| a Calculated with a copper density of 8.89 g/cm3
b IACS: International Annealed Copper Standard
Equivalences
| EN |
DIN |
ASTM |
AFNOR |
BS |
JIS |
SN |
| Symbolic |
Numerical |
Symbolic |
Numerical |
| Cu-ETP |
CW004A |
E-Cu58 |
20065 |
C11000 |
CuA1 |
C101 |
C1100 |
Cu-ETP |
| Cu-OFE |
CW009A |
– |
– |
C10100 |
CuC2 |
C110 |
– |
Cu-OFE |
| Cu-OF |
CW008A |
OF-Cu |
2.0040 |
C10200 |
CuC1 |
C103 |
C1020 |
Cu-OF |
| Cu-HCP |
CW021A |
Se-Cu |
2.0070 |
– |
– |
– |
– |
– |
| Cu-PHC |
CW020A |
Se-Cu |
2.0070 |
C10300 |
– |
– |
– |
Cu-HCP |
| Cu-PHCE |
CW022A |
– |
– |
– |
– |
– |
– |
– |
| CuAg0,10 |
CW013A |
CuAg0,10 |
2.1203 |
C10700 |
– |
– |
– |
– |
| C10940 |
| C11600 |
| CuAg0,04P |
CW014A |
– |
– |
C11904 |
– |
– |
– |
– |
| CuAg0,10P |
CW016A |
CuAg0,1P |
2.1197 |
C11907 |
– |
– |
– |
CuAg0,1P |
| Cu-DHP |
CW024A |
SF-Cu |
2.0090 |
C12200 |
CuB1 |
C106 |
C1220 |
– |
| C1221 |
| Cu-DLP |
CW023A |
SW-Cu |
2.0076 |
C12000 |
CuB2 |
– |
– |
Cu-DLP |
| CuTeP |
CW118C |
CuTeP |
2.1546 |
C14500 |
CuTe 1336 |
C109 |
– |
CuTeP |
| CuFe2P |
CW107C |
CuFe2P |
2.1310 |
C19400 |
– |
CW107C |
– |
– |
| Cu-S |
CW114C |
CuSP |
2.1498 |
C14700 |
Cu-S 1336 |
C111 |
– |
Cu-S |
Technical characteristics
COPPER SHEETS FOR ELECTRICAL APPLICATIONS
| Designations |
Nominal thickness
ta |
Hardness
HV |
Tensile Strength
Rm |
Proof stress of 0.2%
Rp0.2 |
Elongation |
A50 mm
for thicknesses of 0,1 mm up to and including 2.5 mm |
A
for thicknesses greater than 2.5mm |
| Material |
Metallurgical State |
mm |
N/mm2 |
N/mm2 |
%
min. |
%
min. |
| Symbolic |
Numerical |
from |
up to and including |
min. |
max |
min. |
max |
min. |
max |
Cu-ETPb
Cu-FRCHb
Cu-OF
CuAg0.10b
CuAg0,10b
CuAg0,10(OF)
Cu-PHC
Cu-HCP |
CW004Ab
CW005Ab
CW008A
CW013Ab
CW016A
CW019A
CW020A
CW021A |
M |
10 |
25 |
Rough Lamination |
|
| H040 |
0,10 |
5 |
40 |
65 |
– |
– |
– |
– |
– |
– |
| R220b |
|
|
– |
– |
220 |
260 |
– |
(140) |
33 |
42 |
| H040 |
0,20 |
10 |
40 |
65 |
– |
– |
– |
– |
– |
– |
| R200 |
|
|
– |
– |
200 |
250 |
– |
(100) |
– |
42 |
|
| H065 |
0,10 |
10 |
65 |
95 |
– |
– |
– |
– |
– |
– |
| R240 |
|
|
– |
– |
240 |
300 |
180 |
– |
8 |
15 |
|
| H090 |
0,10 |
10 |
90 |
110 |
– |
– |
– |
– |
– |
– |
| R290 |
|
|
– |
– |
290 |
360 |
250 |
– |
4 |
6 |
|
| H110 |
0,10 |
2 |
110 |
– |
– |
– |
– |
– |
– |
– |
| R360 |
|
|
– |
– |
360 |
– |
320 |
– |
2 |
– |
| NOTE 1 – 1 N/mm2 equivalent to 1 Mpa |
| NOTE 2 – The numbers in brackets are not requisites for this norm, they are given only for informative purposes. |
| a For thicknesses inferior to 0.10 mm, mechanical properties must be agreed on between client and supplier. |
| b For Cu-ETP (CW004A), Cu-FRCH (CW005A) and CuAg0.10 (CW013A) with thicknesses included between 0.10 mm up to and including 0.20 mm, the following values must be applied: |
| Rm min. 200N/mm2 and A50 mm min. 28%. |
COPPER SHEETS FOR GENERAL PURPOSES
| Designations |
Nominal thickness |
Tensile Strength
Rm |
Proof stress of 0.2%
Rp0.2 |
Elongation |
Hardness
HV |
Grain size |
A50 mm
for thicknesses up to 2.5mm inc. |
A
for thicknesses greater than 2.5mm |
| Material |
Metallurgical State |
mm |
N/mm2 |
| Symbolic |
Numerical |
from |
up to and including |
min. |
max |
N/mm2 |
%
min. |
%
min. |
min. |
max |
min. |
max |
Cu-ETP
Cu-FRTP
Cu-OF
Cu-DLP
Cu-DHP |
CW004A
CW006A
CW008A
CW023A
CW024A |
R200 |
greather than 5 |
|
200 |
250 |
(max. 100) |
– |
42 |
– |
– |
– |
– |
|
| H040 |
|
|
– |
– |
– |
– |
– |
40 |
65 |
– |
– |
| R220 |
0,2 |
5 |
220 |
260 |
(max.140) |
33 |
42 |
– |
– |
– |
– |
| H040 |
– |
– |
– |
– |
– |
40 |
65 |
– |
– |
|
| R240 |
0,2 |
15 |
240 |
300 |
(min. 180) |
8 |
16 |
– |
– |
– |
– |
| H065 |
– |
– |
– |
– |
– |
65 |
95 |
– |
– |
|
| R290 |
0,2 |
15 |
290 |
360 |
(min. 250) |
4 |
6 |
– |
– |
– |
– |
| H090 |
– |
– |
– |
– |
– |
90 |
110 |
– |
– |
|
| R360 |
0,2 |
2 |
360 |
– |
(min. 320) |
2 |
– |
– |
– |
– |
– |
| H110 |
– |
– |
– |
– |
– |
110 |
– |
– |
– |
Tolerances
COPPER SHEETS FOR ELECTRICAL APPLICATIONS
| Nominal thickness |
Tolerance on thickness for nominal widths |
| from 10, up to and including 200 |
greater than 200, up to and inc. 350 |
greater than 350, up to and inc. 700 |
greater than 700, up to and inc. 1000 |
greater than 1000, up to and inc. 1250 |
| greater than |
up to and including |
normal |
special |
| 0.05a |
0,1 |
± 10%b |
– |
– |
– |
– |
– |
| 0,1 |
0,2 |
± 0,010 |
± 0,007 |
± 0,015 |
– |
– |
– |
| 0,2 |
0,3 |
± 0,015 |
± 0,010 |
± 0,020 |
± 0,03 |
± 0,04 |
– |
| 0,3 |
0,4 |
± 0,018 |
± 0,012 |
± 0,022 |
± 0,04 |
± 0,05 |
± 0,07 |
| 0,4 |
0,5 |
± 0,020 |
± 0,015 |
± 0,025 |
± 0,05 |
± 0,06 |
± 0,08 |
| 0,5 |
0,8 |
± 0,025 |
± 0,018 |
± 0,030 |
± 0,06 |
± 0,07 |
± 0,09 |
| 0,8 |
1,2 |
± 0,030 |
± 0,022 |
± 0,040 |
± 0,07 |
± 0,09 |
± 0,10 |
| 1,2 |
1,8 |
± 0,035 |
± 0,028 |
± 0,06 |
± 0,08 |
± 0,10 |
± 0,11 |
| 1,8 |
2,5 |
± 0,045 |
± 0,035 |
± 0,07 |
± 0,09 |
± 0,11 |
± 0,13 |
| 2,5 |
3,2 |
± 0,055 |
± 0,040 |
± 0,08 |
± 0,10 |
± 0,13 |
± 0,17 |
| 3,2 |
4,0 |
– |
– |
± 0,10 |
± 0,12 |
± 0,15 |
± 0,20 |
| 4,0 |
5,0 |
– |
– |
± 0,12 |
± 0,14 |
± 0,17 |
± 0,23 |
| 5,0 |
6,0 |
– |
– |
± 0,14 |
± 0,16 |
± 0,20 |
± 0,26 |
| 6,0 |
7,0 |
– |
– |
± 0,16 |
± 0,19 |
± 0,23 |
± 0,29 |
| 7,0 |
8,0 |
– |
– |
± 0,18 |
± 0,22 |
± 0,26 |
± 0,32 |
| 8,0 |
9,0 |
– |
– |
± 0,20 |
± 0,25 |
± 0,29 |
± 0,35 |
| 9,0 |
10,0 |
– |
– |
± 0,22 |
± 0,28 |
± 0,32 |
± 0,38 |
| 10,0 |
25,0 |
– |
– |
± 0,25 |
± 0,30 |
± 0,35 |
± 0,45 |
| a Includes value 0.05 |
| b ± 10% del Nominal thickness |
COPPER SHEETS FOR GENERAL PURPOSES
TOLERANCES ON THICKNESS OF HOT-ROLLED PRODUCTS
| Nominal thickness |
Tolerances on thickness, for nominal widths of |
| Up to and including 700 |
Greater than 700, up to and inc. 1000 |
Greater than 1000, up to and inc. 1500 |
Greater than 1500 |
| greather than |
up to and including |
1) |
2) |
1) |
2) |
1) |
2) |
| – |
2,5 |
By agreement |
By agreement |
By agreement |
By agreement |
| 2,5 |
5,0 |
± 0,25 |
± 0,30 |
± 0,30 |
± 0,35 |
± 0,35 |
± 0,45 |
| 5,0 |
7,5 |
± 0,35 |
± 0,45 |
± 0,40 |
± 0,50 |
± 0,45 |
± 0,55 |
| 7,5 |
10 |
± 0,45 |
± 0,60 |
± 0,50 |
± 0,65 |
± 0,55 |
± 0,75 |
| 10 |
15 |
± 0,75 |
± 0,95 |
± 0,80 |
± 1,00 |
± 0,90 |
± 1,10 |
| 15 |
25 |
± 0,95 |
± 1,20 |
± 1,05 |
± 1,30 |
± 1,30 |
± 1,60 |
| 25 |
50 |
± 1,30 |
± 1,60 |
± 1,40 |
± 1,75 |
± 1,50 |
± 1,90 |
| 50 |
– |
± 1,50 |
± 1,90 |
± 1,65 |
± 2,05 |
± 1,80 |
± 2,20 |
| 1) For all materials, except CuAl8Fe3 (CW303G), CuNi10Fe1Mn (CW352H), CuNi30Mn1Fe (CW354H) y CuZn20Al2As (CW702R)
2) For all alloys CuAl8Fe3 (CW303G), CuNi10Fe1Mn (CW352H), CuNi30Mn1Fe (CW354H) y CuZn20Al2As (CW702R) |
TOLERANCES ON THICKNESS OF COLD ROLLED PRODUCTS
| Nominal thickness |
Thickness tolerances for nominal widths of a |
| greather than |
up to and including |
Up to and including 350 |
greather than 350 Up to and including 700 |
Greater than 700, up to and inc. 1000 |
Greater than 1000, up to and inc. 1250 |
| 0.1b |
0,2 |
± 0,018 |
– |
– |
– |
| 0,2 |
0,3 |
± 0,022 |
± 0,03 |
± 0,04 |
– |
| 0,3 |
0,4 |
± 0,025 |
± 0,04 |
± 0,05 |
± 0,07 |
| 0,4 |
0,5 |
± 0,03 |
± 0,05 |
± 0,06 |
± 0,08 |
| 0,5 |
0,8 |
± 0,04 |
± 0,06 |
± 0,07 |
± 0,09 |
| 0,8 |
1,2 |
± 0,05 |
± 0,07 |
± 0,09 |
± 0,10 |
| 1,2 |
1,8 |
± 0,06 |
± 0,08 |
± 0,10 |
± 0,11 |
| 1,8 |
2,5 |
± 0,07 |
± 0,09 |
± 0,11 |
± 0,13 |
| 2,5 |
3,2 |
± 0,08 |
± 0,10 |
± 0,13 |
± 0,17 |
| 3,2 |
4,0 |
± 0,10 |
± 0,12 |
± 0,15 |
± 0,20 |
| 4,0 |
5,0 |
± 0,12 |
± 0,14 |
± 0,17 |
± 0,23 |
| 5,0 |
6,0 |
± 0,14 |
± 0,16 |
± 0,20 |
± 0,26 |
| 6,0 |
7,0 |
± 0,16 |
± 0,19 |
± 0,23 |
± 0,29 |
| 7,0 |
8,0 |
± 0,18 |
± 0,22 |
± 0,26 |
± 0,32 |
| 8,0 |
9,0 |
± 0,20 |
± 0,25 |
± 0,29 |
± 0,35 |
| 9,0 |
10,0 |
± 0,22 |
± 0,28 |
± 0,32 |
± 0,38 |
| a For all alloys CuAl8Fe3 (CW303G), CuNi10Fe1Mn (CW352H), CuNi30Mn1Fe (CW354H) y CuZn20Al2As (CW702R), tolerances on thickness must be multiplied by 1.25 and the result rounded up to 0.01mm
b includes 0.1.
NOTE – For thicknesses greater than 10 mm, tolerances are those indicated in Norm EN 1653. |
|
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