TP316L ASTM A213 Longitudinal Finned Pipe With SS316L Fins For Oil Cooler
Base Tube Material | TP304, TP316L |
Fin Material | SS304, SS316L |
Fin Thickness | 1.23mm |
Fin Connection | Welding |
Fin Height | 15.875mm |
Application | Furnace, Oil and Gas |
Longitudinal Finned Tube ASTM A213 TP316L Tube with SS316L Fins for Oil Cooler
Key Features
- Base Tube Material: ASTM A213 TP316L Stainless Steel, providing excellent corrosion resistance, particularly in harsh environments like oil coolers where resistance to high temperatures and chemical exposure is crucial.
- Fin Material: SS316L Stainless Steel, known for its exceptional resistance to pitting, crevice corrosion, and stress corrosion cracking, ideal for applications in oil coolers.
- Fin Type: Longitudinal Fins, designed to provide efficient heat transfer by increasing the heat exchange surface area along the tube.
- Application: Specifically engineered for oil cooler systems, providing high-performance cooling in hydraulic, mechanical, and industrial oil circuits.
Technical Specifications
Property | Base Tube (ASTM A213 TP316L) | Fin Material (SS316L) |
Outer Diameter (OD) | 15.88 mm - 50.8 mm | Customizable based on design |
Wall Thickness | 1.5 mm - 4.0 mm | - |
Fin Thickness | - | 1.5 mm - 3.5 mm |
Fin Height | - | 10 mm - 40 mm |
Fin Attachment | Welded or Mechanically Bonded | |
Chemical Composition
Element | ASTM A213 TP316L (Base Tube) | SS316L (Fin Material) |
Carbon (C) | ≤ 0.03% | ≤ 0.03% |
Manganese (Mn) | 2.00% (max) | 2.00% (max) |
Phosphorus (P) | ≤ 0.045% | ≤ 0.045% |
Sulfur (S) | ≤ 0.030% | ≤ 0.030% |
Chromium (Cr) | 16.00 - 18.00% | 16.00 - 18.00% |
Nickel (Ni) | 10.00 - 14.00% | 10.00 - 14.00% |
Molybdenum (Mo) | 2.00 - 3.00% | 2.00 - 3.00% |
Mechanical Properties
Property | ASTM A213 TP316L (Base Tube) | SS316L (Fin Material) |
Tensile Strength | ≥ 485 MPa | ≥ 485 MPa |
Yield Strength | ≥ 170 MPa | ≥ 170 MPa |
Elongation | ≥ 35% | ≥ 35% |
Advantages
- Corrosion Resistance: SS316L fins and ASTM A213 TP316L base tube offer exceptional resistance to aggressive environments, including oils, chemicals, and saline conditions.
- Efficient Heat Transfer: Longitudinal fins increase the surface area for heat exchange, making these tubes highly efficient in oil cooler applications.
- High-Temperature Durability: Both materials maintain their mechanical properties even at elevated temperatures, ideal for oil cooling systems.
- Enhanced Mechanical Stability: The welded or mechanically bonded fins ensure robustness under high pressures and thermal stress.
Applications
- Oil Coolers: Effective in cooling oils in automotive, industrial, and marine systems.
- Hydraulic Systems: Maintaining oil temperature in hydraulic machines and circuits.
- Power Plants: For cooling lubricants and oils in machinery and compressors.
- Chemical Processing: Oil cooling in equipment exposed to corrosive environments.
