Technical Features of Hydrocyclones in Starch Processing Equipment

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Technical Features of Hydrocyclones in Starch Processing Equipment

Hydrocyclones are a common separation and classification device that typically utilizes the principle of centrifugal sedimentation. When the two-phase mixture to be separated enters the hydrocyclone tangentially at a constant pressure from its periphery, intense three-dimensional elliptical, highly rotating, shearing turbulence is generated. Due to the size difference between coarse and fine particles, they are subjected to varying degrees of centrifugal force, centripetal buoyancy, and fluid drag. As a result of centrifugal sedimentation, the majority of coarse particles are discharged through the hydrocyclone’s underflow outlet, while the majority of fine particles are discharged through the overflow pipe, thus achieving separation and classification.

1. The equipment’s contact parts are constructed of stainless steel, protecting the material from corrosion.

2. The equipment’s exterior features a surface treatment process, resulting in an aesthetically pleasing appearance and resistance to oil and dirt.

3. It is widely used in large and medium-sized starch production enterprises, and can be used for the concentration and separation of potato and wheat starches, among other applications.

4. The complete cyclone system integrates multiple functions, including concentration, recovery, washing, and fine residue separation, with a simple process and stable product quality.

5. The cyclone tube is made of strong materials, offering high strength and excellent wear resistance. The cyclone tube structure has been computer-simulated and tested, ensuring excellent cyclone separation performance.

6. Different cyclone tube designs are used for different material characteristics, facilitating starch separation.

7. The cyclone system’s piping layout has been computer-optimized for simplicity, rationality, and an elegant aesthetic. The cyclone’s sealed design ensures convenient and efficient operation.

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Post time: Sep-28-2025