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Matter Index Index to Steel Info Pages Information On British Standard Steels BS EN 10088 Important Notes:All information on this page has been interpreted from the relevent standards, books, other web sites, andl leaflets. C:max. 0,08 1.4541 Cr:17,0 - 19,0 Ni:9,0 - 12,0 Ti:5C bright coils h9, 0,8 - 20 solution annealed and quenched pickled drawn straightened peeled ground Demand tendency Revision No. 4541-0 Created:21.02.2000. Properties, applications and processing Corrosion resistance (PRE = 17,0 to 19,0) 1.4541 displays excellent resistance to corrosion
5 x Spring actuated clip X10CrNi18-8, 1.4310 6 Cap P250 GH, 1.0460 X6CrNiTi18-10, 1.4541 7 x Strainer -- X5CrNi18-10, 1.4301 -- X5CrNi18-10, 1.4301 8 x Strainer plug -- X6CrNiTi18-10, 1.4541 -- X6CrNiTi18-10, 1.4541 46 x Blow down valve, cpl. -- X6CrNiTi18-10, 1.4541 -- X6CrNiTi18-10, 1.4541 56 x Ball valve for blow down (G 3/8") --GX5CrNiMo19 Cavitation erosion of CrN/CrCN multilayer coating Sep 15, 2017 · The density of X6CrNiTi18-10 steel is 8.00 g/cm 3. In order to remove residual of manufacturing effects, dissolve TiC particles and gain the homogeneous structure of the solid solution (austenite), all specimens have been subjected to quenching at 1050 °C. However, another effect of steel quenching is an improvement of ductility and a slight
En1026-5 X6crniti18-10 Seamless Steel Pipe, X6crniti18-10 Seamless Steel Pipe, En1026-5 Seamless Steel Pipe manufacturer / supplier in China, offering En1026-5 X6crniti18-10 Seamless Steel Pipe, 12cr1movg Alloy Steel Pipe Fitting Elbow, St-37 S235jr S355jr Hot Rolled Carbon Steel Plate and so on. EN 1.4541 (X6CrNiTi18-10) Stainless Steel ::MakeItFromMay 30, 2020 · EN 1.4541 stainless steel is an austenitic stainless steel formulated for primary forming into wrought products. 1.4541 is the EN numeric designation for this material. X6CrNiTi18-10 is the EN chemical designation. The properties of EN 1.4541 stainless steel include three common variations. This page shows summary ranges across all of them.
EN 10028-7 Chemical Composition of Stainless Steel Flat. EN 10028-7 is the material standard for stainless steel sheet, plate and strip for pressure purposes.The chemical composition of these stainless steel are shown in this article. EN 10088-1 Grade X6CrNiTi18-10 strain-hardened (+C700 Material X6CrNiTi18-10, comparable to X 6 CrNiTi 18 10 acc. to DIN 17440:1985-07 is the variant of 1.4301 (X5CrNi18-10), stabilized by Ti. It is therefore after welding resistant to intercrystalline corrosion also at material thicknesses of > 6 mm. Large-scale application for welded parts in chemical apparatus engineering as well as in food, luxury food, fat and soap industry, in film and
Description. The austenitic steel X6CrNiTi18-10 is available in the solution annealed condition. Welded circular tubes of this steel are used for compression load and for corrosive load at room temperature, low temperatures and elevated temperatures. The material is resistant to intercrystalline corrosion (up to 400 °C) also in the welded Equivalent International Stainless Steel GradesJ-321 S32100 321 X04Cr18Ni10Ti 1.4541 0Cr18Ni10Ti X6CrNiTi18-10 SUS321 08Ch18N10T J-347 S34700 347 X04Cr18Ni10Nb 1.4550 0Cr18Ni11Nb X6CrNiNb18-10 SUS347 08Ch18N12B J-201 S20100 201 X10Cr17Mn6Ni4N20 - - X12CrMnNiN17-7-5 SUS201 -
Find over 10k+ equivalent materials for many different standard organizations across the world - including DIN, SAE, ASTM, JIS, EN Grouping system of steel according to TR / ISO 15608.X2CrNiN18-7, X2CrNil 8-9, X2CrNi19-l l, X5CrNil 8-10 X6CrNi 18-10, X6CrNiTi18-10, X2CrNiM017-12-2, X6CrNiM0Ti17-12-2, X2CrNiM017-12-3, X2CrNiM018-14-3, X2CrNiM0Nl 7-13-5, X6CrNiNbl 8-10, X2CrNiM0N17-13-3, X3CrNiM017-13-3, X2CrNiM0N18-12-4 8-8, X8CrNiS18-9, 8-12, 8.1 XlCrNiSi18-15-4, X3CrNiCu19-9-2, X6CrNiCuS 18-9-2, 18-9-4, X3CrNiCuM017-11-3-2
wste355 / p355nh (1.0565) din en17103 :1989-10, + vdtuev-wb 354/3 :2001-06 + din en10222-4:1998 + a1:2002-12 Stainless steel comparison table - tool makerX6CrNiTi18-10 15 0Cr18Ni11Nb 08KH18H12B SUS347 347 347S31 X6CrNiNb18-10 X6CrNiNb18-10 16 0Cr18Ni9Cu3 SUSXM7 XM7 X3CrNiCu18-9-4
A 4541-321-00-I X6CrNiTi18-10 1.4541 S32100 321 SUS321 S32168 A 4652-326-54-I X1CrNiMoCuN24-22-8 1.4652 S32654 S32652 A 4565-345-65-I X2CrNiMnMoN25-18-6-5 1.4565 S34565 S34553 A 4961-347-77-E X8CrNiNb16-13 1.4961 A 4912-347-09-I X7CrNiNb18-10 1.4912 S34709 "347H" SUS347H A 4550-347-00-I X6CrNiNb18-10 1.4550 S34700 347 SUS347 S34778 Steelinox :Stainless steel AISI 321 / 1.4541 / X6CrNiTi18 Steelinox deliver Stainless steel AISI 321 / 1.4541 / UNS S32100 / X6CrNiTi18-10 in round bar - forgings - rectangle pieces/flats sawn - sheets / plates - hexagon - square - flat bars
Jul 24, 2010 · Table of Steel Equivalent Grades (EN, SAE/AISI, UNS, DIN, BS, UNI, JIS) The table below compares steel equivalent grades of materials from various international specifications. Note that materials compared are the nearest available grade and may have slight variations in actual chemistry. X6CrNiTi18-10 - Cast Iron and Cast Steel - Specific SteelX6CrNiTi18-10 Stainless Steels to ISO 15510 (2010) X6CrNiTi18-10 - Specification & Application. ISO 15510 (2010) - Stainless steels -- Chemical composition; ISO 16143-1 (2004) - Stainless steels for general purposes -- Part 1:Flat products
Translate this pageJan 18, 2015 · 17 S30408 06Cr19Ni10 7.93 18 S30403 022Cr19Ni10 7.90 19 S30409 07Cr19Ni10 7.90 35 S31008 06Cr25Ni20 7.98 38 S31608 06Cr17Ni12Mo2 8.00 39 S31603 022Cr17Ni12Mo2 8.00 41 S31668 06Cr17Ni12Mo2Ti 7.90 48 S39042 015Cr21Ni26Mo5Cu2 8.00 49 S31708 06Cr19Ni13Mo3 8.00 50 S31703 022Cr19Ni13Mo3 7.98 55 S32168 06Cr18Ni11Ti 8.03 68 instrukcja 708 en - zetkamaX6CrNiTi18-10 1.4541 8 Bolt 11SMn30 1.0715 X6CrNiTi18-10 1.4541 9 Nut 11SMn30 1.0715 X6CrNiTi18-10 1.4541 10 Tube glass, Plexi 11 Tube cover E235 X5CrNi18-10 1.4301 12 Tube connector in cover X20Cr13 1.4021 X6CrNiTi18-10 1.4541 Temperature range 120°C 150°C* For types with gland valve max temperature = 200°C
DIN EN 1.4541 stainless steel (X6CrNiTi18-10) is a variant version of 1.4301. The addition of titanium stabilizes carbides without sensitization, because titanium forms more stable carbides than chromium. These carbides remove carbon from the solid solution and prevent the precipitation of chromium carbide.