Spiral blades are engineered for corrosion resistance and to ensure smooth, laminar flow.
High-speed horizontal screw pharmaceutical separation centrifuges come with a range of performance specifications designed to optimize efficiency and durability:

1. Drum Diameter: This refers to the diameter of the straight section of the drum, which plays a key role in determining the unit's capacity and separation efficiency.

2. Drum Length: It indicates the effective length of the drum, directly affecting the contact time between the material and the centrifugal force.

3. Maximum Speed: This is the highest rotational speed the drum can achieve, influencing the overall separation performance.

4. Maximum Separation Factor: Defined as the ratio of centrifugal force to gravitational force acting on the material, this factor determines the effectiveness of solid-liquid separation.

5. Drum Cone Angle: Designed with both large and small cone angles to accommodate different types of materials and improve discharge efficiency.

6. Inner Surface of the Drum: Features anti-corrosion treatment to enhance longevity and maintain hygiene standards, especially in pharmaceutical applications.

7. Slag Discharge Port: Equipped with anti-corrosion and energy-saving features to reduce maintenance and improve operational efficiency.

8. Overflow: Utilizes an energy-efficient design to minimize power consumption while maintaining optimal liquid separation.

9. Distributor: Designed with laminar flow principles to ensure even distribution of feed material into the drum.

10. Screw Feed Port: Constructed with anti-corrosion properties to withstand harsh chemical environments.

11. Spiral Blades: Engineered with both anti-corrosion and laminar flow characteristics to improve material handling and reduce turbulence.

12. Intercepting Plate: Designed for laminar flow to enhance the separation process and reduce energy loss.

13. Flow Plate: Also incorporates laminar flow design to optimize fluid dynamics within the system.

14. Bearings: Designed for stability and long-term reliability under high-speed operation.

15. Differential: Uses a planetary gear differential system for precise control of the screw speed relative to the drum.

16. Drive System: Equipped with a dual-motor, double-conversion energy feedback drive system for improved efficiency and reduced energy consumption.

17. Automatic Control System: Offers constant torque automatic control, ensuring consistent performance under varying load conditions.

18. Rotor Stiffness: Calculated using advanced computer simulations to ensure structural integrity and safe operation at high speeds.

19. Dynamic Balance: Achieved through precise weight matching and high-speed dynamic balancing, ensuring smooth and stable operation.

20. Material: The drum, screw, and housing are constructed from stainless steel, while the frame is made of carbon steel for strength and durability.

21. Main Motor Power: Refers to the power rating of the motor that drives the drum, essential for determining the machine’s capacity.

22. Auxiliary Motor Power: Indicates the power of the motor used to drive the screw, contributing to the overall efficiency of the separation process.

23. Discharge Concentration: Includes the solid content and moisture level of the discharged material, critical for assessing the quality of the separation.

24. Processing Capacity: Refers to the amount of feed processed and the corresponding output, reflecting the machine’s throughput and efficiency.





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Http://news.chinawj.com.cn Editor: (Hardware Business Network Information Center) http://news.chinawj.com.cn

Check Valve

The check valve is used in the piping system, its main function is to prevent the backflow of the medium, prevent the pump and its driving motor from reversing, as well as the release of the medium in the container.


Check valves can also be used to feed pipes where the pressure may rise to exceed the pressure of the main system. Check valve according to the different material, can be applied to a variety of media pipeline.


The check valve is installed on the pipeline, which becomes one of the fluid components of the complete pipeline. The opening and closing process of the valve disc is affected by the transient flow state of the system in which it is located. In turn, the closing characteristics of the disc have an effect on the fluid flow state.

Check Valve,Hydraulic Check Valve,Check Valve Types,Ball Check Valve

WUXI KVC-VALVE , https://www.wxkaiweixi.com

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