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**Heat Exchanger Description**
A plate heat exchanger consists of a stack of corrugated metal plates with openings that allow two fluids to pass through. These plates are mounted between a fixed frame plate and a movable pressure plate, held together by tightening bolts. Each plate is equipped with a gasket that seals the channels and directs the fluids into alternating paths. The number of plates used depends on factors such as flow rate, fluid properties, pressure drop, and temperature requirements. The corrugations on the plates enhance turbulence and provide structural support against differential pressure.
The frame and pressure plates are suspended from an upper carrying bar and guided by a lower bar, both of which are fixed to a support column. Connections are typically located on the frame plate, especially when one or both fluids make multiple passes within the unit.
**Efficient Heat Transfer**
Gasketed plate-and-frame heat exchangers (GPHEs) offer highly efficient heat transfer in a compact and space-saving design. Compared to traditional shell-and-tube heat exchangers, they are much smaller and more effective. The corrugated plates provide a large surface area for heat exchange, enhancing performance. Additionally, their modular design makes them easy to service and maintain.
**Benefits**
- **Precision Heat Transfer**: Closer approach temperatures, true counter-current flow, and 80–90% less hold-up volume.
- **Low Overall Cost**: Reduced capital investment, installation costs, and long-term maintenance expenses.
- **Maximum Reliability**: Less fouling, stress, wear, and corrosion.
- **Environmentally Responsible**: Lower energy consumption and reduced cleaning needs.
- **Easy to Expand Capacity**: Simply add or remove plates to adjust capacity without replacing the entire unit.
**Types of Gasketed Plate Heat Exchangers**
- **Industrial**: Versatile units suitable for various industries.
- **Industrial Semi-Welded**: Used in refrigeration applications where gaskets may not be suitable or higher pressure is required.
- **WideGap**: Designed for handling fibrous liquids, high-viscosity fluids, and particles.
- **Evaporators**: Customized rising film plate evaporators.
- **Condensers**: Compact vacuum condensers for efficient heat rejection.
**Technical Parameters**
Working conditions, duty, flow rate, medium, working pressure, working temperature, pressure drop, and thermodynamic properties are all considered when designing a plate heat exchanger.
Plate Heat Exchanger Specifications
Model
Frame Type
Dimensions (mm)
Connections (mm)
Max Flow (m³/h)
1.0 MPa
1.6 MPa
2.5 MPa
Height
Width
Length
TF3SM
LF10
LF16
-
320
160
140–440
20–30
20
TF3
LF10
LF16
-
480
180
250–400
20–30
20
MF10
MF16
-
480
180
250–500
20–30
20
TF6B
LF10
LF16
LF25
920
320
500–700
50–60
40
MF10
MF16
MF25
920
320
500–1400
50–60
40
TF6M
LF10
LF16
LF25
920
320
500–700
50–60
40
MF10
MF16
MF25
920
320
500–1400
50–60
40
TF10B
MF10
MF16
MF25
1100
470
700–2300
100
190
TF10M
MF10
MF16
MF25
1100
470
700–2300
100
190
TF15B
HF10
HF16
HF25
1885
650
1100–3700
150
400
TF15M
HF10
HF16
HF25
1885
650
1100–3700
150
400
TF20M
HF10
HF16
HF25
2140
780
900–4100
200
600
TF25B
HF10
HF16
HF25
2590
920
1600–3500
250
1100
TF30
HF10
HF16
HF25
2880
1170
1600–4800
300
1300
TF10FF
MF10
-
-
1650
520
900–3500
100
190
TF20FF
HF10
-
-
2100
750
3600–4100
200
600
**Customer Order**
One customer has ordered 14 sets of plate frame heat exchangers that will soon be delivered.
**Available Materials**
Various materials are available, including: 0.5 mm, 0.6 mm, 0.8 mm, 1.0 mm, 304SS, 316SS, Titanium, ASMO254, Hastelloy C-276, Nickel Ni201, 904L.
For more details, please contact us directly.
Plate Heat Exchanger for Seawater Pump
Model: M3, M6/M6M, M10B/M10M, M15B/M15M, M20M/T20M, MX25B, M30, TS6M, TS20M, AK20, P16, P26, P36
**Construction**
Plate heat exchangers are constructed using a series of corrugated metal plates that are sealed with gaskets. These plates are arranged in a frame and compressed by tightening bolts to create a compact and efficient heat transfer system. The design allows for two fluids to flow alternately through the channels formed between the plates, maximizing heat exchange efficiency.
Several images are available to illustrate the construction and appearance of the plate heat exchanger:
**Applications**
Plate heat exchangers are widely used in industries such as: Refinery, Petrochemical, Fine and Specialty Chemical, Pharmaceutical, Industrial Gas, Fertilizers, Food & Beverage, Edible Oil & Biodiesel, Pulp & Paper, Mining, Minerals and Metal Industry, Chemical Process, Refrigeration, Marine, Power Station, Energy, and Chemical Processing.
**Service**
We offer comprehensive services including:
- Design, calculation, data, and drawings
- 12-month free warranty and lifelong maintenance
- Training and operation manuals
- High quality, competitive pricing, and fast response
**Packaging Details**
Standard export plywood case, carton, or custom packaging according to your requirements.