I-Beam

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Galvanized I-beam


Galvanized I-beams are profile products in which hot-rolled or cold-rolled I-beams (long steel bars with “H” shaped cross-section, consisting of web and flange) are galvanized by hot-dip galvanizing (hot-dip galvanizing) or electro-galvanizing (cold-dip galvanizing) process to form a protective zinc layer on the surface. The core of the process is to enhance the corrosion resistance of the I-beam through the galvanizing process, while retaining the unique section mechanical properties of the I-beam, which is suitable for high-strength load-bearing scenarios.

Galvanized I-beam


Galvanized I-beams are profile products in which hot-rolled or cold-rolled I-beams (long steel bars with “H” shaped cross-section, consisting of web and flange) are galvanized by hot-dip galvanizing (hot-dip galvanizing) or electro-galvanizing (cold-dip galvanizing) process to form a protective zinc layer on the surface. The core of the process is to enhance the corrosion resistance of the I-beam through the galvanizing process, while retaining the unique section mechanical properties of the I-beam, which is suitable for high-strength load-bearing scenarios.

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Galvanized I-beam


Galvanized I-beams are profile products in which hot-rolled or cold-rolled I-beams (long steel bars with “H” shaped cross-section, consisting of web and flange) are galvanized by hot-dip galvanizing (hot-dip galvanizing) or electro-galvanizing (cold-dip galvanizing) process to form a protective zinc layer on the surface. The core of the process is to enhance the corrosion resistance of the I-beam through the galvanizing process, while retaining the unique section mechanical properties of the I-beam, which is suitable for high-strength load-bearing scenarios.

Galvanized I-beam


Galvanized I-beams are profile products in which hot-rolled or cold-rolled I-beams (long steel bars with “H” shaped cross-section, consisting of web and flange) are galvanized by hot-dip galvanizing (hot-dip galvanizing) or electro-galvanizing (cold-dip galvanizing) process to form a protective zinc layer on the surface. The core of the process is to enhance the corrosion resistance of the I-beam through the galvanizing process, while retaining the unique section mechanical properties of the I-beam, which is suitable for high-strength load-bearing scenarios.

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The Ingenious I-Beam: Backbone of Modern Construction

The Ingenious I-Beam: Backbone of Modern Construction


Discover the significance of the I-Beam in construction and engineering, and how it shapes our skyline.

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The Mighty I-Beam: Backbone of Construction News

The Mighty I-Beam: Backbone of Construction News


Discover how the I-Beam shapes construction and engineering, making headlines in the industry.

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