Material: | Copper | Max Design Pressure: | 4.5 Mpa |
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Connection Mode: | Male Thread , Female Thread, Flange, SAE Flange, Soldering | Warranty Period: | One Year |
Structure: | Plate Heat Exchanger | HS CODE: | 8419500090 |
Application: | HVAC Industry/Refrigeration/Renewable Energy Systems | ||
Highlight: | Corrosion Proof Brazed Plate Exchanger,Corrosion Proof brazed heat exchanger,Heating Cooling Brazed Plate Exchanger |
Copper Brazed Plate Heat Exchanger Used In District Heating And Cooling Systems
District Heating and Cooling: Brazed plate heat exchangers are used in district heating and cooling systems for efficient heat exchange between the central plant and the distribution network.
Copper plate heat exchanger refers to a type of plate heat exchanger that utilizes copper plates as the primary heat transfer surface. Copper is a highly conductive material known for its excellent thermal conductivity, corrosion resistance, and durability. Copper plate heat exchangers are commonly used in various industries and applications where efficient heat transfer and resistance to corrosion are required.
Today, copper plate heat exchangers continue to be widely used due to their proven performance, reliability, and versatility. They play a vital role in various industries, contributing to efficient heat transfer, energy conservation, and process optimization.
Advantages :
High Thermal Conductivity: Copper is known for its excellent thermal conductivity, which enables efficient heat transfer between the fluid streams. This results in enhanced heat exchange performance and improved energy efficiency.
Corrosion Resistance: Copper exhibits good resistance to corrosion, making it suitable for handling various fluids, including those with high acidity or alkalinity. This corrosion resistance contributes to the longevity and reliability of copper plate heat exchangers.
Excellent Heat Transfer Efficiency: The design of copper plate heat exchangers, with their large surface area and optimized plate patterns, ensures efficient heat transfer.
This leads to high heat transfer coefficients and improved overall heat exchange efficiency.
Compact Size and Space Savings: Copper plate heat exchangers can achieve high heat transfer rates within a compact design. The large surface area of the plates allows for effective heat transfer while minimizing the space required for installation.
Versatility: Copper plate heat exchangers can be used for a wide range of applications, including heating, cooling, evaporation, condensation, and heat recovery. They find applications in various industries such as HVAC, refrigeration, chemical processing, and power generation.
Ease of Maintenance: Copper plates are relatively easy to clean and maintain. They have good resistance to fouling and can be cleaned using various methods, ensuring optimal heat transfer performance over time. This ease of maintenance contributes to the longevity of the heat exchanger.
TYPE | B(mm | C(mm | D(mm) | E(mm) |
Thickness (mm) |
Weight(Kg) | Max Flow (m3/h) | Design Pressure (Mpa) |
SB14 | 77 | 42 | 206 | 172 | 9+2.3N | 0.7+0.06N | 8 | 1/3/4.5 |
SB16 | 78 | 42 | 208 | 172 | 9+2.24N | 0.6+0.049N | 8 | 1/3/4.5 |
SB18 | 95 | 50 | 210 | 165 | 7+3.1N | 0.7+0.06N | 8 | 1 |
SB20B | 78 | 42 | 318 | 282 | 9+2.3N | 1+0.08N | 8 | 3/4.5 |
SB20C | 77 | 42 | 313 | 278 | 10+1.28N | 0.9+0.07N | 8 | 3/4.5 |
SB26 | 111 | 50 | 310 | 250 | 10+2.32N | 1.3+0.12N | 18 | 3/4.5 |
SB26F | 107 | 50 | 307 | 250 | 10+1.98N | 1.3+0.1N | 18 | 3/4.5 |
SB28B | 120 | 72 | 290 | 243 | 10+2.36N | 1.5+0.133N | 18 | 3/4.5 |
SB28C | 120 | 63 | 290 | 234 | 10+2.36N | 1.5+0.133N | 18 | 3/4.5 |
SB30 | 126 | 70 | 307 | 250 | 10+2.35N | 2.2+0.16N | 18 | 3/4.5 |
SB52A | 111 | 50 | 526 | 466 | 9+2.32N | 2.6+0.21N | 18 | 3/4.5 |
SB52B | 111 | 50 | 526 | 466 | 9+2.32N | 2.6+0.19N | 18 | 3/4.5 |
SB53 | 106 | 50 | 522 | 466 | 9+2.1N | 2.6+0.27N | 18 | 3/4.5 |
SB62A | 120 | 63 | 528 | 470 | 10+2.35N | 2.379+0.194N | 18 | 3/4.5 |
SB62B | 120 | 63 | 528 | 470 | 10+2.35N | 2.379+0.194N | 18 | 3/4.5 |
SB65 | 125 | 65 | 540 | 480 | 11+2.28N | 2.5+0.228N | 18 | 3/4.5 |
SB95A | 189 | 92 | 616 | 519 | 11+2.7N | 7.8+0.44N | 42 | 3/4.5 |
SB95B | 189 | 92 | 616 | 519 | 11+2.7N | 7.8+0.44N | 42 | 3/4.5 |
SB120A | 246 | 174 | 528 | 456 | 10+2.34N | 7.2+0.52N | 42 | 3/4.5 |
SB120B | 246 | 174 | 528 | 456 | 10+2.34N | 7.2+0.52N | 42 | 3/4.5 |
SB190 | 303 | 179 | 695 | 567 | 13+2.3N | 12+0.61N | 100 | 1.6/2.1/3 |
SB200A | 320 | 188 | 742 | 603 | 14+2.7N | 13+0.67N | 100 | 1.5/2.1/3 |
SB200B | 320 | 188 | 742 | 603 | 14+2.7N | 13+0.67N | 100 | 1.5/2.1/3 |
SB200E | 320 | 207 | 742 | 624 | 14+2.7N | 13+0.67N | 100 | 1.5/2.1/3 |
SB202 | 319 | 188 | 741 | 603 | 16+2.85N | 13+0.957N | 100 | 2.1/3 |
SB300 | 370 | 118(95.5) | 995 | 861(816) | 17+2.675N | 20+1.26N | 200 | 1.6/2.1/3 |
SB500 | 304 | 179 | 982 | 854 | 17+2.29N | 26.6+0.93N | 200 | 2.1/3 |
SB01 | 390 | 204 | 1320 | 1132 | 22+2.75N | 30+1.8N | 300 | 3/4.5 |
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