Technical Grade
AAAC Cable BS EN 50182 BS 3242

AAAC Cable BS EN 50182 BS 3242

AAAC is mainly used as bare overhead transmission cable and as primary and secondary distribution cable. It is also suitable for laying across basins, rivers and valleys where special geographical Features exist. aaac conductor price list aaac cable suppliers LEAVE MESSAGE SEND E-MAIL

CategoryAAAC Conductor-All Aluminum Alloy Conductor
SourceQZ Cable Group

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Product Overview

Application

Conductor AAAC has been widely used in transmission lines with various voltage levels, because they have such good characteristics as simple structure, convenient installation and maintenance, low cost large transmission capacity. And they are also suitable for laying across rivers valleys and the places where special geographical features exist. Used as bare overhead conductor for primary and secondary distribution. Designed utilizing a high-strength aluminum alloy to achieve a high strength-to-weight ratio; affords better sag characteristics. Aluminum alloy gives AAAC higher resistance to corrosion than ACSR.

Structure

All Aluminum Alloy Conductors (AAAC) is made from aluminum magnesium-silicon alloy. These alloys ensure high electrical conductivity containing sufficient magnesium silicone to provide it superior mechanical properties after conduction. A AAC conductor has a enhanced corrosion resistance and improved strength to weight ratio and improved electrical conductivity than ACSR CONDUCTOR on equal diameter basis. All Aluminum Alloy Stranded Conductor should have alternating lay between each layer; the outer layer shall...

Technical Parameters

Specification Table 1

CodeStrandingNominal AreaSectional AreaOverall DiameterWeightRated StrengthElectrical ResistanceCurrent Rating*
No.×mmmm^2mm^2mmkg/kmKNΩ/KmA
Box7/1.851518.85.5551.45.551.74887
Acacia7/2.082023.86.2464.97.021.3828101
Almond7/2.342530.17.0282.28.881.0926116
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Cedar7/2.543035.57.6296.810.460.9273129
Deodar7/2.773542.28.31115.212.440.7797143
Fir7/2.954047.88.85130.614.110.6875155
Hazel7/3.305059.99.9163.417.660.5494178
Pine7/3.616071.610.83195.621.140.4591199
Holly7/3.917084.111.73229.524.790.3913219
Willow7/4.047589.712.1224526.470.3665228
7/4.198096.5212.5726427.170.3411245
7/4.4490108.013.3229830.650.3023260
Oak7/4.6580118.913.95324.535.070.2767272
19/2.82100118.7014.132633.420.2787290
Mulberry19/3.18125150.915.9414.344.520.2192314
Ash19/3.48150180.717.4496.153.310.183351
Elm19/3.7617521118.8579.262.240.1568386
Poplar37/2.87200239.420.09659.470.610.1387416
37/3.05225270.3021.3574476.080.1227448
Sycamore37/3.23250303.222.61835.289.40.1095480
Upas37/3.53300362.124.71997.5106.820.0917535
Walnut37/3.81350421.8026.671162118.720.07860584
Yew37/4.0640047928.421319.6141.310.0693633
Totara37/4.14425498.128.981372.1146.930.0666648
Rubus61/3.50500586.931.51622173.130.0567714
Sorbus61/3.71600659.433.391822.5194.530.0505764
Araucaria61/4.14700821.137.262269.4242.240.0406868
Redwood61/4.56800996.241.042753.2293.880.0334970

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Structure & Technical Illustration

Structure

All Aluminum Alloy Conductors (AAAC) is made from aluminum magnesium-silicon alloy. These alloys ensure high electrical conductivity containing sufficient magnesium silicone to provide it superior mechanical properties after conduction. A AAC conductor has a enhanced corrosion resistance and improved strength to weight ratio and improved electrical conductivity than ACSR CONDUCTOR on equal diameter basis. All Aluminum Alloy Stranded Conductor should have alternating lay between each layer; the outer layer shall have a right hand direction.

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