Overhead High Quality Alloy Aluminum Overhead AAAC Bare Cable
Introduction :
AAAC Conductor Cable have been widely used in power transmission lines with various voltage levels, and
also used in power lines across great rivers, heavy ice area, and other places special geographical characteristics.
The conductor have excellent advantages of high strength, large current carrying capacity and good catenary
and maintenance, low cost for the line, large transmission capacity.
Specifications:
Conductor(AAAC) bear conductor meets or exceeds the following ASTM Specifications:
B-398 Aluminum Alloy 6201-T81 Wire for Electrical Purpose.
B-399 Concentrical-Lay-Stranded 6201-T81 Aluminum Alloy Conductors.
The electrical performance of AAAC is indicated in DCΩ /km(20oC). The resistivity of aluminum
alloy wire for stranded wires is:
LHA1: not greater than 32.840nΩ . m
LHA2: not greater than 32.530nΩ . m
The rated tensile strength of AAAC is denoted with the result of total cross-section areas of all
aluminum alloy conductors multiplied by min. Tensile strength of corresponding size specified
in the standard for aluminum alloy wire.
Standard:
We can produce as per the standard of GB, IEC, ASTM,DIN,CSA,JIS and also particularly
customize and manufacture according to your special requirement.
Product details:
Conductor size (mm2) | Alloy area (mm2) | Number of wires | Overall diameter of conductor (mm) | Linear mass (kg/km) | Rated tensilestrength daN | Maximum resistance D.C. at 20°C (Ω/km) |
16 | 15.89 | 7 | 5.1 | 43 | 444 | 2.091 |
25 | 24.25 | 7 | 6.3 | 66 | 677 | 1.3703 |
35 | 34.36 | 7 | 7.5 | 94 | 960 | 0.9669 |
50 | 49.48 | 7 | 9 | 135 | 1382 | 0.6714 |
50 | 48.35 | 19 | 9 | 133 | 1350 | 0.6905 |
70 | 65.81 | 19 | 10.5 | 181 | 1838 | 0.5073 |
95 | 93.27 | 19 | 12.5 | 256 | 2605 | 0.3579 |
120 | 116.99 | 19 | 14 | 322 | 3268 | 0.2854 |
150 | 147.11 | 37 | 15.8 | 406 | 4109 | 0.2274 |
185 | 181.62 | 37 | 17.5 | 500 | 5073 | 0.1842 |
240 | 242.54 | 61 | 20.3 | 670 | 6774 | 0.1383 |
300 | 299.43 | 61 | 22.5 | 827 | 8363 | 0.112 |
400 | 400.14 | 61 | 26 | 1104 | 11176 | 0.0838 |
500 | 499.63 | 61 | 29.1 | 1379 | 13960 | 0.0671 |
625 | 626.2 | 91 | 32.6 | 1732 | 17490 | 0.054 |
800 | 802.09 | 91 | 36.9 | 2218 | 22402 | 0.0418 |
1000 | 999.71 | 91 | 41.1 | 2767 | 27922 | 0.0335 |
AAAC Conductor Technical Characteristics Based on Standard BS 3242 | |||||||
Code name | Nominal aluminium area | Stranding and wire diameter | Sectional area | Approx. overall diameter | Approx. mass | Calculated D.C. resistance at 20oC | Calculated breaking load |
mm2 | No./mm | mm2 | mm | kg/km | Ω/km | kN | |
OAK | 100 | 7/4.65 | 118.9 | 13.95 | 325 | 0.2769 | 33.3 |
ASH | 150 | 19/3.48 | 180.7 | 17.4 | 497 | 0.183 | 50.65 |
ELM | 175 | 19/3.76 | 211 | 18.8 | 580 | 0.1568 | 59.1 |
UPAS | 300 | 37/3.53 | 362.1 | 24.71 | 997 | 0.09155 | 101.5 |
AAAC Conductor Technical Characteristics Based on Standard DIN 48201 / DIN EN50182 | |||||||
Code number | Area | Number of wires | Wire diameter | Conductor diameter | Linear mass | Rated strength | D.C. resistance at 20oC |
mm2 | No. | mm | mm | kg/km | kN | Ω/km | |
35 | 34.4 | 7 | 2.5 | 7.5 | 93.8 | 10.14 | 0.9572 |
50 | 49.5 | 7 | 3 | 9 | 135.1 | 14.6 | 0.6647 |
70 | 65.8 | 19 | 2.1 | 10.5 | 180.7 | 19.41 | 0.5026 |
95 | 93.3 | 19 | 2.5 | 12.5 | 256 | 27.51 | 0.3546 |
120 | 117 | 19 | 2.8 | 14 | 321.2 | 34.51 | 0.2827 |
150 | 147.1 | 37 | 2.25 | 15.8 | 405.3 | 43.4 | 0.2256 |
240 | 242.5 | 61 | 2.25 | 20.3 | 670.3 | 71.55 | 0.1373 |
300 | 299.4 | 61 | 2.5 | 22.5 | 827.5 | 88.33 | 0.1112 |
AAAC Conductor Technical Characteristics Based on Standard NFC 34-125 | |||||||
Code number | Area | Number of wires | Wire diameter | Conductor diameter | Linear mass | Rated strength | D.C. resistance at 20oC |
mm2 | No. | mm | mm | kg/km | kN | Ω/km | |
ASTER 54.6 | 54.6 | 7 | 3.15 | 9.45 | 148.9 | 17.73 | 0.6042 |
ASTER 148 | 148.1 | 19 | 3.15 | 15.8 | 406.5 | 48.12 | 0.2239 |
ASTER 228 | 227.8 | 37 | 2.8 | 19.6 | 627.6 | 74.04 | 0.146 |
ASTER 288 | 288.3 | 37 | 3.15 | 22.1 | 794.3 | 93.71 | 0.1154 |
Product Pictures:
Looking forward to your inquiry ! ! !