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China AAC All Aluminum Conductor - ASTM B231 Suppliers & Factory for Efficient Power Transmission Solutions

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Execution standard: ASTM B231/B231M-4

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Material: Our AAC (All-Aluminum Conductor) is produced from high-quality aluminum grades including 1350-H19 (extra hard), 1350-H16 or H26 (3/4 hard), and 1350-H14 or H24 (1/2 hard). We also offer 1350-H142 or H242 (1/2 hard) aluminum material to meet diverse customer needs.

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Product Application: Thanks to their inherent flexibility, AAC conductors excel in adapting to temperature variations and minor structural movements, ensuring reliable performance across various environmental conditions. As one of the leading suppliers in China, our AAC offers efficient power transmission through high-conductivity aluminum, eliminating steel cores to reduce overall weight and cost. This makes our conductors particularly suitable for low-stress applications such as short-span overhead lines, providing an effective solution for residential and light industrial power distribution.

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As a trusted factory in China, we pride ourselves on delivering high-quality AAC conductors that meet industry standards and customer specifications, ensuring optimal performance in all applications.

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    Code Word Conductor Size Stranding Sectional Area Diameter of Conductor Linear Mass Rated Strength Max.D.C. Resistance at 20℃
    cmil (AWG) mm No mm² mm kg/km kN Ohms/km
    Peachbell 6 1.56 7 13.4 4.68 37 2.5 2.1548
    Rose 4 1.96 7 21.1 5.88 58 3.9 1.3650
    Iris 2 2.47 7 33.5 7.41 92 6.0 0.8595
    Pansy 1 2.78 7 42.5 8.34 116 7.3 0.6785
    Poppy 1/0 3.12 7 53.5 9.36 147 8.8 0.5387
    Aster 2/0 3.50 7 67.3 10.5 184 11.1 0.4281
    Phlox 3/0 3.93 7 84.9 11.79 233 13.5 0.3395
    Oxlip 4/0 4.42 7 107.4 13.26 294 17.0 0.2684
    Valerian 250 000 2.91 19 126.4 14.55 348 20.7 0.2281
    Sneezewort 250 000 4.80 7 126.7 14.4 347 20.1 0.2276
    Laurel 266 800 3.01 19 135.2 15.05 372 22.1 0.2132
    Daisy 266 800 4.96 7 135.3 14.88 370 21.4 0.2132
    Peony 300 000 3.19 19 151.9 15.95 418 24.3 0.1899
    Tulip 336 400 3.38 19 170.5 16.9 469 27.3 0.1691
    Daffodil 350 000 3.45 19 177.6 17.25 489 28.4 0.1623
    Canna 397 500 3.67 19 201.0 18.35 553 31.6 0.1434
    Goldentuft 450 000 3.91 19 228.1 19.55 628 35.0 0.1264
    Syringa 477 000 2.88 37 241.0 20.16 665 38.6 0.1196
    Cosmos 477 000 4.02 19 241.2 20.1 664 37.0 0.1195
    Hyacinth 500 000 2.95 37 252.9 20.65 698 40.5 0.1140
    Zinnia 500 000 4.12 19 253.3 20.6 697 38.9 0.1138
    Mistletoe 556 500 3.12 37 282.9 21.84 780 44.3 0.1019
    Dahlia 556 500 4.35 19 282.4 21.75 777 43.3 0.1021
    Meadowsweet 600 000 3.23 37 303.2 22.6 836 47.5 0.0951
    Orchid 636 000 3.33 37 322.2 23.31 889 50.4 0.0895
    Heuchera 650 000 3.37 37 330.0 23.59 910 51.7 0.0874
    Flag 700 000 2.72 61 354.5 24.48 979 57.1 0.0813
    Verbena 700 000 3.49 37 354.0 24.43 976 55.4 0.0815
    Nasturtium 715 500 2.75 61 362.3 24.75 1001 58.4 0.0796
    Violet 715 500 3.53 37 362.1 24.71 999 56.7 0.0796
    Cattail 750 000 2.82 61 381.0 25.38 1052 60.3 0.0757
    Petunia 750 000 3.62 37 380.8 25.34 1050 58.6 0.0757
    Lilac 795 000 2.90 61 402.9 26.1 1113 63.8 0.0716
    Arbutus 795 000 3.72 37 402.1 26.04 1109 61.8 0.0717
    Snapdragon 900 000 3.09 61 457.4 27.81 1263 70.8 0.0630
    Cockscomb 900 000 3.96 37 455.7 27.72 1257 68.4 0.0633
    Goldenrod 954 000 3.18 61 484.5 28.62 1338 75.0 0.0595
    Magnolia 954 000 4.08 37 483.7 28.56 1334 72.6 0.0596
    Camellia 1 000 000 3.25 61 506.0 29.25 1398 78.3 0.0570
    Hawkweed 1 000 000 4.18 37 507.7 29.26 1400 76.2 0.0568
    Larkspur 1 033 500 3.31 61 524.9 29.79 1450 81.3 0.0549
    Bluebell 1 033 500 4.25 37 524.9 29.75 1448 78.8 0.0549
    Marigold 1 113 000 3.43 61 563.6 30.87 1557 87.3 0.0511
    Hawthorn 1 192 500 3.55 61 603.8 31.95 1668 93.5 0.0477
    Narcissus 1 272 000 3.67 61 645.3 33.03 1782 98.1 0.0447
    Columbine 1 351 000 3.78 61 684.5 34.02 1891 104.0 0.0421
    Carnation 1 431 000 3.89 61 725.0 35.01 2002 108.0 0.0398
    Gladiolus 1 510 500 4.00 61 766.6 36 2117 114.0 0.0376
    Coreopsis 1 590 000 4.10 61 805.4 36.9 2224 120.0 0.0358
    Jessamine 1 750 000 4.30 61 885.8 38.7 2447 132.0 0.0325
    Cowslip 2 000 000 3.77 91 1015.8 41.47 2807 153.0 0.0284
    Sagebrush 2 250 000 3.99 91 1137.8 43.89 3144 167.0 0.0253
    Lupine 2 500 000 4.21 91 1266.8 46.31 3501 186.0 0.0228
    Bitterroot 2 750 000 4.42 91 1396.3 48.62 3859 205.0 0.0206
    Trillium 3 000 000 3.90 127 1517.1 50.7 4210 223.0 0.0190
    Bluebonnet 3 500 000 4.22 127 1776.3 54.86 4929 261.0 0.0162
    Frequently Asked Questions (FAQ)
    What are Conductor Code Words like "Peachbell" or "Rose" used for?
    These code words are standardized industry designations (typically originating from ASTM or BS standards) used to identify specific conductor sizes and stranding configurations. Using these code words simplifies ordering, specifications, and technical communication without having to list full dimensions.
    How does stranding (number of wires) affect the conductor's performance?
    Stranding increases the flexibility and mechanical durability of the conductor. As the cross-sectional area increases, using more strands (e.g., 19, 37, 61, or 91 wires) prevents the conductor from becoming too rigid, making it easier to handle, transport, and install.
    Why is the Max D.C. Resistance specified at 20℃?
    Electrical resistance changes with temperature. 20℃ is the standard reference temperature used globally for measuring and comparing the electrical properties of conductors. This rating helps engineers calculate expected power losses under normal operating conditions.
    What is the relationship between Conductor Size (cmil) and Sectional Area (mm²)?
    "Cmil" stands for circular mil, which is an imperial unit of area used primarily in the United States for electrical wire sizing. "mm²" (square millimeters) is the metric unit. Both represent the total cross-sectional area of the conductor, with larger values indicating thicker conductors capable of carrying higher currents.
    How do I choose the right conductor from this specification table?
    Choosing the right conductor depends on your project's electrical load requirements, mechanical span limits, and environmental conditions. Key factors to consider include the sectional area (for current carrying capacity), rated strength (for physical tension loading), and linear mass (for structural support planning).

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