Chemical Composition of Stainless Steel Flat Products For Pressure Purposes To BS EN 10028-7

Chemical Composition of Stainless Steel Flat Products For Pressure Purposes To BS EN 10028-7

Chemical composition of stainless steel flat products for pressure purposes to BS EN-10028-7
BS EN 10028-7 is the material standard for stainless steel sheet, plate and strip for pressure purposes.
The current edition was published in December 2007. The grades are mostly a subset of the grades covered in
BS EN 10088-2 for general purposes. There are also a number of creep resisting steels from BS EN 10302.
The chemical composition of stainless steel grades covered in the this standard are:

Ferritic, 1.4003, 1.4516, 1.4520, 1.4510, 1.4513, 1.4521, 1.4526, 1.4509

Martensitic, 1.4313, 1.4418

Austenitic, 1.4318, 1.4307, 1.4306, 1.4315, 1.4311, 1.4301, 1.4541, 1.4550, 1.4335, 1.4404, 1.4406, 1.4401, 1.4466,
1.4571, 1.4580, 1.4432, 1.4429, 1.4436, 1.4435, 1.4434, 1.4438, 1.4439, 1.4563, 1.4539, 1.4537, 1.4547, 1.4529

Duplex, 1.4362, 1.4462, 1.4507, 1.4410, 1.4501

Creep Resisting, 1.4910, 1.4941, 1.4948, 1.4950, 1.4951, 1.4958, 1.4959, 1.4961

CHEMICAL COMPOSITION OF STAINLESS STEEL FLAT PRODUCTS FOR PRESSURE PURPOSES TO BS EN 10028-7
Introduction

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The data given is not intended to replace that shown in individual standards to which reference should always be made.

BS EN 10028-7:2016 Edition
BS EN 10028-7 was originally published in 2000. The second version, BS EN 10028-7:2007, superseded BS EN 10028-7:2000,
which was withdrawn by BSi on 31st January 2008. The third, current version was published in 2016, replacing the 2007 version,
which itself has now been withdrawn.
The tables shown here only have the 2005 composition ranges.

The grades are taken mostly from BS EN 10088-2 with some grades from creep resisting standard BS EN 10302. The distinction
between standard and special grades in BS EN 10088-2 is not followed through into this standard. The following tables preserve
the listing in the standard which is not in grade number order.

BS EN 10028-7 chemical composition tables
Designation Chemical composition % by mass max unless stated
Steel name Steel number C Si Mn P S N Cr Mo Ni Others
Ferritic stainless steels
X2CrNi12 1.4003 0.030 1.00 1.50 0.040 0.015 0.030 10.5/12.5 – 0.30/1.00 –
X6CrNiTi12 1.4516 0.08 0.70 1.50 0.040 0.015 – 10.5/12.5 – 0.50/1.50 Ti: 0.05/0.35
X2CrTi17 1.4520 0.025 0.50 0.50 0.040 0.015 0.015 16.0/18.0 – – Ti: 0.30/0.60
X3CrTi17 1.4510 0.05 1.00 1.00 0.040 0.015 – 16.0/18.0 – – Ti: 4(C+N)+0.15/0.80
X2CrMoTi17-1 1.4513 0.025 1.00 1.00 0.040 0.015 0.015 16.0/18.0 0.80/1.40 – Ti: 0.30/0.60
X2CrMoTi18-2 1.4521 0.025 1.00 1.00 0.040 0.015 0.030 17.0/20.0 1.80/2.50 – Ti: 4(C+N)+0.15/0.80
X6CrMoNb17-1 1.4526 0.08 1.00 1.00 0.040 0.015 0.040 16.0/18.0 0.80/1.40 – Nb:7(C+N)+0.10/1.00
X2CrTiNb18 1.4509 0.030 1.00 1.00 0.040 0.015 – 17.5/18.5 – – Ti: 0.10/0.60
Nb: 3C+0.30/1.00
Martensitic stainless steels
X3CrNiMo13-4 1.4313 0.05 0.70 1.50 0.040 0.015 >0.020 12.0/14.0 0.30/0.70 3.5/4.5
X4CrNiMo16-5-1 1.4418 0.06 0.70 1.50 0.040 0.015 >0.020 15.0/17.0 0.80/1.50 4.0/6.0
Austenitic stainless steels
X2CrNiN18-7 1.4318 0.030 1.00 2.00 0.045 0.015 0.10/0.20 16.5/18.5 – 6.0/8.0 –
X2CrNi18-9 1.4307 0.030 1.00 2.00 0.045 0.015 0.11 17.5/19.5 – 8.0/10.5 –
X2CrNi19-11 1.4306 0.030 1.00 2.00 0.045 0.015 0.11 18.0/20.0 – 10.0/12.0 –
X5CrNiN19-9 1.4315 0.06 1.00 2.00 0.045 0.015 0.12/0.22 18.0/20.0 – 8.0/11.0 –
X2CrNiN18-10 1.4311 0.030 1.00 2.00 0.045 0.015 0.12/0.22 17.5/19.5 – 8.5/11.5 –
X5CrNi18-10 1.4301 0.07 1.00 2.00 0.045 0.015 0.11 17.5/19.5 – 8.0/10.5 –
X6CrNiTi18-10 1.4541 0.08 1.00 2.00 0.045 0.015 – 17.0/19.0 – 9.0/12.0 Ti: 5C/0.70
X6CrNiNb18-10 1.4550 0.08 1.00 2.00 0.045 0.015 – 17.0/19.0 – 9.0/12.0 Nb: 10xC/1.00
X1CrNi25-21 1.4335 0.020 0.25 2.00 0.025 0.010 0.11 24.0/26.0 0.20 20.0/22.0 –
X2CrNiMo17-12-2 1.4404 0.030 1.00 2.00 0.045 0.015 0.11 16.5/18.5 2.00/2.50 10.0/13.0 –
X2CrNiMoN17-11-2 1.4406 0.030 1.00 2.00 0.045 0.015 0.12/0.22 16.5/18.5 2.00/2.50 10.0/12.0 –
X5CrNiMo17-12-2 1.4401 0.07 1.00 2.00 0.045 0.015 0.11 16.5/18.5 2.00/2.50 10.0/13.0 –
X1CrNiMoN25-22-2 1.4466 0.020 0.70 2.00 0.025 0.010 0.10/0.16 24.0/26.0 2.00/2.50 21.0/23.0 –
X6CrNiMoTi17-12-2 1.4571 0.08 1.00 2.00 0.045 0.015 – 16.5/18.5 2.00/2.50 10.5/13.5 Ti: 5C/0.70
X6CrNiMoNb17-12-2 1.4580 0.08 1.00 2.00 0.045 0.015 – 16.5/18.5 2.00/2.50 10.5/13.5 Nb: 10xC/1.00
X2CrNiMo17-12-3 1.4432 0.030 1.00 2.00 0.045 0.015 0.11 16.5/18.5 2.50/3.00 10.5/13.0 –
X2CrNiMoN17-3-3 1.4429 0.030 1.00 2.00 0.045 0.015 0.12/0.22 16.5/18.5 2.50/3.00 11.0/14.0 –
X3CrNiMo17-13-3 1.4436 0.05 1.00 2.00 0.045 0.015 0.11 16.5/18.5 2.50/3.00 10.5/13.0 –
X2CrNiMo18-14-3 1.4435 0.030 1.00 2.00 0.045 0.015 0.11 17.0/19.0 2.50/3.00 12.5/15.0 –
X2CrNiMoN18-12-4 1.4434 0.030 1.00 2.00 0.045 0.015 0.10/0.20 16.5/19.5 3.0/4.0 10.5/14.0 –
X2CrNiMo18-15-4 1.4438 0.030 1.00 2.00 0.045 0.015 0.11 17.5/19.5 3.0/4.0 13.0/16.0 –
X2CrNiMoN17-13-5 1.4439 0.030 1.00 2.00 0.045 0.015 0.12/0.22 16.5/18.5 4.0/5.0 12.5/14.5 –
X1NiCrMo31-27-4 1.4563 0.020 0.70 2.00 0.030 0.010 0.11 26.0/28.0 3.0/4.0 30.0/32.0 Cu: 0.70/1.50
X1NiCrMoCu25-20-5 1.4539 0.020 0.70 2.00 0.030 0.010 0.15 19.0/21.0 4.0/5.0 24.0/26.0 Cu: 1.20/2.00
X1CrNiMoCuN25-25-5 1.4537 0.020 0.70 2.00 0.030 0.010 0.17/0.25 24.0/26.0 4.7/5.7 24.0/27.0 Cu: 1.00/2.00
X1CrNiMoCuN20-18-7 1.4547 0.020 0.70 1.00 0.030 0.010 0.18/0.25 19.5/20.5 6.0/7.0 17.5/18.5 Cu: 0.50/1.00
X1NiCrMoCuN25-20-7 1.4529 0.020 0.50 1.00 0.030 0.010 0.15/0.25 19.0/21.0 6.0/7.0 24.0/26.0 Cu: 0.50/1.50
Austenitic creep resisting steels
X3CrNiMoBN17-13-3 1.4910 0.4 0.75 2.00 0.035 0.015 0.10/0.18 16.0/18.0 2.00/3.00 12.0/14.0 B:0.0015/0.0050
X6CrNiTiB18-10 1.4941 0.04/0.08 1.00 2.00 0.035 0.015 – 17.0/19.0 – 9.0/12.0 Ti: 5xC/ 0.80
B:0.0015/0.0050

X6CrNi18-10 1.4948 0.04/0.08 1.00 2.00 0.035 0.015 0.10 17.0/19.0 – 8.0/11.0 –
X6CrNi23-13 1.4950 0.04/0.08 0.70 2.00 0.035 0.015 0.10 22.0/24.0 – 12.0/15.0 –
X6CrNi25.20 1.4951 0.04/0.08 0.70 2.00 0.035 0.015 0.10 24.0/26.0 – 19.0/22.0 –
X5NiCrAlTi31-20 1.4958 (+RA) 0.03/0.08 0.70 1.50 0.015 0.010 0.030 19.0/22.0 – 30.0/32.5 Cu: 0.50
Nb:0.10

Ti:0.20/0.50

Al:0.20/0.50

Al+Ti:0.70

Co: 0.50

Ni+Co: 30.0/32.5

X8NiCrAlTi32-21 1.4959 0.05/0.10 0.70 1.50 0.015 0.010 0.030 19.0/22.0 – 30.0/34.0 Cu: 0.50
Ti: 0.20/0.65

Al:0.20/0.65

Co: 0.50

Ni+Co: 30.0/34.0

X8CrNiNb16-13 1.4961 0.04/0.10 0.30/
0.60

1.50 0.035 0.015 – 15.0/17.0 – 12.0/14.0 Nb: 10xC/1.20
Austenitic-ferritic stainless steels
X2CrNiN23-4 1.4362 0.030 1.00 2.00 0.035 0.015 0.05/0.20 22.0/24.0 0.10/0.60 3.5/5.5 Cu 0.10/0.60
X2CrNiMoN12-5-3 1.4462 0.030 1.00 2.00 0.035 0.015 0.10/0.22 21.0/23.0 2.50/3.50 4.5/6.5 –
X2CrNiMoCuN25-6-3 1.4507 0.030 0.70 2.00 0.035 0.015 0.20/0.30 24.0/26.0 3.0/4.0 6.0/8.0 Cu: 1.00/2.50
X2CrNiMoN25-7-4 1.4410 0.030 1.00 2.00 0.035 0.015 0.24/0.35 24.0/26.0 3.0/4.5 6.0/8.0 –
X2CrNiMoCuWN25-7-4 1.4501 0.030 1.00 1.00 0.035 0.015 0.20/0.30 24.0/26.0 3.0/4.0 6.0/8.0 Cu: 0.50/1.00
W: 0.50/1.00
Permissible product analysis tolerances on the cast analysis ranges given in EN 10028-7

Element Specified Limits on Cast Analysis (%) Permissible tolerance on product analysis (%)
Carbon < 0.030 +0.005

0.030 < 0.10 ±0.01 Silicon < 1.00 ±0.05 Manganese < 1.00 +0.03 1.00 < 2.00 ±0.04 Phosphorus < 0.045 +0.005 Sulphur < 0.015 +0.003 Nitrogen < 0.35 ±0.01 Aluminium < 0.65 ±0.10 Boron > 0.0015 < 0.0050 ±0.0003 Chromium > 10.5 < 15.0 ±0.15
15.0 < 20.0 ±0.20
20.0 < 28.0 ±0.25
Copper < 1.00 ±0.07
1.00 < 2.50 ±0.10
Molybdenum <0.60 ±0.03
0.60 < 1.75 ±0.05
1.75 < 7.0 ±0.10
Niobium < 1.20 ±0.05
Nickel < 1.00 ±0.03
1.00 < 5.0 ±0.07
5.0 < 10.0 ±0.10
10.0 < 20.0 ±0.15
20.0 < 34.0 ±0.20
Cobalt < 0.50 ±0.05
Titanium < 0.80 ±0.05
Tungsten < 2.50 ±0.05
Vanadium < 0.20 ±0.03

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