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Zexing Electrical 30+ years production service experience, Industry leader in communications & power transmission.

69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 1
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 2
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 3
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 4
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 5
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 1
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 2
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 3
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 4
69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower 5

69kV-132kV Vertical Column with Dual Crossarms Angle Steel Transmission Tower

Our this tower employs a central vertical column coupled with dual horizontal crossarms. This configuration is crafted to offer improved load distribution, enhanced lateral stability, and efficient support for low & medium voltage transmission systems. The design is especially well-suited for areas where a balance between strength and material efficiency is critical.

· Robust Structure : High-grade angle steel ensures lasting durability.
· Efficient Load Distribution : Central column and dual crossarms balance loads effectively.

· Enhanced Stability : Diagonal bracing minimizes lateral movement under wind and dynamic loads.
Optimized Design : Ideal for 69kV-132kV lines in moderate terrains and climates.

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    Central Vertical Column

    ·  Material & Construction : Constructed from high-grade, high-strength angle steel, the vertical column is the backbone of the tower. Its robust build is engineered to bear significant vertical loads and transmit forces efficiently to the foundation.

    ·  Load Distribution : This column is designed to evenly distribute the weight of the transmission lines, ensuring that stress concentrations are minimized.

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    Dual Crossarms

    ·  Configuration : Two horizontally oriented arms are mounted near the top of the column. They may be slightly inclined outward to optimize the distribution of electrical load and improve the clearance and sag characteristics of the cables.

    ·  Functionality : These crossarms provide the necessary support for the conductors, allowing for efficient handling of tension forces and resistance against lateral loads induced by wind.

    "Enhanced Stability for Moderate Terrains and Wind Conditions"

    Diagonal Bracing System

    · Stabilization : A network of diagonal braces interlinks the vertical column and crossarms, significantly enhancing lateral rigidity. This bracing system is crucial for countering wind-induced vibrations and dynamic loads.

    ·  Integration : The braces are precisely engineered to maintain the integrity of the tower’s shape, ensuring that any oscillations are dampened effectively.

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    Foundation Interface

    ·  Anchoring : The tower is securely anchored to a specially designed concrete foundation. This interface is optimized to resist overturning moments and ensure long-term stability, even on slightly uneven or soft ground.

    ·   Installation : Pre-engineered connection points and bolted interfaces facilitate a modular assembly process, reducing on-site construction time and ensuring precise alignment.

    Product application

    Value: Our traffic signal poles provide stable support for urban traffic management systems with their high strength, durability and intelligent functions, enhancing traffic safety and efficiency. Through environmentally friendly design and intelligent control, the economic benefits and sustainability of the overall project are improved.

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    Application Scenarios

    · Voltage Level : Optimally designed for transmission lines operating between 69k to 132kV . 

    · Terrain: Best suited for slightly elevated or rolling terrains where even load distribution is essential.

    · Effective for regions that do not experience extreme seismic activity or excessively high wind speeds unless further engineering modifications are applied.

    · Climate: Ideal for areas with moderate wind conditions.

    · Its robust design allows it to perform reliably in various climatic conditions, including regions with seasonal temperature fluctuations and mild to moderate humidity.

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