Steel I-Beams
Steel I-Beams are structural steel profiles with an I-shaped cross-section, consisting of two horizontal flanges connected by a vertical web. Engineered for high strength-to-weight ratios, they efficiently resist bending and shear forces, making them ideal for load-bearing applications. Widely used in construction, bridges, industrial frameworks, and infrastructure projects, their design optimizes material usage while ensuring durability. Manufactured to international standards like ASTM, EN, and JIS, they are produced via hot rolling or welding processes, with grades such as A36, S235, and Q345. Their versatility allows customization in length, thickness, and surface treatments (e.g., galvanized).
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Key Attributes

Product NameSteel I-Beams
StandardJIS G3101 EN10025 ASTM A36 ASTM A572 ASTM A992
CertificateISO, SGS ,CE or other third party inspection acceptable.
Material GradeQ195-Q420 Series,S235JR-S355JR Series,ST Series,A36-A992 Series,Gr50 Series
Web Thickness5-16mm
Web Width50mm-300mm
Flange Thickness4.5mm-23mm
Flange Width50mm-400mm
TechniqueHot Rolled
Surface treatmentBare, black,galvanized,coated,painted or as your request
ApplicationIndustry,Construction,Decoration,Shipbuilding,Bridging,etc.
Trade termsEx-Work, FOB/CFR/CIF
Delivery Time7-15 days after receive the deposit.
PackingSeaworthy wooden pallet or according to client's requirement


Product Details

Steel I-Beams


Steel I-Beams


Steel I-beams, essential structural elements in modern engineering, feature an I-shaped cross-section with a central web and flanged ends, designed to maximize load-bearing capacity while minimizing material use. These versatile profiles distribute bending, shear, and compressive forces efficiently, making them foundational in skyscrapers, bridges, industrial plants, and infrastructure projects. Produced through hot-rolling or welding processes, they adhere to global standards like ASTM A992, EN 10025 S355, and JIS G3192, ensuring consistent mechanical properties and dimensional precision. Customizable in length, flange width, and web thickness, they adapt to diverse architectural and environmental demands, with optional coatings like galvanization for corrosion resistance.


About Us


The company is committed to providing customers with high-quality, low-cost steel products and strives to create value for customers. With advanced processing equipment and a strong logistics and distribution system, it can meet customer needs at any time.

Steel I-Beams


Benefits of Steel I-Beams


1. Structural Efficiency

Steel I-Beams are engineered for optimal load-bearing capacity with minimal material usage. Their I-shaped cross-section distributes stress efficiently, resisting bending and shear forces while reducing weight. This design enhances structural integrity and material economy, making them ideal for high-rise buildings, bridges, and industrial frameworks where strength-to-weight ratios are critical.

2. Cost-Effectiveness

Manufactured via hot-rolling or welding, Steel I-Beams offer low production costs and long-term durability. Their lightweight nature reduces transportation and installation expenses, while standardized dimensions minimize waste. Additionally, their long lifespan and low maintenance requirements lower lifecycle costs, providing economic advantages over alternative materials.

3. Adaptability in Architecture

The versatility of Steel I-Beams allows seamless integration into diverse architectural designs, from skyscrapers to bridges. Their ability to span long distances without intermediate supports enables open, flexible floor plans. Modular fabrication and customizable lengths further support innovative structural solutions, adapting to both aesthetic and functional demands.

4. Sustainability

Steel I-Beams are 100% recyclable, aligning with green building standards. Modern production methods, such as electric arc furnace (EAF) technology, significantly reduce carbon emissions by utilizing recycled scrap steel. This circular economy approach minimizes environmental impact, positioning steel as a sustainable choice for eco-conscious construction.

5. Seismic Performance

Designed to absorb and dissipate energy during earthquakes, Steel I-Beams exhibit superior ductility and lateral strength. Their flexibility prevents catastrophic failure, ensuring safety in seismic zones through controlled deformation. Experimental studies confirm their reliability under dynamic loads, making them a preferred material in earthquake-prone regions.

6. Ease of Installation

Lightweight and prefabricated, Steel I-Beams simplify construction processes. They can be quickly bolted or welded on-site, reducing labor costs and project timelines. Modular designs and standardized connections enhance assembly efficiency, enabling rapid deployment in both new builds and retrofits.

7. Design Flexibility

Steel I-Beams support customized fabrication, including curved profiles and tapered sections. This adaptability allows architects and engineers to realize complex geometries and optimize structural performance for specific loads. Their compatibility with advanced manufacturing techniques, such as 3D printing, further expands design possibilities.

8. Corrosion Resistance

When coated with protective finishes like galvanization or epoxy, Steel I-Beams resist corrosion in harsh environments. This durability extends service life and reduces maintenance needs, particularly in coastal or industrial settings. Advanced alloys and coatings enhance resistance to moisture, chemicals, and extreme temperatures.


Applications of Steel I-Beams


1. Building Construction

Steel I-beams are foundational in constructing residential, commercial, and industrial buildings. Their high load-bearing capacity and structural efficiency enable long spans without excessive weight, reducing material costs. Used as columns, beams, or trusses, they resist bending and compression, ensuring stability in multi-story structures. Their versatility supports diverse architectural designs while meeting seismic and fire safety standards.

2. Bridge Engineering

In bridges, steel I-beams form primary load-bearing elements like girders and trusses. Their strength-to-weight ratio allows for durable, cost-effective spans across rivers or highways. Corrosion-resistant coatings extend lifespan in harsh environments. Dynamic load resilience makes them ideal for high-traffic or heavy-vehicle applications, minimizing maintenance compared to concrete alternatives.

3. Industrial Frameworks

Factories and warehouses rely on steel I-beams for robust frameworks supporting heavy machinery and storage. Their precision fabrication ensures rapid assembly, reducing construction time. Customizable lengths and profiles adapt to specialized layouts, while thermal resistance prevents deformation in high-temperature industrial settings.

4. Mechanical Equipment

Steel I-beams provide rigid bases for cranes, conveyors, and manufacturing equipment. Their dimensional stability minimizes vibration, enhancing operational precision. Modular designs allow easy integration with automation systems, improving workflow efficiency in assembly lines and production plants.

5. High-Rise Structures

Skyscrapers use steel I-beams in core walls and lateral systems to withstand wind and seismic forces. Their lightweight nature reduces foundation stress, enabling taller buildings. Prefabrication accelerates construction, while fireproof coatings ensure compliance with safety codes for vertical urban expansion.

6. Aerospace Industry

Lightweight steel I-beams are used in aircraft hangars and satellite testing facilities. Their precision-engineered profiles support heavy aerospace equipment while maintaining structural integrity under extreme loads. High tensile strength ensures safety in environments requiring exacting tolerance for sensitive technologies.

7. Shipbuilding

Maritime structures employ steel I-beams for hulls, decks, and superstructures. Saltwater-resistant alloys prevent corrosion, while their strength supports cargo and machinery. Modular designs facilitate repairs and upgrades, critical for vessels operating in demanding oceanic conditions.

8. Railway Infrastructure

Rail bridges and elevated tracks use steel I-beams for tracks, platforms, and canopies. Their ability to span gaps efficiently supports high-speed rail systems. Vibration-damping properties reduce noise and wear from constant train traffic, ensuring reliability in heavy-use transportation networks.

Steel I-Beams

Quality Control and Technological Innovation


The company has an experienced technical R&D team, using internationally advanced production processes and testing equipment to ensure that each batch of products meets international quality standards. We strictly implement the ISO quality management system. From raw material procurement to finished product delivery, every link is strictly controlled to provide customers with the most reliable product guarantee. At the same time, we continue to explore the application of new technologies and new materials, drive development with innovation, and maintain our leading position in the industry.


Service Concept and Market Layout


The company adheres to the customer-centric service concept, provides customized solutions, responds quickly to customer needs, and ensures the punctuality of delivery and the thoughtfulness of service. Our foreign trade team is proficient in multiple languages, familiar with international trade rules, and can communicate effectively to provide customers with professional and efficient international trade services. At present, the company's products have successfully entered many international markets such as Europe, America, Africa, and Asia, and have won wide praise and trust.


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