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Plate Heat Exchanger

The plate heat exchanger (PHE) is specially designed and is very suitable for transferring heat between medium and low pressure fluids. Welded, semi-welded and brazed heat exchangers are used for heat exchange between high-pressure fluids or where more compact products are required. Instead of piping through the chamber, there are two alternating chambers, usually thin in depth, separated by corrugated metal plates at their largest surface. The plate used in the plate and frame heat exchanger is obtained by integrally pressing the metal plate. Stainless steel is a commonly used metal for plates because it has the ability to withstand high temperatures, strength and corrosion resistance. The plates are usually separated by rubber gaskets, which are glued into the parts around the edges of the plates. The plates are pressed to form grooves at right angles to the flow direction of the liquid flowing through the channels in the heat exchanger. These grooves are arranged in such a way that they are interconnected with other plates to form channels, and the gap between the plates is 1.3-1.5 mm.
The printing plate produces an extremely large surface area, enabling the fastest transfer. Thinning each chamber ensures that most of the liquid is in contact with the plate, again helping the exchange. The tank also creates and maintains turbulence in the liquid to maximize heat transfer in the exchanger. At low flow rates a high degree of turbulence can be obtained, and then a high heat transfer coefficient can be achieved.
The plate heat exchanger consists of a series of thin corrugated plates mentioned above. Depending on the application of the heat exchanger, these plates are sealed, welded or brazed together. The plates are compressed together in a rigid frame to form parallel flow channels with alternating hot and cold fluids.

Compared with shell-and-tube heat exchangers, the temperature approximation of plate heat exchangers may be as low as 1°C, while the temperature of shell-and-tube heat exchangers requires 5°C or higher. For the same amount of heat exchange, the size of the plate heat exchanger is smaller, because the plate provides a larger heat transfer area (larger area through which heat can pass). In a plate heat exchanger, it is very simple to increase or decrease the heat transfer area by increasing or decreasing the number of plates in the stack.



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Jiangyin M&C Heat Parts Co.,LTD worked in the field of the world marine plate heat exchanger markets, possesses over 5 years of experience in a multitude of marine Projects, serves ships trading in the all corners of the globe, manufactures and distributes spare parts for the offshore and onshore industry, uses state of the art technology in its activities.