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Infrared ceramic heating technology

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Common applications

1.Plastic and rubber

  • Plasticization of plastic plates and rollers for thermoforming and vacuum forming
  • Preheated or vulcanized rubber sheet
  • Heating the glass fiber during the production process to strengthen the plastic
  • Cured plastisols
  • Laminating and plastic welding

2.food

  • Bake small bakery products and brown them
  • Keep food warm
  • Heating cheese
  • Packaged food

3.Textiles

  • Set thread
  • Gelled PVC paste coating on fabric
  • Drying, washing, dyeing and finishing of textile fabrics
  • Thermoset synthetic fiber

4.pulp

  • Pulp drying
  • Quick drying of glued, sizing or varnished paper
  • Dry raw and printed wallpaper
  • Heating the pulp before pressing
  • Adhesive activation

5.Miscellaneous Process

  • Drying and curing of paints and powder coatings
  • Dry raw tobacco
  • Evaporate water and solvent
  • Ink drying
  • Comfortable heat for agriculture, animals and reptile pets

 

Infrared radiant heat energy can be delivered to the concentrated area at a very fast speed through a single heater or heater array. Infrared energy is commonly used to heat plastics, remove moisture, cure paint finishes, or heat food. This is because in industrial applications, plastics, organic substances and water absorb infrared energy more efficiently than other materials.

 

The efficiency of radiant heat exchange between objects depends on:

1.The emissivity value of the emitter (ie ceramic heater).

2.Absorption, reflection and transmission characteristics related to the receiving medium.

3.Relative temperature difference.

4.Surface characteristics.

5.Relative position and physical geometry.

2020年9月5日 08:53
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