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ASTM A335

Standard Overview:

ASTM A335 is a standard specification governing seamless ferritic alloy steel pipes used in high temperature service. This specification ensures that the materials used can withstand extreme conditions such as high pressure and temperature.

Main Materials:

Ferritic alloy steels such as P5, P9, P11, P22, and P91.

Scope of Application:

ASTM A335 pipes are mainly used in power generation, petrochemical, and oil and gas industries for boilers, heat exchangers, superheaters, and other equipment exposed to high temperatures and pressures. It is an ideal choice for critical applications in industrial plants and refineries.

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Specification of ASTM A335

Standard ASTM A335
Manufacturing Processes SMLS (Cold Drawn Seamless)
SMLS (Hot Finished Seamless)
Outside Diameter 21.3mm – 610mm (1/2″ – 24″)
Wall Thickness 3.2mm – 76mm
Pipe Length 6 meters, 12 meters or customized
Steel Grade ASTM A335 P1, ASTM A335 P5c, ASTM A335 P15, ASTM A335 P91, ASTM A335 P2, ASTM A335 P9, ASTM A335 P21, ASTM A335 P92, ASTM A335 P5, ASTM A335 P11, ASTM A335 P22, ASTM A335 P122, ASTM A335 P5b, ASTM A335 P12, ASTM A335 P23, ASTM A335 P911
Corrosion Prevention Lacquer, Varnish, Oiling, Galvanizing
End Processes Square Cut, Bevelling, Threading, Grooving
Further Processing Welding, Bending, Hole Drilling, Punching, Swaging, Tapering, Flaring, Expanding

Dimension

Steel Pipe Dimensions Chart ANSI B36. 10 & 36.19
Nominal
Pipe Size
Outside
Diameter
(mm)
Nominal Wall Thickness Schedule
NPS DN OD SCH
20
SCH
30
SCH
STD
SCH
40
SCH
60
SCH
XS
SCH
80
SCH
100
SCH
120
SCH
140
SCH
160
SCH
XXS
1/8 6 10.3 1.45 1.73 1.73 2.41 2.41
1/4 8 13.7 1.85 2.24 2.24 3.02 3.02
3/8 10 17.1 1.85 2.31 2.31 3.20 3.20
1/2 15 21.3 2.41 2.77 2.77 3.73 3.73 4.78 7.47
3/4 20 26.7 2.41 2.87 2.87 3.91 3.91 5.56 7.82
1 25 33.4 2.9 3.38 3.38 4.55 4.55 6.35 9.09
1 1/4 32 42.2 2.97 3.56 3.56 4.85 4.85 6.35 9.70
1 1/2 40 48.3 3.18 3.68 3.68 5.08 5.08 7.14 10.15
2 50 60.3 3.18 3.91 3.91 5.54 5.54 8.74 11.07
2 1/2 65 73 4.78 5.16 5.16 7.01 7.01 9.53 14.02
3 80 88.9 4.78 5.49 5.49 7.62 7.62 11.13 15.24
3 1/2 90 101.6 4.78 5.74 5.74 8.08 8.08
4 100 114.3 4.78 6.02 6.02 8.56 8.56 11.13 13.49 17.12
5 125 141.3 6.55 6.55 9.53 9.53 12.70 15.88 19.05
6 150 168.3 7.11 7.11 10.97 10.97 14.27 18.26 21.95
8 200 219.1 6.35 7.04 8.18 8.18 10.31 12.70 12.70 15.09 18.26 20.62 23.01 22.23
10 250 273.0 6.35 7.80 9.27 9.27 12.70 12.70 15.09 18.26 21.44 25.40 28.58 25.40
12 300 323.8 6.35 8.38 9.53 10.31 14.27 12.70 17.48 21.44 25.40 28.58 33.32 25.40
14 350 355.6 7.92 9.53 9.53 11.13 15.09 12.70 19.05 23.83 27.79 31.75 35.71
16 400 406.4 7.92 9.53 9.53 12.70 16.66 12.70 21.44 26.19 30.96 36.53 40.49
18 450 457 7.92 11.13 9.53 14.27 19.05 12.70 23.83 29.36 34.93 39.67 45.24
20 500 508 9.53 12.70 9.53 15.09 20.62 12.70 26.19 32.54 38.10 44.45 50.01
22 550 559 9.53 12.70 9.53 22.23 12.70 28.58 34.93 41.28 47.63 53.98
24 600 610 9.53 14.27 9.53 17.48 24.61 12.70 30.96 38.89 46.02 52.37 59.54
26 650 660 12.70 9.53 12.70
28 700 711 12.70 15.88 9.53 12.70
30 750 762 12.70 15.88 9.53 12.70
32 800 813 12.70 15.88 9.53 17.48 12.70
34 850 864 12.70 15.88 9.53 17.48 12.70
36 900 914 12.70 15.88 9.53 19.05 12.70
38 950 965 9.53 12.70
40 1000 1016 9.53 12.70
42 1050 1067 9.53 12.70
44 1100 1118 9.53 12.70
46 1150 1168 9.53 12.70
48 1200 1219 9.53 12.70

Chemical Requirement

Chemical Requirements
Grade UNS
DesignationA
Composition, %
Carbon Manganese Phosphorus
max
Sulfur
max
Silicon Chromium Molybdenum Others
P1 K11522 0.10–0.20 0.30–0.80 0.025 0.025 0.10–0.50 . . . 0.44–0.65
P2 K11547 0.10–0.20 0.30–0.61 0.025 0.025 0.10–0.30 0.50–0.81 0.44–0.65
P5 K41545 0.15 max 0.30–0.60 0.025 0.025 0.50 max 4.00–6.00 0.45–0.65
P5b K51545 0.15 max 0.30–0.60 0.025 0.025 1.00–2.00 4.00–6.00 0.45–0.65
P5c K41245 0.12 max 0.30–0.60 0.025 0.025 0.50 max 4.00–6.00 0.45–0.65 …B
P9 S50400 0.15 max 0.30–0.60 0.025 0.025 0.25– 1.00 8.00– 10.00 0.90– 1.10
P11 K11597 0.05–0.15 0.30–0.60 0.025 0.025 0.50– 1.00 1.00– 1.50 0.44–0.65
P12 K11562 0.05–0.15 0.30–0.61 0.025 0.025 0.50 max 0.80– 1.25 0.44–0.65
P15 K11578 0.05–0.15 0.30–0.60 0.025 0.025 1.15– 1.65 . . . 0.44–0.65
P21 K31545 0.05–0.15 0.30–0.60 0.025 0.025 0.50 max 2.65–3.35 0.80– 1.06
P22 K21590 0.05–0.15 0.30–0.60 0.025 0.025 0.50 max 1.90–2.60 0.87– 1.13
P23 K41650 0.04–0. 10 0.10–0.60 0.030 max 0.010 max 0.50 max 1.90–2.60 0.05–0.30 V 0.20–0.30
Cb 0.02–0.08
B 0.0005–0.006
N 0.030 max
AI 0.030 max
W 1.45-1.75
P91 K91560 0.08–0.12 0.30–0.60 0.02 0.01 0.20–0.50 8.00–9.50 0.85– 1.05 V 0. 18–0.25
N 0.03–0.07
Ni 0.40 max
Al 0.04 max
Cb 0.06–0.10
P92 K92460 0.07–0.13 0.30–0.60 0.02 0.01 0.50 max 8.50-9.50 0.30-0.60 V 0. 15–0.25
N 0.03–0.07
Ni 0.40 max
Al 0.04 max
Cb 0.04–0.09
W 1.5–2.00
B 0.001–0.006
P122 K92930 0.07–0.14 0.70 max 0.02 0.01 0.50 max 10.00-12.50 0.25-0.60 V 0.15–0.30
W 1.50–2.50
Cu 0.30– 1.70
Cb 0.04–0.10
B 0.0005–0.005
N 0.040–0. 100
Ni 0.50 max
Al 0.040 max
P911 K91061 0.09–0.13 0.30–0.60 0.020 max 0.01 max 0.10-0.50 8.50-10.50 0.90-1.10 V 0.18–0.25
Ni 0.40 max
Cb 0.060–0.10
B 0.0003–0.006
N 0.04–0.09
Al 0.04 max
W 0.90– 1.10
A New designation established in accordance with Practice E 527 and SAE J1086, Practice for Numbering Metals and Alloys (UNS).
B Grade P 5c shall have a titanium content of not less than 4 times the carbon content and not more than 0.70 %; or a columbium content of 8 to 10 times the carbon content.

Mechanical Requirement

The mechanical requirements for our ASTM A335/A335M standard steel pipe include transverse or longitudinal tensile tests, flattening tests, and hardness or bend tests.

These tests ensure that our pipes can withstand the mechanical stresses encountered during service. They also ensure that our pipes have the necessary hardness and flexibility to withstand bending, flanging, and similar forming operations.

Mechanical Properties Grade
P1, P2 P12 P23 P91 P92, P911 P122 All Others
Tensile Strength, min:
ksi 55 60 74 85 90 90 60
MPa 380 415 510 585 620 620 415
Yield Strength, min:
ksi 30 32 58 60 64 58 30
MPa 205 220 400 415 440 400 205

Steel Grades

We offer our ASTM A335/A335M standardized Steel Pipes in various steel grades, including Grade P2 and P12. These grades are produced using a coarse-grain melting practice, which yields robust and reliable pipes.

Each steel grade has unique properties and advantages, allowing you to choose the one that best suits your needs. Whether you need a pipe with high tensile strength, excellent ductility, or superior resistance to corrosion, we have the steel grade to meet your requirements.

Production Tolerance

Our ASTM A335/A335M standardized Steel Pipes fulfill strict mechanical requirements. These include transverse or longitudinal tension tests, flattening tests, and hardness or bend tests.

These tests ensure that our pipes can withstand the mechanical stresses they will encounter during service. They also ensure that our pipes have the necessary hardness and flexibility to withstand bending, flanging, and similar forming operations.

By meeting these mechanical requirements, we ensure that our pipes can provide you with reliable and long-lasting service, even under demanding conditions.

Why Choose UNIASEN?

  • Our ASTM A335/A335M standard steel pipes meet stringent chemical composition requirements. This ensures our pipes can withstand high-temperature service.

  • Our ASTM A335/A335M standard steel pipes come in many sizes. They range from small diameter pipes for complex systems to large diameter ones for industrial uses. They meet our customers’ diverse needs.

  • Our ASTM A335/A335M standard steel pipes come with detailed specifications including dimensions, production procedures, steel grades, surface coatings, end types, connection methods, and processing services.

  • The end types and connection methods allow for easy, secure installation. This ensures a smooth integration into your operations.

  • Machining services can provide custom solutions to meet your needs.

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