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China AAC All Aluminum Conductor Suppliers - BS EN 50182 & BS 215-1 - Lightweight & Cost-Effective Factory Solution

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Execution Standard: BS EN 50182 (Former Standard: BS 215-1)

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Material: The AAC conductor is manufactured using AL1 aluminum material, ensuring high quality and performance.

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Product Application: AAC aluminum stranded conductors provide a cost-effective solution ideal for large-scale electrical infrastructure projects in China. Compared to heavier conductor types, they deliver exceptional value without sacrificing basic performance.

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As a trusted all-aluminum conductor, AAC is engineered for optimal electrical efficiency with its pure aluminum construction. Its lightweight profile facilitates easy installation, while its excellent corrosion resistance makes it suitable for mild environmental conditions. This makes AAC the practical choice for distribution lines in less demanding environments. Partner with leading suppliers and manufacturers in China for your AAC conductor needs.

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    Aluminum Stranded Conductor (AAC)
    Code Name Old Code Name Sectional Area Wire Diameter & Stranding Diameter of Conductor Nominal Breaking Load Linear Mass Maximum Resistance at 20℃
    mm² mm No. mm kN kg/km Ω/km
    23-AL1 MIDGE 23.3 2.06 7 6.18 4.2 63.9 1.2449
    27-AL1 GNAT 26.9 2.21 7 6.63 4.83 73.5 1.0643
    37-AL1 MOSQUITO 36.9 2.59 7 7.77 6.27 101.0 0.7749
    43-AL1 LADYBIRD 42.8 2.79 7 8.37 7.28 117.2 0.6678
    53-AL1 ANT 52.8 3.10 7 9.3 8.72 144.7 0.5409
    64-AL1 FLY 63.6 3.40 7 10.2 10.49 174.0 0.4497
    74-AL1 BLUEBOTTLE 73.6 3.66 7 10.98 11.78 201.7 0.3880
    79-AL1 EARWIG 78.6 3.78 7 11.34 12.57 215.1 0.3638
    84-AL1 GRASSHOPPER 84.1 3.91 7 11.73 13.45 230.2 0.3400
    96-AL1 CLEGG 95.6 4.17 7 12.51 15.30 261.8 0.2989
    106-AL1 WASP 106.0 4.39 7 13.17 16.95 290.1 0.2697
    106-AL1 BEETLE 106.4 2.67 19 8.01 18.08 292.7 0.2701
    132-AL1 BEE 132.0 4.90 7 14.7 21.12 361.5 0.2165
    158-AL1 HORNET 157.6 3.25 19 16.25 26.01 433.7 0.1823
    186-AL1 CATERPILLAR 185.9 3.53 19 17.65 29.75 511.7 0.1546
    213-AL1 CHAFER 213.2 3.78 19 18.9 34.12 586.7 0.1348
    238-AL1 SPIDER 237.6 3.99 19 19.95 38.01 653.7 0.1210
    266-AL1 COCKROACH 265.7 4.22 19 29.54 42.52 731.2 0.1081
    323-AL1 BUTTERFLY 322.7 4.65 19 32.55 51.63 887.9 0.0891
    373-AL1 MOTH 373.1 5.00 19 35 59.69 1026.5 0.0770
    372-AL1 DRONE 372.4 3.58 37 25.06 59.59 1027.2 0.0774
    415-AL1 CENTIPEDE 415.2 3.78 37 26.46 66.43 1145.2 0.0695
    486-AL1 MAYBUG 486.1 4.09 37 28.63 77.78 1340.8 0.0593
    530-AL1 SCORPION 529.8 4.27 37 29.89 84.77 1461.4 0.0544
    628-AL1 CICADA 628.3 4.65 37 41.85 100.54 1733.1 0.0459
    Note: The outermost layer is twisted to the right (Z).
    Frequently Asked Questions (FAQ)
    Q: What is the standard twisting direction for AAC (Aluminum Stranded Conductor)?
    According to the technical specifications, the outermost layer of the AAC conductor is twisted to the right (Z-lay).
    Q: What temperature standard is used for measuring maximum resistance?
    The maximum electrical resistance values of the AAC conductors are standardized and measured at 20℃.
    Q: How does the stranding number affect the physical structure of the conductor?
    The conductor diameter and overall strength are determined by the wire diameter and the number of strands (such as 7, 19, or 37 strands) as specified in the technical standard table.
    Q: What is the difference between 106-AL1 WASP and 106-AL1 BEETLE?
    While both have similar sectional areas (~106 mm²), the WASP code uses 7 strands with a 4.39mm wire diameter, whereas the BEETLE code uses 19 strands with a 2.67mm wire diameter, resulting in different overall conductor diameters and nominal breaking loads.
    Q: What range of nominal breaking loads do these AAC conductors cover?
    The nominal breaking load ranges from 4.2 kN for smaller conductors like 23-AL1 (MIDGE) up to 100.54 kN for larger specifications like 628-AL1 (CICADA).

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