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ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT, ECT Availbale, for Economizer

ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT, ECT Availbale, for Economizer

  • ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT, ECT Availbale, for Economizer
  • ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT, ECT Availbale, for Economizer
  • ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT, ECT Availbale, for Economizer
ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT, ECT Availbale, for Economizer
Product Details:
Place of Origin: China
Brand Name: Yuhong
Certification: ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008
Model Number: ASTM A335 P9
Payment & Shipping Terms:
Minimum Order Quantity: 100KGS
Price: Negotiable
Packaging Details: Ply-wooden Case /Iron Case/ Bundle with plastic Cap
Payment Terms: L/C, T/T
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Detailed Product Description
Standard: ASTM A335 Material: P9
Fin Type: Studed Tube NDT: HT/ ECT/ PMI
High Light:

P9 Alloy Steel Studded Tube

,

Oil Coated Studded Tube

,

Studded Boiler Tubes

ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT/ECT Availbale

 

Studded tubes are often used in oil and gas processing as well as petrochemical applications to prevent erosion and corrosion of the tubes. Studded tubes are also commonly referred to as studded pipes, or studded pipe fittings.

 

Chemical composition(%):

 

Grade C Mn P≤ S≤ Si Cr Mo
P11 0.05-0.15 0.30-0.60 0.025 0.025 0.50-1.00 1.00-1.50 0.44-0.65
P22 0.05-0.16 0.30-0.60 0.025 0.025 ≤0.50 1.90-2.60 0.87-1.13
P5 ≤0.15 0.30-0.60 0.025 0.025 ≤0.50 4.00-6.00 0.45-0.65
P9 ≤0.15 0.30-0.60 0.025 0.025 0.25-1.00 8.00-10.00 0.90-1.10
P91 0.08-0.12 0.30-0.60 0.020/0.010 0.020/0.010 0.02-0.50 8.00-9.50 0.85-1.05
P92 0.07-0.13 0.30-0.60 0.020/0.010 0.020/0.010 ≤0.50 8.50-9.50 0.30-0.60

 

 

Mechanical properties:

 

Grade Tensile strength Yield strength Elongation
P11, P22, P5, P9 ≥415 ≥205 ≥30/20
P91 ≥585 ≥415 ≥20
P92 ≥620 ≥440 ≥20
 

 

Some advantages of using studded tubes include:

1.Increased heat transfer surface area: The studs on the tube's surface increase the surface area of the tube, which results in higher heat transfer rates.

2.Reduced fouling: The studs create turbulence in the fluid flow, which reduces the likelihood of fouling or scaling on the tube surface.

3.Improved mechanical strength: The studs provide additional support to the tube, which improves the mechanical strength of the tube and makes it more resistant to damage.

4.Customizable design: Studded tubes can be designed with different stud patterns and arrangements to optimize heat transfer performance for specific applications.

 

Material P9 is a type of alloy steel that is compliant with the ASTM A335 specification. The ASTM A335 specification covers seamless ferritic alloy-steel pipe for high-temperature service.

The composition of material P9 includes a range of elements such as chromium, molybdenum, and vanadium, which make it highly resistant to corrosion and oxidation at high temperatures. The specific chemical composition requirements for material P9 are outlined in the ASTM A335 specification.

Material P9 is commonly used in high-temperature applications such as steam pipelines, power generation plants, and petrochemical refineries. Its high strength, durability, and resistance to corrosion and oxidation make it a reliable and cost-effective choice for these types of applications.

 

Non-Destructive Tests(NDT) that can be applied to ASTM A335 P9 material to ensure its quality and integrity. Some of these tests include:

 

Ultrasonic Testing (UT): This test uses high-frequency sound waves to detect internal defects in the material such as cracks, voids or inclusions.

Magnetic Particle Inspection (MPI): This test involves applying a magnetic field to the surface of the material and sprinkling iron particles over it. Any defects in the material cause a disruption in the magnetic field, which makes the iron particles cling to the defect and become visible to the inspector.

Liquid Penetrant Testing (LPT): This test involves applying a liquid penetrant to the surface of the material and waiting for it to seep into any surface-breaking defects. The excess penetrant is then wiped away, and a developer is applied to draw out the penetrant from the defect, making it visible to the inspector.

Radiographic Testing (RT): This test involves passing X-rays or gamma rays through the material and capturing an image of the internal structure. Any discontinuities or defects in the material will show up as dark spots on the image.

 

Application:

1.Heat exchangers: Studded tubes are frequently used in the construction of heat exchangers, where they improve the efficiency of heat transfer between fluids.

2.Boilers: Studded tubes are also used in the construction of boilers, where they provide additional surface area for heat transfer and help to 3.reduce fouling.

Furnaces: In furnace applications, studded tubes can be used to enhance heat transfer and reduce the temperature of flue gases before they exit the furnace.

4.Petrochemical processing: Studded tubes are commonly used in petrochemical processing plants for applications such as crude oil refining, gas processing, and chemical production.

5.Power generation: Studded tubes are used in various types of power generation facilities such as nuclear power plants, combined cycle gas turbine plants, and coal-fired power plants.

ASTM A335 P9 Alloy Steel Studded Tube Oil Coated HT, ECT Availbale, for Economizer 0

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