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Liaoyang Shengfeng Pharmaceutical Machinery Co., Ltd
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Parameters of disc separator

NegotiableUpdate on 02/11
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Overview
The DHC500 disc separator has strong separation ability and high separation factor (between 5000-9500), with a production capacity of up to 10m3/h. The motor drives the drum to rotate at high speed around the main axis through a friction clutch helical gear pair.
Product Details

DHC500Parameters of disc separatorMain Features

Strong separation ability, separation factor between 5000-9500: high production capacity, up to 10 cubic meters per hour; strong maneuverability, can be operated automatically or manually as needed, and can also achieve remote automatic operation; easy maintenance.

main purpose

Mainly suitable for liquid-liquid solid separation with solid particles ranging from 1-15% and solid particle diameters greater than 0.5 microns. For example, the separation of oils such as vegetable oil, animal oil, fish oil, emulsion, crude oil, various raw oils, and lubricating oils; Clarification: clarification of dairy products; Food: clarification of fruit juice; Beer separation: Separation of fermentation broth from fermented brewing products; Clarification: pharmaceuticals, vaccines, mycelium, glucose, insulin, antibiotics, vitamins; Extraction of No. 2 molasses silk polishing alkaline solution: solvents for chemical and dry cleaning, galvanizing solution, aluminum sulfate solution, tar water mixture, polyvinyl chloride, polypropylene, polyethylene, silver (in film processing), catalyst and magnetite recovery, etc.


DHC500Parameters of disc separatorTechnical Specifications

Project Item Model Type

DHC500

DHC400

Drum Bowl

Inner diameter mm
Diameter

510

400

RPM (revolutions per minute)

Speed

4450

6525

Separation factor

Separation factor

5500

9590

Production capacity m3/h

Throughput

10

5

Motor power kw

Motor power

18.5

11

Dimensions (length x width x height) mm
Dimension(L×W×H)

1805×1400×1120

1500×900×1500

Machine weight kg
Weight

1500

4111

The experimental results of the disc centrifuge have good similarity with actual engineering, and the conclusions proposed in the article have been verified through numerical simulation experiments. In many engineering sciences, it is often necessary to use small-scale physical models to reveal and analyze the essence and mechanism of phenomena in order to verify and solve practical engineering problems. The small-scale centrifuge test model uses the same material as the prototype, and achieves the same stress level as the prototype in the high acceleration field formed by the centrifuge, so that the stress-strain of the model and the prototype are equal, the deformation is similar, and the failure mechanism is the same, which can largely reproduce the characteristics of the prototype.