Gasketed Plate Heat Exchanger for Cooling & Heating(BR002-M-1-E)
Component Material
Heat-exchange plate: SUS304, SUS316L, SMO254, titanium, nickel, Hastelloy alloy
Gasket seal: NBR, H-NBR, EPDM, food pad, fluorine rubber, silicon rubber
Frame: Carbon steel, stainless steel, coated stainless steel
Clamping bolt: Galvanized carbon steel, stainless steel
Interface: Rubber, carbon steel, stainless steel
Guide bar: Galvanized carbon steel, stainless steel
Products Feature
1, High Efficiency with Life Cycle Support
Its heat transfer coefficient is 3-5 times as large as that of shell-and-tube heat exchanger, reaching 7, 000W/m2K at the most.
2, High Heat Transfer Rates
Plate heat exchanger can realize full countercurrent form the temperature correction coefficient is 1 degree centigrade
3, Modularity For Flexibility
The exchangers can easily be disassembled for inspection, maintnance or even expansion by adding plates
4, Compact Design
The floor area occupied by plate heat exchanger is approximately one fifth to one tenth of the area occupied by shell-and-tube heat exchanger, given that the same heat exchange task is fulfilled by them.
5, Self-Cleaning Action
The plate turbulence also enhances the effectiveness of water backflushing and cleaning in place (CIP) procedures
With less frequent need to disassemble the exchanger
6, Easy to maintance
The unit opens within its own footprint simply by loosening the tie-rod bolts
And rolling the movable frame back to the support column
Structure of Plate Heat Exchanger
Introduction to Plate Sheet
The sheet is of unique linear and planar positioning structure, which can reduce the possibility for inter-sheet malposition;
Fillets in the sheet are of "Interlocked" structure which allows for mutual interlocking of sheets.
The herringbone corrugated sheet is featured by high heat transfer efficiency;
In addition, net-shaped contacts are formed in mutually reverse directions after the entire machine is assembled,
Featuring good pressure resistance.
Introduction to Sealing Gasket
Sealing gasket is inserted and fixed to the slot in heat-exchanging sheet, featuring easy insertion
And replacement of sealing gasket, which can substantially reduce stoppage time.
Sealing function is separated from fixing function. Even if some "clamps" with fixing function fail,
The gasket can still have sealing function in the slot.
Application: HVAC(constant-temperature swimming pool, solar energy, domestic water, air condition and heating ),
Textile printing & dyeing industry, pharmacy, food, chemical, paper making, steel and electromechanical and so on.
How does a Plate Heat Exchanger Work?
Each unit consists of a series of grooved plates that are individually gasketed and pressed tightly together by compression bolts within a frame.
Fluids enter and exit the PHE through portholes in one or both ends of the frame. Within the unit, the fluid to be heated or cooled flows down one side of each plate,
While the heating or cooling medium flows in the opposite direction across the other side. The huge temperature difference created by these opposite flows allows maximum heat transfer efficiency for closest possible approach temperature.
About Warranty
We promise 1 year guarantee, all reasonable relevant cost will be undertaken by us in the first year if our heat exchanger fail to work due to quality problem,
Only the free repairing operation guide is available in the rest of the years via E-mail /Fax/Phone
Sealing Gasket Description
Material Description |
Code |
Applicable Temperature ( degree centigrade ) |
Anti-corrosive Performance and Applicable Occasions |
NBR |
N |
-20~110 |
Hot air, water, non-polar oil, mineral oil, lubricant and silicone oil, etc. |
EPDM |
E |
-50~150 |
Vapor, polar chemical medium, alcohol, weak acid, weak alkali and oxidizing agent, etc. |
CR |
C |
-40~100 |
Ammonia, mineral oil and lubricant, etc. |
Fluorine Rubber |
F |
0~180 |
Inorganic acid, alkali, mineral oil and Haloalkane, etc. |
Silicon Rubber |
Q |
-65~230 |
Resistant to cold current and dry hot |



