Austenitic stainless steel fluid seamless pipe adopts processing technology, cold drawing or cold rolling forming, specification: 6-813mm, wall thickness: 1-80mm, acid washed surface; Suitable for liquid, particle, and gas transportation pipelines, such as chemical, refining, boilers, electricity, food, and other fields.
Chemical Composition (Unit: %) | |||||||||
Symbol of grade | C | Si | Mn | P | S | Ni | Cr | Mo | Other |
SUS304TP | 0.08 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 8.00 to 11.00 | 18.00 to 20.00 | - | - |
SUS304HTP | 0.04 to 0.10 | 0.75 max. | 2.00 max. | 0.040 max. | 0.030 max. | 8.00 to 11.00 | 18.00 to 20.00 | - | - |
SUS304LTP | 0.030 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 9.00 to 13.00 | 18.00 to 20.00 | - | - |
SUS309TP | 0.15 max. | 1.00 max. | 2.00 max. | 0.040 max. | 0.030 max. | 12.00 to 15.00 | 22.00 to 24.00 | - | - |
SUS309STP | 0.08 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 12.00 to 15.00 | 22.00 to 24.00 | - | - |
SUS310TP | 0.15 max. | 1.50 max. | 2.00 max. | 0.040 max. | 0.030 max. | 19.00 to 22.00 | 24.00 to 26.00 | - | - |
SUS310STP | 0.08 max. | 1.50 max. | 2.00 max. | 0.045 max. | 0.030 max. | 19.00 to 22.00 | 24.00 to 26.00 | - | - |
SUS315J1TP | 0.08 max. | 0.50 to 2.50 | 2.00 max. | 0.045 max. | 0.030 max. | 8.50 to 11.50 | 17.00 to 20.50 | 0.50 to 1.50 | Cu 0.50 to 3.50 |
SUS315J2TP | 0.08 max. | 2.50 to 4.00 | 2.00 max. | 0.045 max. | 0.030 max. | 11.00 to 14.00 | 17.00 to 20.50 | 0.50 to 1.50 | Cu 0.50 to 3.50 |
SUS316TP | 0.08 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 10.00 to 14.00 | 16.00 to 18.00 | 2.00 to 3.00 | - |
SUS316HTP | 0.04 to 0.10 | 0.75 max. | 2.00 max. | 0.030 max. | 0.030 max. | 11.00 to 14.00 | 16.00 to 18.00 | 2.00 to 3.00 | - |
SUS316LTP | 0.030 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 12.00 to 16.00 | 16.00 to 18.00 | 2.00 to 3.00 | - |
SUS316TiTP | 0.08 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 10.00 to 14.00 | 16.00 to 18.00 | 2.00 to 3.00 | Ti 5×C% min. |
SUS317TP | 0.08 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 11.00 to 15.00 | 18.00 to 20.00 | 3.00 to 4.00 | - |
SUS317LTP | 0.030 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 11.00 to 15.00 | 18.00 to 20.00 | 3.00 to 4.00 | - |
SUS836LTP | 0.030 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 24.00 to 26.00 | 19.00 to 24.00 | 5.00 to 7.00 | N 0.25 max. |
SUS890LTP | 0.020 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 23.00 to 28.00 | 19.00 to 23.00 | 4.00 to 5.00 | Cu 1.00 to 2.00 |
SUS321TP | 0.08 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 9.00 to 13.00 | 17.00 to 19.00 | - | Ti 5×C % min. |
SUS321HTP | 0.04 to 0.10 | 0.75 max. | 2.00 max. | 0.030 max. | 0.030 max. | 9.00 to 13.00 | 17.00 to 20.00 | - | Ti 4×C % to 0.60 |
SUS347TP | 0.08 max. | 1.00 max. | 2.00 max. | 0.045 max. | 0.030 max. | 9.00 to 13.00 | 17.00 to 19.00 | - | Nb 10×C % min. |
SUS347HTP | 0.04 to 0.10 | 1.00 max. | 2.00 max. | 0.030 max. | 0.030 max. | 9.00 to 13.00 | 17.00 to 20.00 | - | Nb 8×C % to 1.00 |
SUS329J1TP | 0.08 max. | 1.00 max. | 1.50 max. | 0.040 max. | 0.030 max. | 3.00 to 6.00 | 23.00 to 28.00 | 1.00 to 3.00 | - |
SUS329J3LTP | 0.030 max. | 1.00 max. | 1.50 max. | 0.040 max. | 0.030 max. | 4.50 to 6.50 | 21.00 to 24.00 | 2.50 to 3.50 | N 0.08 to 0.20 |
SUS329J4LTP | 0.030 max. | 1.00 max. | 1.50 max. | 0.040 max. | 0.030 max. | 5.50 to 7.50 | 24.00 to 26.00 | 2.50 to 3.50 | N 0.08 to 0.30 |
SUS405TP | 0.08 max. | 1.00 max. | 1.00 max. | 0.040 max. | 0.030 max. | - | 11.50 to 14.50 | - | AI 0.10 to 0.30 |
SUS409LTP | 0.030 max. | 1.00 max. | 1.00 max. | 0.040 max. | 0.030 max. | - | 10.50 to 11.75 | - | Ti 6 × C % to 0.75 |
SUS430TP | 0.12 max. | 0.75 max. | 1.00 max. | 0.040 max. | 0.030 max. | - | 16.00 to 18.00 | - | - |
SUS430LXTP | 0.030 max. | 0.75 max. | 1.00 max. | 0.040 max. | 0.030 max. | - | 16.00 to 19.00 | - | Ti or Nb 0.10 to 1.00 |
SUS430J1LTP | 0.025 max. | 1.00 max. | 1.00 max. | 0.040 max. | 0.030 max. | - | 16.00 to 20.00 | - | N 0.025 max. Nb 8 × (C %+N %) to 0.80 Cu 0.30 to 0.80 |
SUS436LTP | 0.025 max. | 1.00 max. | 1.00 max. | 0.040 max. | 0.030 max. | - | 16.00 to 19.00 | 0.75 to 1.25 | N 0.025 max. Ti, Nb, Zr or their combination 8 × (C %+N %) to 0.80 |
SUS444TP | 0.025 max. | 1.00 max. | 1.00 max. | 0.040 max. | 0.030 max. | - | 17.00 to 20.00 | 1.75 to 2.50 | N 0.025 max. Ti, Nb, Zr or their combination 8 × (C %+N %) to 0.80 |
1. Even when a product analysis is required by the purchaser, the chemical composition given in table 2 shall be applied. However, the carbon content for SUS304LTP, SUS316LTP, SUS317LTP, SUS836LTP, SUS329J3LTP, SUS329J4LTP, SUS409LTP and SUS430LXTP shall be 0.035 % or under. The carbon content for SUS430J1LTP, SUS436LTP and SUS444TP shall be 0.030 % or under. The carbon content for SUS890LTP shall be 0.025 % or under.
2. To SUS329J1TP, SUS329J3LTP, SUS329J4LTP and SUS430J1LTP, alloying elements other than those given in table 2 may be added, if necessary.
3. SUS405TP, SUS430TP, SUS430LXTP, SUS430J1LTP, SUS436LTP and SUS444TP may contain Ni 0.60 % or under.
KIDY is a service-oriented enterprise, with regular steel grades and medium specifications available for long-term stock delivery. The length of a single piece can be customized according to requirements, and any special requirements can be customized.
Austenitic stainless steel pipe refers to stainless steel with austenitic structure at high temperature and room temperature. When the steel contains about 18% Cr, 8%~10% Ni, and about 0.1% C, it has a stable austenite structure.
Austenitic chromium nickel stainless steel includes the famous 18Cr-8Ni steel and the high Cr Ni series steel developed by increasing Cr and Ni content and adding elements such as Mo, Cu, Si, Nb, Ti, etc. on this basis. Austenitic stainless steel is non-magnetic and has high toughness and plasticity, but its strength is low. It is not possible to strengthen it through phase transformation, and can only be strengthened through cold working. For example, adding elements such as S, Ca, Se, Te, etc., will result in good machinability.
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