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Copper Nickel 70-30 Tube C71500
Product Details
Copper Nickel 70-30 tubes – C71500 - has, in general, the best resistance of any of the copper alloys to impingement attack and to corrosion from most acids and waters. It is being used in severe corrosive conditions in which service lives longer than those of other copper alloys are desired.

Standard Grade

ASTM B 111
C71500

EN 12451
CuNi30Mn1Fe
(CW354H)

DIN
17664/1785
CuNi30Mn1Fe

BS 2871
CN107

JIS H3300
C7150

GB/T8890
BFe30-1-1

Cu

Bal.

Bal.

Bal.

Bal.

Bal.

Bal.

Pb

0.05 max

0.02 max

0.03 max

0.01 max

0.05 max

0.02 max

Fe

0.4-1.0

0.4-1.0

0.4-1.0

0.4-1.0

0.2-1.0

0.5-1.0

Ni

29.0-33.0

30.0-32.0

30.0-32.0

30.0-32.0

29.0-33.0

29.0-32.0

Zn

1.0 max

0.5 max

0.5 max

-

0.5 max

0.3 max

S

-

0.05 max

0.06 max

0.08 max

-

0.05 max

P

-

0.02 max

-

-

-

0.06 max

Mn

1.0 max

0.5-1.5

0.5-1.5

0.5-1.5

0.2-1.0

0.5-1.2

C

-

0.05 max

0.06 max

0.06 max

-

0.05 max

Sn

-

0.05 max

-

-

-

0.03 max

Total impurities

-

0.2 max

0.1 max

0.3 max

-

0.7 max

Condition

O61

R370

F37

M

O

M

HR50

R480

-

O

-

Y2

-

-

-

-

-

-

Yield Strength
N/mm2

125 min

120 min

120-220

-

-

-

345 min

300 min

-

-

-

-

-

-

-

-

-

-

Tensile Strength
N/mm2

360 min.

370 min

370 min

-

363 min

370 min

495 min.

480 min

-

-

-

490 min

-

480 min.

-

-

-

-

Elongation (%)

-

35 min

35 min

-

30 min

30 min

12min. (WT<1.21 mm)

12 min

-

-

-

10 min

15 min. (WT>1,21 mm)

-

-

-

-

-

Hardness Hv5

-

-

-

150 min

-

-

-

-

-

90-120

-

-

Typical use

This alloy has all the characteristics of CuNi 90/10, but also offers excellent corrosion
resistance in high velocity sea water. Also the operating temperature is much higher than
of CuNi 90/10. Can assure a long service life and reliability.
Melting Point: 1240°C • Hot Working Properties: Good
Density (20°C): 8,94 g/cm3 • Cold Working Properties: Good

Weight Formula

Average Wall: (OD-WT) x WT x 0,0284 = Kg/m (all sizes in mm)
Minimum Wall: (OD-WT) x WT x 0,0295 = Kg/m (all sizes in mm)

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