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- ASTM/ASME: UNS S31254
- EURONORM: FeMi35Cr20Cu4Mo2
- DIN: 2.4660
Product Name: ASTM A403 254 SMO Eccentric Reducer
UNS S31254 F44/ 1.4547 / 2378
ASTM A403 254 SMO Eccentric Reducer Size : 1/8″NB TO 48″NB IN
ASTM A403 254 SMO Eccentric Reducer Schedule: SCH20, SCH30, SCH40, STD, SCH80, XS, SCH60, SCH80, SCH120, SCH140, SCH160, XXS
Type : Seamless / ERW / Welded / Fabricated
Form : Eccentric Reducer, Concentric Reducer
ASTM A403 WP Gr. 304, 304H, 309, 310, 316, 316L, 317L, 321, 347, 904L
Carbon Steel Eccentric Reducer
ASTM A 234 WPB , WPBW, WPHY 42, WPHY 46, WPHY 52, WPH 60, WPHY 65 & WPHY 70.
Low Temperature Carbon Steel Eccentric Reducer
ASTM A420 WPL3 / A420WPL6
Alloy Steel Eccentric Reducer
ASTM / ASME A/SA 234 Gr. WP 1, WP 5, WP 9, WP 11, WP 12, WP 22, WP 91
Duplex Steel Eccentric Reducer
ASTM A 815 UNS NO S 31803 , S 32205
Nickel Alloy Eccentric Reducer
ASTM / ASME SB 336 UNS 2200 ( NICKEL 200 ), UNS 2201 (NICKEL 201 ), UNS 4400 (MONEL 400 ), UNS 8020 ( ALLOY 20 / 20 CB 3, UNS 8825 INCONEL (825), UNS 6600 (INCONEL 600 ), UNS 6601 ( INCONEL 601 ), UNS 6625 (INCONEL 625), UNS 10276 ( HASTELLOY C 276 ), ASTM A403 254 SMO Eccentric Reducer
ASTM A403 254 SMO Eccentric Reducer VALUE ADDED SERVICES
- Hot Dip Galvanizing
- Epoxy Coating
- Electro polish
Specifications of Alloy 254
- Alloy 254 to MLA-MPS-254-BAR
- ASTM A479 Bar UNS S31254
- ASTM A276 Bar UNS S31254
- ASTM A182 Forgings UNS S31254 F44
- ASTM A240 Plate S31254
ASTM A403 254 SMO Eccentric Reducer delivered with a 3.1 certificate. we can perform the tests required to issue a 3.2 certificate, or a CMTR in accordance with the ASME III Code.
Beyond products as such, we offer some additional services quite worth having.
So, besides the fact that we can arrange freight transportation for you, we can before that:
- specifically mark parts or packages;
- provide for a special packing according to what is required by the shipping method or by you.
We mark the ASTM A403 254 SMO Eccentric Reducer as needed with the most suitable marking technique.
When packaging and packing, our experienced warehouse staff systematically takes the greatest precautions for your ASTM A403 254 SMO Eccentric Reducer to be optimally protected during transportation. We pack the ASTM A403 254 SMO Eccentric Reducer according to the appropriate method: strapped pallet, wooden crate, overseas packing (ISPM15).
Alloys 254 / 254 SMO / 6 Mo is an austenitic stainless steel with a high molybdenum content. Coupled with Nickel and Copper this gives the alloy a good resistance to pitting and crevice corrosion, especially in environments containing halide ions, e.g. chloride, bromide and fluoride solutions.
254 SMO (UNS S31254) may offer a cost effective solution to Nickel and Titanium alloys in these environments.
254 SMO is a high-alloy austenitic stainless steel developed for use in seawater and other aggressive chloride-bearing media. The steel is characterized by the following properties:
- Excellent resistance to pitting and crevice corrosion
- High resistance to general corrosion
- High resistance to stress corrosion cracking
- Higher strength than conventional austenitic stainless steels
- Good weldability
- UNS S31254
- EN number 1.4547
- EN name X1CrNiMoCuN20-18-7
- W.Nr. 1.4529**
- SS 2378*
- AFNOR Z1 CNDU 20.18.06AZ*
* Obsolete. Replaced by EN.
** Nearest equivalent grade.
- Seamless tube and pipe: ASTM A269, A213, A312, NFA 49-217, EN 10216-5
- Welded tube and pipe: ASTM A249, A269 , A312, A358, A409
- Fittings: ASTM A182
- Bar: ASTM A276, A479, EN 10088-3
- Forged products: ASTM A473
Chemical composition (nominal) %
|254 SMO||0.02 max||min: 19.5
|1.00 max||min: 6.0
|0.03 max||0.80 max||1.01 max|
The following figures apply to solution annealed condition seamless tube and pipe.
|Wall thickness||Proof strength||Tensile strength||Elong.||Hardness|
1 MPa = 1 N/mm2
Avoid abrasion against copper/copper alloys or other similar metals which, if present in metallic form, can cause cracks during subsequent welding, hot processing or heat treatment.
The excellent formability of 254 SMO permits cold bending to very tight bending radii. Annealing is not normally necessary after cold bending.
- Excellent resistance to pitting and crevice corrosion due to its high chromium, molybdenum, and nitrogen content
- Has a very low carbon content, which means there is very little risk of carbide precipitation during heating
- Possesses very good resistance in water containing chlorides, therefore, it is suitable for use in seawater as it can be exposed to it for prolonged periods without suffering from crevice corrosion
- High work hardening rate combined with a lack of sulfur makes it very difficult to machine
- Slow speeds, sharp tools, positive feeds, over-powered machine tools, and ample lubrication offer the best results