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Williams Metals and Welding Alloys, In c. Providing Welding & Metals Solutions for Over 50 Years Welding iller Metals Setting the Standard for Excellence.

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7/26/2019 WMWA Brochure Welding 2009 New

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Williams Metalsand Welding Alloys, Inc.Providing Welding & Metals Solutions for Over 50 Years

Welding iller Metals

Setting the Standard for Excellenc

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Williams Metals and Welding Alloys is a

multi-location stocking distributor of welding

f iller  metals and non-ferrous metals.

Our !rocessing and distri"ution service centers

su!!ly co!!er, "rass, "ron#e, and aluminum in rod,

"ar, !late, !i!e, s$eet and stri! forms, and ensure %ustintime delivery t$roug$out t$e 'nited States.

($e WMWA Welding )ivision offers a full line of 

*elding consuma"les in co!!er, car"on, co"alt,

aluminum, stainless, silver "ra#ing, and nic+el alloys

*orld*ide.

Williams Metals and Welding Alloys services a

"road range of mar+ets including t$e construction,

!o*er generation, transmission, and distri"ution,

transformer, mining, !etroleum, automotive, and

s*itc$gear industries.

Corporate ead!uar ter s

-5 Strafford Avenue, Suite 0

Wayne, PA /011

P$one2 30.--5.005

a42 30.--5.0-0

Mansfield Sales "ffice # War ehouse50 Mansfield Industrial Par +*ayMansfield, O 66/01///

P$one2 .5--.503 7 a42 6/.5--.6/

$irmingham Sales "ffice # War ehouse

-00 /t$ Street 8ort$

9irming$am, A: 15-06/0-

P$one2 00.311.610 7 a42 -05..//6

Concord Sales "ffice # War ehouse

6 ;ommerce )rive;oncord, 8; -0-500

P$one2 00.-.6636 7 a42 06.6.--

ouston Sales "ffice # War ehouse60- 8eu$aus Str eet

ouston, (< 036301

P$one2 33.-1./151 7 a42 1.35./33

%ittsburgh Sales # Administr ation

50 =eedsdale Street, Suite -005

Pitts"urg$, PA 5-11-16

P$one2 .615.3561 7 a42 .615.3566

Cle&eland Area Sales "ff ice

05- State Street, Suite 3>arrettsville, O 66-10-1

P$one2 00.6-.13- 7 a42 110.5-.-6

Email' sales(wmwa.net 

ww w.w m wa.net

%roduct )nf ormation

iller Metals Pages

Mem"er of t$e American Welding Society, t$e >ases & Welding )istri"utors Association, t$e ;o!!er & 9rass Ser vicenter Association,

and American ;o!!er ;ouncil.

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P= O ) ' ; ( I8  O = M  A( I O 8 W? : ) I 8 > I : : ? = M? ( A : S

Aluminum Welding Wire

AWS*S+A A,.-.

Chemical Composition /imits (1)

01A

2E Si

+e  C

u Mn Mg  C

r  3n 4i"ther Elements

Each(3)

4otal

A/

00 @- @- .05.-0 .05 B B .0 B .05 .5 //. Min

6061 6.53.0 . .10 .05 .05 B .0 .-0 .05 .5 =emainder 

51 .60 .60 .0 .50.0 6.15.- .05.-5 .-5 .5 .05 .5 =emainder 

5153 .-5 .60 .0 .05.-0 6.55.5 .05.-0 .0 .03.-0 .05 .5 =emainder 

5553 .-5 .60 .0 .50.0 6.5.5 .05.-0 .-5 .05.-0 .05 .5 =emainder 

@Single values are ma4imum unless ot$er*ise s!ecified.

@-Silicon !lus Iron s$all not e4ceed ./5C.

@19eryllium s$all not e4ceed .000.

Ot$er grades, including coated electrodes, are availa"le u!on r eDuest.

Copper $ased Welding And $ra5ing Alloys

AWS*S+A A,.6 A,.76

01A2E   Cu 3n Sn Mn Si   Al % %b +e

)eo4 ;o!!erB?=;u /.0 Min. .0 .50 .50 .0 .5 .0-

Silicon 9r on#eB?=;uSi A 9al. .0 .0 .5 -.6.0 .0 .0- .50

 Aluminum 9ron#e A-B?=;u Al A- 9al. .0- .0 .5.0 .0- .5

Single values are ma4imum unless ot$er *ise s!ecified.

 Availa"le on s!ools and in cut lengt$s.

Ot$er grades, including coated electrodes, are availa"le u!on r eDuest.

/ow Alloy Steel%roduct a&ailable in spools8 coils8 dr ums8

AWS*S+A A,.79 r eels8 and cut lengths in si5es .7, to .,:

4ypical Analysis

01A2E   C Mn Si % ;i   Cr  Mo < 4i 3r    Al

0S 9-: .06 .31 .53 .0 B .60 .51 B B B B

0S 9- .0 .5- .6/ .05 B .10 .55 B B B B

0S 91: .06 .3 .56 .0 B -.55 .0 B B B B

/0S 91 .0/ .65 .60 .05 B -.50 .0 B B B B

0S 93 .0 .63 .1/ .05 B 5.60 .50 B B B B

0S 9 .03 .50 .6- .05 B /.-5 .0 B B B B/0S 9/ @ A .0 .30 .-0 .00 .55 /.0 .00 ./ B B B

0S8i .0 ./- .30 .05 ./5 B B B B B B

0S8i- .0/ ./5 .5 .05 -.30 B B B B B B

0S8i1 .0 ./5 .3- .05 1.65 B B B B B B

00S .0 .60 .10 .00 .30 B .60 B .06 .03 .0

0S .0 .30 .15 .00/ -.-0 B .60 B .03 .05 .0

-0S .0 .35 .15 .00 -.30 B .65 B .03 .05 .0

@A 8io"ium @;olum"ium 0.0-  0.0C

8itrogen 0.01 0.0C

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Williams 6.S-7%roduct a&ailable in spools8 coils8 dr ums8

Specification' AWS A,.-9 r eels8 and cut lengths in si5es .7, to .,:

Class E16.S-7

Williams 0S&- is a multi!le deo4idi#ed mild steel *ire containing Aluminum, (itanium and Eirconium, in addition to Siliconand Manganese. It is ca!a"le of sound *elds in all grades of car"on steel. MI> *elding can "e conducted *it$ eit$er

;ar"on )io4ide, Argon&;O-, or Argon -C o4ygen. (I> *elding *it$ 00C  Ar gon.

4ypical Chemical Analysis 4ypical Mechanical %r oper ties

;  0.05 (ensile Strengt$ ,000 PSI

Mn  .5 Yield Strengt$ 35,000

PSI Si 0.5   ?longation -5C

P 0.0- Im!act Strengt$, t:"s 15 t:"s F &-0

S 0.05

 Al 0.0/

Er 0.05

(i 0.03

Williams 6.S-=

Specification' AWS A,.-9

Class E16.S-=

%roduct a&ailable in spools8 coils8 

dr ums8 r eels8 and cut lengths in si5es .

7, to .,:

Williams 0S&1 is a mild steel *ire !rimarily used for MI> and (I> *elding @>MAW and >(AW. It contains deo4idi#ers,

Manganese and Silicon to !rovide !orous&free *elds under normal *elding conditions. MI> *elding can "e !erformed *it$

eit$er ;O- or Ar gon;O-.

4ypical Chemical Analysis

; 0.0

Mn .5

Si 0.56

P 0.0-

S 0.05

4ypical Mechanical %roperties (ensile

Strengt$ ,000 PSI

Yield Strengt$ 35,000 PSI

?longation -3C

Im!act Strengt$, t:"s 11 t:"s F &-0

 Average 9rinell ardness -5

Williams 6.S-:

Specification' AWS A,.-9

Class E16.S-:

%roduct a&ailable in spools8 coils8 

dr ums8 r eels8 and cut lengths in si5es .

7, to .,:

Williams 0S&3 is a mild steel *ire !rimarily used for MI> and (I> *elding @>MAW and >(AW. It contains $ig$er levels of

deo4idi#ers com!ared to ot$er mild steel *ires resulting in "etter fluidity and "ead a!!earance. It !erforms *ell in ;O- s$ield&

ing gas "ut can also "e used *it$  Ar gon;O-.

4ypical Chemical Analysis

; 0.0/

Mn .35

Si 0./

P 0.0-

S 0.05

4ypical Mechanical %roperties (ensile

Strengt$ 6,000 PSI

Yield Strengt$ 1,000 PSI

?longation -C

Im!act Strengt$, t:"s 10 t:"s F &-0

 Average 9rinell ardness 50

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Williams 9.S2-7

Specification' AWS A,.79

Class E19.S2-7

%roduct a&ailable in spools8 coils8 

dr ums8 r eels8 and cut lengths in si5es .

7, to .,:

Williams 0S)&- is a lo* alloy *ire *it$ Manganese and Moly"denum as t$e !rinci!al alloying elements. ($is *ire !roduces

*eld de!osits e4$i"iting good strengt$ and lo* tem!erature !ro!erties, and can "e used *$enever $ig$er strengt$ and lo*

tem!erature toug$ness are necessary. ($e $ig$er Manganese, Silicon com"ination also !rovides a smoot$, uniform *eld

"ead. MI> *elding can "e conducted *it$ ;O-, Ar gon;O-, or Argon&0-G (I> *elding *it$ 00C  Ar gon.

4ypical Chemical Analysis

; 0.0

Mn ./0

Si 0.35

P 0.05

S 0.0-

Mo 0.50

4ypical Mechanical %r oper ties

(ensile Strengt$ /,000

PSI Yield Strengt$ 0,000 PSI

?longation -0C

Im!act Strengt$, t:"s 11 t:"s F -0

Carbon # /ow Alloy Steel

+or Submerged Arc Welding AWS*S+A A,.

-6 and A,.

7=  4ypical Analysis

01A2E   C Mn Si   Cr  Mo ;i % S   Cu "ther 

?M1H .0/ ./5 .50 .00/ .06 .-

?M6 . -.00 .0- .01 .05 .-1

? A .0 ./0 .0- .5 .05 .06 .

? A- .0/ .0 .01 .53 .0 .05 .-0

? A1 .- ./5 .0- .53 .03 .05 ./

?9- .- .0 .5 .0 .50 .06 .03 .

?91 . .- .-0 -.55 ./5 .00 .00 ./

?93 .0 .50 .10 5.5 .30 .00/ .00 .

?9 .0 .55 .15 /.60 .05 .00 .00 .5

?9/ .0 .0 .3 /.-0 .00 .30 .00 .00/ ./, 8".05, 8.03

?8i .0 .00 .-0 .0 .0- .0 .0- .06 .

?8i- . ./5 . .0 -.5 .01 .05 .3

?8i1 . .00 .-0 .0 1.50 .0 .06 .

?M- .0 .50 .60 .0 .50 .0 .00 .00 .1 .01, Al.0, (i .03, Er .03

?M1 .0 .55 .15 .-0 .6 -.10 .005 .00 .- .0-, Al.03, (i.05 Er .0

?M6 .0 .50 .10 .-0 .50 -.55 .005 .003 .- .0, Al.03, (i.05, Er .03

?W .0 .50 .10 .30 .35 .0/ .0 .65

610 .10 .55 .-5 ./0 .-0 .03 .06 ./

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Stainless Steel $are Wire

AWS*S+A A,.>  4ypical Analysis

01A2E   C Mn Si   Cr ;i Mo   Cb   Cu "4E1

?=10 .0 3.5 .5 ./ . B B B B

?= 10 .03 .5 .50 -0.0 0.0 B B B B

?= 10J10: .05 .5 .50 -0.0 0.0 B B B B

?= 10:Si .05 .5 .0 -0.0 0.0 B B B B

?= 10/ .03 .0 .55 -1.5 1.5 B B B B

?= 10/: .05 .0 .55 -1.5 1.5 B B B B

?= 10/:Mo .05 -.00 .50 -6.0 1.0 -.5 B B B

?= 10/:Si .05 .0 .5 -6.0 1.5 B B B B

?= 10 .- ./0 .65 -3.5 -.0 B B B B

?= 1- .1 .0 .50 -/.50 /.0 B B B B

?= 13J13 .03 .5 .50 /.0 1.0 -.6 B B B

?= 13: .05 .5 .50 /.0 1.0 -.6 B B B

?= 13:Mn .0/ 3. .5- -0.5 5.35 -.3 B B 8.

?= 13:Si .05 .5 .0 /.0 1.0 -.6 B B B

?= 1: .0- .0 .30 /.0 1.5 1.3 B B B

?= 1-0:= .01 .0 .05 /.5 16.0 -.5 .-5 1.5 B

?= 110 .-6 ./0 .60 3.0 15.0 B B B B

?= 16 .05 .5 .55 /.5 0.0 B . B B

?= 15 . ./5 .1 -0.0 -5.0 6.- B . B

?= 60/8" .05 .30 .65 .5 .-0 B .50 B B

?= 608iMo .01 .50 .60 -.0 6.-5 .50 B B B

?= 60 . .50 .50 -.5 B B B B B

?= 610 .03 .65 .1/ 3.10 B B B B B

?= 61/ .0-5 .35 .30 .0 .5 .05 B B (i .30

?= 310 .01 .50 .65 3.5 6.5 B .-1 1.30 B

?= --0/ .05 .5 .65 --.5 .5 1.- B B 8./

Many of t$ese grades are also availa"le in stri! and !o*der form for overlay and cladding a!!lications.

?uality %olicy

It is our !olicy to ad$ere to t$e reDuirements

of t$e ISO /002-000 Kuality Standard. 9y

com!lying *it$ t$ese reDuirements *e ensure

continuous im!rove ment, em!$asi#e defect !revention

and reduce variation. WeLre committed to ma+ing sure

you receive t$e level of Duality and service you deserve.

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W1C

+err ite;umber 

A

A+

+A

   ;   i   e   !

  @

   ;   i   A

   =   ,   C 

   A

   7   .   ;    A

   .     .

   7   ,        C   u

W1C->>7 2iagram for Stainless Steel Weld Metal

3

6

-

0

-0 -- -6 -3 - 10Cre! @ Cr A Mo  ..6;b

;ickel # ;ickel Alloy $are Wire

AWS*S+A ,.6 . ,.-B - 4ypical Analysis

01A2E   C Mn Si   Cr ;i Mo   Cb@ A   Cu "4E1

?=;u8i

M 3.0 .5 . B 1.5 B B 3.0 (i. .15

?=8i;u

M 30.06 1.5 .5 B 35.0 B B -.5 (i. -.10, e .60, Al .5

?=8iM 3

.05 .10 .65 B /5.0 B B B (i. -., Al .0, e .0

?=8i;r1

M -.0- -.5 .60 /.5 6.0 B -.5 B B

?=8i;rMo&1

M 3-5.0- .5 .0 --.5 3-.0 /.0 1.50 B  Al ., (i.-0, e .5

?=8i;rMo&6

M ;-3.0 .55 .05 5.5 5/.0 5.5 B B W 1.3, e 5.5

?=8i;r e5

M 3-.0-5 .50 .-0 3.5 1.0 B -.- B e .0

?=8i;r ;oMo

M 3.03 .03 .5 --.0 51.0 /.5 B B ;o -.5, Al ./0, (i .-5, e .0

?=8i;r Mo0M 3--

.0 .-0 .06 -.5 3.0 1.5 B B W 1.-

?=8ie;r-

M

;o AWS Class'

M 55

.03

.03

.-0

.-6

.-5

.-

-0.0

B

5-.5

55.

1.0

B

5.0

B

B

B

e 66.-

B

?=8i;l

M//.05 .-1 .03 B //.5 B B

 Al .0, (i .0, ;u -.0

?=8ie;r

M35.0 .60 .- -.0 61.0 1.0 B B

@A Plus (A. Ot$er 8ic+el grades also availa"le.

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+iller Metal

Selection Char t

01A2E  APP:I; A(IO8S

?8i& @M 6

?=8i @M 3

8i -00 and -0 dissimilar com"inations of nic+el alloys and steels.

;ladding of steels.?8i;u& @M /0

?=8i;u @M 30 Alloys 600, =605 and H500, ;u and ;u nic+el alloys. ;ladding of steels.

?;u8i @M 3

?=;u8i @M  Alloy 650 and ;u nic+el alloys 0J10 0J-0 /0J0.

?8i;re&1 @M -

?=8i;r1 @M -

 Alloys 300 and 30, 00, 00( and 110.

)issimilar com"inations of steels and nic+el alloys.

?8i;rMo&1 @M -

?=8i;r Mo1 @M 3-5

 Alloys 3-5, 30, 33, 3--, ;&-3 and ot$er !it&resistant alloys.

)issimilar com"inations of steels and nic+el&"ase alloys. ;ladding of steels.

?8i;r;oMo& @M 

?=8i;r;oMo& @M 3 Alloys 3, 00(, dissimilar com"inations of $ig$ tem!erature alloys.

?8i;rMo&6 @M ;-3

?=8i;r Mo6 @M ;-3

 Alloy -3 and ot$er !it&resistant alloys. ;ladding of steels.

)issimilar com"inations of steels and nic+el&"ase alloys.

?8i;re&- @W?:)  A  Alloys 00 and 00(, 300 and 30. oining dissimilar com"inations of car "on, stainless,

and nic+el&"ase alloys.

?=8i;re&5 @M 3-  Alloy 300.

($ese recommendations are general and are useful only as a guide to t$e !ro!er selection of a filler metal. ;ar e s$ould al*ays "e ta+en to

meet t$e engineered reDuirements of t$e fa"ricated item *$en c$oosing t$e filler metal and *elding !r ocess.

;ickel # ;ickel Alloy Electr odes

AWS*S+A ,.:8 ,.8 ,.,4ypical Analysis "ther ;ickel grades also a&ailable.

01A2E   C Mn Si   Cr ;i +e 4i Mo "4E1

8i 55

?8ie; .0.5 0.- 0./5 B 51.0 66.0 B B ;u .0

8i //

?8i; .00 0.-5 .0 B /6.0 1.5 B B ;u .0

 Alloy

?8i;r Mo .03 .65 .15 -.35 56.0 .5 . . ;o .5, A: .35

 Alloy -

?8i;r Mo10.06 0.11 0.1 -.5 30.0 1.0 B /.50 ;"N(a 1.60

 Alloy 6

?8i 0.06 0.6- 0.65 B /. 0.10 .0 B B

 Alloy -

?8i;r e10.01 3.5 0.50 5.00 3/.0 3.5 B B ;"N(a .5

 Alloy

?;u8i B .0 0.15 B 10.5 0.30 0.-0 BP9.00-

;u 9alance

 Alloy /0

?8i;u 0.01 1.0 0./5 B 3.0 0./0 B B ;u -.0

 Alloy -3

?8i;r Mo6 0.0- 0.50 0.5 5.60 5/.0 5.5 B 3.-5 W 1.-5

M --

?8i;r Mo00.0 0.60 0.5 -.50 33.1 1.0 B 1.-5 W 1.0

W?:) A

?8i;r e-0.01 .0 0.16 5.50 .-5 .50 B .65 ;"N(a .-5

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4ungsten # 4ungsten Alloy 04AW Electr odes

AWS*S+A A,.-7

+or 4ig Welding

01A2E 4ungsten C 4h.7 Additi&e 4)% Color 

?WP //.5 B >r een

?W(- /.1 . -.- =ed

Solid Surfacing Welding 1ods # Electr odes

AWS*S+A A,.-=

4ypical Analysis

01A2E ;i   Cr  Si +e   C Mn W Mo   Co ar dness-1C

@;o;r;

 Alloy 

-.011

B-.0

-.5. 1

B9al

55

@;o;r A

 Alloy 3

-.5 -/ B -.0 .- . 5 B 9al 60

@;o;r9

 Allo  -

-.0 - B -.5 . . / B 9al 6

 Alloy - -.0 - B -.5 .-5 . B 5.5 9al 1-

 Availa"le in coated electrodes, !o*der, and cored *ires. Ot$er grades and surfacing !roducts are also availa"le.

Stainless Steel Coated Electrodes AWS*S+A A,.B  4ypical Analysis

01A2E   C Cr ;i Mo Cb A 4a Mn Si % S   Cu

10 .035 -0.0 /.5 B B .0 .50 .0-1 .0 B

10: .01 /./0 0.0 B B .5 .5- .0- .0/ B

10/ .0 -1.5 -.6 B B .0 .55 .0-0 .0-0 B

10/;" .0/ -6.0 1.0 B . .50 .56 .0-0 ./ B

10/: .01 -1.5 1.0 B B .35 .55 .0-0 .0 B

10/Mo .0 -1. 1.- -.5 B .65 .6/ ./ . B

10 .- -.0 -.60 B B ./5 .6 .0- .0-0 B

1- .- -/.1 /.5 B B .0 .53 .0-0 .0-0 B

13 .03 .5 -./ -.6 B .0 .55 .0-0 .0-0 B

13: .01 .0 -.0 -.15 B .0 .50 .0-- .0/ B1: .01 .5 1.0 1.6 B .35 .55 .0-0 .0-0 B

1-0:r  .0- -0. 16.0 -.6 .-/ -.5 .- .0 .00/ B

110 ./ 5. 16./ B B .5 .5- .0 .0-0 B

16 .06 -0.0 0.0 B .5 .0 .56 .0-0 .0-0 B

60 .0 -.5 B B B .5 .35 .0- .0-0 B

608iMo .0-5 -.0 6.60 .55 B .55 .6 .0 .0/ B

310 .01 3.5 6. B -. .50 .65 .0-0 .0- B

Ot$er grades availa"le u!on r eDuest.

?lectrodes can "e !rovided in &5, &3 and & usa"ility designations.

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Electrodes Classif ication

?lectrode @a E- DDD4 D-D ?4ternal S$ielding @c

 Alloy ;om!ositionof Weld )e!osit @"

02 lat & ori#ontal(u"ular or lu4 ;ored 2 All Position

;"4ES'

@a =Q indicates Welding =od

@" Additional Alloy ;om!osition

: :o* ;ar"on @0.00.06 ig$ ;ar "on @0.06&0.0

Mo Moly"edenum

;" ;olum"ium@8io"ium

8i 8ic+el

(i (itanium

H :o* (em!er atur e (oug$ness

@for self&s$ielded electr odes only

@c ?4ter nal S$ielding ;O-

1 8one @SelfS$ielded

6 5&0C ArJ9al ;O-

5 00C Ar @=ods Only

R- )iscontinued

+lux Cored Stainless Electr odes

AWS*S+AA

,.

77  4ypicalA

nalysis

01A2E   C Cr ;i Mo Cb A 4a Mn Si % S   Cu

?10(<< .03 -0.-0 /./5 .0/ B .-5 .51 .0-0 .00- .06

?10:(<< .0-5 -0.0 0.0 .0/ B .10 .50 .0-0 .00- .01

?10/(<< .03 -6.5 1.0 B B .-- .5 .0-0 .005 B

?10/:(<< .0-6 -1.0 -.5 .06 B .10 .55 .0-0 .00- .0

?13(<< .05 /.0 -.5 -.3- B .0/ .3 .0-0 .00 B

?13:(<< .0- /.0 -.-0 -.55 B .0 .30 .0-5 .001 .1

?16(<< .06 -0.-5 0.0 .06 .55 .10 .55 .0-5 .001 .0/

?60(<< .0/ -.5 B B B .50 .65 .0-0 .003 B

;ontrolled errites u!on r eDuest.

lu4 cored (ig rods also availa"le for root !ass *elding on !i!e.

($ese !roducts are also availa"le using seamless tu"ing to !revent moisture !ic+u! under $umid conditions.

Ot$er grades availa"le u!on r eDuest.

;ontrolled c$emistries in stainless steel filler metals are designed to ma4imi#e corrosion resistance, and

maintain desira"le ferrite levels for added crac+ resistance. In addition, strict attention is given to *ire finis$, tensile,

cast and

$eli4, to facilitate demanding ro"otic a!!lications.

4itanium 4ig 1od # Specialty Coated 4ig # Mig Wire

AWS *A,.-:  4ypical Analysis

01A2E   C " ; +e   Al < %d 1u ;i

?=(i .01 .01 .0 .0- .005 .0

?=(i- .01 .0 .3 .05 .00 .-

?=(i1

?=(i5

?=(i-1

.01

.05

.01

.1 .-0

.- .-0

.01 .

.0-

.010

.0-

.00

.05

.005

.3

.--

.-0

5.5 3.

5.5 3.5

1.5 6.5

1.5 6.5

 

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+lux Core*Metal Cor e

Carbon # /ow Alloy Steel

Electrodes +or Arc Welding

?<(&;JM ?0;1;JM

?<(&/;JM ?0;3;JM

?<(&-;JM ?0;9-

?<(&9- ?0;8i

?<(&9-: ?0;8i-

?/<(&91 ?0;)-

?/<(&91: ?/0;91

?<(&8i ?/0;9/

?/<(8i-

Ot$er grades availa"le u!on r eDuest.

$ra5ing # $ra5e Welding +iller Metals  Available in w i r e, st r i  p,  pow d er , cast or pr ef or ms.

AWS*S+A A,.9 Also brazing and soldering fluxes and l ead - f r ee sol d er .

01A2E   Ag   Cu 3n   Cd % Sn ;i other  Solids */i!uids

9Ag-6 50 -0 - B B B - .5 ma4 --0J105

9Ag 53 -- B B 5 B .5 ma4 65J-05

9Ag1 50 3 3 3 B B 1 .5 ma4 0J-0

9Ag 65 5 3 -6 B B B .5 ma4 -5J65

9;uP5 5 0 B B 5 B B .5 ma4 /0J65

C )ACS' Applications'

9Ag&-6 T 5 9Ag&-62 100 series stainless, nic+el & steel

9Ag& T .1 9Ag&2 food $andling eDui!ment & steel

9Ag&1 T 9Ag&12 non&food service 100 series stainless steel, "ron#e & tungsten car"ide inserts

9Ag& T -.3 9Ag&2 tig$t %oints, nic+el, steel & co!!er "ase

9;uP&5 T /./ 9;uP&52 co!!er *Jo flu4 & "rass *it$ flu4

Carbon # /ow Alloy Steel

Co&ered Electrodes +or Arc Welding

?300 ?0;-

?30 ?0;1

?301 ?0M

?06 ?-0M

?0 ?0593

?0& ?093

?0&A ?093:

?0-6 ?059

?0&9-: ?09

?0&9- ?09:

?0&91: ?/059/

?/0&91 ?/09/

?0;

0 & 50 ermetically Sealed Pac+ages

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Con&erting 4o Metr ic

Wire Si5e

)nch mm

%r oper ty 4o Con&ert +r om Multiply $y 4o 0et

0.010 0.

0.015 0./

0.060 .0

0.065 .-

J3 .3

5J36 -.0

1J1- -.6

J 1.-5

5J1- 6.0

1J3 5.0

J6 3.0

:inear Measur ement

inc$esmm

-5.60.01/

mminc$es

(ensileStr engt$

!si

MPa or 8Jmm-

0.00

65.01

MPa or 8Jmm-

!si

Im!act

(oug$ness

ftl"s

.155

0.15

ftl"s

eat In!ut Jin

Jcm

0.1/1

-.56

Jcm

Jin

(em!er atur e &1-.

. T  ;

; 4 . N 1- T 

S( A I 8 : ? S S S( ? ? : M? ( A : : ' = > I ;  A :

>= O ' P S

Austenitic

($e Austenitic grou! contains c$romium and nic+el as t$e !rimary alloying elements and are t$e most *idely used.

($ey can "e $ardened "y cold *or+ing "ut not "y $eat treatment. All are essentially non&magnetic. ($e most common

ty!es of Austenitic stainless are t$e '8S S-0000 and S10000 alloys. ($ey are generally considered t$e most *elda"le

of t$e stainless steels.

Austenitic +iller Metal Selection

A)S) Steel 1ecommended +iller Metal Alternate +iller Metal

-0, -0-, -05 -60 10, 16, 10/

10, 10-, 10-9 10 16, 10/

106, 106: 10: 16, 10/

106 10 16, 10/

101, 101S? 1- 10/MO

10/, 10/S 10/ 10/;", 10

10, 10S, 16 10 10;", 10Mo

13, 13: 13, 13: 10/Mo, 1

13 13 10/Mo, 1

1 1 1:, 10/Mo, 1

1- 16 10/;", 10;", 1-

16, 16, 16 16 10/;", 10;"

1-0 1-0:= 1-0

110 110 B

/06: 15 B

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+err itic($e erritic grou! are straig$t grade c$rome grades and come under t$e ty!e 600 series. ($ey cannot "e $ar dened

"y $eat treating and only moderately "y cold *or+ing. Precautions are reDuired in t$e *elding !rocess to minimi#e

em"rittlement and cr ac+ing.

+erritic +iller Metal Selection

A)S) Steel 1ecommended +iller Metal Alternate +iller Metal

605 60 10:, 10/, 608M

60/ 60/;" 610, 10/:Si

610 610 10:, 10/:

66- 10: 10/:

663 10: 10/:

Mar tensitic($e Martensitic grou! is also classified under t$e 600 series. ($e !rinci!al alloying element is c$rome, *it$ car "on

added to !roduce $ig$ levels of strengt$ and $ardness after $eat treatment. 9ot$ Martensitic and erritic  ty!es ar e

magnetic. Similar !recaution, including !re$eat, is necessary in t$e *elding !r ocess.

Martensitic +iller Metal Selection

A)S) Steel 1ecommended +iller Metal Alternate +iller Metal

601 60 10, 16, 10/

60, 60S 60 10, 16, 10/

66 60 608M, 10/

6-0 6-0 10/

61 60 10/, 10

660A 1- 10/

%recipitation ardening # 2uplex

($ese uniDue grades *ere designed for s!ecific a!!lications. ;are s$ould "e e4ercised in t$e *elding !rocess to select

t$e !ro!er filler metal and *elding !r ocedur es.

%recipitation ardening +iller Metal Selection

A)S) Steel 1ecommended +iller Metal Alternate +iller Metal

&6 P 310 10, 10/

5&5 P 310

1& Mo 1& Mo

& P & P

2uplex +iller Metal Selection

A)S) Steel 1ecommended +iller Metal Alternate +iller Metal

--05 --0/

err alium -55 -551J-5/6

;d&6M;u -551

($ese recommendations are general and are useful only as a guide to t$e !ro!er selection of a filler metal. ;ar e s$ould al*ays "e ta+en

to meet t$e engineered reDuirements of t$e fa"ricated item *$en c$oosing t$e filler metal and *elding !r ocess.