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Stainless Steel Embedded G Fin Tube, ASTM A249 TP304 Welded Tube with Aluminum 1060, Dry Kiln application
Embedded G fin tubes are a popular choice for dry kiln applications due to their enhanced heat transfer efficiency and resistance to fouling. Here are some specific details about using embedded G fin tubes in dry kilns:
1. Heat Transfer Efficiency: The embedded G fin design increases the surface area of the tube, allowing for improved heat transfer efficiency. This is crucial in dry kilns where precise temperature control is essential for the drying process.
2. Resistance to Fouling: The finned surface of embedded G fin tubes helps to reduce fouling by minimizing the accumulation of dust, dirt, and other contaminants. This is important in dry kilns where any blockages or buildup can impact the drying process.
3. Customization Options: Embedded G fin tubes can be customized to meet the specific requirements of dry kiln applications, including variations in fin density, material composition, and tube diameter. This allows for optimal heat transfer performance tailored to the specific needs of the dry kiln.
4. Mechanical Strength: The embedded G fin design provides mechanical strength to the tube, making it more resistant to damage and deformation during the high-temperature conditions present in dry kilns.
5. Longevity and Durability: Embedded G fin tubes are designed to withstand the harsh operating conditions of dry kilns, ensuring long-term performance and durability even in high-temperature environments.
ASME SA312 TP304 Chemical Composition (%) | |||||||||||||||
C | Si | Mn | P | S | Cr | Ni | Mo | Ti | Nb | Cu | Al | V | Co | Fe | Result |
≤0.08 | ≤1.0 | ≤2.0 | ≤0.045 | ≤0.03 | 18.0~20.0 | 8.0~11.0 | / | / | / | / | / | / | / | / |
ASME SA312 TP304 Tensile Test ASTM A370-20 | ||
TensileStrength: Rm (Mpa) | Yield Strength: Rp 0.2(Mpa) | Elongation: A (%) |
≥515 | ≥205 | ≥35 |
Applications: