Large Span Steel Industrial Park Buidling
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Product Introduction
Product Introduction
The span of steel structure generally refers to the distance between the two ends of the steel structure, usually in meters.
The large-span steel structure refers to the steel structure building that spans more than 30 meters horizontally. Usually used in industrial parks, large warehouses, stadiums, exhibition centers, airports, stations and so on.
Product Specification
| Brand name | XGZ |
| Frame grade | Q355/Q235B/ASTM ETC. |
| Surface treatment | Paint/Hot dip galvanization |
| Products | Steel frame/crane/roof and wall panel/insulation/window/door/skylight/ventilation/ceiling/solar panel/Louver/Mezzanine/curtain wall and other customized products |
| Delivery time | 20-60 days after shop drawing confirmed |
| Service life | 50 years |
| MOQ | 1,000 square meter |
Our Certifications
The company significantly investigates international development in response to the global market, guided by the national "The Belt and Road" policy, and its products are well-known worldwide.The company has acquired ISO 9001 quality management system certification, CE certification(EN1090 Certificate), and other certifications to enhance its ability to cater to the global market. Our projects currently span over 130 nations and regions in North and South America, Asia, Africa, Europe, Oceania, etc.



Packaging & Shipping
1. Steel components are packaged with iron pallets at the factory with the coding number, which is convenient for customers to unload.
2. Small steel structures are tied with iron wire and labeled.
3. Fasteners are packed in wooden cases.
4. All siding and roof panels will be laminated on both sides and securely secured in the container.
5. Mode of transport: sea, air, inland river transport.
Design Principles
The design quality of steel structure building is directly related to the safety, economy and use function of the project. The design of steel structure buildings should follow the following principles:
1. Safe And Reliable.
Ensure that the structure can maintain the necessary overall stability and carrying capacity within the design service life, under the action of various natural and human factors, and ensure the safety of personnel and property.
2. Economical Applicability.
Under the premise of meeting the safety and use functions, reasonable selection of structural forms and materials, optimization of design, reduction of cost, and improvement of investment efficiency.
3. Applicability.
The design should fully consider the needs of the production process to ensure that the spatial layout, structural form and column layout of the building meet the use function, while taking into account the possibility of future development.
4. Aesthetics.
On the basis of meeting the functional needs, we should also pay attention to the appearance design of the building, so that it can be coordinated with the surrounding environment and reflect the corporate culture.
5. Sustainability.
In the design process, we should pay attention to energy saving and material saving, promote the use of renewable materials, reduce the negative impact on the environment, and achieve sustainable development of economy, society and environment.
6. Seismic Fortification Principle
According to the seismic intensity of the building, reasonable design of the seismic structure to ensure that the necessary bearing capacity, stiffness and stability can be maintained under the earthquake.
7. Compliance With Laws And Regulations
The design must comply with the current building codes, technical standards and specifications of the country where the building is located.










