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 (PHE) is a highly efficient, compact, and versatile heat transfer device designed for various industrial and commercial applications. It consists of multiple thin, corrugated metal plates stacked together to create channels for hot and cold fluids to flow through, facilitating optimal heat transfer. The unique plate design maximizes heat exchange efficiency while maintaining a small footprint, making it an excellent alternative to traditional shell-and-tube heat exchangers.
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.
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.
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.
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% |
Packaging & Logistics
✅ Secure Packaging:
• Wooden crates & protective wrapping to prevent damage during shipping.
• Labeling & documentation for customs compliance and tracking.
✅ Global Shipping & Delivery:
• Door-to-door delivery available for international orders.
• Express shipping options for urgent industrial needs.
Frequently Asked Questions (FAQ)
Q1: How do I choose the right Plate Heat Exchanger?
A: Provide details such as fluid type, temperature range, flow rate, pressure, and application. Our engineers will recommend the best model.
Q2: Can PHEs handle high-pressure applications?
A: Yes, welded and semi-welded PHEs are designed for high-pressure environments.
Q3: How often should I clean my PHE?
A: Cleaning frequency depends on usage, but CIP (Clean-in-Place) maintenance is recommended every 6–12 months for optimal performance.
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 |
The Plate Heat Exchanger (PHE) is a highly efficient, compact, and versatile heat transfer device designed for various industrial and commercial applications. It consists of multiple thin, corrugated metal plates stacked together to create channels for hot and cold fluids to flow through, facilitating optimal heat transfer. The unique plate design maximizes heat exchange efficiency while maintaining a small footprint, making it an excellent alternative to traditional shell-and-tube heat exchangers.
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.
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.
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.
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% |
Packaging & Logistics
✅ Secure Packaging:
• Wooden crates & protective wrapping to prevent damage during shipping.
• Labeling & documentation for customs compliance and tracking.
✅ Global Shipping & Delivery:
• Door-to-door delivery available for international orders.
• Express shipping options for urgent industrial needs.
Frequently Asked Questions (FAQ)
Q1: How do I choose the right Plate Heat Exchanger?
A: Provide details such as fluid type, temperature range, flow rate, pressure, and application. Our engineers will recommend the best model.
Q2: Can PHEs handle high-pressure applications?
A: Yes, welded and semi-welded PHEs are designed for high-pressure environments.
Q3: How often should I clean my PHE?
A: Cleaning frequency depends on usage, but CIP (Clean-in-Place) maintenance is recommended every 6–12 months for optimal performance.
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.