Flange Immersion Heaters | Immersion Heaters
  • Flange Immersion Heaters | Immersion Heaters

Flange Immersion Heaters

Preis auf Anfrage
0,00 €
Bruttopreis

ANSI Flange Tubular Heaters Ideal For Heating Liquids, Gases, Tanks and Pressure Vessels Requiring Higher Kilowatts

Available sizes:

3″-8″ (7.62 cm – 20.32 cm) with Baffles

3″-8″ (7.62 cm – 20.32 cm) without Baffles

10″-14″ (25.4 cm – 35.56 cm)

Menge
Angebot Anfragen
Kaufen

Beschreibung

Watlow flanged immersion heaters are easy to install and maintain. Designed for heating liquids and gases in tanks and pressure vessels, ANSI flanged immersion heaters are ideal for applications requiring higher kilowatts. Watlow flanged immersion heaters are made with WATROD or FIREBAR tubular elements brazed or welded to a flange. Stock flange heaters are equipped with a general purpose terminal enclosure. Flanged immersion heaters, with FIREBAR elements, also answer the need for liquid immersion applications requiring high kilowatts in small tanks. The FIREBAR element’s unique flat surface geometry packs more power in a smaller bundle, with lower watt density, making it especially well-suited for petroleum-based liquid heating applications.

For full product details and a complete list of related downloads click below.

3″-8″ Flange Heaters with Baffles
3″-8″ Flange Heaters without Baffles
10″-14″ Flange Heaters

DescriptionInformation
MaterialAlloy 800
Maximum Operating Temperature – C870
Maximum Operating Temperature – F1600
Maximum Watt Densities15.5
Maximum Watt Densities100

 

DescriptionInformation
MaterialN/A
Maximum Operating Temperature – C175
Maximum Operating Temperature – F350
Maximum Watt Densities15.5
Maximum Watt Densities100

 

DescriptionInformation
MaterialStainless Steel
Maximum Operating Temperature – C650
Maximum Operating Temperature – F1200
Maximum Watt Densities15.5
Maximum Watt Densities100

 

DescriptionInformation
MaterialSteel
Maximum Operating Temperature – C400
Maximum Operating Temperature – F750
Maximum Watt Densities15.5
Maximum Watt Densities100
×