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Mouvex's SLS Series

The SLS Series by Mouvex features eccentric disc pumps that meet the most demanding hygienic applications in the food and beverage, chemical, and pharmaceutical industries. The series serves as the hygienic version of the SLC Series. The SLS pumps are part of Mouvex’s innovative sealless technology that incorporates a hermetic pump head with a self-adjustable eccentric shaft protected by double-wall stainless-steel bellows to ensure long life and product safety.


Their design has helped the SLS Series earn certification from EC 1935/2004, EHEDG, 3A and FDA for use in food-processing applications.


Features & Benefits
Know more about the features & benefits of using Mouvex's SLS Series.
  • Consistent flow and improved energy savings
  • Extremely gentle, pulse-free flow to protect shear-sensitive products
  • Reduced maintenance with no mechanical seals or timing gears
  • Clean in place (CIP) and Sterilize in place (SIP) capabilities
  • Line-stripping capabilities
  • Self-priming, Strong Suction and Discharge Pressure
Available Options
We customise pumps according to your specific application. Get in touch with us to know your options.
  • Materials options
  • Spare parts and accessories
  • Baseplate/mounting
  • Certifications: A-3, ATEX, CE Marking, EC 1935/2004, EHEDG, FDA, ISO 14000, ISO 9001, ISO 9001 France
Key Specifications
Here are the key specifications of Mouvex's SLS Series.
  • Max. Capacity: 36 m³/h
  • Max. Differential Pressure: 16 bar
  • Max. Speed: 1000 RPM
  • Max. Viscosity: 3000 cP
Applications
Here is a list of industrial applications for which Mouvex's SLS Series are commonly utilized.
  • Food and beverage
  • Pharmaceutical
  • Dairy
  • Brewery
  • Bakery and confectionery
  • Transportation
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PRINCIPLE OF OPERATION

Eccentric disc pumps are positive displacement pumps and operate following the eccentric movement principle developed by French engineer Andre Petit. This pump type features a disc that’s installed inside a cylinder and driven by an eccentric bearing that’s driven by the pump shaft. The motion of the discs creates four distinct pumping chambers that increase and decrease in volume as the disc is rotated. Hence, producing both suction and discharge pressures as the chambers move in pairs that are 180 degrees apart. This ensures that the fluid passes through the pump at a constant and regular flow rate with no pulsing, cavitation, slip or shear.

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