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Flexible and High Strength Conductor Mesh Sock Joints with Vibration Resistance for Overhead Power Lines

1 PCS
MOQ
negotiable
Precio
Flexible and High Strength Conductor Mesh Sock Joints with Vibration Resistance for Overhead Power Lines
Caracteristicas Galería Descripción de producto Pida una cita
Caracteristicas
Especificaciones
Nombre: Las demás articulaciones de medias de malla de conductor
Modelo: SLW-1.5-SLW-12
Garantía: 1 año
Carga nominal: Entre 15 y 120KN
ACSR: 70 a 1250
Carga de rato: 30 a 250KN
Resaltar:

Flexible Mesh Sock Joints

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High Strength Conductor Mesh Sock Joints

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Vibration Resistance Mesh Sock Joints

Información básica
Nombre de la marca: Suntech
Certificación: ISO
Model Number: Conductor Mesh Sock Joints
Pago y Envío Términos
Packaging Details: Plywood Case
Delivery Time: 3-7days
Payment Terms: T/T,L/C
Supply Ability: 5000 PCS/Month
Descripción de producto
Superior Conductor Mesh Sock Joints for Flexible and High Strength Splices on Overhead Power Lines
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.
Product Specifications
Item Number Model Applicable Conductor (ACSR) Rated Load (KN)
17161 SLW(S)-1.5 ACSR70-95 15
17162 SLW(S)-2 ACSR120-150 20
17163 SLW(S)-2.5 ACSR185-240 25
17164 SLW(S)-3 ACSR300-400 30
17165 SLW(S)-4 ACSR500-600 40
17166 SLW(S)-5 ACSR720 50
17167 SLW(S)-7 ACSR900 70
17168 SLW(S)-8 ACSR1000-1120 80
17169 SLW(S)-12 ACSR1250 120
Key Features and Benefits
  • Exceptional Flexibility and Vibration Resistance: The woven mesh design allows the joint to move and flex with the conductor, effectively absorbing wind-induced vibration stresses. This dramatically reduces the risk of fatigue failure and enhances power line longevity.
  • Accommodates Thermal Expansion and Contraction: Designed to expand and contract with the conductor, maintaining constant pressure and excellent electrical contact throughout temperature cycles to prevent hot spots and arcing.
  • Rapid and Straightforward Installation: Simple slip-on and compression process is significantly faster than bolted components, reducing labor time and minimizing installation errors.
  • Uniform Pressure Distribution for Optimal Contact: 360-degree grip ensures large surface area contact with very low electrical resistance, minimizing energy loss and heat generation.
  • Superior Mechanical Strength and Durability: Forms a permanent, high-strength connection stronger than the conductor itself, built from corrosion-resistant materials for decades of maintenance-free service.
  • Ideal for Emergency Restoration and Tight Spaces: Compact and flexible design perfect for quick emergency repairs and confined spaces where bulky hardware is impractical.
  • Versatility Across Applications and Conductor Types: Suitable for splicing main conductors, repairing damaged sections, and connecting jumpers across various aluminum and aluminum-alloy conductors.
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.
Flexible and High Strength Conductor Mesh Sock Joints with Vibration Resistance for Overhead Power Lines 0
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Póngase en contacto con nosotros
Persona de Contacto : Mr. Peter Mao
Teléfono : 86-13958364836
Caracteres restantes(20/3000)