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ASTM A335 P11 Pipe in stock

ASTM A335 P11 Pipe in stock

Seamless Ferritic Alloy Steel Pipe For High-temperature Service

Astm a335 p11 alloy steel pipe delivers strength and oxidation resistance for high-temperature service in boilers, heaters, and pressure piping systems.

ASTM A335 P11 Pipe in stock

Seamless Ferritic Alloy Steel Pipe For High-temperature Service

Astm a335 p11 alloy steel pipe delivers strength and oxidation resistance for high-temperature service in boilers, heaters, and pressure piping systems.

ASTM A335 P11 Seamless Pipe is a high-performance alloy steel pipe engineered for superior high-temperature strength and corrosion resistance in demanding applications. Conforming to the ASTM A335/ASME SA335 specification, this Chrome Moly Pipe is designed with a composition of 1.00-1.50% chromium and 0.44-0.65% molybdenum, making it ideal for boiler pipeline protection in power plants, refineries, petrochemical plants, and other industrial piping systems. Its seamless construction ensures exceptional durability and reliability under high-pressure and high-temperature conditions up to 550°C.

The ASTM A335 P11 Seamless Pipe is manufactured through hot-rolling or cold-drawing processes, followed by heat treatments such as normalizing at 900-960°C and tempering at 650-760°C to optimize mechanical properties. The chromium content enhances oxidation resistance and high-temperature strength, while molybdenum improves creep resistance, hardenability, and wear resistance, making it suitable for boiler pipeline protection. Available in sizes from 1/8” to 36” (NPS 1/8 to NPS 36, DN6 to DN900), with wall thicknesses ranging from SCH 20 to XXS, and lengths up to 13.5 meters or customized, it meets diverse project requirements.

The Seamless Alloy Pipes undergo rigorous testing, including tensile, flattening, hardness, and hydrostatic tests, to ensure compliance with ASTM A335 standards. With a minimum tensile strength of 415 MPa and yield strength of 205 MPa, the P11 pipe offers robust resistance to thermal stress and pressure, making it ideal for handling corrosive fluids and gases in petrochemical and power generation applications. Surface treatments such as galvanizing, FBE, or 3LPE coatings further enhance corrosion resistance, while plain or beveled ends facilitate seamless integration into industrial piping systems.

Compared to other grades like P5 or P22, the ASTM A335 P11 Seamless Pipe provides a cost-effective balance of high-temperature performance and durability, making it a preferred choice for power plants and refinery applications. Its compatibility with fittings and flanges under ASTM A234 WP11 standards ensures seamless integration into complex piping networks. The pipe’s ability to resist hydrogen sulfide corrosion and stress corrosion cracking makes it ideal for oil and gas pipelines and high-pressure industrial piping systems requiring reliable boiler pipeline protection.

Engineered to address critical challenges like pipeline wear, corrosion, and thermal stress, the ASTM A335 P11 Seamless Pipe delivers unmatched performance in high-throughput industrial systems. Its advanced alloy composition and seamless construction make it a reliable choice for engineers seeking durable industrial piping solutions for extreme environments, ensuring safety, longevity, and efficiency in Chrome Moly Pipe applications.

Key Benefits

High-Temperature Strength

Withstands temperatures up to 550°C for boilers and refineries.

Corrosion Resistance

Chromium and molybdenum ensure resistance to oxidation and corrosion.

Creep Resistance

Molybdenum enhances durability in high-pressure systems.

Seamless Durability

Uniform construction ensures reliability in high-pressure applications.

Cost-Effective

Long lifespan reduces maintenance and replacement costs.

Versatile Applications

Ideal for boilers, refineries, and petrochemical systems.

Comparison with Other Grade Pipes

Comparison of ASTM A335 P11 with Other Pipe Grades
Feature ASTM A335 P11 ASTM A335 P22 ASTM A335 P91
Material Type Alloy Steel Alloy Steel Alloy Steel
Chromium Content 1.00-1.50% 1.90-2.60% 8.00-9.50%
Molybdenum Content 0.44-0.65% 0.87-1.13% 0.85-1.05%
Temperature Range High (up to 550°C) High (up to 600°C) High (up to 650°C)
Corrosion Resistance Good (With coatings) Good (With coatings) Excellent (With coatings)
Applications Boilers, Refineries Boilers, Refineries Power Plants, Supercritical Boilers
Tensile Strength (MPa) 415 (min) 415 (min) 585 (min)
Yield Strength (MPa) 205 (min) 205 (min) 415 (min)
Key Advantage Cost-effective high-temp Balanced high-temp strength Superior creep strength
Chemical Composition of ASTM A335 P11 Seamless Pipe
Element Composition (%)
Carbon (C) 0.05-0.15
Manganese (Mn) 0.30-0.60
Phosphorus (P) ≤0.025
Sulfur (S) ≤0.025
Silicon (Si) 0.50-1.00
Chromium (Cr) 1.00-1.50
Molybdenum (Mo) 0.44-0.65
Mechanical Properties of ASTM A335 P11 Seamless Pipe
Property Value
Tensile Strength, min (MPa) 415
Yield Strength, min (MPa) 205
Elongation, min (%) 30
Hardness, max (HBW) 163
ASTM A335 / P11 Alloy Steel Pipe Inventory
Spec Grade O.D. (mm) W.T. (mm) Length (mm) QTY
(pcs)
QTY
(Tons)
ASTM A335P1160.308.74-12-
ASTM A335P1173.007.00-1-
ASTM A335P1173.009.00-1-
ASTM A335P1188.905.491200070.938
ASTM A335P1188.905.496000–12000141.472
ASTM A335P1188.907.621200081.450
ASME SA335P1188.907.626000–1200020.312
ASTM A335P1188.907.62-2-
MAL 037P1188.907.626000–1200040.650
ASTM A335P1188.9011.13-14-
ASTM A335P11114.306.02-1-
ASTM A335P11114.308.566000–1200050.930
MAL 037T11114.308.56-162.612
ASME SA332P11114.3010.00-1-
ASME SA333P11141.306.551499030.992
ASME SA334P11141.306.55-26-
ASME SA335P11141.306.55-20.356
ASTM A335P11168.307.118000–120005015.152
ASTM A335P11168.3010.976000–1200031.204
ASTM A335P11168.3010.97-2-
ASTM A335P11219.1012.70-9-
ASTM A335P11273.0016.00-3-
ASTM A335P11273.0018.50-5-
ASTM A335P11325.0014.00-1-
ASTM A335P11325.0016.00-10-
ASTM A335P11325.0020.00-3-
ASTM A335P11325.0022.00-18-
ASTM A335P11325.0026.00-4-
ASTM A335P11325.0030.00-2-
ASTM A335P11609.6030.75-4-

Length: 5800mm; 6000mm; 6096mm; 7315mm; 11800mm; 12000mm; etc.

Max length: 16000mm (U-bending also available upon request).

Note: This is a partial stock list. For other grades or sizes, please contact us for more information or availability.

What are the grades of alloy steel?

Alloy steel pipes are categorized by both standards and grades, each designed for specific performance requirements and applications. Common standards include ASTM A335, A519, and A213, while grades like P5, P9, P11, P22, and P91 are frequently used within these standards.

Detailed Grades of Alloy Steel Pipes by Standard
Standard Detailed Grades Main Applications
ASTM A335 / ASME SA335 P1, P2, P5, P9, P11, P12, P15, P21, P22, P23, P24, P36, P91, P92, P122, P911 High-temperature pressure systems: power plants, refineries, and chemical plants
ASTM A213 / ASME SA213 T2, T5, T5b, T9, T11, T12, T17, T22, T23, T24, T91, T92, T122, T911 Boiler tubes, superheaters, and heat exchangers
ASTM A519 4130, 4135, 4140, 4145, 4150, 1020, 1026, 1330, 8620 Mechanical tubing, structural applications, automotive components
API 5L A25, A, B, X42, X46, X52, X56, X60, X65, X70, X80, X100 Oil and gas transmission pipelines (onshore and offshore)
EN 10216‑2 13CrMo4-5, 10CrMo9-10, 12CrMo19-5, X10CrMoVNb9-1, X11CrMo5, 14MoV6-3, X20CrMoV12-1 European pressure vessels and high-temperature piping
GB / SH Standards 15CrMoG, 12Cr1MoVG, 10CrMo910, 12CrMo, 1Cr5Mo, WB36, 10Cr9Mo1VNb (equiv. T91) Petrochemical, power generation, high-pressure boilers in Chinese systems

Alloy steel is made by combining carbon steel with one or several alloying elements, such as titanium, copper, chromium, aluminum, manganese, silicon, and nickel. This produces specific properties that are not found in standard carbon steel. Common alloy steel grades include 4130, 4140, 4340, and 8620 for their balance of characteristics like strength, toughness, machinability, and weldability.

FAQ

Alloy steel pipes are made from carbon steel combined with alloying elements like chromium, molybdenum, nickel, or vanadium to improve strength, heat resistance, and corrosion performance—suitable for challenging industrial applications.

Common standards include ASTM A335/ASME SA335 (P1, P5, P9, P11, P22, P91, P92), ASTM A213 (T5, T9, T11, T22, T91), as well as EN 10216‑2 (e.g., 13CrMo4‑5).

They’re available as seamless, ERW, LSAW, SSAW, and CD pipes. Typical processes include hot or cold finishing, with precise control for pressure/temperature specifications.

Available diameters span 1/8″–42″ (OD ~6–1067 mm), wall thicknesses from schedule 20 to XXS or custom. Lengths include SRL, DRL, or fixed lengths up to 23m.

Surfaces may be epoxy-coated, varnished, oil-treated, galvanized, or shot-blasted. Inspection includes PMI, tensile, hardness, impact, flaring, flattening, hydrostatic, and NDT testing.

Widely used in power generation (boilers, superheaters), petrochemical plants, refineries, oil & gas pipelines, aerospace, and industrial machinery where heat, pressure, and corrosion demand superior performance.

Pipes are delivered in conditions such as cold-finished/hard (BK), cold-finished/soft (BKW), annealed (GBK), or normalized (NBK), with certificate and traceability of heat/furnace number.

Alloy steel pipes contain alloying elements that enhance their strength, hardness, and resistance to wear and corrosion. Carbon steel pipes, on the other hand, primarily consist of carbon and iron, making them more susceptible to corrosion and wear.

Selecting the right alloy steel pipe involves considering factors such as the operating temperature, pressure, corrosion environment, and mechanical stress. It's essential to consult with material experts and refer to relevant standards to ensure compatibility with your specific application.

Yes, alloy steel pipes are designed to withstand high temperatures and are commonly used in applications such as power plants, boilers, and heat exchangers, where elevated temperatures are prevalent.

Alloy Steel Pipe Industry Applications

Alloy steel pipes offer superior strength, temperature and corrosion resistance, making them ideal for demanding environments across energy, petrochemical, construction, and more.

Oil & Gas Industry

Used extensively in drilling, subsea and onshore pipelines for crude oil, natural gas, and refined products due to high strength and corrosion resistance.

Chemical & Petrochemical Plants

Ideal for transporting corrosive chemicals, high-pressure reactor feeds, and heat exchanger tubing where carbon steel fails.

Power & Utility Boilers

Used in high-temp boiler tubes, superheaters, reheaters, and steam piping; withstands extreme temperatures and pressures efficiently.

Construction & Infrastructure

Used as structural pipelines, piling tubes, and transport lines in high-rise buildings and bridges due to high structural strength.

Cryogenic & Low-Temperature Services

Suitable for transporting liquefied gases and cold media, where toughness and strength must endure sub-zero temperatures.

Energy & Environmental Efficiency

Alloy steel pipes are fully recyclable and support energy-efficient systems, aligning with green standards in modern industry.

Key Considerations

  • Service Conditions: Choose grade based on temperature, pressure, and fluid compatibility.
  • Fabrication & Welding: Follow proper heat treatment and filler materials to avoid cracking or weakening.
  • Inspection & Maintenance: Regular checks for corrosion, fatigue, wear — especially in high-stress environments.

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