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SIROLLCIS CM Active Chatter Damping   
System for operation of a 3rd octave chatter free tandem cold mill

The SIROLLCIS CM Active Chatter Damping system is dedicated to actively damp 3rd octave vibrations by a specifically designed high-speed servo-valve to realize the "Operation of a 3rd octave chatter-free mill"
 

Tandem cold mill
The challenge
Operation of a “3rd octave chatter free mill“ – Liberation of your production from yield limitations due to rolling speed limitations for chatter–critical steel grades – Avoidance of active (emergency) rolling speed reductions due to beginning of 3rd octave chatter which reduce the throughput of the mill.

Our solution
The system eliminates chatter completely within a mill’s operating range, thus making it possible to run a tandem mill at its full limits without 3rd octave chatter. The active chatter damping system is consistently designed as a completely integrated mechatronic solution. The active chatter damping servo valve and the hydraulic roll-force cylinder represent a functional unit, since direct attachment onto the hydraulic cylinder is required in order to avoid delays imposed by the transport time of oil in pipes. A decentral independent controller is 100 % modular with quality-assured robust and pretested components which build a functional unit. The hydraulic roll-force cylinder was chosen as the location for injecting damping. With a nonlinear controller that uses acceleration and pressure measurements as inputs, an additional active chatter damping servo-valve is actuated. The controller action of the active chatter damping system is sharply limited around the chatter frequency. Thus there is a very clear frequency separation between an AGC controller and the active chatter damping system. The actuator now meets the essential requirements as follows: • Frequency range up to 150 Hz • Phase shift maximum 30°–50° • Nominal flow rates of 300 l/min

Good reasons for SIROLLCIS CM Active Chatter Damping
  • Increase of yield - no speed reduction for chatter critical steel grades
  • Overall vibration reductions of mechanical components
  • Cost savings in respect to yield increase and also protection of mechanical equipment due to strip breaks
  • Short pay-back periods

 
 
 
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