NF C 34-125 / EN50182 ACSR Cable Steel Reinforced

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Product Details

Product parameter

Application

ACSR Cable is widely used in overhead transmission and distribution lines of various voltage levels.Due to its reliability and strength-to-weight ratio, ACSR are suitable for all practical spans of timber poles, transmission towers and other structures.They have been one of the most popular choices for electrical systems.

Advantages

- ACSR is recognized for its economy, dependability and better strength to weight ratio.
- ACSR combine the light weight and good conductivity of aluminum with the high tensile strength of steel, this can provide the conductor higher tensions, less sag, and longer span lengths.

Construction

ACSR cable is made of multiple non-insulated single wires twisted together.The inside is a steel core(single or twisted core), and the outside is twisted with aluminum wires around the steel core.
The steel core's primary function is to increase strength, and the aluminum stranded wire's primary function is to convey electrical energy.

NF C 34-125  EN50182 ACSR Cable Steel Reinforced (2)

Packing

Delivery lengths are determined from a consideration of such factors as physical drum dimensions, drum weights, span length, handling equipment or the customer’s request.

Packing Materials

Wooden drum, steel-wooden drum, steel drum.

Specifications

-NF C 34-125/EN50182 French Standard which is mostly equal to European Union Standard

NFC 34-125/EN50182 Standard ACSR Cable Size Chart NFC 34-125 Equal steel wire and aluminum wire conductor BS EN 50182:2001 Aluminum alloy conuductors steel reinforced in France - Type AL4/ST6C

CODE NAME

Calculated cross-section area

Conductor Construction

Approx. Overall

diameter

Approx. Overall

weight

Maximum DC

resistance at 20oC

Rated

strength

Al-Alloy

Steel

Al-Alloy

Steel

mm2

mm2

No.xmm

No.xmm

mm

kg/km

Ω/km

DaN

PHLOX 37.7

28

9.42

9 x 2.0

3 x 2.0

8.32

152

1.176

2,285

PHLOX 59.7

38

21.99

12 x 2.0

7 x 2.0

10

276

0.882

4,415

PHLOX 75.5

48

27.83

12 x 2.25

7 x 2.25

11.25

348

0.697

5,585

PHLOX 116.2

57

59.69

18 x 2.0

19 x 2.00

14

624

0.59

10,490

PHLOX 147.l

72

75.54

18 x 2.25

19 x 2.25

15.75

790

0.467

13,280

PASTEL 147.1

119

27.83

30 x 2.25

7 x 2.25

15.75

547

0.279

7,910

PHLOX 181.6

88

93.27

18 x 2.50

19 x 2.50

17.5

975

0.378

16,020

PASTEL 181.6

147

34.36

30 x 2.50

7 x 2.50

17.5

672

0.226

9,630

PHLOX 228

111

116.99

18 x 2.80

19 x 2.80

19.6

1,225

0.3

20,100

PASTEL 228

185

43.1

30 x 2.80

7 x 2.80

19.6

848

0.18

12,080

PHLOX 288

140

148.07

18 x 3.15

19 x 3.15

22.05

1,550

0.238

24,990

PASTEL 288

234

54.55

30 x 3.15

7 x 3.15

22.05

1,070

0.142

15,130

PASTEL 299

206

93.27

42 x 2.50

19 x 2.50

22.5

1,300

0.162

19,850

PHLOX 376

148

227.83

24 x 2.80

37 x 2.80

25.2

2,200

0.226

36,930

NFC 34-125 Non-Equal steel wire and aluminum wire conductor BS EN 50182:2001 Aluminum alloy conuductors steel reinforced in France - Type AL4/ST6C

CODE NAME

Calculated cross-section area

Conductor Construction

Approx. Overall

diameter

Approx. Overall

weight

Maximum DC

resistance at 20oC

Minimum breaking load

Al-Alloy

Steel

Al-Alloy

Steel

mm2

mm2

No.xmm

No.xmm

mm

kg/km

Ω/km

DaN

PHLOX 94.1

51.95

42.12

15 x 2.10

19 x 1.68

12.6

481

0.642

7,795

PASTEL 412

325.72

85.95

32 x 3.60

19 x 2.40

26.4

1,593

0.103

22,380

PETUNIA 612

507.83

104.79

66 x 3.13

19 x 2.65

32.1

2,245

0.0657

31,260

PETUNIA 865

717.33

148.06

66 x 3.72

19 x 3.15

38.1

3,174

0.0465

43,030

POLYGONUM 1185

955.66

272.82

54 x 2.80

66 x 3.47

37 x 2.80

44.7

4,475

0.0349

63,210

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