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Expansion Wave Tube ASTM A312 TP316H Enhanced Heat Transfer Tube For Boiler

Expansion Wave Tube ASTM A312 TP316H Enhanced Heat Transfer Tube For Boiler

Brand Name: YUHONG
Model Number: Corrugated Tube
MOQ: 1 PC
Price: 1 - 10000 USD
Payment Terms: L/C, T/T
Supply Ability: 10000 Tons/Month
Detail Information
Place of Origin:
China , Korea
Certification:
ABS, DNV-GL, LR, BV, CCS, KR, ASME, TUV, SGS, BV, IEI, IBR, ISO9001, ISO 14001, ISO 18001
Model Standard:
ASTM A312/ASME SA312
Applicable Industry:
Refrigeration And Air Conditioning Field,Chemical And Petrochemical,Industrial Waste Heat Recovery
Types Of Parts:
Finned Tube
Material:
A312,SA312
Packaging Details:
Ply - Wooden Case + Iron Frame
Supply Ability:
10000 Tons/Month
Highlight:

ASTM Heat Transfer Tube

,

TP316H Heat Transfer Tube

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A312 tube in tube heat exchanger

Product Description
Expansion Wave Tube ASTM A312 TP316H Enhanced Heat Transfer Tube For Boiler
Product Specifications
Attribute Value
Model Standard ASTM A312/ASME SA312
Applicable Industry Refrigeration and Air Conditioning Field, Chemical and Petrochemical, Industrial Waste Heat Recovery
Types Of Parts Finned Tube
Material A312, SA312
About Corrugated Finned Tubes

A corrugated finned tube is a type of enhanced heat transfer component widely used in heat exchangers and other thermal management systems. It consists of a central tube with corrugated (wavy or ridged) fins attached to its outer surface. The design of the corrugated fins increases the surface area available for heat transfer, thereby improving the efficiency of heat exchange between fluids or gases.

Key Features
  • Enhanced Heat Transfer Efficiency: The corrugated fins increase the surface area in contact with the surrounding fluid or air, allowing for more effective heat transfer compared to plain tubes.
  • Improved Flow Dynamics: The wavy pattern of the fins disrupts the flow of fluid or air, creating turbulence that helps reduce boundary layer thickness.
  • Structural Stability: The corrugated design provides mechanical strength and rigidity, making it suitable for high-pressure applications.
  • Compact Design: Enables space-saving heat exchangers while maintaining high performance.
  • Energy Savings: Improved efficiency leads to reduced energy consumption.
Advantages
  • High Efficiency: Significant enhancement of heat transfer through increased surface area and turbulence.
  • Durability: Long-term reliability and resistance to corrosion.
  • Space-Saving: Compact designs fit into tight spaces while maintaining performance.
Applications
  • Refrigeration and Air Conditioning (condensers and evaporators)
  • Chemical and Petrochemical Industries (reactors and heat exchangers)
  • Power Generation (cooling systems)
  • Automotive (radiators and intercoolers)
  • Food Processing (heating/cooling applications)
  • Aerospace (aircraft systems)
  • Industrial Waste Heat Recovery
Mechanical Properties
Tensile Strength (Min) Yield Strength (0.2% Proof) (Min) Elongation (% in 50mm) (Min) Hardness (Rockwell B, Max) Hardness (Brinell, Max)
515 MPa 205 MPa 40% 95 HRB 217 HB
Chemical Composition
Carbon (C) Manganese (Mn) Phosphorus (P) Sulfur (S) Silicon (Si)
≤ 0.030 ≤ 2.00 ≤ 0.045 ≤ 0.030 ≤ 0.75
Chromium (Cr) Nickel (Ni) Molybdenum (Mo) Nitrogen (N) Iron (Fe)
16.0 - 18.0 10.0 - 14.0 2.00 - 3.00 ≤ 0.10 Balance
Expansion Wave Tube ASTM A312 TP316H Enhanced Heat Transfer Tube For Boiler 0