AAAC-All Aluminum Alloy Conductor (1120)

AAAC-All Aluminum Alloy Conductor (1120)

Bare Overhead Conductor
AAAC Bare Aluminum Conductor
AAAC Aerial Conductors
Overhead Line Conductors
Manufacturer & Supplier from China

Application

AAAC- The full name: All aluminium alloy conductor. Concentric lay stranded Aluminium Alloy Conductors (AAAC) are made out of high strength Aluminium-Magnesium-Silicon Alloy. AAAC contains a small percentage (about 0.6%) of silicon and magnesium elements. It provides several benefits for overhead lines. AAAC Cable is used as a bare overhead conductor for power transmission and distribution lines, on aerial circuits that require a larger mechanical resistance than AAC, and a better corrosion resistance than ACSR. The sag characteristics and the strength-to-weight ratio of AAAC is better than both AAC / ACSR.

7 and 19 strand construction is suitable for bare overhead reticulation of medium spans, normally at low and medium voltages. 37 and 61 strand construction is suitable for transmission and subtransmission lines where homogeneous construction can reduce line losses and improve corrosion resistance in conductors with similar strength to ACSR types.

Specifications

• IEC 61089 Round Wire Concentric Lay Overhead Electrical Stranded Conductors
• ASTM B 399 Concentric-Lay-Stranded Aluminum-Alloy 6201-T81 Conductors.
• BS EN 50182 Conductors for Overhead Lines-Round Wire Concentric Lay stranded Conductors
• AS 1531 Conductors – Bare Overhead – Aluminum and Aluminum Alloy
• GB/T 1179 Round Wire Concentric Lay Overhead Electrical Stranded Conductors

Parameter

AAAC 1120 AS 1531

Code
Name
No. / Dia. of Wire Approx. Overall
Dia.
Approx.
Weight
Calculated Breaking
Load
Max. DC Resistance
at 20℃
No./mm mm kg/km  kN Ω/km
CHLORINE 7/2.50 7.50 94 8.18 0.8637
CHROMIUM 7/2.75 8.25 113 9.91 0.7138
FLUORINE 7/3.00 9.00 135 11.80 0.5998
HELIUM 7/3.75 11.25 211 17.60 0.3839
HYDROGEN 7/4.50 13.50 304 24.30 0.2666
IODINE 7/4.75 14.25 339 27.10 0.2393
– 19/3.19 15.95 417 36.06 0.1964
KRYPTON 19/3.25 16.25 433 37.40 0.1892
– 19/3.45 17.25 488 42.18 0.1679
LUTETIUM 19/3.50 17.50 502 41.70 0.1631
– 19/3.69 18.45 558 46.32 0.1468
NEON 19/3.75 18.80 577 47.80 0.1421
– 19/3.91 19.55 627 52.01 0.1307
– 19/4.12 20.60 696 57.75 0.1177
NITROGEN 37/3.00 21.00 720 62.20 0.1143
– 19/4.32 21.60 765 63.50 0.1071
NOBELIUM 37/3.25 22.80 845 72.80 0.0973
– 19/4.70 23.50 906 72.02 0.0905
– 37/3.37 23.59 909 78.40 0.0906
– 37/3.40 23.80 925 79.78 0.0890
OXYGEN 19/4.75 23.80 925 73.60 0.0886
– 37/3.42 23.94 936 80.72 0.0879
– 37/3.44 24.08 947 81.67 0.0869
– 61/2.72 24.48 978 79.75 0.0845
– 37/3.55 24.85 1009 83.50 0.0816
– 37/3.62 25.34 1049 86.80 0.0785
PHOSPHORUS 37/3.75 26.30 1125 93.10 0.0731
– 37/3.79 26.53 1150 95.17 0.0716
– 61/2.95 26.55 1151 93.81 0.0718
– 37/3.794 26.56 1152 95.37 0.0715
– 37/3.85 26.95 1186 98.20 0.0694
– 37/3.96 27.72 1255 103.90 0.0656
– 61/3.16 28.44 1320 107.64 0.0626
SELENIUM 61/3.25 29.30 1400 114.00 0.0592
– 61/3.26 29.34 1405 114.50 0.0588
– 61/3.30 29.70 1440 117.40 0.0574
– 37/4.28 29.96 1466 121.37 0.0561
– 37/4.38 30.66 1535 127.11 0.0536
– 61/3.49 31.41 1610 131.30 0.0513
– 37/4.49 31.43 1613 133.57 0.0510
SILICON 61/3.50 31.50 1620 127.00 0.0510
– 61/3.56 32.04 1676 131.15 0.0493
– 61/3.64 32.76 1752 137.00 0.0472
– 61/3.71 33.39 1820 142.40 0.0454
SULFUR 61/3.75 33.80 1860 145.50 0.0445
– 61/3.79 34.11 1899 148.64 0.0435
– 61/3.85 34.65 1960 153.40 0.0422
– 61/3.92 35.28 2032 159.00 0.0407
– 61/3.99 35.91 2104 164.74 0.0393
– 61/4.05 36.45 2169 169.70 0.0381
– 61/4.12 37.08 2244 175.70 0.0368
– 61/4.18 37.62 2310 180.80 0.0358
– 61/4.24 38.16 2377 186.04 0.0348
– 61/4.30 38.70 2445 191.34 0.0338
– 61/4.35 39.15 2502 195.80 0.0330
– 61/4.36 39.24 2513 196.71 0.0329
– 61/4.43 39.87 2595 203.10 0.0319
– 61/4.49 40.41 2666 208.62 0.0310
– 61/4.54 40.86 2725 204.40 0.0303
– 61/4.60 41.40 2798 209.84 0.0295

AAAC 6201 AS 1531

Code name Construction No./Wire diameter Sectional area Calculated Equialent Aluminium area Approx Overall diameter Approx weight Calculated Breaking load Calculated DC resistance At 20℃
No./mm mm² mm² mm Kg/Km KN Ohm/Km
Diamond 7/2.50 34.4 29.3 7.5 94.3 9.64 0.967
Dolomite 7/2.75 41.6 35.4 8.3 113 11.6 0.799
Emerald 7/3.00 49.5 42.2 9.0 135 13.9 0.671
Garnet 7/3.75 77.3 65.8 11.3 211 21.7 0.430
Jade 7/4.50 111 94.8 13.5 304 31.2 0.298
Jasper 7/4.75 124 106 14.3 339 34.8 0.268
Opal 19/3.25 158 134 16.3 433 44.2 0.212
Patronite 19/3.50 183 155 17.5 503 51.3 0.183
Pearl 19/3.75 210 178 18.8 576 58.8 0.159
Ruby 37/3.00 262 221 21.0 721 73.5 0.128
Ruthenium 37/3.25 307 260 22.8 845 86.1 0.109
Rutile 19/4.75 337 285 23.8 924 94.4 0.0991
Sapphire 37/3.75 409 345 26.3 1120 115 0.0819
Spinel 61/3.25 506 427 29.3 1400 135 0.0662
Tantalum 61/3.50 587 495 31.5 1620 156 0.0572
Topaz 61/3.75 674 568 33.8 1860 179 0.0495

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Used for overhead power transmission lines

Core Wire (INVAR) : Aluminum-clad INVAR Wire/High Tensile Strength Aluminum-clad INVAR Wire

Conductor (STAL) : Super Thermal Resistant Aluminum Alloy Wire used for continuous allowable temperature up to 210°C

 

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