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MEC LD

Low vacuum / Gravity

Automatic rotary system to fill flat and low density liquids. The opening of the filling valve is actuated by its contact with the neck-finish of the container raised by the supporting cylinder. The range of configurations and options allow great flexibility of use.

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PRODUCTION SPEED
Configurable from 1.000 up to 24.000 bph

BOTTLE
Glass - PET and other polymers

RINSING/BLOWING

One or two treatments with fixed or dynamic nozzle

CAPPING/SEALING

All main capping systems: cork, ROPP aluminum screw cap, plastic threaded cap, crown, etc.

       GENERAL CHARACTERISTICS

  • Chassis and structure manufactured in inox steel AISI 304

  • Transmission of the working dynamics with gearmotors and driveshafts

  • Every station of the bottling process protected by clutches and warning sensors

  • 5,7" color touch screen

  • Full characteristics on request

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2020 - bottling machines

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      AVAILABLE OPTIONS

  • Centralized level set-up

  • Parts in contact with the product manufactured in stainless steel AISI 316L

  • Draining sloping frame

  • Upper cover and laminar flow

  • Deaerator and N2 flushing

  • Prepared for CIP connection

  • Internet connection (WiFi or Ethernet) for assistance and remote diagnostics

  • Full list of available options on request

FEATURES OF THE DEAREARATION SYSTEM:

The rotary deaeration station through a special vacuum pump eliminates the air from the bottle. Subsequently, the bottle is filled with inert gas before the latter leaves the deaeration station. This system is very important as it reduces the oxidation phenomenon to a minimum. The gas that is inside the bottle is released in the product containment tank during the filling phase.

FEATURES OF THE LEVELING SYSTEM:

The rotary leveling station levels the bottles at the filler outlet through the injection of neutral gas. The excess liquid returns to a separate tank or to the product containment tank. The gas blanket located in the neck of the bottle with the cork inserted minimizes the phenomenon of oxidation.

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