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Carbon and alloy seamless pipes - products of ATM STEEL LLC
ASTM/EN/DIN carbon and alloy pipes, diameter 6-1200 mm, wall thickness 1-140 mm, length – up to 27 m. Delivery from the company "ATM Steel".
ATM Steel company offers for delivery:
- Carbon pipes (Grade A, Grade B, Grade C, STBA 24);
- Alloy pipes (with a chromium content of up to 10%, such as: 15ХМ/P12, 15Х5М/P5, 12МХ, 12Х2МФСР, 12Х1МФ, 12ХМ/P12, 12Х2МФБ, 15Х1М1Ф, 12Х2M/P22, 14Г2/ A516 Gr70, P1 (T1), Р2 (T2), P9 (T9), P11 (T11), P12 (T12), Р17 (T17), P21 (T21), P23 (T23), P24 (T24), P91 (T91), P92 (T92) (Grade 1, Grade 2, Grade 3, Grade 4, Grade 5, Grade 6).
Seamless pipes made of carbon and alloy steels
Seamless pipes by their design have sufficient strength, because they do not have a weak point – the seam. Pipes are made of carbon and alloy steels. In seamless carbon pipes, by varying the content of carbon and alloying elements, it is possible to change their physical properties and give this metal the necessary qualities.
Dimensions of carbon and alloy pipes
Diameter | 6-1200 mm |
Wall thickness | 1-140 mm |
Length | till 27 meters |
Carbon and alloy pipe standards
ASTM |
ASTM 106 (ASME, SA, A) ASTM 179 (ASME, SA, A) ASTM 192 (ASME, SA, A) ASTM 209 (ASME, SA, A) ASTM 210 (ASME, SA, A) ASTM 213 (ASME, SA, A) ASTM 333 (ASME, SA, A) ASTM 333 (ASME, SA, A) ASTM 334 (ASME, SA, A) ASTM 335 (ASME, SA, A) |
EN |
EN 10216.2 EN 10216.3 EN 10216.4 |
AFNOR |
AFNOR 49211 AFNOR 49212 AFNOR 49213W AFNOR 49219 AFNOR 49411 AFNOR 49230 |
DIN |
DIN 17172 DIN 17175-1 DIN 17175-3 DIN 17176 DIN 17173 |
BS |
BS 3059-1 BS 3059-2 |
UNI | UNI 5462 |
JIS |
JIS G 3461 JIS G 3462 JIS G 3460 |
ТУ | ТУ-14-3р-55-2001 |
Standards:
A106 |
A333 |
A335 |
A53 |
A213 |
A334 |
EN10216-1 |
EN10216-2 |
EN10216-3 |
EN10216-4 |
EN 10297-1 |
API 5L |
A500 |
Industrial carbon steel is a chemically complex alloy
Industrial carbon steel is a steel in which the impurity content ranges from 0.5 to 3%. The composition includes impurities that can be excluded: chromium, nickel, copper. Other impurities that cannot be completely removed from the steel composition: sulfur, phosphorus, oxygen, nitrogen, and hydrogen. In this regard, this steel can be attributed to alloys. Manganese, silicon, phosphorus, sulfur, hydrogen, nitrogen, and oxygen are permanent impurities that are present in various amounts in technical steel grades and affect its properties.
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