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The patented Smart Conveying Technology (SCT) ensures the fastest maintenance possible resulting in reduced downtime and significantly reduced life cycle costs in virtually all market sectors. The Smart Stator and Rotor are both manufactured in two pieces allowing the pump to be maintained without the need to remove either the suction or discharge pipe work resulting in an 85% reduction in maintenance times.
The unique design of SCT enables the sealing line between the rotor and stator to be adjusted to suit the required application and also to compensate when wear starts to occur, typically resulting in more than doubling the life of the rotor and stator.
Reduction in maintenenance time by up to 85%
Integrated retensioning device resulting in up to 200% increase in the life of the rotor and stator
Two-piece Smart Stator and Rotor allow the pump to be maintained in place without the need to remove the suction or discharge pipe work or the use of any special tools
High energy and performance efficiency due to the in-built retensioning device which allows the the clamp between the rotor and stator to be adjusted for optimum performance
Free molded stator halves can be easily recycled due to the lack of the stator tube.
Replacment of the rotor does not require additional universal joint components or lubricants
The SCT Retrofit-Kit allows an existing conventional tube stator pump to be upgraded without the need to modify the pipework or base plate
As SCT pumps do not require any pipework to be removed during maintenance, additional 'spool' pieces are not required to be fitted reducing installation costs and overall footprint
For adjusting of the stator clamping and retensioning of the stator
With detachable rotor head connection for fast assembly/disassembly, while leaving the universal joint intact.
With short pitches and a compact design, the conventional geometry produces high pressures.
With a small rotor diameter and a long pitch, the 6L geometry attains lower surface velocities and extends the service life due to its large sealing line.
The steel rotor, together with the stator made of an elastomer, forms sealed chambers. The rotation of the rotor conveys the medium through the pump.
Two, comparatively light, stator halves.
With short pitches and a compact design, the conventional geometry produces high pressures.
With a small rotor diameter and a long pitch, the 6L geometry attains lower surface velocities and extends the service life due to its large sealing line.
The steel rotor, together with the stator made of an elastomer, forms sealed chambers. The rotation of the rotor conveys the medium through the pump.
For adjusting of the stator clamping and retensioning of the stator
For positioning the stator halves and adjusting the segments
The innovative two piece 'split' seal housing allows for easy removal and replacement of both the rotary and stationary mechanical seal components
The pressure gauge switches off the pump as soon as a pre-set pressure is exceeded or not reached and protects the pump from increased wear and tear or piping damage.
TSE monitors the temperature of the rotating stator and shuts down the pump when the limit value is reached to protect the pump from dry running.
Stainless steel protective housing protects the universal joint sleeve from mechanical destruction by rough parts made of plastic, metal, wood, etc. Up to 10,000 operating hours guaranteed.
Universal seal for hopper and standard pumps for sealing the plug-in shaft and suction casing or feed hopper. Also available with grease or lantern ring to shut off the media flow. Can also be supplied with upstream labyrinth seal and additional flush connection or lubricating device.
Mechanical seals arranged in a row. Available in "back-to-back", "face-to-face" or "tandem" sequence.
Ready-to-install pre-assembled units with supply connections and attachment brackets for quick replacement.
Universal standard mechanical seal for dosing, food applications and semi-submersible pumps for sealing the plug-in shaft in the suction casing or the hopper.
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