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How to Prevent Fire in Rotogravure Printing with Humidification

Table of Contents
  1. Risk of a fire in a rotogravure printing factory
  2. A challenge in humidifying a gravure printing space
  3. Spot humidification: an effective humidification approach with Dry Fog
  4. Mitigating a risk of fire and ensuring workers’ safety
  5. Dry Fog Humidification System ensures print quality

Each winter at a gravure printing factory, static electricity buildup around their gravure printing machinery led to intermittent problems with sparks and small fires at the ink pans.

Fortunately, there had not yet been any major fires, but should such a fire break out and wreak havoc on several presses in the factory, such a fire could be disastrous for them.

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This threat drew the attention of the local fire department, and the factory was pressed to take measures to prevent such a risk from becoming reality.

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Though they knew that humidification should help prevent static electricity from being generated, the challenge was that, at a gravure printing factory, humidifying a large space and keeping adequate humidity level across the entire space was extremely hard, because local ventilation systems there continuously exhaust a large volume of indoor air including evaporated organic solvents, while simultaneously taking in the same volume of dry outdoor air.

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What IKEUCHI proposed to address this challenge was the “spot humidification” approach by spraying non-wetting Dry Fog* directly towards the ink pans, the source of ignition, from a close distance to effectively increase local humidity just around the pans.

*A fog consisting of very fine water droplets produced with specialized spray nozzles, with a mean diameter of 10 μm or less, rebounds from an object it hits and instantly evaporates into air without bursting and adhering to the object.

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In considering the installation of the spot humidification with Dry Fog Humidifier, the factory manager requested us to conduct demonstration of the system in the presence of the firefighters in order to ease the fire department’s concerns. It was set up with two nozzles towards the ink pan, and the increase in humidity and reduction of static electricity were measured.

As the relative humidity increased from 35% to 50%, the electrostatic charge decreased from 20 kV to 4 kV, or 1/5 of its previous value. The firefighters, now convinced that this would aptly curb the danger of a large fire breaking out, strongly commended the results.

Installation of Dry Fog Humidification has mitigated the risk of fire seriously damaging the facility and endangering the workers’ safety.

Not only does the Dry Fog humidification prevent fires, but it also maintains high print quality by suppressing airborne particles, which reduces dust attraction to plastic film surfaces and helps prevent print failures, such as ink streaking caused by foreign particles getting caught between the doctor blade and the roller.

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