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Superior Conductor Mesh Sock Joints for Flexible and High Strength Splices on Overhead Power Lines
Item number
Model
Applicable Conductor(ACSR)
Rated Load
(KN)
Single head
Double head
17161
17181
SLW(S)-1.5
ACSR70-95
15
17162
17182
SLW(S)-2
ACSR120-150
20
17163
17183
SLW(S)-2.5
ACSR185-240
25
17164
17184
SLW(S)-3
ACSR300-400
30
17165
17185
SLW(S)-4
ACSR500-600
40
17166
17186
SLW(S)-5
ACSR720
50
17167
17187
SLW(S)-7
ACSR900
70
17168
17188
SLW(S)-8
ACSR1000-1120
80
17169
17189
SLW(S)-12
ACSR1250
120
In the dynamic environment of overhead power line construction and maintenance, flexibility and reliability are key. Conductor Mesh Sock Joints offer a unique and highly effective solution for creating robust splices in electrical conductors. Unlike rigid connectors, these joints utilize a flexible mesh sleeve design that provides superior mechanical and electrical performance. They are specifically engineered to address the challenges of vibrating conductors, thermal expansion, and contraction, making them an indispensable component for modern utility networks. Our Conductor Mesh Sock Joints are designed for efficiency and durability, ensuring a quick, secure, and long-lasting connection that utility crews can depend on in both routine projects and emergency situations.
Exceptional Flexibility and Vibration Resistance: The defining feature of a mesh sock joint is its inherent flexibility. The woven mesh design allows the joint to move and flex with the conductor, effectively absorbing the stresses caused by wind-induced vibration. This dramatically reduces the risk of fatigue failure at the splice point, a common issue with more rigid connection methods, thereby significantly enhancing the longevity and reliability of the power line.
Accommodates Thermal Expansion and Contraction: As electrical conductors carry current, they heat up and expand; when the load decreases, they cool and contract. Our Mesh Sock Joints are designed to accommodate this constant movement. The flexible mesh expands and contracts along with the conductor, maintaining constant pressure and excellent electrical contact throughout these cycles. This prevents the formation of gaps that can lead to hot spots, arcing, and eventual connection failure.
Rapid and Straightforward Installation: One of the greatest advantages of these joints is the speed and ease of installation. The mesh sleeve is simply slipped over the prepared conductor ends and compressed using a dedicated tool. This process is significantly faster than installing multiple bolted components, reducing labor time and costs on the job site. The simplified procedure also minimizes the potential for installation errors, ensuring consistent and reliable results every time.
Uniform Pressure Distribution for Optimal Contact: The compression process creates a 360-degree grip around the conductor. This uniform pressure distribution ensures a large surface area of contact between the joint and the conductor. The result is a connection with very low electrical resistance, which minimizes energy loss and heat generation at the splice, contributing to overall grid efficiency and safety.
Superior Mechanical Strength and Durability: Once compressed, the mesh sock joint forms a permanent, high-strength connection that is often stronger than the conductor itself. Manufactured from high-quality, corrosion-resistant materials, these joints are built to withstand decades of exposure to harsh weather conditions, including UV radiation, moisture, and temperature extremes, ensuring a long and maintenance-free service life.
Ideal for Emergency Restoration and Tight Spaces: The compact and flexible nature of mesh sock joints makes them perfectly suited for emergency repair work where restoring power quickly is critical. They are also ideal for use in confined spaces, such as on densely packed distribution lines or near insulation points, where bulky hardware would be impractical or impossible to install.
Versatility Across Applications and Conductor Types: This solution is highly versatile and can be used for a wide range of applications, from splicing main conductors to repairing damaged sections and connecting jumpers. They are compatible with various types of aluminum and aluminum-alloy conductors commonly used in both transmission and distribution networks, providing a universal splicing solution for utility fleets.
By choosing our Conductor Mesh Sock Joints, you are selecting a proven, efficient, and reliable method for creating lasting connections on overhead power lines. They represent a smart investment in the resilience and efficiency of your electrical infrastructure.
Suntech Power Group is one of the largest Procurement, Engineering & Contracting Group companies in China.Our group branch company and factory have already engaged
in the field of electric power more than 26 years.
1.Steel structure industry especially steel towers and related pr... Suntech Power Group is one of the largest Procurement, Engineering & Contracting Group companies in China.Our group branch company and factory have already engaged
in the field of electric power more than 26 years.
1.Steel structure industry especially steel towers and related pr...