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Infrared radiant energy is transported throughout space by electro magnetic waves without the need of a conductive media. Consequently heat can be delivered in concentrated areas at very fast rates. IR heaters provide solutions where conventional heat sources are not practical.
Features
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Reduction of heat loss due to radiation
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Immediate heat-up and cool down
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High radiation efficiency
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Clean heating element
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Cost effective
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High constancy of temperature providing
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High radiation intensity in a desired area
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Increases efficiency with gold /ceramic coatings
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Application:
- Heating plastic foils and sheets in thermoforming machines
- Production of shrink foils and films
- Gelling PVC pasty coats on fabrics
- Heating GRP and CRP parts during production
- Thermofixation of nylon and perlon threads
- Activating glues and hot seal coats
- Drying plastic emulsions
- Heating laminated materials before punching
- Drying raw and printed papers, cardboards and wallpapers
- Drying skins, hides and paint sprayed leather
- Quick-drying gummed papers
- Drying and baking enamelled sheet metal parts
- Baking on powder coatings
- Drying glazes on ceramic tiles
- Tempering glass
- Drying washed glass
- Soldering printed circuit boards
- Pre-heating weld seams in pipe construction
- Baking on sound insulating mats
- Drying fireproof impregnations for illumination and decorative papers
- Heating climatic chambers
- Drying washed, dyed and dressed fabric
- Baking on fluidised bed coatings
- Drying glued wood or furniture pieces
- Heating the paper mash before it is squeezed
- Pre-heating plastic pipes for joining
- Curing epoxy resins
- Tempering injection mouldings
- Drying raw tobacco
- Heating dragee masses
- Baking and browning biscuits
- Melting icing or chocolate frosting
- Keeping meals warm
- Heating processed cheese
- Keeping outdoor switchgear cabinets dry
- Accelerating chemical conversions
- Therapeutic medical radiation
- Infrared heated cabins (wellness cabins)
- Sterilising food Packagings
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