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Enhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And Gasket

Changzhou Victory Technology Co., LTD
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    Buy cheap Enhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And Gasket from wholesalers
     
    Buy cheap Enhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And Gasket from wholesalers
    • Buy cheap Enhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And Gasket from wholesalers

    Enhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And Gasket

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    Model Number : M3、M6、M6-D、M6M、M6MC、M10B、M10M、M15B、M15M、M15MC、M20M M20B、MX25B、MX25M、M30、TS6、TL6B、TS20、TL10B、TL10P、T20B、T20M、T20P、TL35B P16、P26、P36、AK20、JWP26、JWP36、M6MW、M10BW、MK15BW
    Certification : ISO SGS
    Price : 50 - 500pieces $18-$27
    Payment Terms : T/T, L/C, Western Union,
    Supply Ability : 50000pcs per month
    Delivery Time : 15-20 days
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    Enhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And Gasket

    Product Description

    M15B M15M Hight Theta Heat Exchanger Plate With Gasket For Optimal Cooling


    Heat Exchanger Plates


    Heat exchanger plates serve as essential components within plate heat exchangers, facilitating the transfer of heat between fluids. Typically crafted from metal, these plates are strategically arranged to optimize heat exchange while ensuring fluid separation.


    The demand for heat exchanger plates stems from the necessity to transfer heat between fluids efficiently, without commingling. This is crucial across industrial, commercial, and residential settings where heat transfer is pivotal for operations such as heating, cooling, and thermal energy recovery.


    The primary advantages of utilizing heat exchanger plates for heat transfer include:

    1. Enhanced Heat Transfer Efficiency: Heat exchanger plates are designed to maximize surface area, promoting efficient and swift thermal exchange between fluids.

    2. Compact Design: Plate heat exchangers featuring heat exchanger plates offer a space-efficient solution for heat transfer compared to conventional shell-and-tube heat exchangers.

    3. Versatility: Heat exchanger plates can be tailored to various patterns and designs to accommodate diverse fluid types, flow rates, and temperature differentials, enhancing their adaptability across a broad spectrum of applications.

    4. Energy Efficiency: By facilitating efficient heat transfer, heat exchanger plates contribute to energy conservation and heightened operational efficiency in heating and cooling systems.


    BrandModel

    M3,M6,M6-D,M6M,M6MC,M10B,M10M,M15B,M15M,M15MC,M20M

    M20B,MX25B,MX25M,M30,TS6,TL6B,TS20,TL10B,TL10P,T20B,T20M,

    T20P,TL35B

    P16,P26,P36,AK20,JWP26,JWP36,M6MW,M10BW,MK15BW


    MaterialSpecification
    Stainless Steel

    SUS304 316 316L 310S 904

    Titanium and titanium-palladium alloyTAi TAi-Pd
    Hastelloy

    C276 D205 B2G

    NickelNi200 Ni201
    Molybdenum254

    Products are mainly suitable for ACCESSEN/GEA (Kelvion)/ APV/ Sondex/ Tranter/ Hisaka/ API/ Funke/ Vicarb/ Mueller/ SWEP/ Fischer/ AGC/ Thermalwave/ ITT/ LHE/ DHP, etc.


    Applacations


    Plate materialSuitable for fluids
    Stainless steel (SUS304.316, etc.)Purified water, river water, edible oil, mineral oil
    Titanium and titanium palladium (Ti, Ti-Pd)Sea water, salt water, salt compounds
    20Cr,18Ni,6Mo(254SMO)Dilute sulfuric acid, dilute salt aqueous solution, inorganic aqueous solution
    Nickel (Ni)High temperature, high concentration caustic soda
    HASTELLOY alloy (C276, D205, B2G)Concentrated sulfuric acid, hydrochloric acid, phosphoric acid

    Plate heat exchanger plate thickness configuration

    • AISI 304 is usually 0.4 or 0.5 mm thickness
    • AISI 316 is always 0.5 and 0.6 mm
    • 254 SMO (high alloy) typically 0.6 mm
    • Titanium plates are always 0.5 and 0.6 mm
    • Some have thicker plates (for high pressure applications)
    • Some PHEs have 0.4 mm (low pressure operation)
    • Hastelloy C-276 (nickel alloy) typically 0.6 mm

    Production Process:


    • Raw material preparation: Careful selection of premium-grade stainless steel plates is undertaken for their exceptional corrosion resistance and thermal conductivity. Plate thickness is meticulously determined to align with product specifications and design parameters.

    • Cutting and leveling: Utilizing advanced machine tools, stainless steel plates are accurately cut to meet design specifications. Subsequently, a leveling treatment is administered to achieve a uniform and smooth surface.

    • Stamping: Hydraulic press stamping is employed on leveled plates to create specific herringbone patterns, enhancing turbulence coefficient for efficient heat transfer. Stringent control measures are implemented to prevent plate deformation or damage during the stamping process.

    • Surface treatment: Various surface treatment techniques such as polishing, sandblasting, or coating are applied to the plates to enhance corrosion resistance and heat transfer performance, selected based on specific requirements.

    • Assembly and inspection: Plates are meticulously assembled according to design specifications, resulting in the formation of either a detachable plate heat exchanger with rubber gasket seals or a fully welded plate heat exchanger using argon arc welding. Precision fitting and absence of gaps are meticulously ensured during assembly. Subsequently, a rigorous performance pressure test is conducted post-assembly, followed by issuance of a comprehensive factory report to verify compliance with stringent quality standards.

    • Enhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And GasketEnhanced Cooling Performance With M15B M15M High Theta Heat Exchanger Plate And Gasket
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