Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 
Underground Cable Installation Puller 

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Underground Cable Installation Puller 

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Model No. :
Brand Name :
10yrs

Ningbo, Zhejiang, China

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Description du produit

1.Introduction

With the rapid development of the world economy and widely use of the electrical underground cable, the cable installment can take advantages of underground tunnels of street, bridge , park etc to directly bury or in conduit to occupy less area without affecting urban construction and aesthetics.

Considering the cable sectional area is getting bigger, we developed 8KN cable pusher to meet the developing project demand. It can improve the installment quality and process efficiently with less noise and light weight.

2.Parameters

Model number

DLSSJ8A

Motor model

JW7134.B3

Power(KW)

2X0.75

Rated voltage(V)

380

Motor speed(rpm)

1400

Applied cable diameter(mm)

Ø50~200

Rated linepull(KN)

8

Pulling speed (m/min)

6.5

Clamping direction

Parallel

Dimension(mm)

1000X657X464

Weight(KG)

220

3.Application

This pusher is applied for cable diameter from 50~200mm XLPE, oil filled power cable and communication cable, with the help of ground rollers to work by series connection with a group of pushers. And this pusher can also work as an auxiliary puller in the terminal.

4.Structure

This product adopts double belts power transmission structure in left-right structure to protect the cable insulation while transmission with excellent performance, small size, light weight, easy to operate. It consists of motor, reducer, transmission belt, clamping device, guide rollers, rack and other components (see figure 1)


underground cable installation puller



Each cable puller has a 70m power supply and a sub controller , each 6~10 sets controlled by a Main controller

1)70m power supply
underground cable installation puller


2) sub controller
underground cable installation puller

3) Main controller

underground cable installation puller
Customer in Singapore

underground cable installation puller
underground cable installation puller
underground cable installation puller

 

 

 

When the decision is made to "Go Underground" on a new distribution system, 
there are many different areas to consider prior to construction. In the following
paper, we would like to suggest some of these areas for your consideration in
regards to equipment and procedures for underground cable installation.
 
The three most common methods of cable placement are Direct Buried, Cable
in Conduit, and a Total Conduit System. Most Utilities are currently using one
or more of these methods with various degrees of success.
 
The first system or method commonly undertaken is the Direct Buried method.
As this system matures, a few questions come to the surface. How much care
was taken in preparation of the trench? How was the cable placed in the
trench? How does different cables react to different soils and ground
conditions? How complicated is it to replace damaged or faulted cable? When
a fault or damage caused by digging occurs, it is very time consuming to open
the trench and make repairs. All these factors and many more affect the
reliability and life of the conductor. 
 
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Due to these and other conditions, the Cable in Conduit method is considered
in some areas. The cable is placed in a conduit during the manufacturing
process, and this conduit protects the conductor as it lies in the trench, giving it
longer life.  However, most of the same questions occur when using the C.I.C.
method as occurs when using the Direct Buried method.
The particular method we would like to discuss in this paper is the Total
Conduit System.
 
1. System Preparation:
A.
A good system must be installed properly with attention given to
preparation of the trenches, placement of the conduit, and care
used when backfilling the trenches.
B.
Consideration should be given to selecting the size of inside
diameter to ensure adequate fill ratios and schedules such as   
DB-120, SCH-40, or SCH-80 as required in specific areas.
C.
The pulling cable has a great impact on the selection of the
schedule of the conduit. Initially, everyone assumed if synthetic
rope is good enough for overhead, it must be good enough for
underground as well. However, we learned synthetic rope
 
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generates heat, causes friction, and burns through the PVC.  The
most common response was to increase the wall thickness of the
conduit or even go to steel 90's in order to stop this problem. Since
the rope was causing the problem, most pullers today use steel
pulling ropes.  Steel ropes dissipate the heat over the length of the
cable and slides around the 90's, instead of burning through them.
D.
The maximum length between vaults depends on system designs,
customer requirements, and pulling equipment available. The
average pull normally runs between 500 and 1,000 ft., however,
some systems require cable pulls over 2,000 ft.
E.
How many 90-degree sweeps can one pull have before damage is
done to the conductor? The rule of thumb in the industry is a
maximum of 270 degrees. However, some designs or requirements
demand more, but keep in mind every 90-degree sweep adds
pulling tension to the pull. The cable manufacture normally
recommends a maximum pulling tension for a specific size and
type of conductor.
F.
Remember a good conduit system is sized, installed, and tested
(mandreled) properly prior to installing the conductor.
 
 
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2.  Pulling Equipment
A.
Drum type winches - A common practice is using the same drum
puller for overhead and underground, or a bed winch, to pull in the
URD conductor.  A drum type puller or winch has no way to
monitor actual line tension.  Also, the maximum pulling capacity is
obtained when the drum is empty.  As the drum fills up with cable,
the speed increases and the pulling tension decreases. At the end
of the pull when the drum is full, the winch is at its minimum
capacity; and that is when the pull is at its maximum tension.
B.
Bullwheel type pullers - A puller with bullwheels maintains the
same speed and tension when the drum is empty as when the
drum is full. The actual drum on this type puller is merely a storage
drum with no effect on the speed or tension.
C.
Underground pullers - A puller designed specifically for
underground normally has a dynamometer and footage counter to
allow the operator to monitor and maintain desired pulling tensions
and speeds for safe and efficient cable installation.
 
 
 
 
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3.
Reel Trailers
A.
Reel trailers are built in various designs and configurations and
normally carry from one to four reels. Care should be taken in the
selection of a safe and functional reel trailer with capacities equal
to the size and weights of the conductor reels.
B.
A Manual Reel Trailer is most commonly used for underground
construction. This trailer allows the puller to remove the conductor
at it's own speed with a manual overspin brake to prevent
overspinning.
C.
A Hydraulic Reel Trailer allows the operator to adjust the speed
and tension of the conductor hydraulically as it flows from the reel
stands.  However, care should be taken to ensure enough slack is
available to prevent the reel trailer from pulling against the puller,
which causes unnecessary tension on the conductor.
D.
Regardless of the design, manual or hydraulic, the trailer should be
equipped with a ball bearing on the reel shaft to prevent the
additional pulling tension and friction required just to turn the reel.
 
 
 
 
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4.  Rigging, Blocks, and Accessories
A.
Properly installed rigging ensures safe and efficient cable
installation with a minimum amount of damage to the conductor. If
the rigging slips during a pull, causing the pull to stop, the
conductor settles to the bottom of the conduit. When the pull
resumes, the pulling tension required to move the conductor is
much greater than the tension required before the pull stopped. 
B.
The diameter of the blocks used should be selected to ensure
proper bending radius and installation without damage to the
conductor. The cable manufacture will provide its
recommendations for specific cables and applications.
C.
Conduit Rollers are available to assist the conductor from the
conduit to the puller or reel trailer. This roller is designed to fit the
inside of the conduit and provide protection for the conductor as it
slides past the end of the conduit.
D.
Lip Rollers are used to assist the conductor over the lip of the vault
or manhole without unnecessary damage.
E.
Jamb Skids and Quadrant Blocks are normally used on larger
conductor installations. The jamb skid is designed to rest on the
floor of the vault and is secured to the manhole.
 
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F.
Feed Tubes assist the conductors from the reel trailers into the
vault and conduit. The round tube helps form the conductors into a
triangle shape to allow proper entry into the conduit. Without this
tool, normally someone has to assist the conductors into the
conduit.
5.
Lubricant
A.
It is very important to maintain a proper amount of lube on the
conductor as it is pulled into the conduit. Inadequate lubricant can
cause damage and unnecessary tension to the conductor during
installation. How much lube is "proper" or "adequate"? Pulling
conditions vary with conduit, conductor, length of pull, and layout
designs. Attached is a general chart that can be used to determine
the quantity of lubricant. However, the quantity needs to be
adjusted according to the pulling conditions.
 
 
 
 
 
 
 
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All of the above areas of consideration are very important steps to ensure safe,
reliable, and long lasting cable installation. 
1.
 A tested and proven Conduit System.
2. 
Select a Cable Puller to meet your specific needs.
3. 
The Reel Trailer should be designed to safely transport the conductor.
4. 
Make sure your rigging is safe and secure.
5. 
Use adequate amounts of lubricant.

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