MOQ: | 1 set |
Price: | USD100-10000/set |
Standard Packaging: | Plywood case |
Delivery Period: | 10 - 15 work days |
Payment Method: | T/T, L/C, D/A, D/P, Western Union |
Supply Capacity: | 500 pcs per month |
A Plate Heat Exchanger (PHE) is an advanced and highly efficient heat transfer device designed for industrial and commercial applications. It consists of multiple corrugated metal plates that form alternating channels for hot and cold fluids to pass through, enabling rapid and efficient heat exchange. Due to its compact size, excellent heat transfer performance, and ease of maintenance, it is widely used across industries such as HVAC, chemical processing, food & beverage, power generation, marine, and pharmaceuticals.
Structure & Working Principle
Main Components of a Plate Heat Exchanger
Component |
Description |
Plates |
Corrugated metal sheets that form heat exchange channels. |
Gaskets |
Seals the plates to prevent fluid mixing (only for gasketed PHEs). |
Frame & Tie Bars |
Holds the plates together, allowing assembly/disassembly. |
Connections |
Inlet/outlet ports for fluid flow. |
How It Works
1. Two fluids (hot & cold) enter through separate inlets.
2. Fluids flow through alternating narrow channels without mixing.
3. Heat is transferred from the hot fluid to the cold fluid via the plates.
4. Cooled hot fluid & heated cold fluid exit through separate outlets.
5. Efficient turbulence flow ensures maximum heat exchange with minimal fouling.
Technical Specifications
Parameter | Specification |
Plate Material | SS304, SS316L, Titanium, Hastelloy, Duplex Stainless Steel |
Gasket Material | NBR, EPDM, Viton |
Frame Material | Carbon Steel, Stainless Steel, Epoxy-Coated Steel |
Max Temperature | Up to 200°C (392°F) |
Max Pressure | Up to 25 bar (360 psi) |
Heat Transfer Area | 0.1 – 1000 m² |
Flow Rate | 1 – 5000 m³/h |
Plate Thickness | 0.5 – 1.0 mm |
Channel Gap | 2 – 5 mm (customizable) |
Connection Type | Threaded, Flanged, Welded |
Efficiency | Up to 90% |
Industry Applications
Industry | Application |
HVAC & Cooling | District heating, chillers, air conditioning |
Chemical & Petrochemical | Cooling & heating of process fluids, solvent recovery |
Food & Beverage | Pasteurization, dairy processing, brewing, fermentation |
Pharmaceuticals | Temperature control in drug manufacturing, sterilization |
Power Generation | Turbine cooling, lubrication oil cooling, heat recovery |
Marine & Offshore | Engine cooling, desalination, oil refining |
Why Choose Our Plate Heat Exchangers?
✔ Premium Quality Materials – High-grade stainless steel, titanium, and Hastelloy available.
✔ Custom-Built Solutions – Designed to match your process requirements.
✔ Energy-Efficient Design – Optimized plate patterns maximize heat transfer efficiency.
✔ Global Standards Compliance – CE, ASME, ISO 9001 certified for industrial use.
✔ Expert Technical Support – Dedicated assistance for installation and troubleshooting.
If you don't the model, please don't worry, just send us below picture diemension
Welcome inquiry anytime, we are online all the time.
MOQ: | 1 set |
Price: | USD100-10000/set |
Standard Packaging: | Plywood case |
Delivery Period: | 10 - 15 work days |
Payment Method: | T/T, L/C, D/A, D/P, Western Union |
Supply Capacity: | 500 pcs per month |
A Plate Heat Exchanger (PHE) is an advanced and highly efficient heat transfer device designed for industrial and commercial applications. It consists of multiple corrugated metal plates that form alternating channels for hot and cold fluids to pass through, enabling rapid and efficient heat exchange. Due to its compact size, excellent heat transfer performance, and ease of maintenance, it is widely used across industries such as HVAC, chemical processing, food & beverage, power generation, marine, and pharmaceuticals.
Structure & Working Principle
Main Components of a Plate Heat Exchanger
Component |
Description |
Plates |
Corrugated metal sheets that form heat exchange channels. |
Gaskets |
Seals the plates to prevent fluid mixing (only for gasketed PHEs). |
Frame & Tie Bars |
Holds the plates together, allowing assembly/disassembly. |
Connections |
Inlet/outlet ports for fluid flow. |
How It Works
1. Two fluids (hot & cold) enter through separate inlets.
2. Fluids flow through alternating narrow channels without mixing.
3. Heat is transferred from the hot fluid to the cold fluid via the plates.
4. Cooled hot fluid & heated cold fluid exit through separate outlets.
5. Efficient turbulence flow ensures maximum heat exchange with minimal fouling.
Technical Specifications
Parameter | Specification |
Plate Material | SS304, SS316L, Titanium, Hastelloy, Duplex Stainless Steel |
Gasket Material | NBR, EPDM, Viton |
Frame Material | Carbon Steel, Stainless Steel, Epoxy-Coated Steel |
Max Temperature | Up to 200°C (392°F) |
Max Pressure | Up to 25 bar (360 psi) |
Heat Transfer Area | 0.1 – 1000 m² |
Flow Rate | 1 – 5000 m³/h |
Plate Thickness | 0.5 – 1.0 mm |
Channel Gap | 2 – 5 mm (customizable) |
Connection Type | Threaded, Flanged, Welded |
Efficiency | Up to 90% |
Industry Applications
Industry | Application |
HVAC & Cooling | District heating, chillers, air conditioning |
Chemical & Petrochemical | Cooling & heating of process fluids, solvent recovery |
Food & Beverage | Pasteurization, dairy processing, brewing, fermentation |
Pharmaceuticals | Temperature control in drug manufacturing, sterilization |
Power Generation | Turbine cooling, lubrication oil cooling, heat recovery |
Marine & Offshore | Engine cooling, desalination, oil refining |
Why Choose Our Plate Heat Exchangers?
✔ Premium Quality Materials – High-grade stainless steel, titanium, and Hastelloy available.
✔ Custom-Built Solutions – Designed to match your process requirements.
✔ Energy-Efficient Design – Optimized plate patterns maximize heat transfer efficiency.
✔ Global Standards Compliance – CE, ASME, ISO 9001 certified for industrial use.
✔ Expert Technical Support – Dedicated assistance for installation and troubleshooting.
If you don't the model, please don't worry, just send us below picture diemension
Welcome inquiry anytime, we are online all the time.