volute construction, which provides two individual volute passageways to guide the flow out of the impeller and into the discharge. Moreover, the split case provides the double suction impeller, which extends the life of the pump by neutralizing the axial forces. The double volute and double suction construction has a number of great benefits
Single-impeller centrifugal pump in AISI 304 and AISI 316 stainless steel, with radial impeller and components made by the hydroforming process that provides high resistance to corrosion. The versatility of these electric pumps is due to the different types of mechanical seals that can be applied.
Twin impeller centrifugal pump in AISI 304 and AISI 316 stainless steel, with radial impeller and components made by the hydroforming process that provides high resistance to corrosion, high efficiency with over 80% performance and low losses. The versatility of these electric pumps is due to the different types of mechanical seals that can be applied.
Centrifugal pump fitted with a closed radial flow impeller in AISI 304 stainless steel. It is equipped with an insulating shell as standard, which prevents condensation inside the system. It is available with special seals for heavier duty use and higher liquid temperature limits. The choice of connections, Victaulic (DWC-V) and threaded (DWC-N), facilitates installation.
Single-impeller centrifugal pump with cast iron body, available in different models: CMA - CMB - CMC - CMD. Depending on the model, the impellers, shafts and motor mount can be made of different materials (see technical data table).
Centrifugal pump with open impeller in AISI 304 stainless steel made by hydroforming. The radial flow impeller also makes it suitable for pumping liquids that are not completely clean but with solid parts up to 19 mm in diameter.