As a reliable manufacturer, Anbang New Energy is able to provide suitable galvanized steel tower solutions for your projects. We not only offer a comprehensive range of tower structures and designs, but also conduct practical analyses tailored to specific application scenarios, enabling us to provide recommendations that are optimally suited to the on-site environment and facilitate ease of subsequent operation and maintenance.
Galvanized steel pipe tower is the mainstream closed steel structure tower in the field of new energy transmission, power grid support, and station support, with high-strength tapered seamless steel pipe as the main substrate, through precision coiling welding, segmented flange splicing forming.
All components complete the national standard hot-dip galvanized anti-corrosion treatment, which is different from the open truss structure of the traditional angle steel tower, and has the core characteristics of streamlined cylinder low wind resistance, streamlined footprint, uniform force, and long-term anti-corrosion effect.
As the core load-bearing carrier of overhead conductors, photovoltaic wind power support, communication mounting, and security monitoring, it undertakes the key role of line load, windproof and earthquake resistance, and outdoor durable service.
Qingdao Anbang New Energy Galvanized Steel Pipe Tower has a complete range of categories and is suitable for multiple scenarios, covering five core series:
galvanized tubular steel tower
galvanized steel pipe transmission tower
high-pressure galvanized steel pipe tower
UHV galvanized steel pipe tower
galvanized steel pipe lattice tower
Anbang’s entire product line is manufactured using high-strength Q235/Q355 steel, fully compliant with national standards. The tower structure features a mechanically topology-optimized design, endowing it with bending stiffness significantly superior to that of conventional towers.
Compared to traditional angle-steel towers, our products exhibit a wind resistance coefficient reduction of over 30%, ensuring exceptional safety margins against both wind loads and seismic activity.
We strictly adhere to the GB/T13912 standard through a comprehensive, full-process hot-dip galvanization treatment. This process involves acid pickling for rust removal, immersion in high-temperature molten zinc, and subsequent solidification of the alloy layer, ultimately forming a dense zinc-iron protective coating with a minimum thickness of 85μm.
This protective layer employs a dual-mechanism defense, combining physical isolation with sacrificial anode protection—to effectively withstand corrosive attacks from coastal salt spray, industrial acid rain, and humid atmospheric environments.
Eliminating the need for subsequent coating repairs or maintenance, this solution is not only ideal for long-term service applications, such as high-voltage and ultra-high-voltage power transmission, but also fully satisfies the durability requirements of tubular towers and lattice towers operating under diverse and complex outdoor conditions.
We utilize a standardized, segmented flange-connection design featuring integrated prefabrication completed entirely at our factory. On-site construction requires only simple bolt assembly, thereby completely eliminating the need for high-altitude welding operations.
Our components feature high interchangeability, and the tower base footprint occupies only one-third the area of traditional towers. This makes our products particularly well-suited for restricted environments, such as sites with limited space, narrow transmission corridors, or urban power grid modernization projects.
Whether involving small-scale tubular towers or large-scale high-voltage and ultra-high-voltage tubular and lattice towers, our system ensures highly efficient construction and rapid project deployment.
From raw material rolling, flange forging, and anti-corrosion galvanization to final factory inspection, all critical parameters, including load-bearing capacity, weld integrity, coating quality, and vertical alignment, are rigorously verified by independent third-party agencies.
Across our five core product series, we offer exclusive customization services tailored to specific requirements regarding tower height, wall thickness, taper ratio, and attachment point configurations.
Tailored to the diverse requirements of various projects and environments, we provide comprehensive, one-stop turnkey solutions—integrating design, manufacturing, logistics, and installation—fully adapted to support a wide spectrum of new energy infrastructure projects across multiple voltage levels.
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Parameter Items |
Detailed Specifications |
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Main Material |
Q235B, Q355B high-strength carbon structural steel (universal for all series) |
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Applicable Height |
2m~25m (supports non-standard customization and expansion, suitable for different scenarios of each series) |
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Cylinder Specifications |
Diameter: 219mm~630mm, Wall Thickness: 6mm~14mm (lattice towers and UHV products can be thickened as needed) |
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Anti-corrosion Process |
Overall hot-dip galvanizing, zinc layer thickness ≥85μm (unified standard for all series) |
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Design Wind Resistance |
Multi-level adaptation: 120km/h, 150km/h, 180km/h (wind resistance level can be upgraded for high-voltage/UHV series) |
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Seismic Fortification |
8-degree seismic intensity (universal for all series, can be customized and reinforced for complex working conditions) |
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Working Environment |
-40℃~+45℃, suitable for all regions such as alpine, coastal areas and gobi (universal for all series) |
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Design Life |
Long-term outdoor service with 30 years of maintenance-free anti-corrosion (universal for all series) |
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Connection Method |
External flange segmental bolt connection, anti-theft fastening structure (lattice towers are additionally equipped with special connectors) |
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Implementation Standard |
GB50017 Steel Structure Code, YD/T5131 Tower and Mast Code, National Standards for Electric Power Industry (strictly followed by all series) |
Qingdao Anbang New Energy's five major series of galvanized steel pipe towers are widely applicable across multiple scenarios:
Galvanized tubular steel towers are suitable for small distribution networks and campus security support;
Galvanized steel transmission towers are suitable for 10kV-110kV urban and rural transmission lines, and photovoltaic and wind power collection lines;
High-voltage and ultra-high-voltage galvanized steel pipe towers are suitable for high-voltage transmission, substations, and other core infrastructure projects;
Galvanized steel lattice towers are suitable for complex terrains and high-load mounting scenarios.
Relying on advantages such as lightweight structure, superior corrosion resistance, rapid construction, and low life-cycle cost, these towers overcome industry pain points of traditional towers, such as large footprint, susceptibility to rust, and cumbersome operation and maintenance.
With green and durable steel structural products, they support the construction of new energy grid connections, power grid quality upgrades, and provide reliable steel support bases for various outdoor energy infrastructure.