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China AACSR ASTM B711 Steel Core Aluminum Alloy Conductor - Reliable Suppliers and Factory for Efficient Power Transmission

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Execution Standard: ASTM B711

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Material: Our AACSR features galvanized steel wire and 6201 aluminum alloy, ensuring high durability and performance.

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China’s leading suppliers and factories provide high-quality Aluminum Conductor Steel Reinforced (AACSR) products. The design incorporates a high-strength steel core with an outer layer of high-conductivity aluminum alloy, resulting in superior mechanical properties and electrical conductivity. This robust construction offers excellent corrosion and wear resistance, making AACSR ideal for high-voltage transmission lines. Trust in our products for efficient and stable power transmission in your projects.

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    Sectional Area Wire Diameter & Stranding Diameter of Conductor Linear Mass Rated Strength Max.D.C. Resistance at 20℃
    Total Aluminum alloy Steel Aluminum alloy Steel
    mm² mm² mm² mm No mm No mm kg/km kN Ω/km
    163 140 23 2.62 26 2.04 7 16.6 560 74.9 0.240
    173 140 33 2.44 30 2.44 7 17.1 650 87.4 0.240
    186 160 26 2.80 26 2.18 7 17.7 645 85.5 0.210
    198 160 38 2.61 30 2.61 7 18.3 740 100 0.210
    209 180 29 2.97 26 2.31 7 18.8 725 195 0.187
    222 180 42 2.76 30 2.76 7 19.3 825 112 0.187
    232 200 32 3.13 26 2.43 7 19.8 800 105 0.168
    247 200 47 2.91 30 2.91 7 20.4 920 124 0.168
    260 224 36 3.31 26 2.57 7 21.0 900 115 0.150
    276 224 52 3.08 30 3.08 7 21.6 1025 139 0.150
    291 250 41 3.50 26 2.72 7 22.2 1010 128 0.135
    308 250 58 3.26 30 3.26 7 22.8 1145 152 0.135
    326 280 46 3.70 26 2.88 7 23.4 1140 144 0.120
    345 280 65 3.45 30 3.45 7 24.2 1280 171 0.120
    367 315 52 3.93 26 3.06 7 24.9 1276 162 0.107
    387 315 72 3.66 30 2.20 19 25.6 1433 190 0.107
    413 355 58 4.17 26 3.24 7 26.4 1433 182 0.0950
    436 355 81 3.88 30 2.33 19 27.2 1614 210 0.0950
    465 400 65 4.43 26 3.45 7 28.1 1612 206 0.0842
    491 400 91 4.12 30 2.47 19 28.8 1816 237 0.0842
    509 450 59 3.26 54 1.98 19 29.5 1703 208 0.0748
    563 500 63 3.43 54 2.06 19 30.9 1873 228 0.0673
    631 560 71 3.63 54 2.18 19 32.7 2101 256 0.06010
    710 630 80 3.85 54 2.31 19 34.6 2365 285 0.0534
    800 710 90 4.09 54 2.45 19 36.8 2665 321 0.0474
    901 800 101 4.43 54 2.60 19 39.0 3000 361 0.0420
    973 900 73 3.69 84 2.21 19 40.6 3062 353 0.0374
    1081 1000 81 3.89 84 2.33 19 42.8 3395 389 0.0337
    1211 1120 91 4.12 84 2.47 19 45.3 3803 437 0.0300
    1352 1250 102 4.35 84 2.61 19 47.8 4250 489 0.0270
    Frequently Asked Questions
    Q What materials make up these conductors?
    These conductors are composed of an Aluminum alloy outer layer for optimized electrical conductivity, combined with a high-strength Steel core to handle mechanical loads and tension.
    Q What is the standard measurement temperature for Max. D.C. Resistance?
    The Maximum D.C. Resistance values shown in the table are measured at a standard reference temperature of 20℃, expressed in Ohms per kilometer (Ω/km).
    Q How does the steel core influence the rated strength of the conductor?
    The steel core provides structural reinforcement. An increase in the steel sectional area or stranding count directly increases the overall Rated Strength (measured in kN) of the conductor.
    Q What does the Sectional Area represent?
    The Sectional Area (measured in mm²) indicates the cross-sectional size of the conductor. It is broken down into the Total area, the Aluminum alloy area (for current carrying), and the Steel area (for mechanical strength).
    Q Why is the Linear Mass specification important?
    Linear Mass (expressed in kg/km) determines the physical weight of the conductor per unit length. This value is critical for engineers when calculating tower load-bearing capacities and sag tension limits during installation.

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