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 |
A Plate Heat Exchanger (PHE) is an efficient and compact heat transfer device designed for various industrial applications. It consists of a series of corrugated metal plates that create multiple channels for hot and cold fluids to flow through, enabling effective heat exchange. PHEs offer advantages such as high thermal efficiency, space-saving design, easy maintenance, and scalability.
Technical Specifications
Parameter | Specifications |
Plate Material | SS304, SS316L, Titanium, Hastelloy |
Gasket Material | NBR, EPDM, Viton |
Frame Material | Carbon Steel, Stainless Steel |
Maximum Temperature | 200°C (392°F) |
Maximum Pressure | 25 bar (360 psi) |
Flow Rate | 1 – 5000 m³/h |
Plate Thickness | 0.4 – 1.0 mm |
Channel Gap | 2 – 5 mm (customizable) |
Comparison with Shell-and-Tube Heat Exchangers
Feature | Plate Heat Exchanger | Shell-and-Tube Heat Exchanger |
Efficiency | High (90%) | Moderate (60-70%) |
Size & Space | Compact, space-saving | Large footprint |
Maintenance | Easy, plates removable | Complex, requires full disassembly |
Heat Transfer Rate | High, enhanced turbulence | Lower, requires larger surface area |
Scalability | Easy to expand | Limited scalability |
Features & Benefits
✔ High Heat Transfer Efficiency – Optimized plate design enhances thermal performance.
✔ Compact & Lightweight – Requires less space compared to traditional shell-and-tube heat exchangers.
✔ Easy Maintenance – Plates can be disassembled for cleaning and servicing.
✔ Scalability – Additional plates can be added to increase capacity.
✔ Customizable Design – Available in various plate materials (SS304, SS316, Titanium, etc.) and gasket options.
Applications
Plate Heat Exchangers are widely used across multiple industries due to their efficiency and adaptability. Some key applications include:
• HVAC & Refrigeration – Air conditioning, heat recovery, and district heating/cooling systems.
• Chemical & Petrochemical Industry – Process heating, cooling, and solvent recovery.
• Food & Beverage Processing – Pasteurization, dairy processing, and brewing.
• Pharmaceutical Industry – Precise temperature control in drug production.
• Power Generation – Cooling of turbines, generators, and oil lubrication systems.
• Marine & Offshore Systems – Engine cooling, fresh water production, and oil refining.
Working Principle
The Plate Heat Exchanger operates by allowing two fluids (hot and cold) to flow through alternating channels formed between the plates. Heat is transferred from the hot fluid to the cold fluid through the thin metal plates, ensuring an efficient heat exchange process. The corrugated plate pattern enhances turbulence, increasing thermal performance while minimizing fouling and scaling.
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 don't know the model, please send us below dimensions so that we find the right product for you.
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 |
A Plate Heat Exchanger (PHE) is an efficient and compact heat transfer device designed for various industrial applications. It consists of a series of corrugated metal plates that create multiple channels for hot and cold fluids to flow through, enabling effective heat exchange. PHEs offer advantages such as high thermal efficiency, space-saving design, easy maintenance, and scalability.
Technical Specifications
Parameter | Specifications |
Plate Material | SS304, SS316L, Titanium, Hastelloy |
Gasket Material | NBR, EPDM, Viton |
Frame Material | Carbon Steel, Stainless Steel |
Maximum Temperature | 200°C (392°F) |
Maximum Pressure | 25 bar (360 psi) |
Flow Rate | 1 – 5000 m³/h |
Plate Thickness | 0.4 – 1.0 mm |
Channel Gap | 2 – 5 mm (customizable) |
Comparison with Shell-and-Tube Heat Exchangers
Feature | Plate Heat Exchanger | Shell-and-Tube Heat Exchanger |
Efficiency | High (90%) | Moderate (60-70%) |
Size & Space | Compact, space-saving | Large footprint |
Maintenance | Easy, plates removable | Complex, requires full disassembly |
Heat Transfer Rate | High, enhanced turbulence | Lower, requires larger surface area |
Scalability | Easy to expand | Limited scalability |
Features & Benefits
✔ High Heat Transfer Efficiency – Optimized plate design enhances thermal performance.
✔ Compact & Lightweight – Requires less space compared to traditional shell-and-tube heat exchangers.
✔ Easy Maintenance – Plates can be disassembled for cleaning and servicing.
✔ Scalability – Additional plates can be added to increase capacity.
✔ Customizable Design – Available in various plate materials (SS304, SS316, Titanium, etc.) and gasket options.
Applications
Plate Heat Exchangers are widely used across multiple industries due to their efficiency and adaptability. Some key applications include:
• HVAC & Refrigeration – Air conditioning, heat recovery, and district heating/cooling systems.
• Chemical & Petrochemical Industry – Process heating, cooling, and solvent recovery.
• Food & Beverage Processing – Pasteurization, dairy processing, and brewing.
• Pharmaceutical Industry – Precise temperature control in drug production.
• Power Generation – Cooling of turbines, generators, and oil lubrication systems.
• Marine & Offshore Systems – Engine cooling, fresh water production, and oil refining.
Working Principle
The Plate Heat Exchanger operates by allowing two fluids (hot and cold) to flow through alternating channels formed between the plates. Heat is transferred from the hot fluid to the cold fluid through the thin metal plates, ensuring an efficient heat exchange process. The corrugated plate pattern enhances turbulence, increasing thermal performance while minimizing fouling and scaling.
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 don't know the model, please send us below dimensions so that we find the right product for you.
if you need design new PHE unit, please send us below information.
Welcome you inquiry anytime, we will quote best price for your reference.