GAB Neumann GmbH

GAB Neumann GmbH

- Silicon Carbide Plate Heat Exchangers

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CORRESIC® silicon carbide plate heat exchangers are adapted to the heating and cooling of highly corrosive and/or oxidizing chemicals. This design is the most compact and most efficient type of silicon carbide heat exchangers. Our CORRESIC® silicon carbide plate heat exchangers are composed of many thin, slightly separated silicon carbide plates that have very large surface areas and small fluid flow passages for heat transfer. Heat is transferred by conduction through the silicon carbide plates material. Plate exchangers work with countercurrent flows which allows low temperature differences, rapid temperature changes, and high efficiencies.

Product Details

Snapshots

Hydrotesting
Hydrotesting of a SP58 Silicon carbide plate heat exchanger.

SP58 Silicon carbide plates
Numerous silicon carbide plates before assembly in a SP58 SiC plate heat exchanger.

A SP50 (right) and a SP58 (left) silicon carbide plate heat exchangers
GAB Neumann has developed silicon carbide plates with different sizes to better fit with customers’ specific requirements

A SP50 (foreground) and a SP58 (background) silicon carbide plate heat exchangers
SP50 and SP58 SiC plate heat exchangers are adapted to medium flow rates.

A SP58 (foreground) and a SP50 (background) silicon carbide plate heat exchangers
SP58 and SP50 SiC plate heat exchangers are adapted to medium flow rates.

A SP50 (foreground) and a SP58 (background) silicon carbide plate heat exchangers
GAB Neumann has developed silicon carbide plates with different sizes to better fit with customers’ specific requirements

Rendus 3D

SP26 SiC plate heat exchanger
SP26 SiC plate heat exchangers are adapted to small flow rates.

SP26 SiC plate heat exchanger
SP26 SiC plate heat exchangers are adapted to small flow rates.

SP50 SiC plate heat exchanger
SP50 SiC plate heat exchangers are adapted to medium flow rates.

SP50 SiC plate heat exchanger
SP50 SiC plate heat exchangers are adapted to medium flow rates.

SP58 SiC plate heat exchanger
SP58 SiC plate heat exchangers are adapted to medium flow rates.

SP58 SiC plate heat exchanger
SP58 SiC plate heat exchangers are adapted to medium flow rates.

SP26, SP50, and SP58 SiC plates
GAB Neumann has developed silicon carbide plates with different sizes to better fit with customers’ specific requirements

SP26 SiC plate
SP26 SiC plates have a height of 260 mm (10'1/4) .

SP50 SiC plate
SP50 SiC plates have a height of 500 mm (19'3/4) .

SP58 SiC plate
SP58 SiC plates have a height of 580 mm (22'3/4) .

Materials:
  • CORRESIC® pressureless sintered silicon carbide plates
  • Pressure plates and flanges: carbon steel or stainless steel
  • Tie rods, nuts, bolts, washers, springs: stainless steel
  • PTFE gaskets between the plates
Design:
  • Modular design: number of plates, size of plates and number of passes can be adjusted
  • Different plate sizes: 260, 500 and 580 mm
  • PTFE lined steel nozzles
  • Thermal expansion compensation ensured by helicoidal springs

Features

Key Features:

  • Design pressure: -1 (Full vacuum) to 16 bar (240 psi)
  • Design temperature: -30°C to +200°C (-22°F to 392°F)
  • Heat transfer area: 0.5 to 7.1 m2 (5.4 to 75 ft2)
  • Nozzle sizes: DN25 / DN50 / DN80 PN16
  • Design:  according to European PED, ASME code, Chinese Pressure Vessel code and other national pressure vessel codes on request

Key Benefits

  • Outstanding corrosion resistance against acid, bases and oxidizing media
  • Great heat transfer performance thanks to adjustable cross sections on both sides
  • Easy disassembly
  • Ability to mechanically clean each plate if necessary
  • Second hardest material existing on earth thus eliminating any risk of erosion
  • High operational safety
  • Extremely compact, sturdy and modular design
  • Short lead time
  • Long lifetime

Main Applications

  • Cooling and heating of ultra-corrosive and/or oxidizing chemicals or ultra-pure chemicals
  • Heat recovery between two ultra-corrosive and/or oxidizing chemicals or ultra-pure chemicals

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