1700°C & 1800°C Laboratory high temperature furnaces (HTF & RHF)


 

HTF models


  • High temperature furnaces with maximum operating temperatures of 1700°C or 1800°C
  • 1700°C chamber capacities of 3 or 10 litres
  • 1800°C chamber capacities of 4 or 8 litres
  • Powerful MoSi2 elements located on both sides of the chamber ensure good thermal uniformity
  • Thick diameter MoSi2 elements can withstand the stress of everyday operation and provide good longevity
  • Low thermal mass insulation and good element design is used to ensure energy efficiency and rapid heating
  • Manually operated vertical counter-balanced door keeps hot door insulation away from operator
  • Postive break door safety switch isolates chamber from power supply, when the door is opened
  • Double skinned construction allows fanned air flow to cool the outer case, to conform to EN61010 safety standard
  • Eight segment programmer is fitted as standard, with options for other types
  • Adjustable overtemperature protection is fitted as standard
  • Applications in general industry include sintering alumina, smelt trials and checking Al2O3 content in alumina
  • Applications in the ceramics industry include disintegration, testing and analysis of cement samples, refractory porosity tests, long term high temperature temperature tests and firing & sintering of ceramic samples
  • Applications in the semi-conductor industry include annealing silicon, silicon carbide & nitride samples and solid state synthesis
  • Click for specification details
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RHF model


  • High temperature furnace with a maximum operating temperature of 1700°C
  • Chamber capacity 25 litres
  • Powerful MoSi2 elements located on both sides of the chamber ensure good thermal uniformity
  • Low thermal mass insulation and good element design is used to ensure energy efficiency and rapid heating
  • Electrically operated vertical door keeps hot door insulation away from operator
  • Postive break door safety switch isolates chamber from power supply, when the door is opened
  • Double skinned construction allows fanned air flow to cool the outer case
  • Eight segment programmer is fitted as standard, with options for other types
  • Adjustable overtemperature protection is fitted as standard
  • Floor standing model
  • Applications in general industry include sintering alumina, smelt trials and checking Al2O3 content in alumina
  • Applications in the ceramics industry include disintegration, testing and analysis of cement samples, refractory porosity tests, long term high temperature temperature tests and firing & sintering of ceramic samples
  • Applications in the semi-conductor industry include annealing silicon, silicon carbide & nitride samples and solid state synthesis
  • Click for specification details
..............................................................................
 

HTF models


  • High temperature furnaces with a maximum operating temperature of 1800°C
  • Chamber capacity of 15 or 27 litres
  • Powerful MoSi2 elements located on both sides of the chamber ensure good thermal uniformity
  • Low thermal mass insulation and good element design is used to ensure energy efficiency and rapid heating
  • Electrically operated vertical door keeps hot door insulation away from operator
  • Postive break door safety switch isolates chamber from power supply, when the door is opened
  • Double skinned construction allows fanned air flow to cool the outer case
  • Eight segment programmer is fitted as standard, with options for other types
  • Adjustable overtemperature protection is fitted as standard
  • Floor standing model
  • Applications in general industry include sintering alumina, smelt trials and checking Al2O3 content in alumina
  • Applications in the ceramics industry include disintegration, testing and analysis of cement samples, refractory porosity tests, long term high temperature temperature tests and firing & sintering of ceramic samples
  • Applications in the semi-conductor industry include annealing silicon, silicon carbide & nitride samples and solid state synthesis
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