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Aluminum Alloy Core Conductor

Model
Nature of the Manufacturer
Other
Product Category
All Aluminum Alloy Conductor
Place of Origin
City, Province
Overview
Specializing in the production of 35KV and the following aluminum alloy core aluminum strands, aluminum alloy strands and other products. Aluminum core aluminum winch as the main products of the Asia-Japan Group, in the overhead power transmission and distribution lines are particularly widely...
Product Details

Specializing in the production of 35KV and the following aluminum alloy core aluminum strands, aluminum alloy strands and other products.


Aluminum Alloy Core Conductor

Aluminum core aluminum winch as the main products of the Asia-Japan Group, in the overhead power transmission and distribution lines are particularly widely used. The AJ Group's aluminum core aluminum strands perform GB/T1179-2008 standards.

Aluminum alloy core conductors are made of aluminum wire and aluminum alloy wire, suitable for overhead transmission lines. It is the inside of the aluminum alloy "core", the outside is wrapped around the aluminum alloy core by twisting aluminum wire, aluminum alloy core mainly plays the role of increasing strength, aluminum strand mainly plays the role of transmitting electrical energy;

For high voltage transmission lines, because the route of the line is limited, and it is not possible to rack more than one line on one path, people came up with the use of a path, a set of towers, hanging multiple wires, that is, a line equivalent to a number of lines of the method;

The steel core aluminum winch has the characteristics of simple structure, convenient installation and maintenance, low line cost, large transmission capacity, and beneficial to the application of geographical conditions such as crossing rivers and valleys, with good conductivity and sufficient mechanical strength, strong tensile strength, tower distance can be enlarged and so on. Therefore, it is widely used in overhead transmission and distribution lines of various voltage levels.

ExecutiveStand:BS3242


Code name

Nominal aera

No. of wires

Diameter

Weight

Rated s strength

Max D.C
resistance at 20°C


Wire

Cond







m m 2


m m

m m

KG/KM

KM

O/k m


Box

15

7

1.85

5.55

51

5.37

1.7495

Acacia

20

7

2.08

6.24

65

6.8

1.384

Almond

25

7

2.34

7.02

82

8.61

1.0934

Cedar

30

7

2.54

7.62

97

10.14

0.9281

-

35

7

2.77

8.31

115

12.05

0.7804

Fir

40

7

2.95

8.85

131

13.67

0.688

Hazel

50

7

3.3

9.9

164

17.11

0.5498

Pine

60

7

3.61

10.83

196

20.48

0.4594

-

70

7

3.91

11.73

230

24.02

0.3917

Willow

75

7

4.04

12.12

245

25.65

0.3669

-

80

7

4.19

12.57

264

27.58

0.3441

-

90

7

4.44

13.32

298

31.12

0.3023

Oak

100

7

4.65

13.95

325

33.98

0.2769

-

100

19

2.82

14.1

326

33.93

0.2787

Mulberry

125

19

3.18

15.9

415

43.12

0.2192

Ask

150

19

3.48

17.4

497

51.64

0.1831

Elm

175

19

3.76

18.8

580

60.3

0.1568

Poplar

200

19

2.87

20.9

659

88.41

0.1385

-

225

37

3.05

21.35

744

77.24

0.1227

Sycamore

250

37

3.22

22.54

835

86.64

0.1093

Upas

300

37

3.53

24.71

997

103.5

0.09156

Walrut

350

37

3.81

26.67

1162

120.53

0.0786

Yew

400

37

4.06

28.42

1319

136.85

0.06921

Totara

425

37

4.14

28.98

1372

142.33

0.06656

Rubus

500

61

3.5

31.5

1620

167.71

0.05662

Sorbus

659.4

61

3.71

33.4

1822.5

194.53

0.0505

Araucaria

700

61

4.14

37.26

2266

234.5

0.04047

Executive Standard:ASTM B399


Code name

Area

No./wire diameter

Overall diameter

Weight

Nominal
breaking load

Strandard lengh


Norminal

Actual







MCM

m m 2

m m

m m

Kg/k m

KN

m ±5%


Akron

30.58

15.48

7/1.68

5.04

42.7

4.92

3000

Alton

48.69

24.71

7/2.12

6.35

68

7.84

3000

Ames

77.47

39.22

7/2.67

8.02

108

12.45

2000

Azusa

123.3

62.38

7/3.37

10.11

172

18.97

2000

Anaheim

155.4

78.65

7/3.78

11.35

217

23.93

3000

Amberst

195.7

99.22

7/4.25

12.75

273

30.18

2500

Alliance

246.9

125.1

7/4.77

14.31

345

38.05

2000

Buttle

312.8

158.6

19/3.26

16.3

437

48.76

3000

Canton

394.5

199.9

19/3.66

18.3

551

58.91

2500

Cairo

465.4

235.8

19/3.98

19.88

650

69.48

2000

Darien

559.5

283.5

19/4.36

21.79

781

83.52

2000

Elgin

652.4

330.6

19/4.71

23.54

911

97.42

1500

Flint

740.8

375.3

37/3.59

25.16

1035

108.21

3000

Greely

927.2

469.8

37/4.02

28.14

1295

135.47

2500

Executive Standard:DIN 48201


Code number

Calculated area

No of wires

Diam eter

Weight

Rated tensile
s trength

Max D.C. res is tance at 20℃


Wire

Cond







m m 2

m m 2

m m

m m

Kg/k m

daN

O/k m


16

15.89

7

1.7

5.1

43

444

2.091

25

24.25

7

2.1

6.3

66

677

1.3703

35

34.36

7

2.5

7.5

94

960

0.9669

50

49.48

7

3

9

135

1382

0.6714

50

48.35

19

1.8

9

133

1350

0.6905

70

65.81

19

2.1

10.5

181

1838

0.5073

95

93.27

19

2.5

12.5

256

2605

0.3579

120

116.99

19

2.8

14

322

3268

0.2854

150

147.11

37

2.25

15.8

406

4109

0.2274

185

181.62

37

2.5

17.5

500

5073

0.1842

240

242.54

61

2.25

20.3

670

6774

0.1383

300

299.43

61

2.5

22.5

827

8363

0.112

400

400.14

61

2.89

26

1104

11176

0.0838

500

499.63

61

3.23

29.1

1379

13960

0.06709

625

626.2

91

2.96

32.6

1732

17490

0.054

800

802.09

91

3.35

36.9

2218

22402

0.0418

1000

999.71

91

3.74

41.1

2767

27922

0.0335

Executive Standard:IEC 61089

Code Number

Calculated Area

Number of Wire

Diameter of Wire

Diameter of Cond.

Liner Mass

Rated Strength

Max DC Rresistance
at 20°C

m m ²

m m ²


m m

m m

k g/k m

KN

O/k m

16

18.4

7

1.83

5.49

50.4

5.43

1.7896

25

28.8

7

2.29

6.87

78.7

8.49

1.1453

40

46

7

2.89

8.67

125.9

13.58

0.7158

63

72.5

7

3.63

10.8

198.3

21.39

0.4545

100

115

19

2.78

13.9

316.3

33.95

0.2877

125

144

19

3.10

15.50

395.40

42.44

0.2302

160

184

19

3.51

17.55

506.1

54.32

0.1798

200

230

19

3.93

19.65

623.7

67.91

0.1439

250

288

19

4.39

21.95

790.8

84.68

0.1151

315

363

37

3.53

24.71

998.9

106.95

0.0916

400

460

37

3.98

27.86

1268.4

135.81

0.0721

450

518

37

4.22

29.54

1426.9

152.79

0.0641

500

575

37

4.45

31.15

1585.5

169.76

0.0577

560

645

61

3.67

33.03

1778.4

190.14

0.0516

630

725

61

3.89

35.01

2000.7

213.9

0.0458

710

817

61

4.13

37.17

2254.8

241.07

0.0407

800

921

61

4.38

39.42

2540.6

271.62

0.0361

900

1036

91

3.81

41.91

2861.1

305.58

0.0632

1000

1151

91

4.01

44.11

3179

339.53

0.0289

1120

1289

91

4.25

46.75

3560.5

380.27

0.0258

1252

1439

91

4.49

49.39

3973.7

424.41

0.0231


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