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ACSR AS 1513 Galvanized Steel Core Aluminum Conductor from China Suppliers | Quality Factory Production

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Execution Standard: AS 3607

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Material: ACSR consists of galvanized steel wire and AL1 aluminum.

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ACSR (Aluminum Conductor Steel Reinforced) is a dependable and robust solution for power transmission, featuring a high-tensile steel core that provides exceptional structural support. The outer layer, made of pure aluminum wires, ensures outstanding conductivity. Renowned for its corrosion resistance and durability, ACSR is essential for reliable high-voltage power transmission. As a leading supplier and factory in China, we are committed to providing top-quality ACSR products that meet the highest standards and requirements of the industry.

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    Aluminum Conductor Steel Reinforced (ACSR) Specifications
    Aluminum Conductor Steel Reinforced (ACSR)
    Code Name Sectional Area Product Structure Diameter of Conductor Nominal Breaking Load Linear Mass Maximum Resistance at 20℃
    Aluminium Galvanized Steel Aluminium & Galvanized Steel Aluminium Wire Diameter & Stranding Galvanized Steel Wire Diameter & Stranding
    mm² mm² Total mm No. mm No. mm kN kg/km Ω/km
    Almond 29.5 4.9 34.4 2.5 6 2.5 1 7.5 10.5 119.0 0.975
    Apricot 35.6 5.9 41.6 2.75 6 2.75 1 8.3 12.6 144.0 0.805
    Apple 42.4 7.1 49.5 3 6 3 1 9 14.9 171.0 0.677
    Banana 66.3 11.0 77.3 3.75 6 3.75 1 11.3 22.7 268.0 0.433
    Cherry 106.3 14.1 120.4 4.75 6 1.6 7 14.3 33.4 402.0 0.271
    Fig 173.2 9.6 182.8 3.5 18 3.5 1 17.5 37 552 0.16636
    Grape 147.3 34.4 181.6 2.50 30 2.5 7 17.5 63.5 677.0 0.196
    Lemon 212.1 49.5 261.5 3 30 3 7 21 90.4 973.0 0.136
    Lychee 248.9 58.1 306.9 3.25 30 3.25 7 22.8 105 1140.0 0.116
    Lime 288.6 67.3 356.0 3.5 30 3.5 7 24.5 122 1320.0 0.100
    Mango 381.7 49.5 431.2 3 54 3 7 27 119 1440.0 0.076
    Orange 448.0 58.1 506.0 3.25 54 3.25 7 29.3 137 1690.0 0.065
    Olive 519.5 67.3 586.9 3.5 54 3.5 7 31.5 159 1960.0 0.0557
    Pawpaw 596.4 75.5 672.0 3.75 54 2.25 19 33.8 178 2240.0 0.0485
    Quince 7.2 9.6 16.8 1.75 3 1.75 4 5.3 12.7 95.0 3.25
    Raisin 14.7 19.6 34.4 2.5 3 2.5 4 7.5 24.4 195.0 1.59
    Sultana 28.3 21.2 49.5 3 4 3 3 9 28.3 243.0 0.897
    Walnut 44.2 33.1 77.3 3.75 4 3.75 3 11.3 43.9 380 0.573
    Note: The outermost layer is twisted to the right (Z).

    Frequently Asked Questions (FAQ)

    Q1: What is ACSR Conductor and where is it used?
    ACSR (Aluminum Conductor Steel Reinforced) is a high-capacity, high-strength stranded conductor typically used in overhead power transmission and distribution lines. It features outer strands of high-purity aluminum for excellent electrical conductivity and a solid or stranded steel core for mechanical reinforcement.
    Q2: What does the "right (Z)" twist direction of the outermost layer mean?
    The "Z" twist refers to a right-hand lay direction for the outermost layer of wires. This is standard in ACSR manufacturing to ensure compatibility with standard installation accessories, line fittings, and tension clamps, preventing the outer strands from unraveling under tension.
    Q3: Why do ACSR conductors use code names like "Almond", "Cherry", or "Banana"?
    Code names (such as fruits, birds, or flowers depending on national standards) are used as convenient, industry-standard shorthand designations. They allow engineers and buyers to easily identify specific cross-sectional areas, stranding ratios, and physical dimensions without listing detailed technical specifications.
    Q4: How does the steel core affect the performance of ACSR?
    The galvanized steel core provides high tensile strength, which significantly reduces sag over long spans. This allows ACSR conductors to withstand higher mechanical loads from wind, ice, and thermal expansion compared to all-aluminum conductors (AAC).
    Q5: What factors influence the maximum resistance of ACSR at 20℃?
    The electrical resistance is primarily determined by the cross-sectional area of the aluminum strands and the purity of the aluminum material. Larger aluminum sectional areas result in lower resistance (measured in Ω/km), which minimizes power transmission losses.

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