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Narrow Web Cleaning System maintains clean print surface.

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Narrow Web Cleaning System maintains clean print surface.
Narrow Web Cleaning System maintains clean print surface.

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July 7, 2005 - VAC•N•TAC uses static bar, which neutralizes static charge and stops attraction of particulate to web, and low-pressure vacuum system that suctions particulate into dust collector. Two components clean web to 25 microns. Contact Cleaner Roll then breaks boundary layer of air for particle removal to 1 micron. Available in single- and double-sided cleaning, system comes complete with dust collector requiring 110 V.

(Archive News Story - Products mentioned in this Archive News Story may or may not be available from the manufacturer.)
Original Press release

SIMCO Industrial & Electronics
2257 N. Penn Rd.
Hatfield, PA, 19440 1998
USA


A Brand New Approach to Narrow Web Cleaning

SIMCO Industrial Static Control introduces the NEW VAC•N•TAC – the ultimate in web cleaning systems. The VAC•N•TAC system combines static elimination, a vacuum system and a contact cleaner to clean a web to 1 micron. This combination cleaner maintains a consistently clean print surface, with minimal maintenance costs. Economically priced, the VAC•N•TAC quickly pays for itself with increased productivity - throughput - and reductions in downtime for clean up. Your customers will also benefit through higher quality printed materials.

The VAC•N•TAC’s easy mount design takes just minutes to install. The system is available in single or double sided cleaning and comes complete with a dust collector that requires only an 110v outlet.

The VAC•N•TAC system has been engineered to address the two most critical factors that make particulate removal so difficult; the boundary layer of air and static electricity.

A boundary layer of air is caused by the friction between the surface of a moving web and the surrounding air. It creates a layer of air close to the surface of the web that literally traps the smaller particles. Unless the boundary layer is penetrated, these particles cannot be removed. Static electricity, caused by the contact and separation of the web on rollers, charges the web surface, creating an electrical field that attracts airborne particles to the surface. Once these particles contact the surface of the web, the static charge bonds them to the surface. Unless this bond is broken and the charges are neutralized, the particles cannot be removed effectively.

The VAC•N•TAC combines three components to address the boundary layer, static charges and resulting particulate on the web’s surface. First a static bar neutralizes the static charge and stops the attraction of particulate to the web. A high volume, low-pressure vacuum system suctions particulate into the dust collector. These two components clean the web to 25 microns. The third component in the VAC•N•TAC system is a Contact Cleaner Roll (CCR). The CCR breaks the boundary layer of air for high efficiency particle removal, to 1micron.

CCRs can be hard to keep clean and the high maintenance and replacement cost on systems that employ adhesive tape cleaning rolls can be prohibitive. By using a vacuum system before the web comes into contact with the CCR, the CCR stays clean, and maintenance and operating costs are significantly reduced.

SIMCO Industrial Static Control, ISO 9001 certified, is unsurpassed in customer service, and product excellence. SIMCO, the worldwide leader in static control, has been providing static control and web cleaning solutions since 1936.Simco Industrial Static Control is an Illinois Tool Works Company. A $9.3 billion diversified manufacturer of highly engineered components and industrial systems, ITW consists of more than 500 decentralized operations in 40 countries and employs approximately 52,800 people.
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User comments about this story

quote

web claning system for machine mark andy 2220 and nilpeter measures

Width 10”



Speed 150 feets per minute



Printers Mark andy , Nilpeter



Type of label : Thermal Ticket ( Boarding pass , Movie ticket , Parking ticket )



I wait quote ASAP.

By LILIAN CISNEROS on May 25, 2010 16:30

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