The working principle of a sine pump is that any high-quality or well functioning product has a simple structure - including a few components... The sine wave shape of the impeller means that each rotation can form a chamber (which can occur 4 times each time it passes through the liner space)
Sine pump

working principle
Any high-quality or well functioning product has a simple construction - including a few components... sine pumps are no exception

The sinusoidal shape of the impeller means that each rotation can form a chamber (which can occur 4 times each time it passes through the liner space). Through this movement, flowing products can be 'pushed' or 'discharged'. Control the scraper to divide the pump chamber into a suction chamber and a discharge chamber, ensuring the pressure difference between the inlet and outlet. At the same time, the control scraper also plays another important role in forcibly lubricating the pump bearings through the product.
Ultra low shear conveying can safely and non destructively transport even if it contains a large amount of solid substances and fragile products

High viscosity performance reaches the limit of flow capacity, up to 4000000 CPS

No pulse, smooth delivery, precise adjustment of flow volume, no interference or vibration, the loading machine can uniformly supply stable product quantity
Sine pump: It does not use rotors, planetary gears, pistons, or other devices, but instead uses specially manufactured blades with a shape resembling two sine wave curves. Simultaneously operate with a movable scraper and a fixed lining. Form a special form of positive displacement pump. This can achieve ultra-low shear of the fluid. No pulse delivery. Even under the back pressure condition of 10 bar (conveying water), there is no movement displayed on the pressure gauge.
structural characteristics