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Introduction To Optilobe
An economical substitute for general applications demanding gentle product treatment and effortless serviceability, this hygienic positive displacement pump is adaptable, reliable, and energy-efficient. It not only improves process flexibility but also ensures operational reliability, crafted in alignment with rigorous hygienic standards and validated for effective cleaning in place.
Optilobe Application
Designed for gentle product treatment
Designed for gentle product treatment in general applications across the dairy,food, beverage home and personal care industries.
Available in 10 different pump
Available in 10 different pump head displacements based on 5 different gearbox modules to handle flow rates up to 77 m3/h and differential pressures up to 8 bar.
Optilobe Benefits
Optimal product quality
Optimal product quality due to gentle low shear operation
Cost effective, hygienic
Cost effective, hygienic pump
Low total cost
Low total cost of ownership
Robust design
Robust design for long service life.
Easy maintenance
Easy maintenance due to self setting, front loading seals
Optilobe Features
Single and Single flushed seals
Single and Single flushed seals are available as options.
Front loading single mechanical seal
The pump features a front loading single mechanical seal allowing quick and easy inspection or replacement without the need to disassemble pipework.
Bare shaft pump
Can be supplied as bare shaft pump or mounted on base plate complete with coupling \, guard, gear motor and shroud for easy, plug and play installation.
All other media contacting
All other media contacting components like rotor case front cover and rotor nuts are W.1.4404 (AISI 316L)
Stainless steel exterior
Stainless steel exterior, making it exceptionally corrosion resistant.
OptiLobe How It Work
A gear train in the pump gearbox drives the rotors and provides accurate synchronization of the tri-lobe rotors. The movement of the counter-rotating rotors creates a partial vacuum that allows atmospheric pressure or other external pressures to force fluid into the pump chamber. As the rotors revolve, an expanding cavity forms, filling with fluid. As the blades disengage, each dwell forms a cavity. As the rotor blades engage, the cavity diminishes and fluid is displaced into the outlet port.