HOT DIP G.I CABLE TRAY

HOT DIP G.I CABLE TRAY
HOT DIP G.I CABLE TRAY
HOT DIP G.I CABLE TRAY
HOT DIP G.I CABLE TRAY
HOT DIP G.I CABLE TRAY
HOT DIP G.I CABLE TRAY
HOT DIP G.I CABLE TRAY

HOT DIP G.I CABLE TRAY Specification

  • Surface Finish
  • GI Galvanized
  • Max. Working Load
  • 1000
  • Conductor Material
  • Aluminum
  • Product Type
  • Ladder Tray
  • Power Rating
  • 5
  • Standard Thickness
  • 50 Millimeter (mm)
  • Length
  • 100 Meter (m)
  • Width
  • 50 Millimeter (mm)
  • Side Rail Height
  • 2100 Millimeter (mm)
  • Weight
  • 2500 Kilograms (kg)
  • Dimension (L*W*H)
  • 50 Millimeter (mm)
  • Usage & Applications
  • 2100
  • Rated Voltage
  • 21 Milliamperes (mA)
  • Color
  • Colorless
  • Operating Temperature
  • 2500 Planck temperature ()
  • Cable Type
  • BOX
  • Warranty
  • 1
  • Display Type
  • BOX
  • Phase
  • 5
  • Features
  • Superior Corrosion Resistance, Durability and High Load Capacity
  • Rated Current
  • 2100 Megaampere ( MA)
  • Conductor
  • GI
  • Frequency
  • 2200 Megahertz (MHZ)
  • Material
  • GI
 

HOT DIP G.I CABLE TRAY Trade Information

  • Minimum Order Quantity
  • 13 Pieces
  • Delivery Time
  • 1 Days
 

About HOT DIP G.I CABLE TRAY

A Hot Dip G.I. (Galvanized Iron) Cable Tray is a protective, structural system designed to support and manage electrical cables in commercial and industrial settings. It is essentially a steel support structure that has been coated with a thick layer of zinc using the hot-dip galvanization process.


Key Components and Finish

1. Structure

The term "cable tray" refers to the support system itself, which can come in several primary structural types:

  • Perforated (Ventilated) Tray: Features holes in the bottom to provide cable ventilation, heat dissipation, and points for cable fastening.

  • Solid Bottom Tray: Provides maximum physical protection for cables but requires separate drain holes to prevent moisture buildup.

  • Ladder Tray: Consists of two side rails connected by rungs, offering maximum airflow and easy cable entry/exit.

2. Finish (Hot Dip G.I.)

The Hot Dip G.I. (Galvanized Iron) finish is the defining feature, providing superior durability and corrosion resistance:

  • Material: The tray is fabricated from carbon steel.

  • Process: After fabrication (cutting, welding, punching), the entire steel component is immersed in a bath of molten zinc (typically at $450{\circ} \text{C}$).

  • Coating: This process creates a thick, metallurgically bonded zinc layer on all surfaces (interior and exterior). The coating acts as a barrier to moisture and corrosion, and as a sacrificial anode to protect the underlying steel if the coating is scratched.

  • "G.I." (Galvanized Iron) is the common industry term referring to this zinc-coated steel material.


Primary Purpose and Applications

The combination of the robust steel structure and the durable HDG coating makes this cable tray type ideal for:

  • Harsh Environments: Essential for outdoor installations, coastal areas (marine environments), high-humidity zones, and heavy industrial facilities (like chemical plants, oil refineries, and power generation stations) where long-term protection against corrosion is critical.

  • Heavy-Duty Cable Support: Capable of supporting large volumes and heavy weights of power and control cables over long support spans.

  • Electrical Safety: Provides a continuous electrical path for equipment grounding and offers a degree of physical protection and electromagnetic shielding for the cables.



Robust Design and Durability

Our HOT DIP G.I Cable Tray is constructed using high-quality galvanized steel, providing outstanding corrosion resistance and enhancing longevity in harsh environmental conditions. The sturdy design delivers high load capacity, making it perfectly suited for infrastructure that demands reliable cable management.


Versatile Applications

This cable tray supports a wide variety of cable types, including GI and aluminum conductors, and is particularly effective in industrial, commercial, and power distribution settings. Its dimensions and rated current ensure suitability for large-scale installations where dependability and safety are paramount.


Installation and Maintenance

Featuring a straightforward installation process, the cable trays BOX display type and standardized dimensions allow for easier assembling and mounting. Its GI galvanized finish requires minimal maintenance, reducing long-term operational expenses and ensuring continuous, secure cable service.

FAQs of HOT DIP G.I CABLE TRAY:


Q: How does the hot dip galvanized finish benefit the cable tray in demanding environments?

A: The hot dip galvanized (GI) finish enhances the cable trays resistance to corrosion, especially in humid, industrial, or outdoor environments, ensuring long-term durability and reduced maintenance needs.

Q: What is the recommended process for installing the HOT DIP G.I Cable Tray?

A: Installation involves securing the tray using standard brackets and supports aligned with its 50 mm width and 100-meter length. It is advisable to follow manufacturer guidelines to maximize load capacity and maintain safety standards.

Q: When should this cable tray be used over other types?

A: Choose this HOT DIP G.I Cable Tray for applications demanding superior corrosion resistance, high load capacity, and the need to accommodate BOX-type cablesespecially in power distribution settings and large industry installations.

Q: Where can the HOT DIP G.I Cable Tray be installed?

A: The tray is suitable for indoor and outdoor installations in commercial buildings, factories, power plants, and data centers, thanks to its robust structure and high IP5 ingress protection rating.

Q: What cables and conductors are compatible with this tray?

A: This cable tray is compatible with BOX-type power and control cables, as well as GI and aluminum conductors, providing reliable support for various wiring systems.

Q: How does the trays high load and power rating benefit users?

A: With a maximum working load of 1000 kg and a rated current of 2100 MA, the tray safely supports extensive cable networks, minimizing the risk of sagging or failure in high-demand scenarios.

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