The plate-plate heat exchanger is composed of alternating corrugated plates, and the flow channels for the hot and cold mediums are formed between these plates. The hot and cold mediums are allowed to come into contact with each other through the plates, and heat is transferred from one medium to another via the plate.
Structural Features:
The structural features of the plate heat exchanger include the number of plates, the heat transfer area, the plate corrugation angle, and the contact points between the plates. The number of plates determines the overall heat transfer area of the exchanger. The heat transfer area is proportional to the number of plates and the area of each plate. The plate corrugation angle affects the flow velocity and turbulence of the medium in the flow channel, which has a direct impact on heat transfer efficiency. The contact points between the plates can be designed as gasketed or brazed, depending on the heat transfer requirements of the application.
Application Areas:
Plate heat exchangers have a wide range of applications. They are used in the following industries:
1. Chemical industry
2. Pharmaceutical industry
3. Food industry
4. HVAC industry


Product Specification

| Plate Material | SS304, SS316, Ti, Ni, Hastelloy |
| Dimension of Plate | Minimum unit 1200x800mm,1200x295mm |
| Space of Channel | 10mm |
| Applicable Temperature | Below 450'C or above 450'C |
| Frame Material | Stainless steel, carbon steel |
Conclusion:
In summary, the plate heat exchanger is a highly efficient and flexible heat transfer device. With its compact structure and easy maintenance, it is widely used in various industries and can be designed to meet the needs of different heat transfer applications. The application of plate heat exchangers in heat recovery systems is an effective way to reduce energy consumption and improve energy efficiency.
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