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ASTM B 241/B241M : 2012

Superseded
Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Standard Specification for Aluminum and Aluminum-Alloy Seamless Pipe and Seamless Extruded Tube
Available format(s)

Hardcopy , PDF

Superseded date

09-30-2020

Language(s)

English

Published date

11-01-2012

1.1This specification2 covers aluminum and aluminum–alloy seamless pipe in the alloys (Note 1) and tempers shown in Table 1 [Table 2] and seamless extruded round tube in the alloys and tempers shown in Table 3 [Table 4] intended for pressure applications. The standard sizes for seamless pipe are listed in Table 16.7 of ANSI H35.2 and H35.2M. Nonstandard alloys, tempers, and sizes of pipe are produced as seamless extruded tube.

TABLE 1 Tensile Property Limits for Pipe, Inch-Pound UnitsA,B

Alloy

Temper

Pipe Size,
in.

Tensile Strength,
min, ksi

Yield Strength
(0.2 % Offset),
min, ksi

Elongation in
2 in. or 4 × 
Diameter, min, %C

3003

H18

Under 1

27.0

24.0

4

H112

1 and over

14.0

5.0

25

6005

T1

All

25.0

15.0

16

T5

All

38.0

35.0

8

6005A

T1

All

25.0

14.5

15

T5

All

38.0

31.0

7

T61

Under 0.250

38.0

35.0

8

0.250-1.000

38.0

35.0

10


6041

T6

All

45.0

40.0

10

6042

T5, T5511

All

38.0

35.0

10

6061

T6 (Extruded)

Under 1

38.0 

35.0

 8

1 and over

38.0

35.0

10D

T6 (Drawn)

Under 1

42.0

35.0

  8E

1 and over

38.0

35.0

 10F

6063

T6

All

30.0

25.0

8

6064

T6

All

42.0

38.0

10

6082

T6

All

45.0

38.0

8

6105

T1

All

25.0

15.0

16

T5

All

38.0

35.0

8

6262

T6

All

38.0

35.0

10

6351

T5

All

38.0

35.0

10D

T6

All

42.0

37.0

10G

A The basis for establishment of tensile property limits is shown in Annex A1.
B For purposes of determining conformance with this specification, each value for tensile strength and yield strength shall be rounded to the nearest 0.1 ksi, and each value for elongation shall be rounded to the nearest 0.5 %, both in accordance with the rounding-off method of Practice E29.
C Elongation of full-section and cut-out sheet-type specimens is measured in 2 in.; of round specimens, in 4 × specimen diameter.
D For wall thicknesses less than 0.250 in., the minimum elongation is 8 %.
E For wall thickness 0.050 to 0.259 in., the minimum elongation is 10 %.
F For wall thickness 0.260 to 0.500 in., the minimum elongation is 12 %.
G For wall thickness less than 0.125 in., the minimum elongation is 8 %.
TABLE 2 Tensile Property Limits for Pipe [SI Units]A ,B

Alloy

Temper
(Product)

Pipe Size, Designation

Tensile Strength,
min, MPa

Yield Strength
(0.2 % Offset),
min, MPa

Elongation,C min, %

in 50 mm

in 5 × Diameter

Equation B0241_B0241M-12_1

3003

H18

Under 1

185

165

4

...

H112

1 and over

 95

 35

25

22

6005

T1

All

170

105

16

14

T5

All

260

240

8

6005A

T1

All

170

100

15

T5

All

260

215

7

6

T61

All

260

240

8

6041

T6

All

310

275

10

9

6042

T5, T5511

All

260

240

10

9

6061

T6 (Extruded)

Under 1

260

240

 8

...

1 and over

260

240

10D

9

T6 (Drawn)

Under 1

290

240

  8E

...

1 and over

260

240

10F

9

6063

T6

All

205

170

8

7

6064

T6

All

290

260

10

9

6082

T6

All

310

260

10

8

6105

T5

All

260

240

8

7

T6

All

290

255

10

9

6262

T6

All

260

240

10

9

6351

T5

All

260

240

10D

9

T6

All

290

255

10G

9

A The basis for establishment of mechanical property limits is shown in Annex A1.
B For purposes of determining conformance with this specification, each value for ultimate strength and yield strength shall be rounded to the nearest 1 MPa, and each value for elongation shall be rounded to the nearest 0.5 %, both in accordance with the rounding-off method of Practice E29.
C Elongations in 50 mm apply for pipe tested in full-section and to sheet type specimens taken from pipes having a wall up to 12.50 mm thick. Elongations in 5D

Equation B0241_B0241M-12_2
where D and A are diameter and cross-sectional area of the specimens respectively, apply to round test specimens machined from wall thicknesses over 6.30 mm.
D For wall thicknesses up through 6.30 mm the minimum elongation is 8 %.
E For wall thicknesses over 1.25 through 6.60 mm, the minimum elongation is 10 %.
F For wall thicknesses over 6.60 through 12.50 mm, the minimum elongation is 12 %.
G For wall thicknesses up through 3.20 mm the minimum elongation is 8 %.
TABLE 3 Tensile Property Limits for Extruded Tube, Inch-Pound UnitsA,B

Temper

Specified Section or Wall Thickness, in.

Area, in.2

Tensile Strength, ksi

Yield Strength
(0.2 % Offset), ksi

Elongation in 2 in. or 4 × Diameter, min, %C

Min

Max

Min

Max

Aluminum 1060

O

all

all

8.5

14.0

2.5

. . .

25

H112

all

all

8.5

. . .

2.5

. . .

25

FD

all

all

. . .

. . .

. . .

. . .

. . .

Aluminum 1100

O

all

all

11.0

15.5

3.0

. . .

25

H112

all

all

11.0

. . .

3.0

. . .

25

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 2014

O

all

all

. . .

30.0

. . .

18.0

12

T4

Equation B0241_B0241M-12_3

T4510E

all

all

50.0

. . .

35.0

. . .

12

T4511E

T42

all

all

50.0

. . .

29.0

. . .

12

T6

Equation B0241_B0241M-12_4

Equation B0241_B0241M-12_5

up thru 0.499

all

60.0

. . .

53.0

. . .

7

T6510E

0.500–0.749

all

64.0

. . .

58.0

. . .

7

T6511E

0.750 and over

up thru 25

68.0

. . .

60.0

. . .

7

over 25 thru 32

68.0

. . .

58.0

. . .

6

T62

up thru 0.749

all

60.0

. . .

53.0

. . .

7

0.750 and over

up thru 25

60.0

. . .

53.0

. . .

7

over 25 thru 32

60.0

. . .

53.0

. . .

6

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 2024

O

all

all

. . .

35.0

. . .

19.0

12

T3

Equation B0241_B0241M-12_6

Equation B0241_B0241M-12_7

up thru 0.249

all

57.0

. . .

42.0

. . .

10

T3510E

0.250–0.749

all

60.0

. . .

44.0

. . .

10

T3511E

0.750–1.499

all

65.0

. . .

46.0

. . .

10

1.500 and over

up thru 25

70.0

. . .

48.0

. . .

10

over 25 thru 32

68.0

. . .

46.0

. . .

8

T42

up thru 0.749

all

57.0

. . .

38.0

. . .

12

0.750–1.499

all

57.0

. . .

38.0

. . .

10

1.500 and over

up thru 25

57.0

. . .

38.0

. . .

10

over 25 thru 32

57.0

. . .

38.0

. . .

8

T81

Equation B0241_B0241M-12_8

0.050–0.249

all

64.0

. . .

56.0

. . .

4

T8510E

0.250–1.499

all

66.0

. . .

58.0

. . .

5

T8511E

1.500 and over

up thru 32

66.0

. . .

58.0

. . .

5

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 2219

O

all

all

. . .

32.0

. . .

18.0

12

T31

Equation B0241_B0241M-12_9

T3510E

Equation B0241_B0241M-12_10

up thru 0.499

up thru 25

42.0

. . .

26.0

. . .

14

T3511E

0.500–2.999

up thru 25

45.0

. . .

27.0

. . .

14

T62

Up thru 0.999

up thru 25

54.0

. . .

36.0

. . .

6

1.000 and over

up thru 25

54.0

. . .

36.0

. . .

6

T81

Equation B0241_B0241M-12_11

T8510E

up thru 2.999

up thru 25

58.0

. . .

42.0

. . .

6

T8511E

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 3003

O

all

all

14.0

19.0

5.0

. . .

25

H112

all

all

14.0

. . .

5.0

. . .

25

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alclad Alloy 3003

O

all

all

13.0

18.0

4.5

. . .

25

H112

all

all

13.0

. . .

4.5

. . .

25

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 5052

O

all

all

25.0

35.0

10.0

. . .

. . .

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 5083

O

all

up thru 32

39.0

51.0

16.0

. . .

14

H111

all

up thru 32

40.0

. . .

24.0

. . .

12

H112

all

up thru 32

39.0

. . .

16.0

. . .

12

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 5086

O

all

up thru 32

35.0

46.0

14.0

. . .

14

H111

all

up thru 32

36.0

. . .

21.0

. . .

12

H112

all

up thru 32

35.0

. . .

14.0

. . .

12

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 5154

0

all

all

30.0

41.0

11.0

. . .

H112

all

all

30.0

. . .

11.0

. . .

Alloy 5454

O

all

up thru 32

31.0

41.0

12.0

. . .

14

H111

all

up thru 32

33.0

. . .

19.0

. . .

12

H112

all

up thru 32

31.0

. . .

12.0

. . .

12

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 5456

O

all

up thru 32

41.0

53.0

19.0

. . .

14

H111

all

up thru 32

42.0

. . .

26.0

. . .

12

H112

all

up thru 32

41.0

. . .

19.0

. . .

12

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 6005

T1

Up thru 0.500

all

25.0

15.0

16

T5

Up thru 0.124

all

38.0

35.0

8

0.125–1.000

all

38.0

35.0

10

Alloy 6005A

T1

Up thru 0.249

all

25.0

14.5

15

T5

Up thru 0.249

all

38.0

31.0

7

0.250–0.999

all

38.0

31.0

9

T61

Up thru 0.249

all

38.0

35.0

8

0.250–1.000

all

38.0

35.0

10

Alloy 6013

T6,
T6511

0.200-0.499

all

49.0

46.0

8

0.500-0.749

all

49.0

46.0

8

0.750-2.000

all

49.0

45.0

8

Alloy 6041

T6,
T6511

0.400–2.000

all

45.0

40.0

10

Alloy 6042

T5,
T5511

0.400–0.499

all

38.0

35.0

10

0.500–1.800

all

42.0

35.0

10

Alloy 6061

O

all

all

. . .

22.0

. . .

16.0

16

T1

up thru 0.625

all

26.0

. . .

14.0

. . .

16

T4

Equation B0241_B0241M-12_12

T4510E

all

all

26.0

. . .

16.0

. . .

16

T4511E

T42

all

all

26.0

. . .

12.0

. . .

16

T51

up thru 0.625

all

35.0

. . .

30.0

. . .

8

T6, T62

Equation B0241_B0241M-12_13

T6510E

up thru 0.249

all

38.0

. . .

35.0

. . .

8

T6511E

0.250 and over

all

38.0

. . .

35.0

. . .

10

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 6063

O

all

all

. . .

19.0

. . .

. . .

18

T1F

up thru 0.500

all

17.0

. . .

9.0

. . .

12

0.501–1.000

all

16.0

. . .

8.0

. . .

12

T4, T42

up through 0.500

all

19.0

. . .

10.0

. . .

14

0.501–1.000

all

18.0

. . .

9.0

. . .

14

T5

up thru 0.500

all

22.0

. . .

16.0

. . .

8

0.501–1.000

all

21.0

. . .

15.0

. . .

8

T52

up thru 1.000

all

22.0

30.0

16.0

25.0

8

T6, T62

up thru 0.124

all

30.0

. . .

25.0

. . .

8

0.125–1.000

all

30.0

. . .

25.0

. . .

10

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 6064

T6,
T6511

0.400–2.000

all

42.0

38.0

10

Alloy 6066

O

all

all

. . .

29.0

. . .

18.0

16

T4,

T4510E

all

all

40.0

. . .

25.0

. . .

14

T4511E

T42

all

all

40.0

. . .

24.0

. . .

14

T6,

T6510,E

all

all

50.0

. . .

45.0

. . .

8

T6511E

T62

all

all

50.0

. . .

42.0

. . .

8

Alloy 6082

T6

0.200–1.000

all

45.0

38.0

8

Alloy 6105

T1

Up thru 0.500

all

25.0

15.0

16

T5

Up thru 0.500

all

38.0

35.0

8

Alloy 6162

T5,

T5510E

up thru 1.000

all

37.0

. . .

34.0

. . .

7

T5511E

T6,

T6510E

up thru 0.249

all

38.0

. . .

35.0

. . .

8

T6511E

0.250–0.499

all

38.0

. . .

35.0

. . .

10

Alloy 6262

T6,
T6511

all

all

38.0

35.0

10

Alloy 6351

T4

up thru 0.749

all

32.0

. . .

19.0

. . .

16

T6

up thru 0.124

. . .

42.0

. . .

37.0

. . .

8

0.125–0749

. . .

42.0

. . .

37.0

. . .

10

Alloy 7075

O

all

. . .

. . .

40.0

. . .

24.0

10

T6, T62

Equation B0241_B0241M-12_14

Equation B0241_B0241M-12_15

up through 0.249

all

78.0

. . .

70.0

. . .

7

T6510E

0.250–0.499

all

81.0

. . .

73.0

. . .

7

T6511E

0.500–1.499

all

81.0

. . .

72.0

. . .

7

1.500–2.999

all

81.0

. . .

72.0

. . .

7

T73

Equation B0241_B0241M-12_16

Equation B0241_B0241M-12_17

0.062–0.249

all

68.0

. . .

58.0

. . .

7

T73510

0.250–1.499

up thru 25

70.0

. . .

61.0

. . .

8

T73511

1.500–2.999

up thru 25

69.0

. . .

59.0

. . .

8

FD

all

all

. . .

. . .

. . .

. . .

. . .

Alloy 7178

O

all

up thru 32

. . .

40.0

. . .

24.0

10

Equation B0241_B0241M-12_18

up through 0.061

all

82.0

. . .

76.0

. . .

. . .

0.062–0.249

up thru 20

84.0

. . .

76.0

. . .

5

T6

Equation B0241_B0241M-12_19

0.250–1.499

up thru 25

87.0

. . .

78.0

. . .

5

T6510E

1.500–2.499

up thru 25

86.0

. . .

77.0

. . .

5

T6511E

over 25 thru 32

84.0

. . .

75.0

. . .

5

2.500–2.999

up thru 32

82.0

. . .

71.0

. . .

5

T62

up thru 0.061

all

79.0

. . .

73.0

. . .

. . .

0.062–0.249

up thru 20

82.0

. . .

74.0

. . .

5

0.250–1.499

up thru 25

86.0

. . .

77.0

. . .

5

1.500–2.499

up thru 25

86.0

. . .

77.0

. . .

5

over 25 thru 32

84.0

. . .

75.0

. . .

5

2.500–2.999

up through 32

82.0

. . .

71.0

. . .

7

FD

all

all

. . .

. . .

. . .

. . .

. . .

AThe basis for establishment of mechanical property limits is shown in Annex A1.
BTo determine conformance to this specification, each value for ultimate strength and for yield strength shall be rounded to the nearest 0.1 ksi and each value for elongation to the nearest 0.5 %, both in accordance with the rounding-off-method of Practice E29.
CElongation of full-section and cut-out sheet-type specimens is measured in 2 in.; of round specimens, in 4 × specimen diameter. See 9.1.1 for conditions under which measurements are not required.
DTests for tensile properties in the F temper are not required.
EFor stress relieved tempers (T3510, T3511, T4510, T4511, T5510, T5511, T6510, T6511, T73510, T73511, T8510, T8511), characteristics and properties other than those specified may differ somewhat from the corresponding characteristics and properties of material in the basic tempers.
FFormerly designated T42 temper. When properly aged (precipitation heat-treated) 6063-T1 extruded products are designated T5.
TABLE 4 Tensile Property Limits for Extruded Tube [SI Units]A,B

Temper

Specified Section or Wall Thickness, mm

Area, mm2

Tensile Strength, MPa

Yield Strength (0.2 % offset), MPa

Elongation,C %, min

over

through

over

through

min

max

min

max

in 50 mm

in 5 ×
diameter

Equation B0241_B0241M-12_20

Aluminum 1060

O

all

all

60

95

15

. . .

25

22

H112

all

all

60

. . .

15

. . .

25

22

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Aluminum 1100

O

all

all

75

105

20

. . .

25

22

H112

all

all

75

. . .

20

. . .

25

22

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 2014

O

all

all

. . .

205

. . .

125

12

10

T4

Equation B0241_B0241M-12_21

all

all

345

. . .

240

. . .

12

10

T4510E

T4511E

T42F

all

all

345

. . .

200

. . .

12

10

T6

Equation B0241_B0241M-12_22

Equation B0241_B0241M-12_23

. . .

12.50

all

415

. . .

365

. . .

7

6

T6510E

12.50

18.00

all

440

. . .

400

. . .

. . .

6

T6511E

18.00

. . .

. . .

16 000

470

. . .

415

. . .

. . .

6

18.00

. . .

16 000

20 000

470

. . .

400

. . .

. . .

5

Equation B0241_B0241M-12_24

. . .

18.00

all

. . .

415

. . .

365

. . .

7

6

18.00

. . .

. . .

16 000

415

. . .

365

. . .

. . .

6

T62F

18.00

. . .

16 000

20 000

415

. . .

365

. . .

. . .

5

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 2024

O

all

all

. . .

240

. . .

130

12

10

T3

Equation B0241_B0241M-12_25

. . .

6.30

all

395

. . .

290

. . .

10

. . .

T3510E

Equation B0241_B0241M-12_26

6.30

18.00

all

415

. . .

305

. . .

10

9H

T3511E

18.00

35.00

all

450

. . .

315

. . .

. . .

9

35.00

. . .

. . .

16 000

485

. . .

330

. . .

. . .

9

35.00

. . .

16 000

20 000

470

. . .

315

. . .

. . .

7

Equation B0241_B0241M-12_27

. . .

18.00

all

. . .

395

. . .

260

. . .

12

10

18.00

35.00

all

395

. . .

260

. . .

. . .

9

T42F

35.00

. . .

. . .

16 000

395

. . .

260

. . .

. . .

9

35.00

. . .

16 000

20 000

395

. . .

260

. . .

. . .

7

T81

Equation B0241_B0241M-12_28

Equation B0241_B0241M-12_29

1.20

6.30

all

440

. . .

385

. . .

4

. . .

T8510E

6.30

35.00

all

455

. . .

400

. . .

5

4

T8511E

35.00

. . .

. . .

20 000

455

. . .

400

. . .

. . .

4

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 2219

O

all

all

. . .

220

. . .

125

12

10

T31

Equation B0241_B0241M-12_30

Equation B0241_B0241M-12_31

. . .

12.50

. . .

16 000

290

. . .

180

. . .

14

12

T3510E

12.50

80.00

16 000

310

. . .

185

. . .

. . .

12

T3511E

Equation B0241_B0241M-12_32

. . .

25.00

. . .

16 000

370

. . .

250

. . .

6

5

T62F

25.00

. . .

20 000

370

. . .

250

. . .

. . .

5

T81

Equation B0241_B0241M-12_33

T8510E

. . .

80.00

. . .

16 000

400

. . .

290

. . .

6

5

T8511E

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 3003

O

all

. . .

all

95

130

35

. . .

25

22

H112

. . .

1.60

all

95

. . .

35

. . .

. . .

. . .

1.60

. . .

all

95

. . .

35

. . .

25

22

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alclad Alloy 3003

O

all

all

90

125

30

. . .

25

22

H112

all

all

90

. . .

30

. . .

25

22

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 5052

O

all

all

170

240

70

. . .

. . .

. . .

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 5083

O

all

. . .

20 000

270

350

110

. . .

14

12

H111

all

. . .

20 000

275

. . .

165

. . .

12

10

H112

all

. . .

20 000

270

. . .

110

. . .

12

10

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 5086

O

all

. . .

20 000

240

315

95

. . .

14

12

H111

all

. . .

20 000

250

. . .

145

. . .

12

10

H112

all

. . .

20 000

240

. . .

95

. . .

12

10

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 5154

0

all

all

205

285

75

. . .

H112

all

all

205

. . .

75

. . .

Alloy 5454

O

all

. . .

20 000

215

285

85

. . .

14

12

H111

all

. . .

20 000

230

. . .

130

. . .

12

10

H112

all

. . .

20 000

215

. . .

85

. . .

12

10

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 5456

O

all

. . .

20 000

285

365

130

. . .

14

12

H111

all

. . .

20 000

290

. . .

180

. . .

12

10

H112

all

. . .

20 000

285

. . .

130

. . .

12

10

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 6005

T1

. . .

12.50

all

170

. . .

105

. . .

16

14

T5

. . .

3.20

260

. . .

240

. . .

8

. . .

3.20

25.00

260

. . .

240

. . .

10

9

Alloy 6005A

T1

. . .

6.30

all

170

. . .

100

. . .

15

T5

. . .

6.30

all

260

. . .

215

. . .

7

6.30

25.00

all

260

. . .

215

. . .

9

8

T61

. . .

6.30

all

260

. . .

240

. . .

8

6.30

25.00

all

260

. . .

240

. . .

10

9

Alloy 6013

T6,
T6511

5.00

12.50

all

340

315

8

. . .

12.50

20.00

all

340

315

. . .

7

20.00

50.00

340

310

. . .

7

Alloy 6041

T6,
T6511

10.00

50.00

310

. . .

275

. . .

10

9

Alloy 6042

T5,
T5511

10.00

12.50

all

260

. . .

240

. . .

10

12.50

50.00

all

290

. . .

240

. . .

9

Alloy 6061

O

all

all

. . .

150

. . .

110

16

14

T1

. . .

16.00

all

180

. . .

95

. . .

16

14

T4

Equation B0241_B0241M-12_34

all

180

. . .

110

. . .

16

14

T4510E

all

T4511E

T42F

all

all

180

. . .

85

. . .

16

14

T51

. . .

16.00

all

240

. . .

205

. . .

8

7

T6, T62F

Equation B0241_B0241M-12_35

Equation B0241_B0241M-12_36

. . .

6.30

all

260

. . .

240

. . .

8

. . .

T6510E

6.30

. . .

all

260

. . .

240

. . .

10

9

T6511E

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 6063

O

all

all

. . .

130

. . .

. . .

18

16

T1

. . .

12.50

all

. . .

115

. . .

60

. . .

12

10

12.50

25.00

all

. . .

110

. . .

55

. . .

. . .

10

T4,T42F

. . .

12.50

all

130

. . .

70

. . .

14

12

12.50

25.00

all

125

. . .

60

. . .

. . .

12

T5

. . .

12.50

all

150

. . .

110

. . .

8

7

12.50

25.00

all

145

. . .

105

. . .

. . .

7

T52

. . .

25.00

all

150

205

110

170

8

7

T6

. . .

3.20

all

205

. . .

170

. . .

8

. . .

3.20

25.00

all

205

. . .

170

. . .

10

9

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 6064

T6,
T6511

10.00

50.00

290

240

10

9

Alloy 6066

O

all

all

. . .

200

. . .

125

16

14

T4,

Equation B0241_B0241M-12_37

T4510E

all

all

275

. . .

170

. . .

14

12

T4511E

T42

all

all

275

. . .

165

. . .

14

12

T6,

Equation B0241_B0241M-12_38

T6510E

all

all

345

. . .

310

. . .

8

7

T6511E

T62

all

all

345

. . .

290

. . .

8

7

Alloy 6082

T6

5.00

25.00

310

260

8

10G

Alloy 6105

T1

. . .

12.50

all

170

. . .

105

. . .

16

14

T5

. . .

12.50

all

260

. . .

240

. . .

8

7

Alloy 6162

T5,

Equation B0241_B0241M-12_39

T5510E

. . .

25.00

all

255

. . .

235

. . .

7

6

T5511E

T6,

Equation B0241_B0241M-12_40

. . .

6.30

all

260

. . .

240

. . .

8

. . .

T6510E

6.30

12.50

all

260

. . .

240

. . .

10

9

T6511E

Alloy 6262

T6,
T6511

all

all

260

. . .

240

. . .

10

9

Alloy 6351

T4

. . .

20.00

all

220

. . .

130

. . .

16

14

T6

. . .

3.20

. . .

290

. . .

255

. . .

8

3.20

25.00

. . .

290

. . .

255

. . .

10

9

Alloy 7075

O

all

all

. . .

275

. . .

165

10

9

T6, T62F

Equation B0241_B0241M-12_41

Equation B0241_B0241M-12_42

. . .

6.30

all

540

. . .

485

. . .

7

. . .

T62510E

6.30

12.50

all

560

. . .

505

. . .

7

6

T6511E

12.50

70.00

all

560

. . .

495

. . .

. . .

6

T73

Equation B0241_B0241M-12_43

Equation B0241_B0241M-12_44

1.60

6.30

all

13 000

470

. . .

400

. . .

7

T73510E

6.30

35.00

16 000

485

420

8

7

35.00

70.00

16 000

475

405

7

T73511E

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

Alloy 7178

O

all

. . .

20 000

. . .

275

. . .

165

10

9

Equation B0241_B0241M-12_45

. . .

1.60

all

565

. . .

525

. . .

. . .

. . .

1.60

6.30

. . .

13 000

580

. . .

525

. . .

5

. . .

T6

Equation B0241_B0241M-12_46

6.30

35.00

. . .

16 000

600

. . .

540

. . .

5

4

T6510E

35.00

60.00

. . .

16 000

595

. . .

530

. . .

. . .

4

T6511E

35.00

60.00

16 000

20 000

580

. . .

515

. . .

. . .

4

60.00

80.00

. . .

20 000

565

. . .

490

. . .

. . .

4

Equation B0241_B0241M-12_47

. . .

1.60

all

13 000

545

. . .

505

. . .

. . .

. . .

1.60

6.30

. . .

13 000

565

. . .

510

. . .

5

. . .

6.30

35.00

. . .

16 000

595

. . .

530

. . .

5

4

T62F

35.00

60.00

. . .

16 000

595

. . .

530

. . .

. . .

4

35.00

60.00

16 000

20 000

580

. . .

515

. . .

. . .

4

60.00

80.00

. . .

20 000

565

. . .

490

. . .

. . .

4

FD

all

all

. . .

. . .

. . .

. . .

. . .

. . .

AThe basis for establishment of tensile property limits is shown in Annex A1.
BTo determine conformance to this specification, each value for tensile strength and yield strength shall be rounded to the nearest 1 MPa and each value for elongation to the nearest 0.5 %, both in accordance with the rounding-off method of Practice E29.
CElongation in 50 mm apply for shapes tested in full section and for sheet-type specimens machined from material up through 12.5 mm in thickness having parallel surfaces. Elongations in 5 D

Equation B0241_B0241M-12_48
where D and A are diameter and cross-sectional area of the specimen respectively, apply to round test specimens machined from thicknesses over 6.30. See 9.1.1 for conditions under which measurements are not required.
DNo mechanical properties are specified or guaranteed.
EFor stress-relieved tempers (T3510, T3511, T4510, T4511, T5510, T5511, T6510, T6511, T73510, T73511, T76510, T76511, T8510, T8511), characteristics and properties offer than those specified may differ somewhat from the corresponding characteristics and properties of material in the basic tempers.
FMaterial in the T42 and T62 tempers is not available from the material producers.
GFor Table 12.1 in both ASD and ASD(M):

For purposes of harmonization, the 5D and 50 mm elongation limits were established to match extruded tube elongation values previously published in EN 755-2 [1997]. The relationship among the US customary and metric elongation values does not comply with the conversion rules of the Aluminum Association.

Note 1Throughout this specification, use of the term alloy, in the general sense, includes aluminum as well as aluminum alloy.
Note 2For other seamless drawn tubes, see Specification B210 or Specification B483/B483M. For extruded tube see Specification B221, and for structural pipe and tube see Specification B429/B429M.

1.2 Alloy and temper designations are in accordance with ANSI H35.1/H35.1M. The equivalent Unified Numbering System alloy designations are those of Table 5preceded by A9, for example, A91100 for aluminum 1100 in accordance with Practice E527.

1.3For acceptance criteria for inclusion of new aluminum and aluminum alloys in this specification, see Annex A2.

1.4The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in non-conformance with the standard.

1.4.1The SI units are shown either in brackets or in separate tables.

Committee
B 07
DocumentType
Standard
Pages
20
PublisherName
American Society for Testing and Materials
Status
Superseded
Supersedes

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