Hengyue Steel
Products Details
Pre-engineered Steel Building
Steel prefabricated components refer to assembly parts that are produced and processed to a certain extent in the factory, with an independent structural system, and can be directly transported to the construction site for installation. Common steel structure prefabricated components include steel beams, steel columns, steel bridge beams, steel structure floor slabs, etc. According to their application and form, they can be divided into frame prefabricated parts, plate prefabricated parts, steel pipe prefabricated parts, etc. The advantages of this structure include high strength, light weight, good overall stiffness, and strong resistance to deformation. It is particularly suitable for constructing large-span, ultra-high, and ultra-heavy buildings. After prefabrication in the factory, it can greatly save installation and welding work on the project site. Steel prefabricated components can be used for various types of mountain bridges, railway bridges, highway bridges, urban light rail bridges, substations, substations, ship structures, elevators, offshore platform structures, etc
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Pre-engineered Steel Building
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Description
Core advantage
Pre-engineered Steel Building is a sustainable, cost effective and very durable building material solution. It easily meets both aesthetic, technical requirements of a range of building codes around the world.
Design and construction
Advanced design tools: Cutting-edge software allows architects and engineers to create more complex and unconventional shapes, pushing the creative boundaries of building design.
Increased flexibility: While standardized, PEBs are highly customizable, allowing for a wide range of architectural styles and large, clear-span interiors.
Faster assembly: Components are factory-fabricated and pre-cut, leading to faster on-site assembly compared to conventional methods.
Energy efficiency and sustainability
Integrated renewable energy: Modern Pre-engineered Steel Building are designed to easily incorporate renewable energy systems, such as solar panels on large roofs, to reduce operational costs and carbon emissions.
Energy-efficient features: Improved insulation and sealing options lower heating and cooling costs, making a more energy-efficient choice.
Recyclability: Steel is a highly recyclable material, making a sustainable option with a lower environmental impact.
Aesthetics and expansion
Customizable appearance: Advances in cladding and facade options allow Pre-engineered Steel Building to achieve a wide variety of aesthetics, from industrial looks to modern designs using materials like faux brick, stone, or wood.
Ease of expansion: Pre-engineered Steel Building can be easily expanded to accommodate growth, providing a flexible solution for businesses that need to scale up their facilities.
Durability and cost
High durability: Steel is resistant to warping, rotting, pests, and fire, leading to a longer lifespan and lower maintenance costs.
Cost-effectiveness: The combination of faster construction, reduced labor, minimal waste, and lower maintenance contributes to the overall cost-effectiveness.
Application
Pre-Engineered Buildings are the most flexible solutions for contractors and owners. With the advantages of low cost, high durability, perfect quality control and fast erection; PEBs are used for various applications such as factories, warehouses, logistics center, showrooms, shopping malls, schools, hospitals, community buildings, etc…
Industry Application Scenarios
The field of architecture
High-rise buildings: such as steel structure office buildings and hotels, take advantage of the lightweight feature to reduce the foundation load and enhance seismic performance (for instance, some parts of the Shanghai Tower adopt steel structure core tubes).
Large-span buildings such as stadiums, exhibition centers, and airport terminals achieve column-free large Spaces through steel trusses or grid structures (for example, the National Stadium "Bird's Nest" uses Q460 high-strength steel sections).
Industrial plants: The framework of factory buildings in industries such as metallurgy, machinery, and warehousing, which need to bear the load of heavy equipment and be convenient for later equipment renewal and transformation.
Transportation infrastructure
Bridge engineering: Steel box girder Bridges and steel truss Bridges are suitable for cross-river and cross-sea Bridges, such as the steel structure sections of the Hong Kong-Zhuhai-Macao Bridge, which can withstand strong typhoons and seawater corrosion.
Rail transit: High-speed railway platform canopies, metro station steel structure supports, lightweight design reduces the pressure on the track foundation.
Energy and Special Engineering
In the power industry, the steel frames of power plant boilers and transmission and transformation towers need to withstand high temperatures and dynamic loads. The high strength and stability of section steel ensure the safe operation of the equipment.
Marine engineering: Offshore oil platforms and port terminals use weather-resistant steel sections or anti-corrosion treated steel sections to resist seawater erosion and tidal impacts.
Temporary and emergency projects
Disaster relief resettlement housing, temporary exhibition halls, etc., the steel components can be quickly disassembled and reused, meeting the timeliness requirements of emergency construction.
Related Solutions
The basic components of a bridge include the upper structure, lower structure, support system, and ancillary facilities. The substructure refers to the part of a bridge located below the support, also known as the supporting structure, which includes piers, abutments, and the foundation of piers. The adjacent two span bridge is located in the middle of the bridge, and the basic concept of the box girder structure is that all upper structures become integral hollow beams. When the main load passes through any position on the bridge, all parts of the hollow beam (ribs, top plate, and bottom plate) participate in the force as a whole. The lower structure is usually made of steel plates, steel pipes, angle steels, H-beams, and other parts, which are welded together through components and ultimately connected on-site by welding or bolts. Xinyue can provide customers with design analysis, drawing splitting, steel production, welding and forming work, etc.
Steel prefabricated components refer to assembly parts that are produced and processed to a certain extent in the factory, with an independent structural system, and can be directly transported to the construction site for installation. Common steel structure prefabricated components include steel beams, steel columns, steel bridge beams, steel structure floor slabs, etc. According to their application and form, they can be divided into frame prefabricated parts, plate prefabricated parts, steel pipe prefabricated parts, etc. The advantages of this structure include high strength, light weight, good overall stiffness, and strong resistance to deformation. It is particularly suitable for constructing large-span, ultra-high, and ultra-heavy buildings. After prefabrication in the factory, it can greatly save installation and welding work on the project site. Steel prefabricated components can be used for various types of mountain bridges, railway bridges, highway bridges, urban light rail bridges, substations, substations, ship structures, elevators, offshore platform structures, etc
Offshore structures are built specifically for drilling oil and gas deposits deep under the sea bed. Whilst applications will vary, all will have exposure to the effects of salt water corrosion, powerful sea currents often dictated by the tides and strong winds. Our search for natural fuel resources has stretched into even more inaccessible areas such as the Arctic which has also resulted in rigs drilling at much greater depths and hence lower temperatures. Structures in harsh working environments like these require a specific range of steels to promote greater safety, longer working life and reduce the risk of failure which in certain cases could prove disastrous.
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