Shanghai Exheat Industries Co., Ltd
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mini Brazed Plate Heat Exchanger

mini Brazed Plate Heat Exchanger

Mini brazed plate heat exchanger

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  • Description

    EX12 EX14 used in the second-level heat exchanger for the Wall-hung stove, is a Wall-hung stove manufacturer custom products with high heat transfer efficiency and long service life.

     

    BHE for Air Dryers is a product customized for refrigeration dryer industry with high heat exchange efficiency and long service life.
    Different with other brazed plate heat exchanger using for drying compressed air, EXHEAT BHE for Air Dryers combines heat recovery, evaporator, and moisture separator of the compressed air into one modular (also named "three-in-one" modular) and it possesses certain unique features as below:
    ①. The number of plates in the separator can be determined by its working load, which is the volume of the compressed air. With no need independent air compression design, the product cost is minimized.
    ②. The addition of pre-drainage at the heat recovery can lower the power consumption of the evaporator.
    ③. The connection at the top of the moisture separator can provide part of the cooled dry compressed air to the user,
    or be used for regular cleaning of the product.
    ④. The evaporator adopts the asymmetrical runner design (when there is REF phase-change heat transfer) , so as
    to improve the efficiency of heat exchange and lower the pressure drop of the compressed air.
    ⑤. Special structural reinforcement design is adopted locally to withstand high temperature change and long cycles of fatigue testing.

     

    Dual-circuit heat exchanger are mainly used in evaporators and condensers in chillers and heat pumps, and applicable to some HFC , HFO refrigerants. The dual-circuit design is better than the back-to-back solution, and it has full performance in both full load and half load conditions.

     

    Brazing heat exchangers is an effective way to join metal components together. It involves melting a filler metal and using it to join the two pieces of metal at a joint. The brazing process can produce strong, leak-tight joints that are resistant to thermal and mechanical stresses.

    One of the benefits of brazing heat exchangers is that it can be used to join dissimilar metals. This can be useful when creating heat exchangers composed of different materials, as the brazing process can join the metals together without compromising their individual properties. Additionally, brazing can be used to join thin and delicate materials, as the heat input is minimized during the process.

    Another advantage of brazing is the ability to create complex shapes and configurations. Heat exchangers can have intricate and precise designs to optimize heat transfer, and brazing can be used to create those designs with accuracy and efficiency.

    It should be noted that brazing requires clean and properly prepared surfaces to ensure a strong and reliable connection. It is therefore important to follow strict cleaning and preheating procedures before attempting to braze heat exchangers.

    Overall, brazing is a highly effective and versatile method for joining heat exchanger components. It offers numerous benefits, including the ability to join dissimilar materials and create complex shapes. By following proper procedures, braze joints can be highly reliable and resistant to thermal and mechanical stresse

     

    Model WidthA(mm) HeightB (mm) LengthE (mm) Horizontal port
    distance C(mm)
    Vertical port
    distace D (mm)
    Max pressure[Mpa] Max flowrate[M3/h] Weight[kg]
    EX14 76 206 9+2.3n 42 172 3/4.5 8 0.7+0.06n
    EX15A 80 190 9+2.3n 40 154 1 8 0.9+0.06n
    EX15B 95 210 9+3.3n 50 165 1 8 0.9+0.06n
    EX18 50 165 9+3.3n 95 210 1 8 0.7+0.06n
    EX30 70 250 13+2.4n 124 304 3/4.5 18 2.2+0.16N
    EX50C 50 466 10+2.35n 111 525 3/4.5 18 2.6+0.19N
    EC50D 50 446 10+2.35n 111 525 3/4.5 18 2.6+0.21N
    EX60 63 470 10+2.35n 119 526 3/4.5 18 2.9+0.21N
    EX95A/B 92 519 11+2.72N 191 616 3/4.5 36 7.8+0.44N
    EX100E 159 413 10+2.15N 174 456 3/4.5 42 6.5+0.37N
    EX120 174 456 13+2.36N 246 528 3/4.5 42 7.2+0.52N
    EX190 179 567 13+2.7N 307 696 1.5/2.1 100 10+0.62N
    EX200 188 603 13+2.7N 321 738 1.5/2.1 100 12.3+0.88N
    EX210 205.2 568 13+2.55N 322 739 3.0/4.5 100 11+0.82N
    EX600 220 1190 22+2.78N 429 1398 1.5/2.1 180 31.8+1.73N
    EX35 220 1190 9+3.1N 429 1398 2 180 1+0.16N

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