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Gasketed Plate Heat Exchangers​

Gasketed Plate Heat Exchangers allow two different fluids to heat exchange between each other without mixing to each other. While one side is heating, the other side is also cooling. Gasketed Plate Heat Exchangers are used in industrial and hygienic applications to meet certain temperatures and capacities. Plate material and gasket type change according to used the fluids. Stainless steel, titanium and nickel alloys plates are use depending on the corrosion resistance.

Construction of Plate Heat Exchanger

Main Components:

  1. Frame Plate
  2. Pressure Plate
  3. Carrying Bar
  4. Guiding Bar
  5. End Support
  6. Plate Pack
  7. Tie bars and nuts

Plate Heat Exchanger Working Principle

Why Plate Heat Exchanger?

Efficient and Economic

Due to their high heat transfer coefficient, they require less heat transfer area.

Compact and Robust Design

They take up 90% less space, are lightweight and easily transportable.

Glueless Gaskets

The glueless gaskets can be removed and installed during cleaning and maintenance, they can be easily used again.

İncreased Capacity

The capacity can be increased by adding a plate when requested.

High Thermal Stress Resistance

No problems even with high temperature differences between the two fluids.

Ease of Cleaning and Maintenance

The efficient design of the heat transfer area, it reduces contamination from particles and dirties.

Exchanger Details

Plate Material

AISI316L, AISI304, Titanyum Gr1, 254SMO, 904L, C276, C22, C2000 … vs

Gasket Material

EPDM, NBR, FKM(Viton) vs.

Frame Material

It is used carbon steel for industrial applications and  stainless steel for hygienic applications .

Design Temperature

-35°C up to 200°C

Design Pressure

Standartd 6-10-16-25 bar

Connection and Connection Type

Connection Size from DN25( ¾’’) to DN500(20’’)

Threaded, Clamp, Union or Flange

Advantages Vs. Shell&Tube Heat Exchanger

Low cost up to 70%
Capacity increase and decrease
Increased flexibility
Less fluid volume inside
Assembly and disassembly on-site
Less heat transfer area and more efficient
Easy emptying
Light weight and compact
High heat transfer capacities

Gallery

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