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5000 series

Alloy 5005

Alternative Designations: AS 5005; BS 5005; DIN AlMg1; EN AW - 5005; JIS A5005P; NF A 5005.
Note: Garmco products are routinely produced to AA specifications, but other National Standards may be met on request.

Chemical Composition: Elements
5005 Si Fe Cu Mn Mg Cr Zn   Each Al
 (% max)

0.3

0.7

0.2

0.2

0.5 – 1.1

0.1

0.25

 

0.05

Remainder

Characteristics:

Corrosion Resistance

Excellent

Anodising

Very Good

Formability

Very Good

Machinability

Fair

Weldability

Very Good

Brazeability

Good

Typical Uses: General sheet metal work; domestic appliances; commercial signs; vehicle number plates; architectural panels and flashings.
Note: Special grades are available for anodising; general purpose grades should not be used for this application. 5005 is suitable for commercial anodising but not for bright anodising.

Availability:

Cut-To-Length Sheet

Temper

H12

H14

H16

H18

O

H32

H34

H36

H38

Thickness

0.5 -3.2

0.5 - 3.2

0.5 - 3.2

0.5 - 2.8

1.2 - 3.2

0.5 - 3.2

0.5 - 3.2

0.5 - 3.2

0.5 -2.4

Min. Width

750

750

750

750

900

750

750

750

750

Max. Width

1560

1560

1560

1560

1560

1560

1560

1560

1560

Min. Length

800

800

800

800

1000

800

800

800

800

Max. Length 6100

6100

6100

6100

6100

6100

6100

6100

6100

Coiled Sheet

Temper

H12

H14

H16

H18

O

H32

H34

H36

H38

Thickness

0.4 -3.2

0.3 - 3.2

0.3 - 3.2

0.3 - 2.8

0.3 - 3.2

0.4- 3.2

0.3 - 3.2

0.3 - 3.2

0.3 -2.4

Min. Width

750

750

750

750

750

750

750

750

750

Max. Width

1560

1560

1560

1560

1560

1560

1560

1560

1560

Slit Coils Minimum Widths, mm

Thickness (mm)

Temper

Over

Up To

H1X/H2X/H3X/FX/GX

O/W11/H111

0.29

0.39

200

Not Avail.

0.39

0.46

200

450

0.46

0.50

200

300

0.50

0.60

200

200

0.60

0.70

200

200

0.70

0.80

200

200

0.80

1.25

200

200

1.25

1.80

200

200

1.80

2.50

200

200


Mechanical Properties (To Aluminum Association Standards):

Temper

Gauge Range, mm

Ultimate Tensile Strength MPa

Yield Strength MPa

Elongation in
50 mm, %

Ult Shear Strength, MPa

  Over

Up to

Minimum

Typical

Maximum

Minimum

Typical

Minimum

Typical @ 1.6mm

Typical

O

0.30 0.32 105 125 145 35 40 12   75
  0.32 0.63 105 125 145 35 40 16   75
  0.63 1.20

105

125

145

35

40

19

  75

  1.20

3.20

105

125

145

35

40

21

25

75

H12

0.40

0.63

125

140

165

95

130

2

  95

  0.63

1.20

125

140

165

95

130

4

  95

  1.20

3.20

125

140

165

95

130

6

10

95

H14

0.30

0.32

145

160

185

115

150

1

  95

  0.32

0.63

145

160

185

115

150

1

  95

  0.63

1.20

145

160

185

115

150

2

  95

  1.20

3.20

145

160

185

115

150

3

6

95

H16

0.30

0.32

165

180

205

135

170

1

  105

  0.32

0.63

165

180

205

135

170

1

  105

  0.63

1.20

165

180

205

135

170

2

  105

  1.20

3.20

165

180

205

135

170

3

5

105

H18

0.30

0.32

185

200

    195

1

  110

  0.32

0.63

185

200

    195

1

  110

  0.63

1.20

185

200

    195

2

  110

  1.20

3.20

185

200

    195

3

4

110

H32

0.40

0.63

120

140

160

85

115

3

  95

  0.63

1.20

120

140

160

85

115

4

  95

  1.20

3.20

120

140

160

85

115

7

11

95

H34

0.30

0.32

140

160

180

105

140

2

  95

  0.32

0.63

140

160

180

105

140

3

  95

  0.63

1.20

140

160

180

105

140

4

  95

  1.20

3.20

140

160

180

105

140

5

8

95

H36

0.30

0.32

160

180

200

125

165

1

  105

  0.32

0.63

160

180

200

125

165

2

  105

  0.63

1.20

160

180

200

125

165

3

  105

  1.20

3.20

160

180

200

125

165

4

6

105

H38

0.30

0.32

180

200

    185

1

  110

  0.32

0.63

180

200

    185

2

  110

  0.63

1.20

180

200

    185

3

  110

  1.20

3.20

180

200

    185

4

5

110

 

Note: H2-temper designations indicate that a different process has been used to achieve mechanical characteristics similar to those of the corresponding H1-tempers. However, property limits of H2-tempers differ from the above in that the Maximum Tensile Strength and Minimum Yield Strength provisions do not apply. Where required, material supplied in H2-tempers can be produced to meet the mechanical property limits of the equivalent H1-tempers. An H3-temper designation indicates that the metal is given a stabilising anneal. This is available when required, but is not normally necessary.
Modulus of Elasticity: 69,000 MPa
Bend Radii: Minimum recommended internal bend radii for 90º cold bends at right angle to the rolling direction.

Thickness

Temper

0.4mm

0.8mm

1.6mm

3.0mm

O

0 t

0 t

0 t

0 t

H12

0 t

0 t

0 t

0.5 t

H14

0 t

0 t

0 t

1 t

H16

0.5 t

1 t

1 t

1.5 t

H18

1 t

1.5 t

2 t

2.5 t

H32

0 t

0 t

0 t

0.5 t

H34

0 t

0 t

0 t

1 t

H36

0.5 t

1 t

1 t

1.5 t

H38

1 t

1.5 t

2 t

2.5 t

t = Thickness
Welding: 5005 is readily welded by the TIG and MIG processes. The commonly used filler alloys are 4043 and 5654. Welding 5005 in the H12, H14, H16, H18, H32, H34, H36 or H38 will reduce the tensile and yield strengths in the heat affected zone to those of the annealed condition.
5005 may also be gas welded or resistance welded, but the resulting joints are not as strong or as corrosion resistant as the inert gas welded joints. Moreover, gas welding could result in excessive heat distortion and, in thinner gauges, may burn through. It is essential that all traces of flux used in welding or brazing are removed by scrubbing with hot water upon completion.
Annealing: 345ºC ± 5ºC, until all parts have reached the annealing temperature.
Weight Calculation: Weight per square meter in kilograms: 2.70 x thickness in mm.

Alloy 5049
Alternative Designations: DIN AlMg2Mn0.8; EN AW-5049; NF A Al-Mg2Mn.
Note: 5049 is produced normally to DIN 1725 / 1745, EN 485-2, and NF A 50-451 specifications, but other National Standards may be met on request...

Chemical Composition:

Elements

5049

Si

Fe

Cu

Mn

Mg

Cr

Zn

Ti

Each

Al

 (% max)

0.40

0.50

0.10

0.50 – 1.1

1.6 2.5

0.30

0.2

0.10

0.05

Remainder

Characteristics:

Corrosion Resistance

Excellent

Anodising

Good

Formability

Good

Machinability

Fair

Weldability

Very Good

Typical Uses: General sheet metal work; small marine craft; seam welded irrigation pipes; road signs; miscellaneous road, transport, industrial and chemical storage applications.
Availability:

Cut-To-Length

Temper

W19, O, H111

F22, G22, H12

H22, H32

H14, F24

G24, H34, H38

F27, H16

G27, H36

H18, F29

Thickness

1.2 - 3.2

0.50 - 3.1

0.50 - 3.1

0.50 - 2.9

0.50 - 2.7

0.50 - 2.3

0.50 - 2.1

0.50 - 2.8

Min. Width

900

750

750

750

750

750

750

750

Max. Width

1535

1535

1535

1535

1535

1535

1535

1535

Min. Length

1000

800

800

800

800

800

800

800

Max. Length

6100

6100

6100

6100

6100

6100

6100

6100

Coiled Sheet

Temper

W19, O, H111

F22, G22, H12

H22, H32

H14, F24

G24, H34, H38

F27, H16

G27, H36

H18, F29

Thickness

0.30 - 3.2

0.30 - 3.1

0.30 - 3.1

0.30 - 2.9

0.30 - 2.7

0.30 - 2.3

0.30 - 2.1

0.30 - 2.8

Min. Width

750

750

750

750

750

750

750

750

Max. Width

1535

1535

1535

1535

1535

1535

1535

1535

Slit Coils Minimum Widths, mm

Thickness (mm)

Temper

Over

Up To

H1X/H2X/H3X/FX/GX

O/W11/H111

0.29

0.39

200

Not Avail.

0.39

0.46

200

450

0.46

0.50

200

300

0.50

0.60

200

200

0.60

0.70

200

200

0.70

0.80

200

200

0.80

1.25

200

200

1.25

1.80

200

200

1.80

2.50

200

200


Mechanical Properties:
Standard: DIN 1745

  Tensile Strength, Rm

0.2% Proof Stress.

Minimum Elongation %

Temper

N/mm

Rp 0.2 N/mm Min.

A5

A10

W19

190 - 230

80

20

17

F22

220 - 260

165

9

7

G22

220 - 260

130

14

12

F24

240 - 280

190

5

4

G24

240 - 280

160

10

8

F27

265 - 305

215

4

3

G27

265 - 305

190

7

6

F29

290 Min.

250

3

2

Standard: NF A 50-451

Temper

Tensile Strength, Rm MPa

Yield Strength, Rp 0.2 MPa Min.

Minimum Elongation, A%

O, H111

190 - 230

80

20

H12

220 - 260

165

9

H22, H32

220 - 260

130

14

H14

240 - 280

190

5

H24, H34

240 - 280

160

10

H16

265 - 305

215

4

H26

265 - 305

190

7

H18

290 Min.

250

3

H38

290 Min.

220

6

Standard: EN 485-2

  Thickness, mm

Tensile Strength

Yield Strength

Elongation

Temper

Over

Up to

Rm, MPa

Rp 0.2, MPa Min.

% Min. in 50 mm

O / H111

0.30

0.50

190 - 240

80

12

  0.50

1.50

    14

  1.50

3.00

    16

H12

0.30

0.50

220 - 270

170

4

  0.50

1.50

    5

  1.50

3.00

    6

H14

0.30

0.50

240 - 280

190

3

  0.50

1.50

    3

  1.50

3.00

    4

H16

0.30

0.50

265 - 305

220

2

  0.50

1.50

    3

  1.50

3.00

    3

H18

0.30

0.50

290 Min.

250

1

  0.50

1.50

    2

  1.50

3.00

    2

H22 / H32

0.30

0.50

220 - 270

130

7

  0.50

1.50

    8

  1.50

3.00

    10

H24 / H34

0.30

0.50

240 - 280

160

6

  0.50

1.50

    6

  1.50

3.00

    7

H26 / H36

0.30

0.50

265 - 305

190

4

  0.50

1.50

    4

  1.50

3.00

    5

H28 / H38

0.30

0.50

290 Min.

230

3

  0.50

1.50

    3

  1.50

3.00

    4

Modulus of Elasticity: 70,000 MPa
Bend Radii: Minimum recommended internal bend radii for 180 bends at right angle to the rolling direction.

Temper

Thickness

Bend Radius*

O, H111, W19

0.35 - 1.60

1.5 t

  1.61 - 3.00

1 t

H12, F22

0.35 - 1.60

2 t

  1.61 - 3.2

2.5 t

H22, H32, G22

0.35 - 1.60

1.5 t

  1.61 - 3.00

2 t

H14, F24

0.35 - 1.60

3 t

  1.61 - 3.00

3.5 t

H24, H34, G24

0.35 - 1.60

2.5 t

  1.61 - 3.00

3 t

H16, F27

0.35 - 1.60

4 t

  1.61 - 3.00

4.5 t

H26, G27

0.35 - 1.60

3.5 t

  1.61 - 3.00

4 t

Note: Bend radii are expressed as multiples of thickness.
Welding: 5049 is readily welded by the TIG and MIG processes. Welding of harder tempers will reduce the tensile and yield strengths in the heat-affected zone to those of the annealed condition.
Annealing: 350C 5C until all parts have reached the annealing temperature.
Weight Calculation: Weight per square meter in kilograms: 2.70 x thickness in mm.

Alloy 5052
Alternative Designations: AS 5052; DIN AlMg2.5; EN AW - 5052; JIS A5052P; NF A 5052.
Note: Garmco products are routinely produced to AA specifications, but other National Standards may be met on request.

Chemical Composition:

Elements

5052

Si

Fe

Cu

Mn

Mg

Cr

Zn

Each 

Total

Al

 (% max)

0.25

0.40

0.10

0.10

2.2 – 2.8

0.15 – 0.35

0.10

 0.05

0.15

Remainder

Characteristics:

Corrosion Resistance

Excellent

Anodising

Good

Formability

Very Good (in soft temper)

Machinability

Fair

Weldability

Excellent

Brazeability

Good

Cut-To-Length Sheet
Temper

H32

H34

H36

H38

O

Thickness

0.5 - 3.2

0.5 - 2.5

0.5 - 3.2

0.5 - 2.4

1.2 - 3.2

Min. Width

750

750

750

750

900

Max. Width

1535

1535

1535

1535

1535

Min. Length

800

800

800

800

1000

Max. Length

6100

6100

6100

6100

6100

Coiled Sheet
Temper

H32

H34

H36

H38

O

Thickness

0.4 - 3.2

0.3 - 2.5

0.3 - 3.2

0.3 - 2.4

0.3 - 3.2

Min. Width

750

750

750

750

750

Max. Width 1535 1535 1535 1535 1535
Slit Coils Minimum Widths, mm

Thickness (mm)

Temper
Over

Up To

H2X/H3X/FX/GX

O/W17/H111

0.29

0.39

200

Not Avail.

0.39

0.46

200

450

0.46

0.50

200

300

0.50

0.60

200

200

0.60

0.70

200

200

0.70

0.80

200

200

0.80

1.25

200

200

1.25

1.80

200

200

1.80

2.50

200

200

Mechanical Properties (To Aluminum Association Standards):

Temper

Gauge Range, mm

Ultimate Tensile Strength MPa

Yield Strength MPa

Elongation in
50 mm, %

Ult Shear Strength, MPa

  Over

Up to

Minimum

Typical

Maximum

Minimum

Typical

Minimum

Typical @ 1.6mm

Typical

O

0.30

0.32

170

195

215

65

90

13

  125

  0.32

0.63

170

195

215

65

90

15

  125

  0.63

1.20

170

195

215

65

90

17

  125

  1.20

3.20

170

195

215

65

90

19

25

125

H32

0.40

0.63

215

230

265

160

195

4

  140

  0.63

1.20

215

230

265

160

195

5

  140

  1.20

3.20

215

230

265

160

195

7

12

140

H34

0.30

0.32

235

260

285

180

215

3

  145

  0.32

0.63

235

260

285

180

215

3

  145

  0.63

1.20

235

260

285

180

215

4

  145

  1.20

2.50

235

260

285

180

215

6

10

145

H36

0.30

0.32

255

275

305

200

240

2

  160

  0.32

0.63

255

275

305

200

240

3

  160

  0.63

1.20

255

275

305

200

240

4

  160

  1.20

3.20

255

275

305

200

240

4

8

160

H38

0.30

0.32

270

290

  220

255

2

  165

  0.32

0.63

270

290

  220

255

3

  165

  0.63

1.20

270

290

  220

255

4

  165

  1.20

3.20

270

290

  220

255

4

7

165

Note: 5052 is an alloy which spontaneously softens after rolling until it reaches a stable condition. The process is accelerated by means of a stabilising anneal, giving the material an H3-temper. For this reason, 5052 is normally supplied in the H3-temper, in which the stable condition is achieved before shipment.

Modulus of Elasticity: 69,300 MPa

Bend Radii: Minimum recommended internal bend radii for 90º cold bends at right angle to the rolling direction.

Thickness

Temper

0.4mm

0.8mm

1.6mm

3.0mm

O

0 t

0 t

0 t

0.5 t

H32

0 t

0 t

1 t

1.5 t

H34

0 t

1 t

1.5 t

2 t

H36

1 t

1 t

1.5 t

2.5 t

H38

1 t

1.5 t

2.5 t

3 t

t = Thickness
Welding: 5052 is readily welded by the TIG and MIG processes. The commonly used filler alloys are 5356 and 5654. Welding 5052 in the H32, H34, H36 or H38 will reduce the tensile and yield strengths in the heat affected zone to those of the annealed condition.

5052 may also be gas welded or resistance welded, but the resulting joints are not as strong or as corrosion resistant as the inert gas welded joints. Moreover, gas welding could result in excessive heat distortion and, in thinner gauges, may burn through. It is essential that all traces of flux used in welding or brazing are removed by scrubbing with hot water upon completion.
Annealing: 345ºC ± 5ºC, until all parts have reached the annealing temperature.
Weight Calculation: Weight per square meter in kilograms: 2.68 x thickness in mm.

Alloy 5251

Alternative Designations: AS 5251; BS 5251; DIN AlMg2Mn0.3; NF A 5251.
Note: 5251 is normally produced to BS 1470 specifications, but other National Standards may be met on request...

Chemical Composition:

Elements

5251

Si

Fe

Cu

Mn

Mg

Cr

Zn

Ti

Each

Total

Al

 (% max)

0.40

0.50

0.15

0.10 – 0.50

1.7 – 2.4

0.15

0.15

0.15

0.05

0.15

Remainder

Characteristics:

Corrosion Resistance

Excellent

Anodising

Very Good

Formability

Very Good(in soft temper)

Machinability

Fair

Weldability

Very Good

Brazeability

Poor

Typical Uses: General sheet metal work; small marine craft; seam welded irrigation tubes; road signs; containers; miscellaneous road transport, industrial and chemical storage applications.

Availability:

Cut-to-Length Sheet

Temper

H22

H24

(EN H26)

H28

O

Thickness

0.5 - 3.2

0.5 - 3.2

0.5 - 3.2

0.5 - 2.8

1.2 - 3.2

Min. Width

750

750

750

750

900

Max. Width

1535

1535

1535

1535

1535

Min. Length

800

800

800

800

1000

Max. Length

6100

6100

6100

6100

6100

Coiled Sheet

Temper

H22

H24

(EN H26)

H28

O

Thickness

0.3 - 3.2

0.3 - 3.2

0.3 - 3.2

0.3 - 2.8

0.3 - 3.2

Min. Width

750

750

750

750

900

Max. Width

1535

1535

1535

1535

1535

Slit Coils Minimum Widths, mm

Thickness (mm)

Temper

Over

Up To

H1X/H2X/FX/GX

O/W16/H111

0.29

0.39

200

Not Available

0.39

0.46

200

450

0.46

0.50

200

300

0.50

0.60

200

200

0.60

0.70

200

200

0.70

0.80

200

200

0.80

1.25

200

200

1.25

1.80

200

200

1.80

2.50

200

200

 


Mechanical Properties (To BS Standards):

      Ultimate Tensile

Yield

Elongation %

Ult Shear

Temper

Gauge Range, mm

Strength, MPa

Strength, MPa

in 50 mm

Str., MPa

  Over

Up to

Minimum

Maximum

Minimum

Minimum

Typical

O

0.50

0.80

160

200

60

18

124

  0.80

1.30

160

200

60

18

124

  1.30

2.60

160

200

60

18

124

  2.60

3.00

160

200

60

20

124

  3.00

3.20

160

200

60

20

124

H22

0.50

0.80

200

240

130

4

 
  0.80

1.30

200

240

130

5

 
  1.30

2.60

200

240

130

6

 
  2.60

3.00

200

240

130

8

 
  3.00

3.20

200

240

130

8

 
H24

0.50

0.80

225

275

175

3

138

  0.80

1.30

225

275

175

4

138

  1.30

2.60

225

275

175

5

138

  2.60

3.00

225

275

175

5

138

  3.00

3.20

225

275

175

5

138

(EN H26)

0.30

0.50

230

270

170

3

 
  0.50

1.50

230

270

170

4

 
  1.50

3.00

230

270

170

5

 
  3.00

3.20

230

270

170

7

 
H28

0.50

0.80

255

285

215

2

 
  0.80

1.30

255

285

215

3

 
  1.30

2.60

255

285

215

3

 
  2.60

3.00

255

285

215

4

 
  3.00

3.20

255

285

215

4

 

Modulus of Elasticity: 70,000 MPa
Bend Radii: Minimum recommended internal bend radii for 90 cold bends at right angle to the rolling direction.

Thickness

Temper

0.4mm

0.8mm

1.6mm

3.0mm

O

0 t

0 t

0 t

0.5 t

H22

0 t

0 t

1 t

1.5 t

H24

0 t

1 t

1.5 t

2 t

H28

1 t

1.5 t

2.5 t

3 t

t = Thickness
Welding: 5251 is readily welded by the TIG and MIG processes, using 5356 filler alloy. Welding 5251 in the H22, H24, H26 or H28 tempers will reduce the tensile and yield strengths in the heat-affected zone to those of the annealed condition.
5251 may also be gas welded or resistance welded but the resulting joints are not as strong or as corrosion resistant as the inert gas welded joints. Moreover, gas welding could result in excessive heat distortion and, in thinner gauges, may burn through. It is essential that all traces of flux used in welding or brazing are removed by scrubbing with hot water upon completion.

Annealing: 350C 5C, until all parts have reached the annealing temperature.
Weight Calculation: Weight per square meter in kilograms: 2.69 x thickness in mm.

Alloy 5754

Alternative Designations: DIN AlMg3; EN AW - 5754; NF A 5754.
Note: 5754 is normally produced to DIN 1745 specifications, but other National Standards may be met on request...

Chemical Composition:

Elements

5754

Si

Fe

Cu

Mn

Mg

Cr

Zn

Ti

Each

Total

Al

(% max) 0.40

0.40

0.10

0.5

2.6 – 3.6

0.30

0.20

0.15

0.05

0.15

Remainder

Mn + Cr 0.10 to 0.6
Characteristics:

Corrosion Resistance

Excellent

Anodising

Good

Formability

Good

Machinability

Fair

Weldability

Very Good

Brazeability

Poor

Typical Uses : Marine applications requiring a combination of strength and resistance to corrosion in sea water; road transport bodies; equipment and containers in fish processing and other food industries.
Availability:

Cut-To-Length Sheet

Temper

F22

F24

F27

F29

G22

G24

G27

W19

Thickness

0.5 - 3.2

0.5 - 3.2

0.5 - 3.0

0.5 - 3.2

0.5 -3.2

0.5 - 3.1

0.5 - 2.9

1.2 - 3.2

Min. Width

750

750

750

750

750

750

750

750

Max. Width

1535

1535

1535

1535

1535

1535

1535

1535

Min. Length

800

800

800

800

800

800

800

800

Max. Length

6100

6100

6100

6100

6100

6100

6100

6100

Coiled Sheet

Temper

F22

F24

F27

F29

G22

G24

G27

W19

Thickness

0.35 - 3.2

0.35 - 3.2

0.35 - 3.0

0.35 - 3.2

0.35 -3.2

0.35 - 3.1

0.35 - 2.9

0.35 - 3.2

Min. Width

750

750

750

750

750

750

750

750

Max. Width

1535

1535

1535

1535

1535

1535

1535

1535

Slit Coils Minimum Widths, mm

Thickness (mm)

Temper

Over

Up To

H2X H3X FX GX

O W19 H111

0.29

0.39

200

Not Avail.

0.39

0.46

200

450

0.46

0.50

200

300

0.50

0.60

200

200

0.60

0.70

200

200

0.70

0.80

200

200

0.80

1.25

200

200

1.25

1.80

200

200

1.80

2.50

200

200

 


Mechanical Properties (To DIN Standards):

  Tensile Strength, Rm
N/mm²

Yield
Strength,
Rp0.2, N/mm²

Elongation %

A5 A10
Temper

Minimum

Maximum

Minimum

Minimum

Minimum

W19

190

230

80

20

17

F22

220

260

165

9

7

F24

240

280

190

5

4

F27

265

305

215

4

3

F29

290

  250

3

2

G22

220

260

130

14

12

G24

240

280

160

10

8

G27

265

305

190

7

6

Note: 5754 is an alloy which spontaneously softens after rolling until it reaches a stable condition. Where necessary this process is accelerated by means of a stabilising anneal, whereby the stable condition is achieved before shipment The F tempers are stabilised after strain hardening; the G tempers are partially annealed.

Modulus of Elasticity: 69,000 MPa


Bend Radii: Minimum recommended internal bend radii for 90º cold bends at right angle to the rolling direction.

Thickness

Temper

0.4mm

0.8mm

1.6mm

3.0mm

W19

0.5 t

0.5 t

0.5 t

1 t

F22

2 t

2 t

2.5 t

3 t

F24

3 t

3 t

3.5 t

3.5 t

G22

1.5 t

1.5 t

1.5 t

2 t

G24

2.5 t

2.5 t

3 t

3.5 t

t = Thickness

Welding: 5754 is readily welded by the TIG and MIG processes using 5356 filler alloy. Welding 5754 in the F or G tempers will reduce the tensile and yield strengths in the heat-affected zone to those of the annealed condition.
5754 may also be gas welded or resistance welded, but the resulting joints are not as strong or as corrosion resistant as the inert gas welded joints. It is essential that all traces of welding flux are removed by scrubbing with hot water upon completion.

Annealing: 350ºC ± 5ºC, until all parts have reached the annealing temperature.
Weight Calculation: Weight per square meter in kilograms: 2.68 x thickness in mm.


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