Grade X3CrTi17
European Standard Steel Grade 1.4510
Corresponding Standard EN 10296-2-2005
Welded circular steel tubes for mechanical and general engineering purposes — Technical delivery conditions — Part 2 Stainless steel
Classification Ferritic Stainless Steel
X3CrTi17 Chemical Element Composition Content (%)
Component C Si Mn P S Cr More
Minimum Value - - - - - 16 Ti:4×(C+N)+0.15~0.8 ②
Maximum Value 0.05 1 1 0.04 0.015 18
① a controlled sulfur content of 0,015% to 0,030% is specified.
② Stabilisation may be applied by the use of titanium or niobium or zirconium. According to the atomic number of these elements and the content of carbon and nitrogen, the equivalence shallbe the following: Ti≈7/4Nb≈7/4 Zr.
X3CrTi17 Mechanical Properties
condition Tensile Strength
σb
Mpa
Yield Point
σs
Mpa
Elongation or Extension Rate
δ
%
Steel pipe: ≥420 Rp0.2:≥230
Rp1.0:≥240
l:≥23
t:≥21
◎ l=longitudinal, t=transverse
◎ Resistance to intergranular corrosiona: Yes (When tested in accordance with EN ISO3651-2)
1 Approximate Comparison Table Other Stainless Steels
China Japan United States International Organization for Standardization Germany France European Standard
ISC JIS ASTM ISO Numerical Grade DIN EN/DIN W-Nr. NF EN/NF EN Numerical Grade
S11863 SUS 430LX S43035 X3CrTi 17 4510-430-35-I X6CrTi 17
(X8CrTi 17)
1.4510 Z8CT 17 X3CrTi 17 1.4510
2 Approximate Comparison Table Ferritic Stainless Steel
China Japan International Organization for Standardization European Standard
ISC JIS ISO Numerical Grade Numerical Grade
S11863 SUS430LX X2CrNb17 4510-430-36-X 1.4510
3 Approximate Comparison Table Ferritic Stainless Steel
Japan United States France European Standard Russia
JIS ASTM UNS NF EN/NF EN Numerical Grade GOST
SUS430LX 439 S43035 Z4CT17 X3CrTi17 1.4510 08KH17T

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