AAAC
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  • AAAC

AAAC

This bare concentric-lay-stranded conductor, made from round aluminum alloy 6201-T81 wires, is constructed with a central core surrounded by one or more layers of helically laid wires.

CE

Categories:

Bare Conductors

AAAC:(all aluminum alloy conductor):

 

Conductor:This bare concentric-lay-stranded conductor, made from round aluminum alloy 6201-T81 wires, is constructed with a central core surrounded by one or more layers of helically laid wires.

Application:Conductor(AAAC) have been widely used in power transmission lines with various voltage levels, and also used in power lines across great rivers, heavy ice area, and other places special geographical characteristics. The conductors have excellent advantages of high strength, large current carrying capacity and good catenary property as well as wear-resistance, anti-crush and corrosion-proof with simple structure, convenient installation and maintenance, low cost for the line, large transmission capacity.

-----Some specific applications of AAAC conductors include:

1.High-voltage transmission lines: AAAC are commonly used in high-voltage transmission lines where high strength and low electrical resistance are required.

2.Distribution lines: All aluminum alloy conductor are used in distribution lines for power transmission from substations to homes and businesses.

3.Railway electrification: AAAC conductors are used in overhead electrification systems for railways.

4.Solar power plants: AAAC conductors are used in the transmission lines of solar power plants to transmit the power generated by solar panels to the grid.

Benefits: AAAC (All Aluminum Alloy Conductor) conductor cable referred to have higher strength but lower conductivity than pure aluminum. Being lighter, alloy conductors sometimes can be used to advantage in place of the more conventional ACSR; Having lower breaking loads than the latter, their using becomes particularly favourable when ice and win loading are low.

High tensile strength as compared to AAC conductor.

Higher conductivity as compared to ACSR conductor.

Better corrosion resistance than ACSR conductor.

 

IEC 61089 6201 All Aluminum Alloy Conductor (AAAC) (Characteristics of A2 Conductors)

 

Number

Stranding and wire diameter

Overall Diameter

Calculated Area

Weight

Breaking load

Max. D.C.

Resistance at 20℃

No.

mm

mm

mm²

kg/km

kN

Ω/km

16

7

1.83

5.49

18.41

50.4

5.43

1.7896

25

7

2.29

6.87

28.83

78.9

8.49

1.1453

40

7

2.89

8.67

45.92

125.6

13.58

0.7158

63

7

3.63

10.89

72.44

198.1

21.39

0.4545

100

19

2.78

13.90

115.33

317.0

33.95

0.2877

125

19

3.1

15.50

143.41

394.1

42.44

0.2302

160

19

3.51

17.55

183.85

505.3

54.32

0.1798

200

19

3.93

19.65

230.48

633.4

67.91

0.1439

250

19

4.39

21.95

287.59

790.4

84.88

0.1151

315

37

3.53

24.71

362.11

999.2

106.95

0.0916

400

37

3.98

27.86

460.32

1270.2

135.81

0.0721

450

37

4.22

29.54

517.51

1428.0

152.79

0.0641

500

37

4.45

31.15

575.46

1587.9

169.76

0.0577

560

61

3.67

33.03

645.29

1780.6

190.14

0.0516

630

61

3.89

35.01

724.97

2000.5

213.9

0.0458

710

61

4.13

37.17

817.18

2254.9

241.07

0.0407

800

61

4.38

39.42

919.11

2536.2

271.62

0.0361

900

91

3.81

41.91

1037.48

2862.8

305.58

0.0321

1000

91

4.01

44.11

1149.26

3171.3

339.53

0.0289

1120

91

4.25

46.75

1290.95

3562.2

380.27

0.0258

1250

91

4.49

49.39

1440.87

3975.9

424.41

0.0231

 

IEC 61089 6201 All Aluminum Alloy Conductor (AAAC) (Characteristics of A3 Conductors)

Code Number

Calculated Area

Number of Wire

Diameter

Weight

Breaking load

Max. D.C.

Resistance at 20℃

wire

Cond.

mm²

mm

mm

kg/km

kN

Ω/km

16

18.6

7

1.84

5.52

50.8

6.04

1.7896

25

29.0

7

2.30

6.90

79.5

9.44

1.1453

40

46.5

7

2.91

8.72

127.1

15.10

0.7158

63

73.2

7

3.65

10.9

200.2

23.06

0.4545

100

116

19

2.79

14.0

319.3

37.76

0.2877

125

145

19

3.12

15.6

399.2

47.20

0.2302

160

186

19

3.53

17.6

511.0

58.56

0.1798

200

232

19

3.95

19.7

638.7

73.20

0.1439

250

290

19

4.41

22.1

798.4

91.50

0.1151

315

366

37

3.55

24.8

1008.4

115.29

0.0916

400

465

37

4.00

28.0

1280.5

146.40

0.0721

450

523

37

4.24

29.7

1140.5

164.70

0.0641

500

581

37

4.47

31.3

1600.6

183.00

0.0577

560

651

61

3.69

33.2

1795.3

204.96

0.0516

630

732

61

3.91

35.2

2019.8

230.58

0.0458

710

825

61

4.15

37.3

2276.2

259.86

0.0407

800

930

61

4.40

39.6

2564.8

292.80

0.0361

900

1046

91

3.83

42.1

2888.3

329.40

0.0321

1000

1162

91

4.03

44.4

3209.3

366.90

0.0289

1120

1301

91

4.27

46.9

3594.4

409.92

0.0258

Key words:

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