• Plate Heat Exchanger

  • Plate Heat Exchanger

Plate Heat Exchanger

Gasket Plate heat exchanger
frame material : Carbon Steel / Stainless Steel
Plate material : SS304/316L stainless , Ti , SMO ,Hastelloy
thickness :0.5/0.6mm (D V )
gasket material :NBR ,EPDM,VITON
Max pressure: 10(B) or 16bars (H)
Connection avaiable : 1)Flange 2)thread 3)studs 4)clamp

Product Description

The Gasket Plate Heat Exchanger (GPHE) is a type of heating equipment that, due to its special plate design, efficiently transfers heat utilizing every point on the plate surface.

Plate heat exchangers come in various sizes and are designed with flexibility, allowing the alteration of the number of plates, types, and quantity of flow paths. This enables the manufacturing of industrial heat exchangers according to specific applications based on rated power, operating temperature, and pressure drop.

 

Working Principle:

Gasket plate heat exchanger consists of thin metal plates pressed into a specific corrugated shape and then assembled using clamps and bolts, creating a tightly sealed heat exchanger. These plates are stacked to form a heat exchange unit with thin, rectangular channels in between, facilitating the exchange of heat. The working process involves the fluid flowing through these narrow, winding channels created between pairs of plates. Hot and cold fluids alternately pass through these channels, with the plates separating them and enabling heat transfer through them. The design and heat transfer mechanism of the plate heat exchanger result in tight connections, a compact structure, high heat transfer efficiency, operational flexibility, a wide range of applications, minimal heat loss, and ease of installation and cleaning.

 

Gasket Plate Heat Exchanger Characteristics:

1. Compact Structure - Easy Installation: The compact design of the gasket heat exchanger allows for easy installation.

2. Simple and Convenient Maintenance: Maintenance of the gasketed plate heat exchanger is straightforward and convenient.

3. High Energy Efficiency - Low Operating Costs: Plate heat exchangers gasket types are highly energy-efficient, leading to reduced operating costs.

4. Flexible Configuration - Modifiable Heat Transfer Area: The heat transfer area of the plate heat exchanger can be modified to suit specific requirements.

5. High Serviceability - Easy Inspection, Cleaning, and CIP Compatibility: Plate heat exchangers are easy to open for inspection and cleaning, and they can be cleaned using Cleaning in Place (CIP) methods.

 

Naming structure:

Gasket Plate Heat Exchanger

 

Product Structure:

Gasket Plate Heat Exchanger

 

Connection Type:

 

                                                                                                 Studs                                  flange                                    clamp                                threaded

 

 

Gasket Plate Heat Exchanger

 

Product Parameter

Plate Material suitable for fluid
Stainless Steel(sus304.316) Purified water, river water, edible oil, mineral oil
Tl,T-Pd Sea water, salt water and salt chemicals
20Cr, 18Ni6Mo(254SMO) Dilute sulfuric acid, dilute salt aqueous solution, inorganic aqueous solution
Ni High temperature, high concentration caustic soda
HASTELLoY (c276,D205,B2G) concentrated sulfuric acid, hydrochloric acid and carbonic acid

 

Gasket
Material
Temperature
Range
(c)
Corrosion Resistance
NBR -20-110 lt has good corrosion resistance to chain hydrocarbon (propane, butane, etc.), mineral oil, animal and vegetable oil, aliphatic hydrocarbon, ethylene glycol, acid and alkali dilute
solution.
HNBR -20-165 lt has good corrosion resistance to chain hydrocarbon (propane, butane, etc.), mineral oil, animal and vegetable oil,aliphatic hydrocarbon, ethylene glycol, acid and alkali dilute
solution.
EPDM -50~150 Resistant to dilute acid, alkali and salt corrosion.Suitable for hot water, saturated steam, glycol, organic acid, sodium hydroxide, ethanol, hexadecane, ester, etc.
H-EPDM -20~165 Resistant to dilute acid, alkali and salt corrosion.Suitable for hot water, saturated steam, glycol, organic acid, sodium hydroxide, ethanol, hexadecane, ester, etc.
S-EPDM -20~130 Resistant to dilute acid, alkali and salt corrosion.Suitable for hot water, saturated steam, glycol, organic acid, sodium hydroxide, ethanol, hexadecane, ester, etc.
Viton -40~180 Excellent corrosion resistance. lt is suitable for high concentration inorganic acid-base and polar chemical medium, mineral oil, silicone oil and silicone resin, animal and vegetable oil,
chain hydrocarbon (propane, butane, mineral oil, etc.), hydrocarbon chloride, fuel, non gas resistant substance, etc.
Chloroprene
rubber(CR)
-50~100 lt is resistant to dilute non oxidizing acid and alkali.
silicon -65~230 Corrosion resistant to dilute acid, alkali and brine.
Compressed
fiber (AFM34 SIL-
4400)
260 Oil, water and vapor(up to 160°C), gas, salt solution, fuel, ethanol, organic / inorganic acids, refrigerants, hydrocarbons.
PTFE -200~260 lt has excellent corrosion resistance.Except molten metal lithium,sodium, potassium, chlorine trifluoride, oxygen trichloride at high temperature and liquid fluorine with high flow rate, it can resist all chemical media (including concentrated nitric acid and aqua reqia).

 

Gasket type heat exchanger features: high efficiency and energy saving, heat transfer coefficient between 3000~4500kcal/m2-C-h; plates are closely arranged, compact structure; clamped plates are clamped by clamping bolts, easy to disassemble and clean; seal groove setting Drain fluid channel, various media will not collude.

Design pressure

3.0MPa

Working temperature

-40°C-180°℃

Model

BR serise

Liquid Flow Rate

Customized

Certification

CE/ISO9001:2015

Application range

Domestic hot water, swimming pool heating, sauna pool heating, floor heating, radiator
heating, industrial production, food, beverages, dairy products, beer/wine, fermentation, public works, etc.

TECHNICAL PARAMETERS

Product
model

Design pressure
[bar]

Dimensions(mm

Port distance
[mm]

Volume
per channel (L

B30

10

480*180

357*60

B Plate:0.092

B60

10/16

920*320

640'140

B Plate: 0.3; H Plate: 0.42

BB100

10

1045*454

719'225

B Plate:0.66

BH100

16

1069*470

719'225

H Plate: 1.0

B150

10/16

1815*610

  1294*298

B Plate:1.55; H Flate: 2.5

B200

10/16

2260*780

  1478*353

BPlate:1.83,H Plate: 3.67

B250

10/16

2903*920

  1939*439

BPlate: 3.62;  H Flate: 5.79

B350

10/16

2882*1150

  1842*596

BPlate: 6.3

L100

10/16

1888*480

  1338*225

PPlate: 129; B Plate: 0.86

L100C

10

1770*480

  1365*225

1

LB100T

10

1778*504

  1344*230

1.2

LD100T

25

1791*570

  1344*230

1.2

B60

10

1264*320

  1036*140

0.42

S60

10/16

704'400

  380'203

0.46

S200

10/16

1405*800

  698*363

1.3

BH65

10

946*380

  700*192

0.46

Note:The above technical parameters are for reference only,and the spetific production drawings shall  prevail.

Gasket Plate Heat Exchanger

 

Gasket Plate Heat Exchanger  Applications:

• Power plants

• Steel industry

• Food industry

• Chemical industry

• Refrigeration industry

• Heat recovery systems

• Dairy and beverage industry

• Building heating and cooling

• Petroleum and petrochemicals

• Shipbuilding and marine industry

• Evaporation and condensation

As a professional gasket plate heat exchanger supplier, GT boiler offers a wide range of plate corrugations, connection sizes, materials, plate lengths, and widths, providing an ideal configuration tailored to your specific requirements. Furthermore, our gasketed plate heat exchangers employ assembly and sealing technologies that are easy to maintain, ensuring lower service and maintenance costs.

 

Selection parameter collection table(An asterisk (*) is mandatory)
Type of plate heat exchanger * □Detachable □BPHE
application *  
Medium hot side *  
Medium cold side*  
ot side inlet temperature℃ *  
Hot side outlet temperature℃ *  
Cold side inlet temperature℃ *  
Cold side outlet temperature℃ *  
Hot side flow m³/h *  
Cold side flow m³/h *  
Maximum allowable pressure drop on the hot side kpa  
Maximum allowable pressure drop on the cold side kpa  
Hot side evaporation (condensation) temperature ℃  
Cold side evaporation (condensation) temperature ℃  
heat exchange amount kw *  
design margin  
Nozzle type and material (according to the need to fill)
D1  
D1 SIZE  
D2  
D2 SIZE  
D3  
D3 SIZE  
D4  
D4 SIZE  
H1  
H1 SIZE  
H2  
H2 SIZE  
H3  
H3 SIZE  
H4  
H4 SIZE  
Other requirements (optional)
bolt  
footing  
lifting hook  
clamp  
flange  

Tags

Show More+

  • wechat

    Anna Chen: +86 187 3232 5909

Chat with Us