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PHE GEA Flatplate High Thermal Conductivity Hastelloy Nickel

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PHE GEA Flatplate High Thermal Conductivity Hastelloy Nickel

Country/Region china
City & Province changzhou jiangsu
Categories Nickel
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Product Details

Product Description

High Thermal Conductivity Hastelloy Nickel 0.6mm Heat Exchanger Plates For GEA PHE


GEA Heat Exchanger Plates

 

  1. Plate heat exchanger plates play a crucial role in facilitating heat exchange and separating different media within plate heat exchangers. These plates are engineered using advanced CAD/CAM technology for plate design, and they undergo a precise pressing process using sophisticated molds to achieve exceptional precision. As a result, the plates are thinner, which enhances heat transfer efficiency.
  2. These high-quality plates are specifically designed to be compatible with a range of renowned brands such as Alfalaval, ACCESSEN, GEA (Kelvion), APV, Sondex, Tranter, Hisaka, API, Funke, Vicarb, Mueller, SWEP, Fischer, AGC, Thermalwave, ITT, LHE, DHP, and many others. They are tailored to meet the demanding requirements of various industrial applications, ensuring optimal performance and reliable heat transfer in diverse settings.

 

BrandModel

GEA

VT04,VT10,VT20,VT40,VT80,VT405,VT2508,N40,FA184,NT50,NT100T,

NT100MNT100X,NT150S,NT150L,NT250S,NT250M,NT250L,NT350S,

NT350M,NT500

 

MaterialSpecification
Stainless Steel

SUS304 316 316L 310S 904

Titanium and titanium-palladium alloyTAi TAi-Pd
Hastelloy

C276 D205 B2G

NickelNi200 Ni201
Molybdenum254

 

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

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

 

Production Process:

 

  • Cutting and leveling: Stainless steel plates are precisely cut using machine tools to meet the design specifications. After cutting, a leveling treatment is performed to ensure a smooth and even surface, which is essential for efficient heat transfer.
  • Stamping: The flattened plates undergo a stamping process using a hydraulic press. This process creates specific herringbone patterns on the plates, which contribute to a high turbulence coefficient. The turbulence promotes effective heat transfer by maximizing the contact between the fluids and the plates. Careful control is maintained during stamping to prevent plate deformation or any damage that may compromise performance.
  • Surface treatment: To enhance corrosion resistance and heat transfer performance, the plates undergo surface treatment. This treatment can include polishing, sandblasting, or coating, depending on specific requirements and application scenarios. The chosen treatment method helps to protect the plates from corrosion and fouling while facilitating efficient heat exchange between the fluids.

 

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