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BH100 Stainless Steel Plate Heat Exchanger Titanium Gasket Plate Heat Exchanger for Seawater Cooling

Categories Standard Heat Exchanger
Brand Name: Baode
Model Number: BH100 Series
Certification: CE/UL
Place of Origin: China
MOQ: 1 Unit
Price: USD 300-1000 per Unit
Payment Terms: T/T
Supply Ability: 500 Unit/Units per Month
Delivery Time: 14-18 work days
Packaging Details: Plywood case
Product name: BH100 Stainless Steel Plate Heat Exchanger Titanium Gasket Plate Heat Exchanger for Seawater Cooling
Application: Liquid to liquid heat exchanging
Frame material: Carbon steel
Plate material: Stainless steel, Ti
Gasket: NBR/EPDM/VITON
Power: 300 - 800 kW
Practical application: CIP Heating, Wine Tempering
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    BH100 Stainless Steel Plate Heat Exchanger Titanium Gasket Plate Heat Exchanger for Seawater Cooling

    BH100 Stainless Steel Plate Heat Exchanger Titanium Gasket Plate Heat Exchanger for Seawater Cooling


    A gasket plate heat exchanger, also known as a plate heat exchanger, is an efficient and compact heat exchange device. It consists of a series of parallel plates that are held together by a clamping device to form a closed heat exchange channel. Its working principle is mainly reflected in its unique plate design and heat transfer process.

    The core of a plate heat exchanger is its plate, which is usually made of a material that is resistant to corrosion and has good heat transfer performance, such as stainless steel or titanium alloy. Each plate is designed with a flow channel so that the fluid forms a thin laminar flow as it passes through, which enhances the heat transfer effect. When two fluids of different temperatures flow through these plates, heat is transferred from the higher temperature fluid to the lower temperature fluid, achieving heat exchange.

    The design of the plate heat exchanger makes the two fluids completely isolated, preventing the mixing between different fluids and ensuring the reliability of the process. At the same time, due to its compact structure and efficient heat transfer performance, plate heat exchangers have been widely used in many fields, such as heating, refrigeration, industrial waste heat recovery and so on.

    In actual operation, the advantages of the gasket plate heat exchanger are also very obvious. Because the plates can be easily disassembled and cleaned, the maintenance of the equipment is simple and fast. At the same time, due to its efficient heat transfer performance and low resistance loss, the energy efficiency is greatly improved and the operating cost is reduced.

    ModelBH100B / BH100H
    Cross ReferenceM10M, M10B
    Height, H [mm]10841084
    Width, W [mm]470470
    Min standard length, L [mm]700700
    Max standard length, L [mm]23002300
    Vertical port distance, VC [mm]719719
    Horizontal port distance, HC [mm]225225
    Max temperature [°C]180180
    Max pressure [barg]1016
    Flange sizeDN100/4''DN0100/4''
    Max. flow rate [kg/s]50

    (Measurment in mm, N means the number of the plates)



    Material of PlateSuited Liquid Kinds
    Stainless Steel (AISI304.316 Etc)Pure Water, Normal Water, Oil for eating, Mineral Oil
    Ti, Ti-pdSea Water, Saline Water, Mineral Water
    20Cr, 18Ni, 6Mo (254SMO)Dilute Sulphuric Acid, Organic Water Solution
    NiHigh-temp and concentration caustic soda
    Hastelloy (C276, D205, B2G)Concentration Sulphuric Acid, Hydrochloric acid, Phosphoric acid
    Material of GasketOperating Temperature ° CSuited Liquid Kinds
    NBR-15~+135° CWater, Sea Water, Mineral Oil, Salinous Water
    EPDM-25~+180° CHot Water, Steam, Acid, Alkali
    F26-55~+230° CAcid, Alkali
    TPF-0~+160° CHigh Concentrated Acid, Alkali, High temperature Oil, Steam


    The gasket plate heat exchanger, with its unique design and efficient performance, has been widely used in various industrial and civil fields. It is highly efficient, compact, lightweight and easy to maintain, making it a leader in modern heat transfer technology.

    The biggest feature of the gasket plate heat exchanger is its high efficiency. Due to its unique plate design, the hot and cold fluids flow in a very small flow channel, which greatly improves the heat transfer efficiency. At the same time, due to the turbulent state of the fluid, the heat transfer process is more efficient.
















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