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Scaffolding

Scaffolding is a working platform erected to ensure the smooth progress of various construction processes.

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  • 产品描述
  • Product Introduction

    Scaffolding is a working platform erected to ensure the smooth progress of various construction processes. According to the location of erection, it is divided into external scaffolding and internal scaffolding. According to different materials, it can be classified into wooden scaffolding, bamboo scaffolding and steel pipe scaffolding. According to their structural forms, they can be classified into vertical pole scaffolding, bridge scaffolding, portal scaffolding, suspended scaffolding, hanging scaffolding, cantilever scaffolding and climbing scaffolding.

    Different types of construction projects require scaffolding for different purposes. Most bridge support frames use bowl buckle scaffolding, and there are also some that use portal scaffolding. For the ground scaffolding of the main structure construction, coupler scaffolding is mostly used. The longitudinal distance between the vertical rods of the scaffolding is generally 1.2 to 1.8 meters. The horizontal spacing is generally 0.9 to 1.5 meters.
    Compared with general structures, the working conditions of scaffolding have the following characteristics:
    1. The variability of the load it bears is relatively large;
    2. The connection nodes of the fasteners are semi-rigid, and the rigidity of the nodes is related to the quality of the fasteners and the installation quality, resulting in significant variations in the performance of the nodes.
    3. The scaffolding structure and components have initial defects, such as the initial bending and rusting of the members, large dimensional errors during erection, and eccentric loading, etc.
    4. The connection points with the wall have a relatively large variation in the binding force on the scaffolding. The research on the above issues lacks systematic accumulation and statistical data, and does not have the conditions for independent probability analysis. Therefore, the value of the adjustment coefficient less than 1 multiplied by the structural resistance is determined by calibrating it with the safety factor used in the past. Therefore, the design method adopted in this specification is essentially semi-probabilistic and semi-empirical. Meeting the structural requirements stipulated in this specification is the basic condition for the design and calculation of scaffolding.

    Product Parameters

    Item No. Description Weight (kgs)
    model 1 H Frame Width 914mm,Height 1524mm 7.96
    model 2 H Frame Width 914mm,Height 1700mm 11.43
    model 3 H Frame Width 1219mm,Height 1524mm 9.16
    model 4 H Frame Width 1219mm,Height 1700mm 12.76
    model 5 H Frame Width 1219mm,Height 1930mm 14.24

    Scaffolding is a critical temporary structure used across construction, renovation, industrial maintenance, and infrastructure projects to provide workers with safe, stable, and elevated platforms. These platforms allow personnel to reach high, complex, or otherwise inaccessible areas efficiently, ensuring smooth progress for tasks such as masonry, painting, façade installation, window replacement, mechanical repair, and structural inspection. With its ability to adapt to diverse building shapes and project requirements, scaffolding has become an indispensable component of modern construction systems.

    A core advantage of scaffolding lies in its modular and flexible design. Components such as vertical standards, horizontal ledgers, diagonal braces, base plates, couplers, planks, guardrails, and toe boards can be assembled in numerous configurations. This structural versatility enables scaffolding to support work at various heights and around curved, angled, or irregular building surfaces. From small residential renovations to large-scale commercial complexes, scaffolding can be precisely tailored to site conditions and safety requirements.

    Scaffolding materials are selected for durability, strength, and ease of handling. Steel scaffolding is valued for its exceptional load-bearing performance and long-term reliability, making it ideal for heavy-duty construction. Aluminum scaffolding, on the other hand, offers lightweight convenience, allowing workers to transport, assemble, and reposition sections with minimal effort. Regardless of material type, modern scaffolding systems incorporate corrosion-resistant coatings and high-strength joints that maintain structural stability under continuous use.

    Safety remains the foremost priority in scaffolding design. Non-slip platforms, locking mechanisms, reinforced couplers, guardrails, protective netting, and secure foundations contribute to preventing falls and ensuring worker stability. Many systems comply with international safety standards such as OSHA, EN12811, and ISO guidelines. Regular inspection, proper training, and correct assembly methods are essential practices that further enhance site safety and reduce operational risks.

    Beyond safety, scaffolding significantly improves on-site productivity. It provides workers with uninterrupted access along vertical and horizontal surfaces, allowing them to move materials efficiently and perform operations with greater precision. Specialized systems such as suspended scaffolding, mobile towers, ringlock scaffolding, and cantilever platforms offer tailored solutions for unique project environments. Suspended scaffolds support high-rise façade work, while mobile systems accelerate interior finishing tasks by enabling rapid movement across the workspace.

    Scaffolding also supports temporary structures such as formwork systems for concrete casting, protective pedestrian tunnels, event platforms, industrial inspection stages, and shipbuilding operations. Its ability to be quickly assembled and dismantled minimizes project delays and reduces impact on surrounding environments.

    Overall, scaffolding is a fundamental element of the construction industry, valued for its strength, adaptability, safety, and efficiency. As architectural complexity increases and safety standards evolve, scaffolding continues to advance in design and performance, serving as a reliable backbone for modern building and maintenance operations

    Steel scaffolding is an essential temporary structure used across construction, maintenance, and industrial projects to provide safe, stable, and elevated working platforms. Manufactured from high-quality carbon steel or galvanized steel, it delivers exceptional structural integrity, load-bearing capacity, and long-term reliability under demanding site conditions. As construction technologies advance and safety standards increase globally, steel scaffolding has become the preferred solution for high-rise buildings, infrastructure works, industrial plants, interior finishing, and complex engineering projects.

    Steel scaffolding systems are designed to support workers, tools, and building materials while ensuring maximum stability. Unlike wooden scaffolds, steel systems offer superior strength, uniform performance, and resistance to deformation. Their modular design enables rapid assembly and disassembly, reducing labor intensity and improving on-site efficiency. Components such as steel pipes, frames, ledgers, braces, couplers, base plates, and platforms are engineered with precision to ensure safety, compatibility, and consistent load distribution.

    One of the major advantages of steel scaffolding is its outstanding durability. Hot-dip galvanized or powder-coated finishes offer strong protection against corrosion, rust, and weathering, making the system suitable for outdoor and long-term projects. Even in environments involving high humidity, chemicals, or extreme temperatures, steel scaffolding retains its structural performance. This durability ensures long service life and makes steel scaffolding a cost-effective investment for contractors, builders, and rental companies.

    Steel scaffolding is available in several types, including frame scaffolding, ringlock scaffolding, cuplock scaffolding, kwikstage scaffolding, tube-and-clamp scaffolding, and modular system scaffolds. Each configuration offers unique advantages depending on project complexity and assembly requirements. For example, ringlock scaffolding provides high flexibility and rapid erection for irregular structures, while frame scaffolding is widely used for simple façade work due to its lightweight, standardized components. Tube-and-clamp scaffolding remains the most adaptable solution for complex geometries, industrial facilities, and maintenance operations.

    Safety is a primary consideration in steel scaffolding design. Systems are engineered to comply with international standards such as OSHA, EN12811, AS/NZS1576, and ISO certifications. Features like anti-slip steel planks, guardrails, toeboards, diagonal bracing, and adjustable base jacks enhance stability and minimize the risk of accidents. Additionally, high-strength steel tubes ensure dependable load-bearing performance, making the structure safe for workers performing tasks such as bricklaying, painting, plastering, installation, and equipment maintenance.

    Modern steel scaffolding systems emphasize easy installation and versatility. Components are designed for quick connection through wedge locks, rosettes, or couplers, significantly reducing construction time. The modular nature allows workers to adjust height, width, and platform layout precisely according to project needs. This adaptability makes steel scaffolding suitable for construction sites, bridges, tunnels, power plants, shipyards, petrochemical facilities, and event staging.

    In addition to safety and durability, steel scaffolding offers environmental benefits. Reusable steel components reduce material waste, while galvanized surfaces extend product life cycles, making steel scaffolding an eco-friendly choice that supports sustainable construction practices. Furthermore, steel is fully recyclable, allowing old or damaged components to re-enter the production cycle without generating excess waste.

    From large-scale commercial construction to small renovation projects, steel scaffolding plays a critical role in enabling efficient progress and safe operations. Its combination of high strength, reusability, versatility, and cost effectiveness makes it one of the most widely used access solutions in global construction industries. As urban development accelerates and infrastructure demands grow, steel scaffolding continues to evolve with improved engineering, enhanced safety features, and intelligent modular designs that meet the needs of modern building environments.

    Steel scaffolding is not just a temporary structure; it is a vital support system that ensures workers can perform tasks safely, efficiently, and with confidence. Its reliability in harsh and complex conditions underscores its importance in shaping cities, constructing high-rise skylines, and maintaining essential industrial facilities. With ongoing innovations and increasing safety awareness, steel scaffolding remains an indispensable tool powering the world’s construction progress

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