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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 an essential temporary structure widely used in construction, renovation, maintenance, and industrial projects to provide workers with safe, elevated, and stable platforms. It enables reliable access to high, complex, or restricted areas where ladders and lifts are insufficient, supporting tasks such as bricklaying, plastering, painting, façade installation, window repair, mechanical servicing, electrical work, and structural inspection. By improving accessibility and working stability, scaffolding enhances overall project productivity and ensures consistent quality during demanding operations.

    A key advantage of scaffolding is its modular and adaptable configuration. Standard components such as vertical standards, ledgers, braces, couplers, platforms, base jacks, guardrails, and toe boards can be assembled in countless arrangements to suit various architectural shapes, heights, and environmental conditions. This flexibility allows scaffolding to accommodate curved walls, tall structures, interior ceilings, bridges, tunnels, industrial tanks, and restoration of historical buildings. The modular concept enables precise adaptation to project requirements while maintaining structural integrity.

    The materials used in scaffolding construction are chosen for their durability, strength, and resistance to environmental stress. Steel scaffolding offers exceptional load-bearing capacity and long-term stability, making it ideal for heavy-duty construction and exterior building projects. Aluminum scaffolding is valued for its lightweight properties, allowing easier transportation, fast assembly, and frequent repositioning, especially in indoor or multi-area work environments. Modern systems feature corrosion-resistant coatings, precision-engineered joints, and high-strength locking mechanisms to deliver safe and dependable performance across multiple uses.

    Safety remains the most important aspect of scaffolding design. Non-slip platforms, secure couplings, strong guardrails, safety gates, toe boards, stable foundations, and protective netting help prevent falls and reduce accidents. Compliance with safety standards such as OSHA, EN12811, and ISO guidelines ensures that scaffolding structures meet strict engineering requirements and load capacities. Routine inspection, correct installation, and professional training play a vital role in maintaining a safe working environment, minimizing risks during high-altitude operations.

    Beyond safety, scaffolding significantly improves efficiency on job sites. It provides continuous working surfaces that eliminate constant repositioning and allow smoother movement of workers, tools, and materials. Specialized scaffolding systems—such as suspended scaffolding, mobile towers, ringlock scaffolding, tube-and-coupler systems, cantilever scaffolds, and formwork support structures—address specific challenges and enhance workflow. Suspended scaffolds enable high-rise façade access, while mobile scaffolding supports rapid progress in interior projects such as painting, electrical setup, and mechanical installation.

    Scaffolding is also used in industrial environments, shipbuilding, refinery maintenance, event staging, public protection tunnels, and large signage installation. Its ability to be assembled, adjusted, expanded, and dismantled quickly ensures minimal disruption and supports project schedules efficiently. Many modern scaffolding systems emphasize reusability, sustainability, and long-term cost effectiveness by allowing repeated deployment across various job sites.

    In summary, scaffolding is a fundamental tool that supports the modern building and industrial sectors. Its combination of safety, flexibility, strength, and functional efficiency makes it an indispensable asset for a wide range of applications. As construction technology continues to advance, scaffolding systems evolve to deliver even greater reliability, performance, and adaptability.

     

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