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M15B M15M High Theta Heat Exchanger Plate Equipped With Gasket For Superior Cooling Performance

10pcs
MOQ
50 - 500pieces $18-$27
Price
M15B M15M High Theta Heat Exchanger Plate Equipped With Gasket For Superior Cooling Performance
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Features
Specifications
Model: Heat Exchanger Plate
After Warranty Service: Online Support
Heat Transfer Area: 10-5000m²
Keyword: Heat Exchanger Plate
Plate Pattern: Chevron
Plate Type: Gasket Plate Heat Exchanger
Plates Material: SUS304 316 316L 310S 904 TAi TAi-Pd Hastelloy C276 D205 B2G Ni200 Ni201 Molybdenum254
Surface Treatment: Powder Coating,Clean,quiet
Veneer Area: Customized
Gasket Material: NBR HNBR EPDM HEPDM VITON FKM Silicone/CR/Neoprene
Highlight:

M15B Heat Exchanger Plate

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Gasket Heat Exchanger Plate

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High Theta Heat Exchanger Plate

Basic Infomation
Place of Origin: China
Certification: ISO SGS
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
Payment & Shipping Terms
Packaging Details: Plywood Box
Delivery Time: 15-20 days
Payment Terms: T/T, L/C, Western Union,
Supply Ability: 50000pcs per month
Product Description

Product Description

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


Heat Exchanger Plates

 

Heat exchanger plates are integral components within plate heat exchangers, designed to transfer heat between fluids. Typically crafted from metal, these plates are arranged to optimize heat exchange while keeping the fluids separate.

 

The demand for heat exchanger plates arises from the need to transfer heat between fluids efficiently without mixing them. This is critical in various industrial, commercial, and residential scenarios where heat transfer is vital for processes like heating, cooling, and thermal energy recovery.

 

The key benefits of using heat exchanger plates for heat transfer include:

1. Enhanced Heat Transfer Efficiency: Heat exchanger plates are engineered to maximize surface area for efficient and rapid thermal exchange between fluids.

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

3. Versatility: Heat exchanger plates can be configured in different patterns and designs to accommodate various fluid types, flow rates, and temperature differences, making them adaptable for a wide range of applications.

4. Energy Efficiency: By facilitating efficient heat transfer, heat exchanger plates contribute to energy savings and improved process efficiency in heating and cooling systems.

 

 

Brand Model
 

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

 

Material Specification
Stainless Steel

SUS304 316 316L 310S 904

Titanium and titanium-palladium alloy TAi TAi-Pd
Hastelloy

C276 D205 B2G

Nickel Ni200 Ni201
Molybdenum 254

 

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 material Suitable 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: Premium-grade stainless steel plates are meticulously chosen for their outstanding corrosion resistance and thermal conductivity. The thickness of the plates is precisely determined in accordance with product specifications and design parameters.

  • Cutting and leveling: Advanced machine tools are employed to accurately cut the stainless steel plates, ensuring adherence to design specifications. Following cutting, a leveling treatment is administered to achieve a smooth and uniform surface.

  • Stamping: The leveled plates undergo hydraulic press stamping to impart specific herringbone patterns. This process enhances turbulence coefficient, facilitating efficient heat transfer. Stringent control measures are implemented to prevent plate deformation or damage during stamping.

  • Surface treatment: Various surface treatment methods such as polishing, sandblasting, or coating are applied to the plates to augment corrosion resistance and heat transfer performance. The selection of treatment method is contingent upon specific requirements.

  • Assembly and inspection: The plates are meticulously assembled in accordance with design specifications, resulting in the formation of either a detachable plate heat exchanger with rubber gasket seals or a fully welded plate heat exchanger utilizing argon arc welding. Precise fitting and absence of gaps are meticulously ensured during assembly. Subsequently, a rigorous performance pressure test is conducted post-assembly, and a comprehensive factory report is issued to validate compliance with stringent quality standards.

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