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Alloy ER 2209 Stainless Steel TIG MIG And SUB - ARC Wire Used For Welding 1.0mm
Place of Origin | Shandong China |
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Brand Name | TESTE |
Certification | ISO TUV SGS BIS CE |
Minimum Order Quantity | 3Tons |
Price | Negotiate |
Packaging Details | With iron sheet to pack the steel sheet and pallet .Also make the shipping marks on each bundles. |
Delivery Time | 5-15days depend on the quantity |
Payment Terms | L/C, D/A, D/P, T/T, Western Union, MoneyGram,OA |
Supply Ability | 5000Tons Per Months |

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xProduct Name | Stainless Steel Welding Wire | Grade | ER2209 |
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Wire Weight | 1kg / 5kg / 15kg / 150kg / 250kg | Wire Size(mm) | 0.8mm / 0.9mm / 1.0mm / 1.2mm/ 1.6mm/ 2.0mm |
Wire Size(in) | 0.25 / 0.30 /0.35 / 0.40 / 0.45 / 0.030 | Package | Spool - Drum |
Product Name | Stainless Steel Wire Rod | High Light | . |
High Light | Pipe | Product Name | Stainless Steel |
Name | Pipe | ||
Highlight | ER 2209 Stainless Steel Welding Wires,Alloy 1.0mm Stainless Steel Wires,Stainless Steel SUB-ARC Wire |
ER2209 Stainless Steel Welding Wire
ER2209 Stainless Steel Welding Wire is also known as H03Cr22Ni8Mo3N.The main composition is 22Cr-9Ni-3Mo-N. it is an austenitic ferrite dual phase stainless steel MIG wire. Full-position welding. Because the deposited metal contains about 40% ferrite, the deposited metal has both the comprehensive properties of austenitic stainless steel and the stress corrosion resistance of ferrite stainless steel. Thus it has become a new material in petrochemical industry. It has excellent welding workability, such as smooth wire feeding, stable arc, beautiful shape and few spatter.
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ER2209 GMAW (MIG) welding alloy welding stainless steel mig welding wire
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Designed for welding heat treatable base alloys
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Higher melting point and more fluidity
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Suitable for sustained elevated temperature service
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All position, include vertical down welding
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Gray - white(post anodized) color
STAINLESS STEEL SPRING WIRE GRADE
European Standards EN 10088-3 |
Designation USA | Japan | |||
Grades | Designation | AISI-ASTM-SAE | UNS | ||
AUSTENITIC GRADES | 1.4301 | X5CrNi8-10 | 304 | S30400 | 304 |
1.431 | X10CrNi18-8 | 302 | S30200 | 302 | |
1.4305 | X8CrNiS18-9 | 303 | S30300S | 303 | |
1.4306 | X2CrNi19-11 | 304L | - | - | |
1.4303 | X4CrNi18-9 | 305 | S30600 | 305 | |
1.4307 | X2CrNi18-9 | 304L | S30403 | 304L | |
1.4401 | X5CrNiMo17-12-2 | 316 | S31600 | 316 | |
1.4404 | X2CrNiMo17-12-2 | 316L | S31603 | 316L | |
1.4541 | X5CrNiTi18-10 | 321 | S32100 | 321 | |
1.4567 | X3CrNiCu18-9-4 | 302HQ-304Cu | S30430 | XM7 | |
1.457 | X6CrNiCuS18-9-2 | - | - | - | |
1.4571 | X6CrNiMoTi17-12-2 | 316Ti | S31635 | 316Ti | |
1.4597 | X8CrMnCuNB17-8-3 | 204Cu | - | - | |
1.4539 | X1NiCrMoCu25-20-5 | 904L | NO8904 | - | |
REFRACTORY GRADES | 1.4841 | X15CrNiSi25-21 | 314 | S31400 | - |
1.4845 | X8CrNi25-21 | 310-310S | S31000 | SUH310 | |
FERRITIC GRADES | 1.4016 | X6Cr 17 | 430 | S43000 | 430 |
1.4104 | X14CrMoS17 | 430F | S43020 | 430F | |
1.4509 | X2CrTiNb18 | 441 | S44100 | 441 | |
1.451 | X3CrTi17 | 439/XM8 | S43035 | - | |
1.4511 | X3CrNb17 | 430Cb | - | - | |
1.4512 | X2CrTi12 | 409 | S40920 | - | |
MARTENSITIC GRADES | 1.4005 | X12CrS13 | 416 | S41600 | 416 |
1.4034 | X46Cr13 | 420C | - | - | |
1.4021 | X20Cr13 | 420A | S4200 | - | |
1.4035 | X46CrS13 | - | - | - |
ER308LSi CHEMICAL COMPOSITION--Standard:AWS A 5.9 YB/T5092
Element | C | Mn | Si | P | S | Cr | Ni | Mo | Cu | Ti | Nb |
ER308LSi | ≤0.03% | 1.0~2.5% | 0.65~1.00% | ≤0.03% | ≤0.03% | 19.5~22% | 9~11% | ≤0.75% | ≤0.75% | - | - |
ER304 | ≤0.08% | 1.0~2.5% | ≤0.06% | ≤0.03% | ≤0.03% | 17~19% | 8~11% | - | - | - | - |
ER321 | ≤0.08% | 1.0~2.5% | 0.3~0.65% | ≤0.03% | ≤0.03% | 18.5~20.5% | 9~10.5% | ≤0.75% | - | 9×C–1.00 | - |
ER309L | ≤0.03% | 1.0~2.5% | 0.3~0.65% | ≤0.03% | ≤0.03% | 23~25% | 12~14% | ≤0.75% | ≤0.75% | - | - |
ER307Si | 0.04~0.14% | 6.5~8.0% | 0.65~1.0% | ≤0.03% | ≤0.03% | 18.5~22% | 8~10.75% | ≤0.75% | ≤0.75% | - | - |
ER347 | ≤0.08% | 1.0~2.5% | 0.3~0.65% | ≤0.03% | ≤0.03% | 19~21.5% | 9~11% | ≤0.75% | - | - | 10×C–1.0 |
ER316LSi | ≤0.03% | 1.0~2.5% | 0.65~1.0% | ≤0.03% | ≤0.03% | 18~20% | 11~14% | 2~3% | ≤0.75% | - | - |
ER410 | ≤0.12% | ≤0.6% | ≤0.5% | ≤0.03% | ≤0.03% | 11.5~13.5% | ≤0.6% | ≤0.75% | ≤0.75% | - | - |
ER430 | ≤0.10% | ≤0.6% | ≤0.5% | ≤0.03% | ≤0.03% | 15.5~17% | ≤0.6% | ≤0.75% | ≤0.75% | - | - |
ER310 | 0.08~0.15% | 1.0~2.5% | 0.3~0.65% | ≤0.03% | ≤0.03% | 25~28% | 20~22.5% | ≤0.75% | ≤0.75% | - | - |
ER2209 | ≤0.03% | 0.5~2.0% | ≤0.9% | ≤0.03% | ≤0.03% | 21.5~23.5% | 7.5~9.5% | ≤0.75% | - | - | - |
ER Stainless Steel Welding Wire Specifications
Type | Spool (MIG) | Tube (TIG) | ||||||
Specification ( MM ) |
0.8,0.9,1.0,1.2,1.6,2.0 | 1.6,2.0,2.4,3.2,4.0,5.0 | ||||||
Package |
S100/1kg S200/5kg S270,S300/15kg-20kg |
5kg/box 10kg/box length :1000MM | ||||||
Diameter(MM) | 0.8 | 1.0 | 1.2 | 1.6 | 2.0 | 2.5 | 3.2 | |
Current (A) | 70 ~ 150 | 100 ~ 200 | 140 ~ 220 | 50 ~ 100 | 100 ~ 200 | 200 ~ 300 | 300 ~ 400 |
ER308LSi Stainless Steel Welding Wire FAQ
Stainless Steel MIG welding wire have how many types?
ER304,ER307Si,ER308,ER308L,ER308LSi,ER309,ER309L,ER309LSi,ER310,ER316,ER316L,ER316LSi,ER321,ER347,ER410,
ER430,ER2209,317l
How to choose a suitable gasless mig welding stainless steel wire?or what type of filler wire is best for wire feed welding stainless steel?
The first two designators may be“ER”for solid wires that may be used as electrodes or rodsor they may be“EC’for composite cored or stranded wires;or they may be“EQ”for strip electrodes.
The three- or four-digit number,such as 308 in ER308,designates the nominal chemical composition of the filler metal.
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ER307.The nominal composition(wt.%)of this classification is 21 Cr.9.5Ni.4 Mn.1 Mo.Filler metals .
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ER308The nominal composition(wt.%)of this classification is 21 Cr10 Ni.Commercial specifications is most often used to weld base metals of similar composition, in particular, Type 304.
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ER308Si.This classification is the same asER308except for the higher silicon content.
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ER308H.This classification is the same as ER308.except that the allowable carbon content is used for welding 304H base metal.
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ER308L.This classification is the same as ER308,except for the carbon content.Low carbon,is less than that of the niobium-stabilized alloys or Type 308H at elevated temperatures.
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ER308LMo.This classification is used for welding ASTM CF3M stainless steel castings and matches the base metal with ER316L is desired.
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ER309.The nominal composition(wt.%)of this classification is 24 Cr13 Ni.Filler metals.
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304 and similar base metals where severe corrosion conditions exist requiring higher alloy weld metal.
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ER309Si.This classification is the same as ER309,except for higher silicon content.
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ER309L.This classification is the same as ER39,except for the carbon content.
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ER309LS.This classification is the same as ER309Lexcent for higher sillicon content.
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ER309Mo.This classification is the same as ER309except for the addition of 2.0 percent to 3.0 percent.
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ER310.The nominal composition(wt.%)of this classification is 26.5 Cr,21 Ni.Filler metal of this classification is most often used to weld base metals of similar composition
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ER312.The nominal composition(wt.%) of this classification is 30 Cr, 9 Ni.Filler metal of this classification was originally designed to weld cast alloys of similar composition.
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ER316 weld metal may occur when the following three factors co-exist:
The presence of a continuous or semicontinuous network of ferrite in the weld metal microstructurel
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ER316Si.This classification is the same as ER316,except for the higher silicon content.
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ER316H.This filler metal is the same as ER316,except that the allowable carbon .
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ER316L.This classification is the same as ER316.except for the carbon content.
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ER316LSi.This classification is the same as ER316L except for the higher silicon content.
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ER317.The nominal composition(wt.%) of this classification is 19.5 Cr14 Ni3.5 Mo, higher than ER316.
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ER317LThis classification is the same as ER317except for the carbon content.
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ER318This composition is identical to ER316,except for the addition of niobium.
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ER321Thenominal composition(wt.%)of this classification is 19.5 Cr.9.5 Niwith titanium added.The titanium acts in the same way as niobium in Type 347.
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ER347.The nominalcomposition(wt.%) of this classification is 20 Cr,10 Ni,with Nb added as a stabilizer.
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ER347Si.This classification is the same as ER347,except for the higher silicon content.
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ER409.This 12 Cr alloy(wt.%) differs from Tvpe 410 material because it has a ferritic microstructure.
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ER410.This 12 Cralloy(wt.%) is an air-hardening steel.
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ER410NiMo.The nominal composition(wt.%)of this classification is 12 Cr4.5 Ni.0.55 Mo.
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ER430.This is a 16 Cr(wt.%) alloy.The composition is balanced by providing sufficient chromium to give adequate corrosion resistance for the usual applications.
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ER439.This is an 18 Cr(wt.%) alloy that is stabilized with titanium.