Steel Standart

1.4571 equivalent grades: ASTM, EN, JIS, GB, DIN

1.4571 is austenitic Cr-Ni-Mo stainless steel, titanium-stabilized specified in EN 10088-2. The cross-reference runs across 6 standard systems and grades every candidate, so the reason a substitution is safe is on the same row as the name. The full 1.4571 data sheet carries the composition and mechanical tables.

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For 1.4571 the exact matches are 316Ti, 320S31, 06Cr17Ni12Mo2Ti and 2 more, and material bought as one is accepted as the other without deviation. 316L, 316, 1.4404 and 1 more differ on one limit only — a carbon ceiling, an impact temperature or a strength minimum. The cross-reference below covers 3 in AISI / SAE, 1 in BS (superseded British), 1 in GB/T (China), 1 in GOST (Russia/CIS), 1 in JIS (Japan), 2 in EN (European).

Cross-reference table

1.4571 equivalents by system
GradeSystemMatchWhy / differences
316TiAISI / SAEIdenticalUNS S31635 (ASTM A240 316Ti): C ≤ 0.08, Cr 16–18, Ni 10–14, Mo 2–3, Ti 5×(C+N)–0.70. Rarely stocked in the USA.
320S31BS (superseded British)IdenticalBS 1449 320S31.
06Cr17Ni12Mo2TiGB/T (China)IdenticalGB/T 20878 06Cr17Ni12Mo2Ti (formerly 0Cr18Ni12Mo2Ti).
10Kh17N13M2TGOST (Russia/CIS)IdenticalGOST 5632 10Kh17N13M2T: C ≤ 0.10, Cr 16–18, Ni 12–14, Mo 2–3, Ti 5×C–0.7 — the Russian workhorse Mo grade.
SUS316TiJIS (Japan)IdenticalJIS G4304 SUS316Ti: C ≤ 0.08, Cr 16–18, Ni 10–14, Mo 2–3, Ti ≥ 5×C.
316LAISI / SAENearSame corrosion class; 316L achieves weld-zone stability by low carbon instead of Ti. Usual substitute outside Europe.
316AISI / SAENear316Ti — Ti-stabilized; equivalent corrosion class, better at 400–550 °C.
1.4404EN (European)NearLow-carbon route to the same stability; better polish, slightly lower strength.
1.4401EN (European)NearUnstabilized 316; sensitizes in thick welds.

Identical, near and functional are defined once on the grade index; the reason column below says which limit differs in each case.

1.4571 in AISI / SAE

  • 316Ti — Identical UNS S31635 (ASTM A240 316Ti): C ≤ 0.08, Cr 16–18, Ni 10–14, Mo 2–3, Ti 5×(C+N)–0.70. Rarely stocked in the USA.
  • 316L — Near Same corrosion class; 316L achieves weld-zone stability by low carbon instead of Ti. Usual substitute outside Europe.
  • 316 — Near 316Ti — Ti-stabilized; equivalent corrosion class, better at 400–550 °C.

1.4571 in BS (superseded British)

  • 320S31 — Identical BS 1449 320S31.

1.4571 in GB/T (China)

  • 06Cr17Ni12Mo2Ti — Identical GB/T 20878 06Cr17Ni12Mo2Ti (formerly 0Cr18Ni12Mo2Ti).

1.4571 in GOST (Russia/CIS)

  • 10Kh17N13M2T — Identical GOST 5632 10Kh17N13M2T: C ≤ 0.10, Cr 16–18, Ni 12–14, Mo 2–3, Ti 5×C–0.7 — the Russian workhorse Mo grade.

1.4571 in JIS (Japan)

  • SUS316Ti — Identical JIS G4304 SUS316Ti: C ≤ 0.08, Cr 16–18, Ni 10–14, Mo 2–3, Ti ≥ 5×C.

1.4571 in EN (European)

  • 1.4404 — Near Low-carbon route to the same stability; better polish, slightly lower strength.
  • 1.4401 — Near Unstabilized 316; sensitizes in thick welds.

Superseded names for 1.4571

  • X10CrNiMoTi18 10 — DIN 17440 (withdrawn): Same number 1.4571; name changed in EN 10088.
  • 320S31 — BS 1449: British 316Ti.
  • Z6CNDT17-12 — NF A 35-573

Key data for 1.4571

Yield≥ 240 MPa Cold-rolled sheet (C), ≤ 8 mm, +AT
Tensile540–690 MPa
Carbon≤ 0.08 %
StandardEN 10088-2

Full composition, mechanical properties by thickness, heat treatment and applications for 1.4571 →

Verified against EN 10088-2:2014. Last checked: September 2026.