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Products in this grade

816 items in the catalogue

Product DN OD Wall Smaller OD Availability Price Action
Stainless steel seamless tube DN100 Ø 114,3mm x 3,05mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/114.30X03.05/1.4404_P – DN100 / 114.30mm 3.05mm – in stock 273,44 € (222,31 € excl. VAT)
Stainless steel seamless tube DN100 Ø 114,3mm x 3,05mm in grade 316 / 316L S-RR/114.30X03.05/316L/NL_P – DN100 / 114.30mm 3.05mm – in stock 137,68 € (111,93 € excl. VAT)
Stainless steel seamless tube DN100 Ø 114,3mm x 3,2mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/114.30X03.20/1.4404_P – DN100 / 114.30mm 3.2mm – in stock 273,44 € (222,31 € excl. VAT)
Stainless steel seamless tube DN100 Ø 114,3mm x 4,5mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/114.30X04.50/1.4404_P – DN100 / 114.30mm 4.5mm – in stock 304,96 € (247,93 € excl. VAT)
Stainless steel seamless tube DN100 Ø 114,3mm x 6,02mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/114.30X06.02/1.4404_P – DN100 / 114.30mm 6.02mm – in stock 403,19 € (327,80 € excl. VAT)
Stainless steel seamless tube DN100 Ø 114,3mm x 6,3mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/114.30X06.30/1.4404_P – DN100 / 114.30mm 6.3mm – in stock 403,19 € (327,80 € excl. VAT)
Stainless steel seamless tube hollow bar DN100 Ø 118mm x 19mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/118.00X19.00/1.4404_P – DN100 / 118.00mm 19mm – in stock 960,34 € (780,76 € excl. VAT)
Stainless steel seamless tube hollow bar DN100 Ø 118mm x 23,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/118.00X23.50/1.4404_P – DN100 / 118.00mm 23.5mm – in stock 1133,95 € (921,91 € excl. VAT)
Stainless steel seamless tube hollow bar DN125 Ø 125mm x 12,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-RT/125.00X12.50/1.4404_P – DN125 / 125.00mm 12.5mm – in stock 682,63 € (554,98 € excl. VAT)
Stainless steel seamless tube hollow bar DN125 Ø 125mm x 27mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/125.00X27.00/1.4404_P – DN125 / 125.00mm 27mm – in stock 1350,96 € (1098,34 € excl. VAT)
Stainless steel seamless tube hollow bar DN125 Ø 132mm x 13mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MN/132.00X13.00/1.4404_P – DN125 / 132.00mm 13mm – in stock 815,80 € (663,25 € excl. VAT)
Stainless steel seamless tube hollow bar DN125 Ø 132mm x 21mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/132.00X21.00/1.4404_P – DN125 / 132.00mm 21mm – in stock 1190,15 € (967,60 € excl. VAT)
Stainless steel forged blind flange DN125 139,7mm EN1092-1/05B (PN10/16) 1.4401 / 1.4404 / 316 / 316L S-KNZ/139.70/1.4404 – – – – in stock 103,18 € (83,89 € excl. VAT) Add to basket
Stainless steel forged flat flange DN125 139,7mm EN1092-1/01B (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNP/139.70/1.4404 – – – – in stock 68,49 € (55,68 € excl. VAT) Add to basket
Stainless steel forged weld neck flange DN125 139,7mm EN1092-1/11B1 (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNSZ/139.70/1.4404 – – – – in stock 90,10 € (73,25 € excl. VAT) Add to basket
Stainless steel seamless concentric reducer DN125 139,7 x 4,5mm / DN80 88,9 x 3,05mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDK-MZ2/139.70X04.50/088.90X03.05/1.4404 DN125 DN125 / 139.70mm 4.5mm 88.9mm in stock 105,96 € (86,15 € excl. VAT) Add to basket
Stainless steel seamless concentric reducer DN125 139,7 x 4,5mm / DN80 88,9 x 3,2mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDK-MZ2/139.70X04.50/088.90X03.20/1.4404 DN125 DN125 / 139.70mm 4.5mm 88.9mm in stock 105,96 € (86,15 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN125 139,7 x 4,5mm / DN100 114,3 x 3,6mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/139.70X04.50/114.30X03.60/1.4404 DN125 DN125 / 139.70mm 4.5mm 114.3mm in stock 81,46 € (66,23 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN125 139,7 x 4,5mm / DN65 76,1 x 2,9mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/139.70X04.50/076.10X02.90/1.4404 DN125 DN125 / 139.70mm 4.5mm 76.1mm in stock 101,24 € (82,31 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN125 139,7 x 4,5mm / DN80 88,9 x 3,05mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/139.70X04.50/088.90X03.05/1.4404 DN125 DN125 / 139.70mm 4.5mm 88.9mm in stock 92,06 € (74,85 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN125 139,7 x 4,5mm / DN80 88,9 x 3,2mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/139.70X04.50/088.90X03.20/1.4404 DN125 DN125 / 139.70mm 4.5mm 88.9mm in stock 92,06 € (74,85 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN125 139,7 x 6,3mm / DN100 114,3 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/139.70X06.30/114.30X06.30/1.4404 DN125 DN125 / 139.70mm 6.3mm 114.3mm in stock 88,52 € (71,97 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN125 139,7 x 6,3mm / DN65 76,1 x 5,6mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/139.70X06.30/076.10X05.60/1.4404 DN125 DN125 / 139.70mm 6.3mm 76.1mm in stock 123,14 € (100,11 € excl. VAT) Add to basket
Stainless steel seamless elbow 90° 1,5D (Type 3) DN125 Ø 139,7 x 4mm in grade 1.4404 / 316L S-KL90/139.70X04.00/1.4404 DN125 DN125 / 139.70mm 4mm – in stock 137,60 € (111,87 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN125 Ø 139,7 x 4,5mm / DN100 114,3 x 3,6mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/139.70X04.50/114.30X03.60/1.4404 DN125 DN125 / 139.70mm 4.5mm 114.3mm in stock 194,50 € (158,13 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN125 Ø 139,7 x 4,5mm / DN65 76,1 x 2,9mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/139.70X04.50/076.10X02.90/1.4404 DN125 DN125 / 139.70mm 4.5mm 76.1mm in stock 194,50 € (158,13 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN125 Ø 139,7 x 4,5mm / DN80 88,9 x 3,05mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/139.70X04.50/088.90X03.05/1.4404 DN125 DN125 / 139.70mm 4.5mm 88.9mm in stock 194,50 € (158,13 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN125 Ø 139,7 x 4,5mm / DN80 88,9 x 3,2mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/139.70X04.50/088.90X03.20/1.4404 DN125 DN125 / 139.70mm 4.5mm 88.9mm in stock 194,50 € (158,13 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN125 Ø 139,7 x 6,3mm / DN100 114,3 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/139.70X06.30/114.30X06.30/1.4404 DN125 DN125 / 139.70mm 6.3mm 114.3mm in stock 253,37 € (205,99 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN125 Ø 139,7 x 6,3mm / DN65 76,1 x 5,6mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/139.70X06.30/076.10X05.60/1.4404 DN125 DN125 / 139.70mm 6.3mm 76.1mm in stock 268,21 € (218,06 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN125 Ø 139,7 x 6,3mm / DN80 88,9 x 5,6mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/139.70X06.30/088.90X05.60/1.4404 DN125 DN125 / 139.70mm 6.3mm 88.9mm in stock 253,37 € (205,99 € excl. VAT) Add to basket
Stainless steel seamless tube DN125 Ø 139,7mm x 4mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR/139.70X04.00/1.4404_P – DN125 / 139.70mm 4mm – in stock 406,57 € (330,54 € excl. VAT)
Stainless steel seamless tube DN125 Ø 139,7mm x 4mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/139.70X04.00/1.4404_P – DN125 / 139.70mm 4mm – in stock 367,78 € (299,01 € excl. VAT)
Stainless steel seamless tube hollow bar DN125 Ø 140mm x 14mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/140.00X14.00/1.4404_P – DN125 / 140.00mm 14mm – in stock 900,72 € (732,29 € excl. VAT)
Stainless steel seamless tube hollow bar DN125 Ø 140mm x 25mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/140.00X25.00/1.4404_P – DN125 / 140.00mm 25mm – in stock 1467,92 € (1193,43 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 150mm x 12,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/150.00X12.50/1.4404_P – DN150 / 150.00mm 12.5mm – in stock 877,65 € (713,54 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 150mm x 35mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/150.00X35.00/1.4404_P – DN150 / 150.00mm 35mm – in stock 2055,00 € (1670,73 € excl. VAT)
Stainless steel forged weld neck flange DN150 159mm EN1092-1/11B1 (PN10/16) 1.4401 / 1.4404 / 316 / 316L S-KNSZ/159.00/1.4404 – – – – in stock 115,57 € (93,96 € excl. VAT) Add to basket
Stainless steel seamless tube hollow bar DN150 Ø 160mm x 20mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/160.00X20.00/1.4404_P – DN150 / 160.00mm 20mm – in stock 1429,55 € (1162,24 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 160mm x 24mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/160.00X24.00/1.4404_P – DN150 / 160.00mm 24mm – in stock 1666,43 € (1354,82 € excl. VAT)
Stainless steel seamless tube DN150 Ø 168,28mm x 3,4mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR/168.28X03.40/1.4404/NL_P – DN150 / 168.28mm 3.4mm – in stock 483,37 € (392,98 € excl. VAT)
Stainless steel forged flat flange DN150 168,3mm EN1092-1/ 01B (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNP/168.30/1.4404 – – – – in stock 93,89 € (76,33 € excl. VAT) Add to basket
Stainless steel forged weld neck flange DN150 168,3mm EN1092-1/11B1 (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNSZ/168.30/1.4404 – – – – in stock 78,70 € (63,98 € excl. VAT) Add to basket
Stainless steel forged weld neck flange DN150 168,3mm EN1092-1/11B1 (PN6) 1.4401 / 316 / 1.4404 / 316L S-KNSZ/168.30/1.4404/PN6 – – – – in stock 84,00 € (68,29 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN150 168,3 x 4,5mm / DN100 114,3 x 3,6mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/168.30X04.50/114.30X03.60/1.4404 DN150 DN150 / 168.30mm 4.5mm 114.3mm in stock 135,40 € (110,08 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN150 168,3 x 4,5mm / DN125 139,7 x 4,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/168.30X04.50/139.70X04.50/1.4404 DN150 DN150 / 168.30mm 4.5mm 139.7mm in stock 113,49 € (92,27 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN150 168,3 x 7,11mm / DN100 114,3 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/168.30X07.11/114.30X06.30/1.4404 DN150 DN150 / 168.30mm 7.11mm 114.3mm in stock 159,88 € (129,98 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN150 168,3 x 7,11mm / DN125 139,7 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/168.30X07.11/139.70X06.30/1.4404 DN150 DN150 / 168.30mm 7.11mm 139.7mm in stock 141,51 € (115,05 € excl. VAT) Add to basket
Stainless steel seamless elbow 90° 1,5D (Type 3) DN150 Ø 168,3 x 3,4mm in grade 1.4404 / 316L S-KL90/168.30X03.40/1.4404 DN150 DN150 / 168.30mm 3.4mm – in stock 175,48 € (142,67 € excl. VAT) Add to basket
Stainless steel seamless elbow 90° 1,5D (Type 3) DN150 Ø 168,3 x 7,11mm in grade 1.4401 / 1.4404 / 316 / 316L S-KL90-MZ2/168.30X07.11/1.4404 DN150 DN150 / 168.30mm 7.11mm – in stock 287,55 € (233,78 € excl. VAT) Add to basket
Stainless steel seamless elbow 90° 1,5D (Type 3) DN150 Ø 168,3 x 7,1mm in grade 1.4401 / 1.4404 / 316 / 316L S-KL90-MZ2/168.30X07.10/1.4404 DN150 DN150 / 168.30mm 7.1mm – in stock 287,55 € (233,78 € excl. VAT) Add to basket
Stainless steel seamless equal tee DN150 Diameter 168,3 x 4,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-TN-MZ2/168.30X04.50/1.4404 DN150 DN150 / 168.30mm 4.5mm – in stock 226,54 € (184,18 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN150 Ø 168,3 x 4,5mm / DN100 114,3 x 3,6mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/168.30X04.50/114.30X03.60/1.4404 DN150 DN150 / 168.30mm 4.5mm 114.3mm in stock 256,20 € (208,29 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN150 Ø 168,3 x 4,5mm / DN125 139,7 x 4,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/168.30X04.50/139.70X04.50/1.4404 DN150 DN150 / 168.30mm 4.5mm 139.7mm in stock 256,20 € (208,29 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN150 Ø 168,3 x 7,11mm / DN100 114,3 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/168.30X07.11/114.30X06.30/1.4404 DN150 DN150 / 168.30mm 7.11mm 114.3mm in stock 380,78 € (309,58 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN150 Ø 168,3 x 7,11mm / DN125 139,7 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/168.30X07.11/139.70X06.30/1.4404 DN150 DN150 / 168.30mm 7.11mm 139.7mm in stock 380,78 € (309,58 € excl. VAT) Add to basket
Stainless steel seamless tube DN150 Ø 168,3mm x 3,4mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-SH/168.30X03.40/1.4404_P – DN150 / 168.30mm 3.4mm – in stock 483,37 € (392,98 € excl. VAT)
Stainless steel seamless tube DN150 Ø 168,3mm x 3,4mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/168.30X03.40/1.4404_P – DN150 / 168.30mm 3.4mm – in stock 483,37 € (392,98 € excl. VAT)
Stainless steel seamless tube DN150 Ø 168,3mm x 4,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-SH/168.30X04.50/1.4404_P – DN150 / 168.30mm 4.5mm – in stock 488,59 € (397,23 € excl. VAT)
Stainless steel seamless tube DN150 Ø 168,3mm x 4,5mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/168.30X04.50/1.4404_P – DN150 / 168.30mm 4.5mm – in stock 503,70 € (409,51 € excl. VAT)
Stainless steel seamless tube DN150 Ø 168,3mm x 7,11mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-SH/168.30X07.11/1.4404_P – DN150 / 168.30mm 7.11mm – in stock 591,40 € (480,81 € excl. VAT)
Stainless steel seamless tube DN150 Ø 168,3mm x 7,11mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/168.30X07.11/1.4404_P – DN150 / 168.30mm 7.11mm – in stock 609,69 € (495,68 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 168,3mm x 10,97mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-SH/168.30X10.97/1.4404_P – DN150 / 168.30mm 10.97mm – in stock 940,42 € (764,57 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 168,3mm x 10,97mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/168.30X10.97/1.4404_P – DN150 / 168.30mm 10.97mm – in stock 940,47 € (764,61 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 168,3mm x 11mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/168.30X11.00/1.4404_P – DN150 / 168.30mm 11mm – in stock 940,47 € (764,61 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 170mm x 20mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/170.00X20.00/1.4404_P – DN150 / 170.00mm 20mm – in stock 1531,66 € (1245,25 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 170mm x 32mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/170.00X32.00/1.4404_P – DN150 / 170.00mm 32mm – in stock 2254,65 € (1833,05 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 180mm x 15mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/180.00X15.00/1.4404_P – DN150 / 180.00mm 15mm – in stock 1263,47 € (1027,21 € excl. VAT)
Stainless steel seamless tube hollow bar DN150 Ø 180mm x 27,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/180.00X27.50/1.4404_P – DN150 / 180.00mm 27.5mm – in stock 2141,12 € (1740,75 € excl. VAT)
Stainless steel seamless tube hollow bar DN200 Ø 190mm x 20mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/190.00X20.00/1.4404_P – DN150 / 190.00mm 20mm – in stock 1735,88 € (1411,28 € excl. VAT)
Stainless steel seamless tube hollow bar DN200 Ø 190mm x 29mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/190.00X29.00/1.4404_P – DN150 / 190.00mm 29mm – in stock 2383,72 € (1937,98 € excl. VAT)
Stainless steel seamless tube hollow bar DN200 Ø 190mm x 15mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-RT/190.00X15.00/1.4404_P – DN200 / 190.00mm 15mm – in stock 1274,71 € (1036,35 € excl. VAT)
Stainless steel seamless tube hollow bar DN200 Ø 200mm x 20mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/200.00X20.00/1.4404_P – DN200 / 200.00mm 20mm – in stock 1837,76 € (1494,11 € excl. VAT)
Stainless steel seamless tube hollow bar DN200 Ø 212mm x 21mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/212.00X21.00/1.4404_P – DN200 / 212.00mm 21mm – in stock 2047,92 € (1664,98 € excl. VAT)
Stainless steel seamless tube hollow bar DN200 Ø 212mm x 31mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/212.00X31.00/1.4404_P – DN200 / 212.00mm 31mm – in stock 2864,57 € (2328,92 € excl. VAT)
Stainless steel seamless tube hollow bar DN200 Ø 212mm x 41mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/212.00X41.00/1.4404_P – DN200 / 212.00mm 41mm – in stock 3579,35 € (2910,04 € excl. VAT)
Stainless steel seamless tube DN200 Ø 219,08mm x 8,18mm in grade 316 / 316L S-RR/219.08X08.18/316L/NL_P – DN200 / 219.08mm 8.18mm – in stock 761,65 € (619,23 € excl. VAT)
Stainless steel forged flat flange DN200 219,1mm EN1092-1/01B (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNP/219.10/1.4404 – – – – in stock 118,18 € (96,08 € excl. VAT) Add to basket
Stainless steel forged weld neck flange DN200 219,1mm EN1092-1/11B1 (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNSZ/219.10/1.4404 – – – – in stock 121,36 € (98,67 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN200 219,1 x 3,76mm / DN150 168,3 x 3,4mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/219.10X03.76/168.30X03.40/1.4404 DN200 DN200 / 219.10mm 3.76mm 168.3mm in stock 134,92 € (109,69 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN200 219,1 x 4,5mm / DN125 139,7 x 4,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/219.10X04.50/139.70X04.50/1.4404 DN200 DN200 / 219.10mm 4.5mm 139.7mm in stock 149,28 € (121,37 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN200 219,1 x 8,18mm / DN125 139,7 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/219.10X08.18/139.70X06.30/1.4404 DN200 DN200 / 219.10mm 8.18mm 139.7mm in stock 238,07 € (193,55 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN200 219,1 x 8,18mm / DN150 168,3 x 7,11mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/219.10X08.18/168.30X07.11/1.4404 DN200 DN200 / 219.10mm 8.18mm 168.3mm in stock 219,93 € (178,80 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN200 Ø 219,1 x 3,76mm / DN150 168,3 x 3,4mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/219.10X03.76/168.30X03.40/1.4404 DN200 DN200 / 219.10mm 3.76mm 168.3mm in stock 353,46 € (287,37 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN200 Ø 219,1 x 4,5mm / DN125 139,7 x 4,5mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/219.10X04.50/139.70X04.50/1.4404 DN200 DN200 / 219.10mm 4.5mm 139.7mm in stock 387,61 € (315,13 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN200 Ø 219,1 x 8,18mm / DN125 139,7 x 6,3mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/219.10X08.18/139.70X06.30/1.4404 DN200 DN200 / 219.10mm 8.18mm 139.7mm in stock 576,24 € (468,49 € excl. VAT) Add to basket
Stainless steel seamless reducing tee DN200 Ø 219,1 x 8,18mm / DN150 168,3 x 7,11mm in grade 1.4401 / 1.4404 / 316 / 316L S-TNR-MZ2/219.10X08.18/168.30X07.11/1.4404 DN200 DN200 / 219.10mm 8.18mm 168.3mm in stock 598,15 € (486,30 € excl. VAT) Add to basket
Stainless steel seamless tube DN200 Ø 219,1mm x 3,76mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/219.10X03.76/1.4404_P – DN200 / 219.10mm 3.76mm – in stock 426,72 € (346,93 € excl. VAT)
Stainless steel seamless tube DN200 Ø 219,1mm x 6,35mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/219.10X06.35/1.4404_P – DN200 / 219.10mm 6.35mm – in stock 737,62 € (599,69 € excl. VAT)
Stainless steel seamless tube DN200 Ø 219,1mm x 6,3mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/219.10X06.30/1.4404_P – DN200 / 219.10mm 6.3mm – in stock 737,62 € (599,69 € excl. VAT)
Stainless steel seamless tube DN200 Ø 219,1mm x 8,18mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-SH/219.10X08.18/1.4404_P – DN200 / 219.10mm 8.18mm – in stock 761,65 € (619,23 € excl. VAT)
Stainless steel seamless tube DN200 Ø 219,1mm x 8,18mm in grade 1.4401 / 316 / 1.4404 / 316L S-RR-MZ2/219.10X08.18/1.4404_P – DN200 / 219.10mm 8.18mm – in stock 1061,99 € (863,41 € excl. VAT)
Stainless steel seamless tube hollow bar DN250 Ø 224mm x 42mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/224.00X42.00/1.4404_P – DN200 / 224.00mm 42mm – in stock 3902,58 € (3172,83 € excl. VAT)
Stainless steel seamless tube hollow bar DN250 Ø 240mm x 35mm in grade 1.4401 / 1.4404 / 316 / 316L S-RR-MZ4/240.00X35.00/1.4404_P – DN250 / 240.00mm 35mm – in stock 3662,96 € (2978,02 € excl. VAT)
Stainless steel forged flat flange DN250 273mm EN1092-1/01B (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNP/273.00/1.4404 – – – – in stock 161,04 € (130,93 € excl. VAT) Add to basket
Stainless steel forged weld neck flange DN250 273mm EN1092-1/11B1 (PN10/16) 1.4401 / 316 / 1.4404 / 316L S-KNSZ/273.00/1.4404 – – – – in stock 181,54 € (147,59 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN250 273 x 4,19mm / DN150 168,3 x 3,4mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/273.00X04.19/168.30X03.40/1.4404 DN250 DN250 / 273.00mm 4.19mm 168.3mm in stock 224,18 € (182,26 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN250 273 x 4,19mm / DN200 219,1 x 3,76mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/273.00X04.19/219.10X03.76/1.4404 DN250 DN250 / 273.00mm 4.19mm 219.1mm in stock 381,03 € (309,78 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN250 273 x 9,27mm / DN150 168,3 x 7,11mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/273.00X09.27/168.30X07.11/1.4404 DN250 DN250 / 273.00mm 9.27mm 168.3mm in stock 413,99 € (336,58 € excl. VAT) Add to basket
Stainless steel seamless eccentric reducer DN250 273 x 9,27mm / DN200 219,1 x 8,18mm in grade 1.4401 / 1.4404 / 316 / 316L S-RDE-MZ2/273.00X09.27/219.10X08.18/1.4404 DN250 DN250 / 273.00mm 9.27mm 219.1mm in stock 435,66 € (354,20 € excl. VAT) Add to basket

Steel 316L – material profile

Equivalent designations

Fundamentals of acid-resistant and stainless austenitic steels

Definition of acid-resistant and stainless steels

Stainless and acid-resistant steels are a group of iron alloys whose common feature is the ability to form a stable, protective chromium oxide layer on the surface. This thin coating, called the passive film, prevents further oxidation and significantly reduces corrosion. The term “acid-resistant” emphasises resistance to aggressive chemical environments (acids, salts, chlorine compounds), whereas “stainless” reflects the general property – resistance to oxidation and staining in everyday conditions. In practice the two terms often overlap, because alloys resistant to acid corrosion usually belong to the stainless steel family.

Characteristics of the austenitic steel structure

Austenitic stainless steels are characterised by an austenitic crystal structure (a regular FCC lattice – face-centred cubic). This structure is stabilised mainly by nickel and by certain alloying additions. Typical features of austenite are:

  • good ductility and toughness even at low temperatures,
  • relatively low magnetism (usually non-magnetic in the annealed state),
  • good weldability,
  • moderate mechanical strength, which can be increased by cold working,
  • good corrosion resistance due to high chromium and, in some grades, molybdenum content.

Austenitic steels such as AISI 316L (corresponding to European designations 1.4436 / X3CrNiMo17-13-3 depending on specification) are widely used where a combination of ductility, corrosion resistance and good weldability is required.

The importance of corrosion resistance in industry

Corrosion resistance has a direct impact on component lifetime, process safety and operating costs. In chemical installations, the food industry and pharmaceuticals, failure of an element due to corrosion can lead to product contamination, accidents and high repair costs. Therefore selecting the appropriate steel grade and regular testing are fundamental to ensuring the quality and reliability of industrial infrastructure.

Origin and standards for steels 1.4436 X3CrNiMo17-13-3 and AISI 316L

Evolution of European and American standards

Steel designation systems developed historically in different regions: in Europe EN/DIN/Werkstoff standards predominate, while in the USA the AISI/ASTM/UNS systems are used. Over time the need for global trade has driven harmonisation and mapping of equivalents between standards. For example:

  • AISI/ASTM uses designations such as 316L or UNS S31603,
  • Europe uses material numbers according to EN (e.g. 1.4404, 1.4436) and chemical symbol notation like X3CrNiMo17-13-3,
  • International standards ISO and ASTM define mechanical and chemical requirements as well as test procedures.

The evolution of standards also means gradual refinement of element percentage limits, tolerances and certification processes, which facilitates trade and ensures conformity with specialised applications.

Differences and similarities in the designations 1.4436, X3CrNiMo17-13-3 and AISI 316L

These designations refer to very similar, often interchangeable austenitic steel grades. Key points:

  • AISI 316L is a widely recognised name in the American system, emphasising low carbon content (“L” – low carbon), which reduces the risk of intergranular carbide corrosion after welding.
  • X3CrNiMo17-13-3 is the chemical symbol used in European standards; the numbers indicate approximate percentage contents: 17% Cr, 13% Ni, 3% Mo, and the “3” after X signals a maximum of 0.03% carbon.
  • 1.4436 (or depending on the edition of the standard: 1.4404 / 1.4436) is the material number according to the EN/DIN/Werkstoff system, used in technical documentation and quality certificates.

In practice small differences in element limits, inclusion control or melting procedures may mean that two sheets labelled 316L and 1.4436 are not absolutely identical, but in most applications they are interchangeable.

Chemical composition of 1.4436 X3CrNiMo17-13-3 and AISI 316L

Main elements and their roles: chromium, nickel, molybdenum

  • Chromium (Cr, ~16.0–18.0%): the key element forming the passive chromium oxide film Cr2O3. It increases resistance to oxidation and general corrosion.
  • Nickel (Ni, ~10.0–14.0%): an austenite stabiliser; it improves ductility, toughness and resistance to fatigue; it increases chemical resistance in acidic environments.
  • Molybdenum (Mo, ~2.0–3.0%): important for improving resistance to pitting and crevice corrosion, particularly in chloride-containing environments.

Thanks to this combination 316L is more resistant to pitting in chloride environments than the popular 304 (which does not contain molybdenum in this amount).

The effect of microelements and impurities on steel properties

Other elements, though present in smaller amounts, have a significant influence:

  • Carbon (C, ≤ 0.03% in the “L” variant): lower content limits chromium carbide precipitation during welding, which prevents intergranular corrosion.
  • Manganese (Mn), silicon (Si): affect casting and thermomechanical processing; excess can reduce corrosion resistance.
  • Nitrogen (N): in small amounts increases strength and corrosion resistance, increasing the PREN (pitting resistance equivalent number).
  • Phosphorus (P), sulphur (S): in trace amounts negatively affect mechanical properties and weldability; standards limit their content.

Comparison of chemical composition for the designations

For clarity, approximate component ranges common to grades designated 1.4436 / X3CrNiMo17-13-3 / AISI 316L are:

  • Chromium (Cr): 16.0–18.0%
  • Nickel (Ni): 10.0–14.0% (often near 12–13% for X3CrNiMo17-13-3)
  • Molybdenum (Mo): 2.0–3.0%
  • Carbon (C): ≤ 0.03% (for the “L” grade)
  • Manganese (Mn): ≤ 2.0%
  • Silicon (Si): ≤ 1.0%
  • Phosphorus (P): ≤ 0.045%
  • Sulphur (S): ≤ 0.03%
  • Nitrogen (N): ≤ 0.11% (depending on specification)

Differences between the notations usually fall within permitted standard deviations; however, in critical applications engineers often require material certificates and parameters exactly matching the standards.

Mechanical and physical properties of 1.4436 and AISI 316L

Tensile strength and toughness

Mechanical properties depend on the material condition (annealed, cold-worked) and form (sheet, bar, tube). Typical values for annealed 316L:

  • Tensile strength (Rm): 480–620 MPa (depending on thickness and processing),
  • Yield strength (Rp0.2): approximately 170–300 MPa,
  • Elongation at break (A5): 35–60% (high ductility).

Impact toughness at low temperatures remains good due to the austenitic structure; 316L demonstrates the ability to absorb impact energy also at low temperatures, making it useful in Arctic or certain cryogenic installations up to certain limits.

Fatigue resistance and creep

  • Fatigue: austenitic steels show good fatigue resistance at moderate temperatures, but residual stresses (e.g. from cold working) and aggressive environments (chlorides) can significantly reduce fatigue life. Designers therefore apply appropriate safety factors and stress-relief processes.
  • Creep: 316L retains mechanical properties up to around 500–600°C; above these temperatures long-term deformation under sustained load becomes significant. For high-temperature applications, specialised grades with improved creep resistance are used.

Thermal conductivity and linear expansion

Austenitic stainless steels have lower thermal conductivity than carbon steels. Typical features:

  • Thermal conductivity: on the order of 13–16 W/m·K (at room temperature), meaning they heat locally and require careful design in welding and cooling.
  • Coefficient of linear expansion: higher than carbon steels, which is important when designing joints with materials of different expansion (e.g. aluminium, carbon steel). Designers must account for thermal expansion when there are temperature differences.

Corrosion resistance – a key feature of austenitic steels 316L and 1.4436

Mechanisms of corrosion protection

Protection results from the formation of a chromium oxide passive layer a few nanometres thick. Key mechanisms:

  • Self-regeneration: even if the film is mechanically damaged, it will re-form quickly in the presence of oxygen if the chromium concentration in the alloy is sufficient.
  • Role of molybdenum: increases resistance to localised corrosion forms, such as pitting and crevice corrosion, by modifying local chemistry and increasing passivation stability in the presence of chlorides.
  • Low carbon: limits chromium carbide precipitation at grain boundaries (sensitisation), protecting grain boundaries from intergranular attack.

Resistance to corrosion in acidic and chloride environments

  • Acidic environments: 316L performs well with many organic acids and some non-oxidising acids. However, strongly oxidising environments or high temperatures may require more specialised alloys, e.g. 904L or alloys with higher molybdenum and nitrogen contents.
  • Chloride environments: the presence of chloride ions increases the risk of pitting and crevice corrosion. 316L has better resistance to such damage than 304 thanks to molybdenum content, but in aggressive marine conditions or at high temperatures alloys with higher PREN or duplex grades may be required.

Tests and methods for assessing corrosion resistance

Standard test methods include:

  • Pitting and crevice tests (e.g. ASTM G48) – assessment of resistance to pitting corrosion in chloride solutions,
  • Intergranular corrosion tests (ASTM A262) – check susceptibility to intergranular corrosion after thermal exposure,
  • Salt spray chamber tests (ASTM B117) – simulation of marine environments,
  • Pitting potential – electrochemical measurements determining the threshold at which pitting starts,
  • Microscopic and SEM analyses – allow assessment of initiation and development of corrosion forms.

Results depend on surface condition, processing, chemical composition and environment, so certification and quality control are essential for critical applications.

Processing and weldability of acid-resistant steels 1.4436 and AISI 316L

Casting, rolling and forging – influence on properties

Processing routes shape microstructure and mechanical properties:

  • Casting: requires controlled composition and cooling rate to avoid segregation of elements and formation of brittle phases. Cast products often require heat treatment and annealing.
  • Rolling and forging: hot and cold plastic deformation improves strength and grain structure, but can also introduce residual stresses. Final annealing and solution treatment restore uniformity and corrosion properties.
  • Surface treatment (polishing, electropolishing): increases corrosion resistance by removing contaminants, smoothing grains and reducing sites where pitting can initiate.

Specifics of welding austenitic steels

Weldability of 316L is good because low carbon minimises the risk of carbide precipitation during heating. Nevertheless:

  • Hot cracking – especially in multi-pass welds, can be limited by using appropriate electrodes or wires with a ferrite addition (for stabilisation) and by controlling cooling rate.
  • Using suitable filler metals with composition matching the base metal is important to ensure the durability of the weld and its corrosion resistance.
  • Mitigation: welding under shielding gas, selecting appropriate current and travel speed parameters, and in some sensitive applications – post-weld annealing or electropolishing.

Heat treatment methods and their effects

For 316L a standard treatment is solution annealing at about 1,040–1,100°C, followed by rapid cooling (e.g. water quench). Effects:

  • Dissolution of chromium carbides and restoration of uniformity,
  • Relief of stresses and improvement of ductility,
  • Restoration of full corrosion resistance.

Prolonged isothermal exposure in the 400–800°C range can lead to precipitation of phases that reduce corrosion resistance and mechanical properties.

Typical applications of acid-resistant steels 1.4436 X3CrNiMo17-13-3 and AISI 316L

Chemical and petrochemical industry

316L is widely used in chemical equipment: reactors, pipelines, heat exchangers, storage tanks. Its resistance to many acids and to pitting in the presence of chlorides makes it a first choice where chemical resistance must be combined with good machinability and weldability.

Food and pharmaceutical industries

Smooth surfaces, ease of cleaning, biocompatibility and compliance with hygienic standards make 316L commonly used in the food and pharmaceutical industries. Examples:

  • Tanks and pipelines for production of beverages, dairy fermentations and other food products,
  • Components of CIP (clean-in-place) systems,
  • Pharmaceutical apparatus parts where surfaces must be easy to sterilise.

Construction and water infrastructure

In structures exposed to moisture and atmospheric corrosion, and in water installations (especially seawater), 316L is used for joinery, architectural elements, handrails and other components. However, it should be noted that in direct contact with the sea or in splash zones duplex or alloys with higher molybdenum content are often preferred.

Manufacture of medical devices

316L, and especially its controlled version (316LVM – vacuum melt), is used in surgical instruments, prostheses, orthopaedic and dental implants. Biocompatibility, resistance to disinfectants and ability to be sterilised have made this steel long established in medicine. In implant applications additional contamination control and certification according to ISO and ASTM standards are often required.

Comparison of 1.4436 X3CrNiMo17-13-3 with other stainless steel grades

AISI 304 vs 316L – main differences in composition and application

  • Composition: 304 typically does not contain molybdenum; 316L contains Mo (~2–3%), which significantly improves resistance to pitting and crevice corrosion.
  • Applications: 304 is widely used in less aggressive environments (e.g. household equipment, decorative items), whereas 316L is preferred in chloride-containing environments, in the chemical and marine industries.
  • Corrosion resistance: 316L > 304, particularly in contact with salts and chlorides.

Ferritic and duplex steels – challenges and opportunities

  • Ferritic steels: characterised by magnetism, good resistance to general corrosion, but limited ductility and poorer weldability compared with austenitics. They can be advantageous where resistance to stress and good thermal conductivity are required.
  • Duplex steels: combine ferritic and austenitic phases, offering higher mechanical strength and better resistance to crevice corrosion than standard 316L. Duplexes are excellent in marine and petrochemical industries, but their processing and welding require greater control.

The choice between 316L, 304, duplexes or ferritic alloys depends on the balance of requirements: chemical resistance, strength, processability and cost.

Safety and quality standards for the use of 316L and 1.4436

Certificates and quality attestations

For materials used in industry and medicine, key documents include certificates of conformity to EN 10204 (2.1, 3.1, 3.2), manufacturer test certificates, and compliance with ISO and ASTM standards. For pressure equipment additional approvals are required (e.g. PED – Pressure Equipment Directive in the EU). Documentation should include chemical analysis, mechanical test reports and corrosion test results.

Compliance with FDA and EU standards in food and medical applications

In the food and pharmaceutical sectors it is necessary to use materials compliant with sanitary guidelines and regulations:

  • FDA (USA) – materials in contact with food must meet appropriate regulations (e.g. 21 CFR),
  • European Union – regulations and directives concerning materials intended for contact with food (e.g. EU regulations on food contact materials) and medical standards (e.g. ISO 13485, ISO 10993 for biocompatibility).

In medical applications additional certifications confirming biocompatibility, sterilizability and material cleanliness are often required.

Environmental aspects of using and recycling steel

Steel is one of the most recycled materials in the world. Recycling stainless steel reduces CO2 emissions and raw material consumption. The properties of stainless steels allow multiple remelts without significant degradation of alloy properties. From a sustainability perspective, using durable steel, ease of recovery and recycling fit into circular economy strategies.

Nanotechnologies and protective coatings increasing durability

Contemporary research focuses on surface modification to increase corrosion and service resistance:

  • Nanostructured oxide and ceramic coatings enhance wear and corrosion resistance,
  • Antibacterial coatings (e.g. containing silver ions or specialised composites) are used in medicine and the food industry,
  • Hydrophobic and self-cleaning coatings extend the service life of installations and reduce maintenance costs.

These technologies act like a “second skin” for steel – thin but highly functional barriers that improve resistance in extreme conditions.

Use in Industry 4.0 and production automation

Industry 4.0 also affects steel production and quality control:

  • Real-time monitoring of metallurgical processes using sensors and machine-learning algorithms improves repeatability of composition and properties,
  • 3D printing of 316L (metal powder in SLM/DMLS technology) enables creation of complex geometries and rapid prototyping of corrosion-resistant parts,
  • Automated quality-control systems (visual, ultrasonic) detect microstructural and surface defects already on the production line.

Digital integration and adaptive process control are steps towards greater efficiency and shorter time-to-market for new industrial components.

Conclusion: The importance of choosing the right acid-resistant steel grade for industrial project success

Choosing a steel such as 1.4436 / X3CrNiMo17-13-3 / AISI 316L is a strategic decision that combines technical, economic and environmental aspects. This grade offers a proven combination of corrosion resistance, processability, weldability and availability in many forms. In projects where chlorides, chemical agents, hygienic requirements or biocompatibility are present, 316L often represents the best compromise.

However, there is no universal alloy: operating temperature requirements, exposure to aggressive environments, mechanical criteria and investment budget determine the choice between 316L and alternatives such as duplex, 904L or ferritic steels. Knowledge of composition, properties and limitations of the material, combined with proper quality control and testing, is essential to ensure structures are durable, safe and economical.

In the context of technological development and rising environmental demands, 316L remains a widely used material whose potential can be further enhanced with new coatings, production processes and digital quality control. In practice, understanding the nuances between designations and full material documentation are keys to the success of any engineering project using acid-resistant stainless steel.