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China ACSR Steel Core Aluminum Alloy Conductor - Reliable Suppliers & Factory for High-Voltage Power Distribution

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Execution Standard: IEC 61089

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Material: ACSR utilizes galvanized steel wire and 6201 aluminum alloy.

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ACSR (Aluminum Conductor Steel Reinforced) is a highly reliable power transmission solution, featuring a durable steel core that provides excellent tensile strength. The outer layer consists of precision-engineered aluminum wires for optimal electrical conductivity. This product is designed to withstand harsh environmental conditions, including corrosion, temperature fluctuations, and mechanical stress, making it a preferred choice for high-voltage power distribution across various terrains. As a leading China supplier and factory, we ensure our ACSR cables meet the highest quality standards for dependable performance in power transmission.

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    Nominal Area Sectional Area Wire Diameter & Stranding Diameter of Conductor Linear Mass Rated Strength Max.D.C. Resistance at 20℃
    Aluminum alloy Steel Total Aluminum alloy Steel
    mm² mm² mm² mm² mm No mm No mm kg/km kN Ω/km
    26 18.4 3.07 21.5 1.98 6 1.98 1 5.93 74.8 9.02 1.7934
    25 28.8 4.80 33.6 2.47 6 2.47 1 7.41 116.3 13.96 1.1478
    40 46.0 7.67 53.7 3.13 6 3.13 1 9.38 186.8 22.02 0.7174
    63 72.5 12.1 84.6 3.92 6 3.92 1 11.8 293.0 34.68 0.4555
    100 115 6.39 121 2.85 18 2.85 1 14.3 366.0 41.24 0.2880
    125 144 7.99 152 3.19 18 3.19 1 16.0 458.6 51.23 0.2304
    125 144 23.4 167 2.65 26 2.06 7 16.8 579.4 69.86 0.2310
    160 184 10.2 194 3.61 18 3.61 1 18.0 587.3 65.58 0.1800
    160 184 30.0 214 3.00 26 2.34 7 19.0 743.0 88.52 0.1805
    200 230 12.8 243 4.04 18 4.04 1 20.2 735.6 81.97 0.1440
    200 230 37.5 268 3.36 26 2.61 7 21.3 931.0 110.64 0.1444
    250 288 28.3 316 4.08 22 2.27 7 23.1 1016.6 117.09 0.1154
    250 288 46.9 335 3.75 26 2.92 7 23.8 1161.5 138.31 0.1155
    315 383 25.1 408 3.20 45 2.14 7 25.8 1198.0 136.28 0.0917
    315 383 59.0 442 4.21 26 3.28 7 26.7 1464.4 171.90 0.0917
    400 460 31.8 492 3.61 45 2.41 7 28.9 1523.8 172.10 0.0722
    400 460 59.7 520 3.29 54 3.29 7 29.7 1736.9 201.46 0.0723
    450 518 35.8 554 3.83 45 2.55 7 30.6 1713.7 193.61 0.0642
    450 518 67.1 585 3.49 54 3.49 7 31.5 1954.5 226.64 0.0643
    500 575 39.8 615 4.04 45 2.69 7 32.3 1906.8 215.12 0.0578
    500 575 74.6 650 3.68 54 3.68 7 33.2 2173.1 251.82 0.0578
    560 645 44.6 689 4.27 45 2.85 7 34.2 2131.8 240.93 0.0516
    560 645 81.6 726 3.90 54 2.34 19 35.1 2425.7 283.21 0.0516
    630 725 31.3 756 3.58 72 2.39 7 35.8 2250.4 249.62 0.0459
    630 725 91.8 817 4.13 54 2.48 19 37.2 2721.4 318.61 0.0459
    710 817 35.3 852 3.80 72 2.53 7 38.0 2534.0 281.32 0.0407
    710 817 104 921 4.39 54 2.63 19 39.5 3071.0 359.98 0.0407
    800 921 39.8 961 4.04 72 2.69 7 40.4 2864.2 316.98 0.0361
    800 921 76.7 997 3.74 84 3.74 7 41.1 3156.3 356.03 0.0362
    900 1036 44.8 1081 4.28 72 2.85 7 42.8 3214.7 356.6 0.0321
    900 1036 86.3 1122 3.96 84 3.96 7 43.6 3538.6 400.53 0.0322
    1000 1151 93.7 1245 4.18 84 2.51 19 45.9 3926.6 446.37 0.0289
    1120 1289 105 1394 4.42 84 2.65 19 48.6 4387.8 499.93 0.0258
    Frequently Asked Questions (FAQ)
    What is the difference between Nominal Area and Total Sectional Area?
    Nominal Area is a standardized reference size used for naming and classification, while the Total Sectional Area is the actual calculated cross-sectional sum of the aluminum alloy and steel core components.
    Why is the sectional area split into Aluminum Alloy and Steel?
    The aluminum alloy provides the necessary electrical conductivity, while the high-tensile steel core provides the mechanical strength required to support the weight of the conductor over long spans.
    How does the stranding structure (No. of wires) affect performance?
    A higher number of strands increases the flexibility of the conductor, making it easier to handle and install, while also affecting the outer diameter and overall current-carrying capacity.
    Why is the Max D.C. Resistance specified at exactly 20℃?
    20℃ is the standard reference temperature for electrical resistivity measurements. It allows for consistent comparison between different conductor sizes and materials.
    What is the significance of Rated Strength (kN) in the table?
    Rated Strength represents the minimum tensile load the conductor can withstand before breaking. This value is critical for calculating maximum span lengths and tension limits during line design.

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