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Shock-proof hammer


Shock-proof hammer is mainly used on ADSS optical cables, OPGW optical cables, OPPC optical cables and power overhead wires to eliminate or reduce the vibration of wires and optical cables under the action of laminar wind to prevent damage to clamping hardware and optical cables. There are two types of shock-proof hammers: bolt-fastened shock-proof hammers and pre-twisted wire shock-proof hammers.


Details Description

Shock-proof hammer is mainly used on ADSS optical cables, OPGW optical cables, OPPC optical cables and power overhead wires to eliminate or reduce the vibration of wires and optical cables under the action of laminar wind to prevent damage to clamping hardware and optical cables. There are two types of shock-proof hammers: bolt-fastened shock-proof hammers and pre-twisted wire shock-proof hammers.

Anti-vibration hammer selection table:

A: Pre-twisted fiber optic cable (OPGW, ADSS) anti-vibration hammer

Optional technical data requirements

model Applicable wire diameter (mm)

Main dimensions (mm)

Product weight (kg)

L

L2

H

Strand diameter (mm)

4D-20/Y10

9.0-18.0

300

45

70

7.5

1.60

4D-20/Y12

9.0-11.4

300

50

70

7.5

2.60

4D-20/Y16

13.2-15.2

300

50

70

7.5

2.60

4D-20/Y20

16.1-18.2

300

50

70

7.5

2.60

4D-30/Y16

13.2-15.2

350

52

70

9.0

3.50

4D-30/20

16.1-18.2

350

52

70

9.0

3.50

备注

The conductor clamp is made of aluminum alloy, the hammer head is galvanized, the pre-twisted wire is aluminum-clad steel wire, and the rest is galvanized steel stranded wire.

B: Bolt-fastened optical cable anti-vibration hammer (OPGW, ADSS):

Optional technical data requirements

Anti-vibration hammer model Aluminum wire clamp size (mm) Wire clamp holding length (mm) Total length L (mm)

Wire clamp length (mm)

Wire clamp height (mm) Steel strand diameter (mm) Product weight (kg)

4D-20

14

12.2-14.0

330

52

62

7.5

1.4

16

13.3-16.0

63

18

15.0-18.0

65

4D-30

20.3

16.5-20.3

383

52

70

9.0

2.5

23.4

19.5-23.4

72

27

22.5-27.0

73

4D-40

27.6

24.5-27.6

542

66

98

11

3.6

30.5

27.0-30.5

96

34

29.5-30.4

94

 

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FAQ

Q

Causes of optical cable damage?


A

Signal degradation or interruption due to external pressure, excessive bending or physical damage.

Q

What will happen if the transmission distance is too long?


A

Poor connection may lead to signal quality degradation or connection failure.

Q

What causes the performance of optical cables?


A

Environmental factors: High temperature and humidity changes may affect the performance of optical cables.

Q

What are the characteristics of optical cables?


A

Fast transmission speed, long transmission distance, strong anti-interference ability, large information capacity, high reliability

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