High Yield Strength Duplex Stainless Steel Grade 2205 UNS S32205 / S31803

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Product
High Yield Strength Duplex Stainless Steel Grade 2205 UNS S32205 / S31...
Posting date : Jun 22, 2018
Membership
Free Member Scince May 21, 2018
FOB Price
Negotiation
Port
Shanghai
Payment Terms
L/C, T/T, W
Package
Standard Seaworthy package or as the customer's re
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Contact
Sara
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Product Detail
Company Info
 
Quick Detail
Place of Origin
China [CN]
Brand Name
TISCO ,BAOSTEEL
Model Number
2205/1.4462/UNS S32205/S31803
HS-CODE
38-
Package & Delivery Lead Time
Package
Standard Seaworthy package or as the customer's re
Delivery Lead Time
5-10 working days
Detailed Description
0.3 - 60mm 2205 1.4462 UNS S32205 / S31803 Duplex Stainless Steel Sheet /Plate Standards ASTM/ASME ................A240 UNS S32205/S31803 EURONORM ................1.4462 X2CrNiMoN 22.5.3 AFNOR..........................Z3 CrNi 22.05 AZ DIN ..............................W.Nr 1.4462 WUXI AOIXANG METAL PRODUCTS CO., LTD now includes Duplex 2205 (UNS S32205 / S31803), in sheet, sheet coil, plate, plate coil, round bar, processed flat bar and tubular products. Duplex 2205 is ideally suited for high-pressure and highly corrosive environments. Products Details Duplex 2205 is a two-phase, ferritic, austenitic 22% chromium, 3% molybdenum, 5 to 6% nickel alloyed stainless steel. It is the most widely used duplex stainless steel grade and is characterized by high yield strength, double that of the standard austenitic stainless steel grades. It also demonstrates good fatigue strength, as well as outstanding resistance to stress corrosion cracking, crevice, pitting, erosion, and general corrosion in severe environments. Chemical Properties - - - - | C | Mn | Si | P | S | Cr | Mo | Ni | N | 2205 (S31803) | 0.03 max | 2.0 max | 1.0 max | 0.03 max | 0.02 max | min: 21.0 max: 23.0 | min: 2.5 max: 3.5 | min: 4.5 max: 6.5 | min: 0.08 max: 0.20 | 2205 (S32205) | 0.03 max | 2.0 max | 1.0 max | 0.03 max | 0.02 max | min: 22.0 max: 23.0 | min: 3.0 max: 3.5 | min: 4.5 max: 6.5 | min: 0.14 max: 0.20 | - - - - Mechanical Properties - - - - Grade | Tensile Strength ksi (min) | Yield Strength 0.2% ksi (min) | Elongation % | Hardness (HB) MAX | 2205 | 90 | 65 | 25 | 217 | - - - - Applications 1). Chemical processing, transport and storage pressure vessels, tanks, piping, and heat exchangers 2). Oil and gas exploration and processing equipment piping, tubing, and heat exchangers 3). Marine and other high chloride environments 4). Effluent scrubbing systems 5). Pulp and paper industry digesters, bleaching equipment, and stock-handling systems 6). Cargo tanks for ships and trucks 7). Food processing equipment 8). Biofuels plants Process Welding Characteristics A. Possesses good weldability B. Should not generally be welded without filler metal as this may result in excessive ferrite Heat-Treatment A. Annealing temperature range is 1868 to 2012F (1020 to 1100C) B. Cannot be hardened by heat treatment but Duplex 2205 does work-harden C. Special consideration is needed to compensate for a higher coefficient of thermal expansion to avoid warping and distortion Process -hot forming Most Duplex 2205 producers recommend a maximum hot forming temperature between 2010 and 2100F (1100 to 1150C). If the shape of the work piece is not compact, the edges may be significantly cooler than the bulk, and there is risk of cracking in the cooler regions. Process -Cold Forming Duplex 2205 has shown good formability in a variety of fabrications. The high strength of Duplex 2205 can pose problems. Even when the equipment has sufficient power, allowance must be made for higher spring-back caused by the grades high strength. Machinability Duplex 2205 is somewhat more difficult to machine than the 300 series austenitic stainless steels. Higher cutting forces are required and more rapid tool wear is typical. Some guidelines for machining are: A) Use powerful, rigid machines with extremely strong rigid mounting of tools and work piece, B) Minimize vibration by keeping the tool extension as short as possible, C) Use a nose radius on the tool, no longer than necessary, for carbides that have a sharp edge while still providing adequate strength, D) Design machining sequences to always provide for a depth of cut below the work hardened layer resulting from the previous passes

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