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In the PI&D diagram, how should the design control points for the centrifuge be determined?
Centrifuges generally control the inlet flow to prevent surging.
What if the incoming traffic is uncontrollable?
This post was last edited by huio1983 on 2017-6-14 at 12:40. What role does the centrifuge play in your process?
Depending on your requirements and equipment setup, does the manufacturer not have any successful cases? Outlet flow, pressure, venting (backflow) ; Start/stop control.
The simplest way is to place the control point on the right side of the flying curve
My centrifuge is a centrifugal discharge type centrifuge, which is primarily used to separate the slurry coming from the thickener by centrifugation, in order to isolate the ammonium carbonate crystals.
This centrifuge is not the type used in compressors; it’s rather a piston-driven centrifuge. If it’s the customer’s manufacturer, they naturally need to provide the control scheme.
The key is to ensure even feeding; otherwise, vibration is likely to occur. The crucial point for control is determining when to stop feeding – if the material flow is even, time can be used as a criterion for this. It has been widely used for over a decade; those who are not familiar with it can discuss it in detail. www.wftoptech.net
The last edit to this post was made by li*nji on 2017-7-1 at 14:52. For remote control of the IW630-N horizontal centrifuge during unloading, the key control parameters include: rotation speed, vibration, bearing temperature, current, feed volume, product moisture content, and amount of material that leaks out. The drawback of this type of centrifuge is its short lifespan for the screening mesh. For the dehydration of ammonium carbonate, 95% of cases use the HY800-N centrifuge