F1 Induction Fusion Equipment | Electric Fluxer | Equilab

F1 Induction Fusion Equipment

1 VND
  • The F1 Induction Fusion Unit has been especially designed to facilitate and speed up the preparation of glass disks for analysis by X-RayAA solutions and for ICP analysis. The purpose is to produce, accurately and quickly, beads and dissolutions with classic fluxes (Borates), as well as to undertake high quality oxidations of elements non oxidized, using peroxides. Its performance is highly efficient both at high and at low temperatures

Technical specifications:

- Method: fusion, stirring, mixing and homogenization.

- Applications: geological samples, cements, minerals, slag, ceramics, oxides, glass, metals, ferroalloys, sulphides, fluorides, alloys.

Glass diskPeroxide or pyrosulphate solutions

- Produces: glass disks for X-Ray / peroxide or pyrosulphate solutions / samples for AA and ICP.

- Programs: 50 independent editable programs.

- Maximum consumption: 1500 W

- Power: 220 V - 15 A

- Control: PC

- Cooling system: closed circuit with a 300 W chiller / open circuit via external feeding 1,5 LPM.

- Work frequency: 130..160 KHz.

- Programmable elements: crucible stirring system / crucible stirring angle / speed and pouring angle / revolutions system for the solutions / crucible and mold cooling down system by fan

- Temperature control: 400 to 1200ºC limited by software.

- Software: intuitive, with graphics. Diagnosis and settings.

- Accessories: platinum and zirconium crucibles, platinum molds.

- Dimensions: 42 cm (high) x 35.5 cm (long) x 50 cm (wide)

- Approximate weight: 43 kg

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F2 Induction Fusion Equipment

1 VND

  • The F2 Induction Fusion Unit has been especially designed to facilitate and speed up the preparation of glass disks for analysis by X-RayAA solutions and for ICP analysis. The purpose is to produce, accurately and quickly, beads and dissolutions with classic fluxes (Borates), as well as to undertake high quality oxidations of elements non oxidized, using peroxides. Its performance is highly efficient both at high and at low temperatures.
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