Hygienic and dead space free SAWA deep-frying oil pumps are developed and produced at our company headquarters in Degersheim. These centrifugal pumps are made of solid stainless steel 1.4435 for robust applications at temperatures up to max. 200 °C. SAWA deep-frying oil pumps are manufactured according to EHEDG guidelines and are ideally suited for continuous operation in production plants. Special sealing variants or with magnetic coupling are available. SAWA deep-frying oil pumps are robustly built, have a well thought-out design and are easy to maintain. No special tools are required for dismantling or assembly.
Frying oil pumps for the following media
Frying oils at medium temperatures of approx. 160 - 180 °C
heat-resistant frying oils with a high content of monounsaturated fatty acids
Peanut oil or special frying oils are also suitable
Applications of the deep-frying oil pumps
Circulation of the frying oil in continuous operation 24/24 h
Circulation of the frying oil in intermittent operation to avoid oxidation with filter on the suction side
CIP-cleaning with hot lye incl. dead space free emptying and refilling of the pump/fryer
Features of the deep-frying oil pumps
Production in heavy duty version, stainless steel material 1.4435/316 L
Test passed in continuous operation at approx. 180 °C
Dead space free design therefore completely drainable
electropolished surface for all parts in contact with the frying oil
Sealing
single-acting with special sealing SAWA
double-acting flushed, back to back design
Permanent magnetic coupling, leakage-free
Deep-frying oil pumps
Manufacturer, dealer, service provider
Pump types of our deep-frying oil pumps
Frying oil pumps of the LE and LEM series, hygienic and free of dead space in the entire pump interior. Quiet and energy-efficient with excellent efficiency thanks to the flow-optimised pump housing design in harmony with a perfectly matched impeller geometry. SAWA deep-frying oil pumps with single-acting special sealing or with permanent magnetic coupling achieve flow rates of up to approx. 150 m3/h.