Spiral blades are engineered for corrosion resistance and smooth, laminar flow.
High-speed horizontal screw pharmaceutical separation centrifuge performance specifications include:

1. Drum Diameter: Refers to the diameter of the straight section of the drum.

2. Drum Length: Represents the effective length of the drum where separation occurs.

3. Maximum Speed: Indicates the highest rotational speed the drum can achieve.

4. Maximum Separation Factor: This is the ratio of centrifugal force to gravitational force acting on the material during separation.

5. Drum Cone Angle: Designed with both large and small cone angles to optimize solid-liquid separation efficiency.

6. Inner Surface of the Drum: Features anti-corrosion coating for long-term durability in harsh environments.

7. Slag Discharge Port: Incorporates anti-corrosion materials and energy-efficient design to reduce power consumption.

8. Overflow System: Utilizes an energy-saving design to enhance overall system efficiency.

9. Distributor: Designed with laminar flow technology to ensure even distribution of feed material.

10. Screw Feed Port: Equipped with anti-corrosion features to withstand continuous operation.

11. Spiral Blades: Engineered for corrosion resistance and to promote laminar flow for improved separation.

12. Intercepting Plate: Designed with laminar flow principles to optimize material movement.

13. Flow Plate: Also utilizes laminar flow design to enhance process stability.

14. Bearings: Constructed with a stable design to ensure smooth and reliable operation at high speeds.

15. Differential: A planetary gear differential is used for precise speed control between the drum and screw.

16. Drive System: Features a dual-motor, double-conversion energy feedback system that improves energy efficiency.

17. Automatic Control System: Enables constant torque control for consistent performance and reliability.

18. Rotor Stiffness: Calculated using advanced computer simulations to ensure structural integrity.

19. Dynamic Balance: The rotor undergoes strict weight matching and high-speed dynamic balancing for smooth operation.

20. Material Composition: 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 driving the drum.

22. Auxiliary Motor Power: Refers to the power of the motor responsible for driving the screw.

23. Discharge Concentration: Includes the solid content and moisture level of the discharged material.

24. Processing Capacity: Refers to the volume of feed processed and the corresponding discharge output.





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Electric Globe Valve

An electric Globe Valve is a type of valve that is used to regulate the flow of fluids in a system. It is operated by an electric motor or actuator that opens or closes the valve to control the flow of the fluid. The valve has a globe-shaped body with an inlet and an outlet, and a movable disc or plug that is connected to the actuator. When the actuator is energized, the disc or plug moves away from the seat, allowing the fluid to flow through the valve. When the actuator is de-energized, the disc or plug returns to the seat, stopping the flow of the fluid. Electric globe valves are commonly used in HVAC systems, water treatment plants, and industrial processes where precise control of fluid flow is required.

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