POLYCAB 11KV HT 95SQMM ALUMINIUM ARMOURED CABLE

POLYCAB 11KV HT 95SQMM ALUMINIUM ARMOURED CABLE
POLYCAB 11KV HT 95SQMM ALUMINIUM ARMOURED CABLE

POLYCAB 11KV HT 95SQMM ALUMINIUM ARMOURED CABLE Specification

  • Features
  • Good Quality
  • Usage & Applications
  • Industrial
  • Conductor Type
  • Solid
  • Product Type
  • ALMUNIUM ARMD
  • Application
  • Industrial
  • Warranty
  • 1 year
  • Color
  • Black
  • Size
  • Standard
 

POLYCAB 11KV HT 95SQMM ALUMINIUM ARMOURED CABLE Trade Information

  • Minimum Order Quantity
  • 100 Meter
  • Payment Terms
  • Cash Advance (CA), Cash Against Delivery (CAD)
  • Supply Ability
  • 100 Per Day
  • Delivery Time
  • 2 Days
  • Sample Available
  • No
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • IN WOODEN DRUM.
  • Main Export Market(s)
  • Asia
  • Main Domestic Market
  • All India
  • Certifications
  • ISO CERTIFIED 9001:2015
 

About POLYCAB 11KV HT 95SQMM ALUMINIUM ARMOURED CABLE

Polycab 11kV HT 95 sq. mm Aluminium Armoured Cable: A Detailed Description

The Polycab 11kV HT 95 sq. mm Aluminium Armoured Cable is a robust and reliable solution for high-tension power transmission and distribution networks. Engineered for durability and safety, this cable is extensively used in a variety of demanding applications, including industrial plants, power stations, and large-scale commercial and residential projects. Its construction adheres to the stringent Indian Standard IS:7098 (Part-II), ensuring high performance and longevity.


Key Specifications

Feature Description
Voltage Rating 11,000 Volts (11kV)
Conductor Stranded Aluminium
Conductor Size 95 square millimeters (sq. mm)
Insulation Cross-Linked Polyethylene (XLPE)
Armouring Galvanised Steel (typically Flat Strip)
Outer Sheath Polyvinyl Chloride (PVC) - ST2 Grade
Number of Cores Typically 3 or 3.5 Cores

Construction Details

The Polycab 11kV HT cable is a multi-layered product, with each layer serving a critical function to ensure safe and efficient power transmission.

  • Conductor: At its core are stranded conductors made of high-conductivity aluminium. The stranded design provides flexibility, making the cable easier to handle and install. The 95 sq. mm cross-sectional area is designed to carry a specific electrical load at the rated voltage.

  • Conductor Screen: A layer of extruded semi-conducting compound is applied over the conductor. This screen helps to maintain a uniform electric field and minimize electrical stress, thereby enhancing the cable's lifespan.

  • Insulation: The primary insulating layer is made of Cross-Linked Polyethylene (XLPE). XLPE is renowned for its excellent electrical, thermal, and mechanical properties. It can withstand high temperatures and has a high dielectric strength, which is crucial for high-voltage applications.

  • Insulation Screen: Another layer of semi-conducting compound is extruded over the XLPE insulation. This, in conjunction with a metallic screen (often copper tape), provides a controlled path for fault currents and further contains the electric field.

  • Inner Sheath: A layer of PVC is applied over the laid-up cores. This inner sheath acts as a bedding for the armouring, protecting the insulated cores from mechanical damage during the armouring process and from moisture ingress.

  • Armouring: For mechanical protection against crushing forces, impact, and rodent attacks, a layer of galvanized steel is provided. This is typically in the form of flat strips for this type of cable. The armouring also serves as an earth continuity conductor.

  • Outer Sheath: The final layer is a tough and durable outer sheath made of PVC (ST2 grade), which is resistant to abrasion, chemicals, and weathering. It provides overall protection to the cable and is typically black in color.


Applications

This high-tension cable is specifically designed for use in underground power distribution networks and in fixed installations. Common applications include:

  • Power Distribution: As a primary feeder cable for transmitting power from substations to distribution points in urban and rural areas.

  • Industrial Sector: Powering heavy machinery and equipment in manufacturing plants, refineries, and mining operations.

  • Infrastructure Projects: Used in airports, seaports, and large construction sites for reliable power supply.

  • Commercial Buildings: For high-rise buildings and large commercial complexes requiring a stable and high-capacity power connection.

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