AAAC with BS EN50183 Standard

Application

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.

Specification

Code Name 

Calculated
Cross Section

No..Dia.of Wires 

Overall Diameter

Weight

Rated Strength

Code Name 

Calculated
Cross Section

No..Dia.of Wires 

Overall Diameter

Weight

Rated Strength


mm²

No./mm

mm

kg/km

kN


mm²

No./mm

mm

kg/km

kN

Box

18.8

7/1.85

5.55

 51.4

 5.55

Ash

180.7

 19/3.48

17.4

 496.1

 53.31

Acacia

23.8

7/2.08

6.24

 64.9

 7.02

Elm

211.0

19/3.76

18.8

579.2

62.24

Almond

 30.1

7/2.34

7.02

 82.2

 8.88

Poplar

239.4

37/2.87

20.1

659.4

 70.61

Cedar

35.5

7/2.54

7.62

 96.8

10.46

Sycamore

303.2

37/3.23

22.6

835.2

89.40

Deodar

42.2

7/2.77

8.31

115.2

12.44

Upas

362.1

37/3.53

24.7

997.5

106.82

Fir

47.8

7/2.95

8.85

130.6

 14.11

Yew

479.0

37/4.06

28.4

1319.6

141.31

Hazel

59.9

7/3.30

9.90

163.4

17.66

Totara

498.1

37/4.14

29.0

1372.1

146.93

Pine

71.6

7/3.61

10.8

195.6

21.14

Rubus

586.9

61/3.50

31.5

1622.0

173.13

Holly

84.1

7/3.91

11.7

229.5

24.79

Sorbus

659.4

61/3.71

33.4

1822.5

194.53

Willow

89.7

7/4.04

12.1

245,0

26.47

Araucaria

821.1

61/4.14

37.3

2269.4

242.24

Oak

118.9

7/4.65

14.0

324.5

35.07

Redwood

996.2

61/4.56

41.0

2753.2

293.88

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