MOQ: | 1 unit |
Price: | USD500-100000/unit |
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 units per month |
The Plate Heat Exchanger operates by allowing two separate fluids to flow through alternating channels between the plates. The hot fluid transfers heat to the cold fluid through the thin metal plates, without any direct contact between the two liquids. The high turbulence created by the corrugated plates enhances heat transfer efficiency while minimizing fouling and scaling.
Heat Transfer Process:
1. Hot and cold fluids enter through separate inlet ports.
2. Fluids flow through alternating narrow channels between the plates.
3. Heat is transferred through the metal plates from the hot fluid to the cold fluid.
4. Fluids exit through separate outlet ports, maintaining efficient thermal separation.
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 |
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% |
Key Features & Advantages
High Efficiency & Performance
• Up to 90% heat transfer efficiency, significantly reducing energy consumption.
• Corrugated plate design increases turbulence, enhancing heat exchange rates.
Space-Saving & Lightweight
• Compact design reduces installation footprint compared to shell-and-tube exchangers.
• Lightweight construction allows for easy installation and handling.
Easy Maintenance & Cleaning
• Detachable plates allow for easy cleaning, inspection, and gasket replacement.
• Less fouling & clogging due to high turbulence, reducing downtime.
Customizable Design
• Wide selection of plate and gasket materials to suit different working conditions.
• Flexible configurations available, including gasketed, brazed, and welded PHEs.
Durable & Long-Lasting
• Corrosion-resistant materials such as stainless steel, titanium, and Hastelloy ensure long service life.
• Designed to withstand high pressure and temperature in industrial environments.
Why Choose Our Plate Heat Exchangers?
✔ Industry-Leading Design – Our advanced plate patterns provide superior heat transfer and durability.
✔ Custom Solutions – We offer tailored designs based on your specific process requirements.
✔ Global Standards Compliance – Our products meet international safety and performance standards.
✔ Reliable Support & Service – Dedicated technical support and after-sales services available worldwide.
if you need design new PHE unit, please send us below information.
Welcome you inquiry anytime, we will quote best price for your reference.
MOQ: | 1 unit |
Price: | USD500-100000/unit |
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 units per month |
The Plate Heat Exchanger operates by allowing two separate fluids to flow through alternating channels between the plates. The hot fluid transfers heat to the cold fluid through the thin metal plates, without any direct contact between the two liquids. The high turbulence created by the corrugated plates enhances heat transfer efficiency while minimizing fouling and scaling.
Heat Transfer Process:
1. Hot and cold fluids enter through separate inlet ports.
2. Fluids flow through alternating narrow channels between the plates.
3. Heat is transferred through the metal plates from the hot fluid to the cold fluid.
4. Fluids exit through separate outlet ports, maintaining efficient thermal separation.
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 |
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% |
Key Features & Advantages
High Efficiency & Performance
• Up to 90% heat transfer efficiency, significantly reducing energy consumption.
• Corrugated plate design increases turbulence, enhancing heat exchange rates.
Space-Saving & Lightweight
• Compact design reduces installation footprint compared to shell-and-tube exchangers.
• Lightweight construction allows for easy installation and handling.
Easy Maintenance & Cleaning
• Detachable plates allow for easy cleaning, inspection, and gasket replacement.
• Less fouling & clogging due to high turbulence, reducing downtime.
Customizable Design
• Wide selection of plate and gasket materials to suit different working conditions.
• Flexible configurations available, including gasketed, brazed, and welded PHEs.
Durable & Long-Lasting
• Corrosion-resistant materials such as stainless steel, titanium, and Hastelloy ensure long service life.
• Designed to withstand high pressure and temperature in industrial environments.
Why Choose Our Plate Heat Exchangers?
✔ Industry-Leading Design – Our advanced plate patterns provide superior heat transfer and durability.
✔ Custom Solutions – We offer tailored designs based on your specific process requirements.
✔ Global Standards Compliance – Our products meet international safety and performance standards.
✔ Reliable Support & Service – Dedicated technical support and after-sales services available worldwide.
if you need design new PHE unit, please send us below information.
Welcome you inquiry anytime, we will quote best price for your reference.