All Heating Elements

Eight families of heating element and the types within each. If you are not sure which suits your job, use the selection guide or call us.

A cartridge heater is a compact metal rod that slides into a drilled hole in a metal part and heats it from the inside. Nickel-chrome wire is wound on a ceramic core, packed with magnesium oxide and sealed in a stainless sheath. It carries far more power per square centimetre than any other element, which is why moulds, dies and platens use it.

A tubular heater is a metal tube with a resistance wire running down the middle, the gap packed tight with magnesium oxide powder. It is the most widely used industrial heating element, working in water, oil, air and against metal surfaces up to a sheath temperature of around 750 °C.

An immersion heater is a tubular element mounted on a screw plug or a flange so it can be sealed into the wall of a tank and sit directly in the liquid. It heats water, oil, fuel, chemicals and process baths from the inside, which wastes almost nothing, and it is chosen by the liquid it will live in rather than by wattage alone.

A band heater is a ring-shaped element that clamps around a cylinder and heats it through its wall. Resistance wire sits on mica or inside a ceramic body, wrapped in a stainless steel band that is pulled tight by a clamp. It is the element that heats injection barrels, extruder zones, nozzles and pipes.

A flat or strip heater is a rectangular element that bolts against a flat surface and heats it by contact. Resistance wire sits on mica or in compacted magnesium oxide inside a steel or stainless case. It is the element used wherever the thing being heated is a plate, a bar or a platen rather than a liquid or a pipe.

A flexible heater is a thin, bendable element that wraps around a curved surface or lies flat against an awkward one. A resistance circuit is sealed between sheets of silicone rubber, so the whole heater is a few millimetres thick and can be strapped or bonded onto drums, tanks, pipes and plates up to about 230 °C.

A radiant heater warms an object by infrared light rather than by touching it or by heating the air between them. A quartz tube, a halogen lamp or a ceramic face glows, and the surface facing it absorbs that energy directly. It is used where something has to be heated quickly, across a gap, without contact.

A high temperature heater works above the range where an ordinary sheathed element survives — roughly 1000 °C and up. Silicon carbide rods, molybdenum disilicide elements, open resistance coils and molybdenum heaters take furnaces and kilns from 1000 °C to about 1800 °C, and each one is chosen as much by the atmosphere inside the furnace as by the temperature.

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