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Clean GEA Heat Exchanger Plate Powder Coating 0.5mm 0.6mm Thickness

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Clean GEA Heat Exchanger Plate Powder Coating 0.5mm 0.6mm Thickness

Brand Name : GEA

Model Number : VT04、VT10、VT20、VT40、VT80、VT405、VT2508、N40、FA184、NT50、NT100T、NT100M NT100X、NT150S、NT150L、NT250S、NT250M、NT250L、NT350S、 NT350M、NT500

Certification : ISO SGS

Place of Origin : China

MOQ : 20pcs

Price : 50 - 500pieces $20-$30

Payment Terms : T/T, L/C, Western Union,

Supply Ability : 50000pcs per month

Delivery Time : 15 days

Packaging Details : Plywood Box

Model : GEA Heat Exchanger Plate

After Warranty Service : Online support

Heat Transfer Area : 10-5000m²

Keyword : heat exchanger plate

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

Application : Isolate media and perform heat exchange

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Product Description

High-Performance Titanium Alloy GEA Heat Exchanger Plates 0.5mm 0.6mm Thickness


GEA Heat Exchanger Plates

  1. Plate heat exchanger plates serve a crucial function in plate heat exchangers by facilitating efficient heat transfer while effectively isolating different fluid streams. These plates are meticulously engineered using advanced CAD/CAM technology and undergo a precise pressing process, ensuring exceptional precision and thinness. Consequently, the thinner plates contribute to enhanced heat transfer efficiency.
  2. The plate heat exchanger plates are designed to be compatible with renowned brands such as , ACCESSEN, GEA (Kelvion), APV, Sondex, Tranter, Hisaka, API, Funke, Vicarb, Mueller, SWEP, Fischer, AGC, Thermalwave, ITT, LHE, DHP, and others. This broad compatibility enables their application in various industries, including HVAC, chemical processing, power generation, and food and beverage.
  3. With their reliable thermal performance, durability, and compatibility, these plates are widely trusted for efficient heat exchange in diverse industrial settings. Whether it's optimizing energy usage, maintaining process temperatures, or ensuring product quality, plate heat exchanger plates play a vital role in delivering effective heat transfer solutions.

Brand Model

GEA

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

NT100T,NT100MNT100X,NT150S,NT150L,NT250S,NT250M,

NT250L,NT350S, NT350M,NT500

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

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:

The production of stainless steel plates for plate heat exchangers involves several precise steps to ensure high-quality performance and longevity.

  • Cutting and Leveling: Stainless steel plates are accurately cut using advanced machine tools to meet the specific design requirements. After cutting, a leveling treatment is applied to ensure a smooth and even surface. This step is crucial for maintaining efficient heat transfer capabilities.
  • Stamping: The flattened plates undergo a meticulous stamping process using hydraulic presses. This process creates unique herringbone patterns on the plates, which significantly increase turbulence inside the heat exchanger. The controlled turbulence promotes optimal heat transfer by maximizing fluid contact with the plate surfaces. Special attention is given to maintaining precise control during stamping to prevent plate deformation or damage.
  • Surface Treatment: To enhance corrosion resistance and optimize heat transfer performance, the plates undergo surface treatments such as polishing, sandblasting, or coating. The specific treatment method is selected based on the desired requirements and operating conditions. These treatments improve the plates' resistance to corrosion, fouling, and scaling, ensuring long-term efficiency and reliability.

Clean GEA Heat Exchanger Plate Powder Coating 0.5mm 0.6mm ThicknessClean GEA Heat Exchanger Plate Powder Coating 0.5mm 0.6mm Thickness


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