
ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Construction:
ACSR conductors are formed by several wires of aluminium and galvanized steel, stranded in concentric layers. The wire or wires which form the core, are made of galvanized steel and the external layer or layers, are of aluminium.

ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Application:
ACSR conductors are widely used for electrical power transmission over long distances, since they are ideal for long overhead lines spans. They are also used as a messenger for supporting overhead electrical cables.
ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Operating Temperature:
Max permissible continuous operating temperature of conductor shall not exceed 80°C.
ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Standard:
ASTM B232, BS215-2, DIN48204, IEC61089, GB/T1179,JIS C 3110 or other standards required by customers.
Mechanical Property of ACSR:
Composition | Final Modules of Elasticity | Coeficient of linear Expansion | Composition | Final Modules of Elasticity | Coeficient of linear Expansion |
AL+Steel | Mpa | °C | AL+Steel | Mpa | °C |
6+1 | 79000 | 19.1X10-6 | 30+7 | 75500 | 18.0X10-6 |
9+3 | 88000 | 17.1X10-6 | 54+7 | 69000 | 19.3X10-6 |
12+7 | 103500 | 15.4X10-6 | 72+19 | 61000 | 21.5X10-6 |
18+1 | 66000 | 21.2X10-6 | 84+7 | 66000 | 20.4X10-6 |
JiS C 3110 Japanese Industrial Standards
Nominal Sectional Area | Sectional Area | Stranding | Overall Diameter | Weight | Breaking Load | Electrical Resistance | |||
AL | Steel | Total | AL | Steel | at 20°C | ||||
mm2 | mm2 | mm2 | mm2 | No.×mm | No.×mm | mm | Kg/Km | KN | Ω/Km |
25 | 24.9 | 4.2 | 29.1 | 6/2.30 | 1/2.30 | 6.9 | 101 | 8.89 | 1.15 |
32 | 31.9 | 5.3 | 37.2 | 6/2.60 | 1/2.60 | 7.8 | 129 | 11.17 | 0.899 |
58 | 57.7 | 9.6 | 67.3 | 6/3.50 | 1/3.50 | 10.5 | 233 | 19.4 | 0.497 |
95 | 95.4 | 15.9 | 111.3 | 6/4.50 | 1/4.50 | 13.5 | 385 | 31.16 | 0.301 |
120 | 124.7 | 29.1 | 153.8 | 30/2.3 | 7/2.3 | 16.1 | 574 | 54.29 | 0.233 |
160 | 159.3 | 37.2 | 196.5 | 30/2.6 | 7/2.6 | 18.2 | 733 | 68.4 | 0.182 |
200 | 198.2 | 46.2 | 244.4 | 30/2.9 | 7/2.9 | 20.3 | 912 | 84.67 | 0.147 |
240 | 241.2 | 59.3 | 300.5 | 30/3.2 | 7/3.2 | 22.4 | 1110 | 100.06 | 0.12 |
330 | 326.8 | 52.8 | 379.6 | 26/4.0 | 7/3.1 | 25.3 | 1320 | 107.31 | 0.0888 |
410 | 413.4 | 67.3 | 480.7 | 26/4.5 | 7/3.5 | 28.5 | 1673 | 136.32 | 0.0702 |
520 | 519.5 | 67.3 | 586.8 | 54/3.5 | 7/3.5 | 31.2 | 1969 | 152.88 | 0.0559 |
610 | 612.4 | 79.4 | 691.8 | 54/3.8 | 7/3.8 | 34.2 | 2320 | 179.83 | 0.0474 |
810 | 814.5 | 56.3 | 870.8 | 45/3.8 | 7/3.2 | 38.4 | 2700 | 181.1 | 0.0356 |




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ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Construction:
ACSR conductors are formed by several wires of aluminium and galvanized steel, stranded in concentric layers. The wire or wires which form the core, are made of galvanized steel and the external layer or layers, are of aluminium.

ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Application:
ACSR conductors are widely used for electrical power transmission over long distances, since they are ideal for long overhead lines spans. They are also used as a messenger for supporting overhead electrical cables.
ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Operating Temperature:
Max permissible continuous operating temperature of conductor shall not exceed 80°C.
ACSR Aluminium Conductor Steel Reinforced Overhead Conductor Standard:
ASTM B232, BS215-2, DIN48204, IEC61089, GB/T1179,JIS C 3110 or other standards required by customers.
Mechanical Property of ACSR:
Composition | Final Modules of Elasticity | Coeficient of linear Expansion | Composition | Final Modules of Elasticity | Coeficient of linear Expansion |
AL+Steel | Mpa | °C | AL+Steel | Mpa | °C |
6+1 | 79000 | 19.1X10-6 | 30+7 | 75500 | 18.0X10-6 |
9+3 | 88000 | 17.1X10-6 | 54+7 | 69000 | 19.3X10-6 |
12+7 | 103500 | 15.4X10-6 | 72+19 | 61000 | 21.5X10-6 |
18+1 | 66000 | 21.2X10-6 | 84+7 | 66000 | 20.4X10-6 |
JiS C 3110 Japanese Industrial Standards
Nominal Sectional Area | Sectional Area | Stranding | Overall Diameter | Weight | Breaking Load | Electrical Resistance | |||
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