CE Certification AAAC BS EN 50182 BS3242 All Aluminum Alloy Conductor Factory, Exporters

Execution standard: BS EN 50182  (Old Standard: BS 324)

Material: AAAC adopts 6201-AL3,6201-AL5 aluminum-magnesium-silicon alloy material.

Product advantage: With excellent corrosion resistance, aluminum alloy products withstand harsh environments like humidity and industrial exposure, ensuring longer service life and lower maintenance expenses.

AAAC (All-Aluminum Alloy Conductor) is a robust transmission solution crafted entirely from high-strength aluminum alloy.  It balances superior conductivity with enhanced mechanical resilience, resisting corrosion and fatigue effectively—ideal for medium to high-voltage lines in coastal, industrial, or harsh weather zones.

Product Description

AAAC Standard: BS EN 50182 (Old Standard: BS 324)
Type: AL3
Aluminum Alloy Conductor (AAAC) - AL3 Specification
Code Name Old Code Name Sectional Area Wire Diameter & Stranding Diameter of Conductor Nominal Breaking Load Linear Mass Max Resistance (20℃)
mm² mm No. mm kN kg/km Ω/km
19-AL3BOX18.81.8575.555.5551.51.748
24-AL3ACACIA23.82.0876.247.0265.11.3828
30-AL3ALMOND30.12.3477.028.8882.41.0926
35-AL3CEDAR35.52.5477.6210.4697.10.9273
42-AL3DEODAR42.22.7778.3112.44115.50.7797
48-AL3FIR47.82.9578.8514.11131.00.6875
60-AL3HAZE59.93.3079.917.66164.00.5494
72-AL3PINE71.63.61710.8321.14196.20.4591
84-AL3HOLLY84.13.91711.7324.79230.20.3913
90-AL3WILLOW89.74.04712.1226.47245.70.3665
119-AL3OAK118.94.65713.9535.07325.50.2767
151-AL3MULBERRY150.93.181915.944.52415.20.2192
181-AL3ASH180.73.481917.453.31497.30.1830
211-AL3ELM207.63.731918.6562.24571.30.1568
239-AL3POPLAR239.42.873720.0970.61660.20.1387
303-AL3SYCAMORE303.23.233722.6189.4836.20.1095
362-AL3UPAS362.13.533724.71106.82998.80.0917
422-AL3WALNUT421.83.813726.67118.171163.50.0786
479-AL3YEW479.04.063728.42141.311321.20.0693
498-AL3TOTARA498.14.143728.98146.931373.80.0666
587-AL3RUBUS586.93.506131.5173.131620.90.0567
659-AL3SORBUS659.43.716133.39194.531821.30.0505
821-AL3ARAUCARIA821.14.146137.26242.242267.90.0406
996-AL3REDWOOD996.24.566141.04293.882751.50.0334
Type: AL5
Aluminum Alloy Conductor (AAAC) - AL5 Specification
Code Name Old Code Name Sectional Area Stranding & Wire Diameter Diameter of Conductor Nominal Breaking Load Linear Mass Max Resistance (20℃)
mm² mm No. mm kN kg/km Ω/km
239-AL5POPLAR239.42.873720.0970.61660.190.1330
303-AL5SYCAMORE303.23.233722.6189.44836.200.1050
362-AL5UPAS362.13.533724.71106.82998.750.0879
479-AL5YEW479.04.063728.42141.311321.170.0665
498-AL5TOTARA498.14.143728.98146.931373.750.0639
587-AL5RUBUS586.93.506131.5173.131620.940.0544
659-AL5SORBUS659.43.716133.39194.531821.290.0484
821-AL5ARAUCARIA821.14.146137.26242.242267.940.0389
996-AL5REDWOOD996.24.566141.04293.882751.450.0321
Technical Note: The outermost layer is twisted to the right (Z).
Frequently Asked Questions (FAQ)
What standard governs these AAAC conductors?
The conductors are manufactured according to BS EN 50182, which has replaced the older BS 324 standard.
What is the difference between AL3 and AL5 types?
AL3 and AL5 represent different grades of aluminum alloy. AL5 typically offers lower electrical resistance compared to AL3 for similar sectional areas.
What does the "Code Name" refer to in the tables?
The code names (like BOX, OAK, ASH) are standard industry identifiers used to quickly specify the conductor's size and stranding configuration.
Why is the twisting direction specified as "Right (Z)"?
The Z-twist (right-hand lay) is a standard requirement for the outermost layer to ensure mechanical stability and compatibility with standard fittings.
How is the Nominal Breaking Load measured?
It is the calculated minimum tensile strength of the conductor, expressed in kilonewtons (kN), indicating the maximum tension the wire can handle.
Does temperature affect the resistance values provided?
Yes, the maximum resistance values listed in the tables are specifically calibrated at a standard reference temperature of 20℃.

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