Bare Aluminum Earth 795 Mcm ACSR Conductor
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Basic Info.
Product Description
APPLICATION:
Used as bare overhead conductor for primary and secondary distribution. Designed for utilizing a high-strength aluminum-alloy to achieve a high strength-to-weight ratio; affords good sag characteristics.
1.AAAC conductors are extensively used for overhead distribution and transmission lines adjacent to ocean coastlines where there can be a problem of corrosion in the steel of an ACSR construction.
2.The aluminum alloy conductors are used in replace of single-layer ACSR conductors to reduce power loss in overhead distribution and transmission lines,when replacing the aluminum conductor steel reinforced , the AAAC can save 5-8% of the construction cost.
3.AAAC referred to have higher strength but lower conductivity than pure aluminum. Being lighter, alloy conductors can sometimes be used to replace the conventional ACSR.
CONSTRUCTION:
AAAC is concentric-lay- stranded, similar in
construction and appearance with1350 grade aluminum conductors. They were developed to the need of economical conductor for overhead applications requiring higher strength than that of 1350 grade aluminum conductors, but without a steel core.
STANDARDS:
AS 1531, ASTM B399, BS EN50183 ,BS 3242,DIN 48201,IEC 61089,
AAAC 6201- All Aluminium Alloy Conductor AS1531
| Code Name | Strands/Wire Diameter | Overall Diameter (Approx) | Calculated Equivalent Aluminium Area | Sectional Area | Approx. Mass |
Calculated Minimum Breaking Load | D.C.Resistence at 20ºC |
| mm | mm | mm2 | mm2 | kg/km | kN | Ω/km | |
| Agate | 7/1.75 | 5.25 | 14.3 | 16.84 | 46 | 4.71 | 1.972 |
| Amethyst | 7/2.25 | 6.75 | 23.7 | 27.83 | 76 | 7.78 | 1.194 |
| Diamond | 7/2.50 | 7.50 | 29.3 | 34.36 | 94 | 9.64 | 0.967 |
| Dolomite | 7/2.75 | 8.25 | 35.4 | 41.58 | 114 | 11.6 | 0.799 |
| Emerald | 7/3.00 | 9.00 | 42.2 | 49.48 | 136 | 13.9 | 0.671 |
| Garnet | 7/3.75 | 11.3 | 65.8 | 77.28 | 211 | 21.7 | 0.43 |
| Jade | 7/4.50 | 13.5 | 94.8 | 111.3 | 304 | 31.2 | 0.298 |
| Jasper | 7/4.75 | 14.3 | 106 | 124.0 | 340 | 34.8 | 0.268 |
| Opal | 19/3.25 | 16.3 | 134 | 157.6 | 433 | 44.2 | 0.212 |
| Patronite | 19/3.50 | 17.5 | 155 | 182.80 | 502 | 51.3 | 0.183 |
| Pearl | 19/3.75 | 18.8 | 178 | 209.8 | 577 | 58.8 | 0.159 |
| Ruby | 37/3.00 | 21.0 | 221 | 261.60 | 720 | 73.5 | 0.128 |
| Ruthenium | 37/3.25 | 22.8 | 260 | 307.00 | 845 | 86.1 | 0.109 |
| Rutile | 19/4.75 | 23.8 | 285 | 336.7 | 925 | 94.4 | 0.09991 |
| Sapphire | 37/3.75 | 26.3 | 345 | 408.50 | 1125 | 115 | 0.0819 |
| Spinel | 61/3.25 | 29.3 | 427 | 506.10 | 1396 | 135 | 0.0662 |
| Tantalum | 61/3.50 | 31.5 | 495 | 586.90 | 1620 | 156 | 0.0572 |
| Topaz | 61/3.75 | 33.8 | 568 | 673.40 | 1858 | 179 | 0.0498 |
| Zircon | 91/4.50 | 49.5 | 1220 | 1447 | 3997 | 384 | 0.0232 |
6201 All Aluminum Alloy Conductor ASTM B399
| Code Name | Area | Size&Stranding of ACSR with equal diameter | No. and diameter | Overall diameter | Weight | Nominal breaking load | |
| Nominal | Actual | ||||||
| MCM | mm2 | AWG or MCM | mm | mm | kg/km | kN | |
| AKRON | 30.58 | 15.48 | 6 | 7/1.68 | 5.04 | 42.7 | 4.92 |
| ALTON | 48.69 | 24.71 | 4 | 7/2.12 | 6.35 | 68 | 7.84 |
| AMES | 77.47 | 39.22 | 2 | 7/2.67 | 8.02 | 108 | 12.45 |
| AZUSA | 123.3 | 62.38 | 1/0 | 7/3.37 | 10.11 | 172 | 18.97 |
| ANAHEIM | 155.4 | 78.65 | 2/0 | 7/3.78 | 11.35 | 217 | 23.93 |
| AMHERST | 195.7 | 99.22 | 3/0 | 7/4.25 | 12.75 | 273 | 30.18 |
| ALLIANCE | 246.9 | 125.1 | 4/0 | 7/4.77 | 14.31 | 345 | 38.05 |
| BUTTE | 312.8 | 158.6 | 266.8 | 19/3.26 | 16.3 | 437 | 48.76 |
| CANTON | 394.5 | 199.9 | 336.4 | 19/3.66 | 18.3 | 551 | 58.91 |
| CAIRO | 465.4 | 235.8 | 397.5 | 19/3.98 | 19.88 | 650 | 69.48 |
| DARIEN | 559.5 | 283.5 | 477 | 19/4.36 | 21.79 | 781 | 83.52 |
| ELGIN | 652.4 | 330.6 | 556.5 | 19/4.71 | 23.54 | 911 | 97.42 |
| FLINT | 740.8 | 375.3 | 636 | 37/3.59 | 25.16 | 1035 | 108.21 |
| GREELEY | 927.2 | 469.8 | 795 | 37/4.02 | 28.14 | 1295 | 135.47 |
AL59 All Aluminum Alloy Conductor SS 424 08 14
| Nominal Area | No. of wire | Dia.of wire | Overall Dia. | Weight | Resistance at 20ºC | Nominal Breaking Load | |
| mm2 | mm | mm | kg/km | Ω/km | kN | ||
| 31 | 7 | 2.38 | 7.1 | 85 | 0.943 | 7.77 | |
| 62 | 7 | 3.37 | 10.1 | 170 | 0.47 | 15.6 | |
| 99 | 7 | 4.25 | 12.8 | 271 | 0.298 | 22.8 | |
| 157 | 19 | 3.26 | 16.3 | 436 | 0.186 | 39.7 | |
| 241 | 19 | 4.02 | 20.1 | 663 | 0.123 | 55.5 | |
| 329 | 37 | 3.37 | 23.6 | 910 | 0.0899 | 82.5 | |
| 454 | 61 | 3.08 | 27.7 | 1260 | 0.0654 | 113 | |
| 593 | 61 | 3.52 | 31.7 | 1640 | 0.0501 | 143 | |
| 774 | 61 | 4.02 | 36.2 | 2140 | 0.0384 | 178 | |
| 910 | 61 | 4.36 | 39.2 | 2520 | 0.0326 | 209 | |
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