Gasketed plate heat exchangers

Genuine gaskets and plates

Just as all plate heat exchangers are not created equal, neither are the replacement parts. Using lower cost, lower quality plates and gaskets can lead to decreased performance and increased costs.

Genuine rubber gaskets

Genuine rubber gaskets ensure tighter seals, longer lifetime and more uptime for gasketed plate heat exchangers. Alfa Laval gaskets may contain up to 30% more polymer than other gaskets, which contributes to optimal sealing.

Non-genuine gaskets may use the same nominal designations as genuine Alfa Laval gaskets, but their material properties differ.

Don't be fooled by gaskets that are slightly thicker - thicker is not better. Incorrect thickness causes inaccurate tightening calculations, which may cause leakage and/or deformation and destruction of the complete plate pack. This has been experienced by customers who use non-OEM spare parts.

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Genuine plates

Genuine Alfa Laval plates are made using single-step pressing. This ensures uniform plate strength and thickness over the entire plate, dramatically reducing the risk of fatigue cracking.

The correct material quality can make a huge difference to a process. Alfa Laval ensures that the correct material is specified according to its intended use.

Plate packs

In addition to supplying spare parts individually, we also offer complete spare plate packs.

Plate packs often replace the most affected part of a plate heat exchanger.

By installing a new plate pack, the heat exchanger function is restored without having to replace the entire heat exchanger.

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Parts performance investigation

In order to show you how inefficient some suppliers parts can be, we conducted an investigation to see what would happen if an original plate in an Alfa Laval plate heat exchanger is replaced by three other parts suppliers' plates. The investigation was conducted by an accredited laboratory and consisted of a visual examination, stereo microscope evaluation, photographic documentation and measurement of pressing depths.

In summary, discrepencies were identified in eight major areas of the other suppliers' plates that can cause severe performance issues:

  1. Plate pattern – caused uneven fluid distribution
  2. Plate distribution area – increased fouling, decreased stability, and leakage
  3. Pressing depth – uneven press depths were susceptible to cracking
  4. Portholes – off-center portholes weakened the sealing system
  5. Corner guides – poor corner guidance increased misalignment and sliding of plates
  6. Gasket groove – weak groove edges risk gasket blowout
  7. Gasket attachment – gasket system weakened plates due to stress
  8. Carrying bar plate interface – incorrectly shaped interface causes sliding of plates

Click here to download the report 

 

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