Category/ .../ Cast Iron - 3500 RPM/ 9.0" Impeller/ Enclosed Impeller

Cast Iron 3500 RPM 9.0" Enclosed Impeller

Scot motor pump 62 cast iron 9" impeller 3500 rpm JM, JP frame Scot #62, JM, 3500 RPM Call or email For price & availability Details
Scot motor pump 102 cast iron 9" impeller 3500 rpm JM, JP frame Scot #102, JP, 3500 RPM *OBSOLETE* *SEE Scot #103, JP, 3500 RPM Call or email For price & availability Details
Scot motor pump 103 cast iron 9" impeller 3500 rpm JM, JP frame Scot #103, JP, 3500 RPM Call or email For price & availability Details
Scot motor pump 63 cast iron 9" impeller 3500 rpm JM, JP frame Scot #63, JP, 3500 RPM Call or email For price & availability Details
Scot motor pump 104 cast iron 9" impeller 3500 rpm JM, JP frame Scot #104, JP, 3500 RPM Call or email For price & availability Details
Scot motor pump 105 cast iron 9" impeller 3500 rpm JM, JP frame Scot #105, JP, 3500 RPM *OBSOLETE* *No replacement available Call or email For price & availability Details

Cast Iron 3500 RPM 9.0" Enclosed Impeller

An Enclosed Impeller is a high-efficiency pump component where the vanes are shrouded on both sides by circular plates (known as shrouds or sidewalls). This enclosed design creates a series of discrete, separated flow channels that direct fluid with minimal turbulence and internal recirculation. This results in superior hydraulic efficiency, more stable performance across a range of pressures, and an ability to generate higher heads compared to open impeller designs of similar size, making it the preferred choice for demanding, continuous-duty applications.

The enclosed structure provides significant mechanical strength, making it ideal for handling clean or clear liquids at high speeds and pressures in services like boiler feed, high-pressure water supply, and hydrocarbon transfer. While less tolerant of solids and more complex to manufacture, its enclosed nature minimizes wear on the pump casing and maintains peak efficiency over a longer service life, delivering optimal performance and energy savings in critical, high-duty cycle systems.