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Lifting Frame for Handling Building Materials

Lifting Frame  for Handling Building Materials for lifting building materials is a commonly used auxiliary tool in lifting operations. It is specially used to cooperate with cranes to lift various types of building materials efficiently and safely.

    Lifting Frame  for Handling Building Materials for lifting building materials is a commonly used auxiliary tool in lifting operations. It is specially used to cooperate with cranes to lift various types of building materials efficiently and safely.

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    Core features:

    • Balanced force: The load is dispersed through the crossbeam, so that each lifting point of the building material is evenly stressed, avoiding deformation and damage caused by single-point lifting. It is especially suitable for long strips (such as steel, prefabricated beams) and large-area (such as steel plates, stones) building materials. For example, when lifting a 6-meter-long prefabricated floor, multiple lifting points can prevent the floor from cracking.

    • Strong adaptability: The number, spacing and hook type of lifting points can be flexibly adjusted to adapt to different building materials such as steel bars, steel pipes, concrete components, and glass. For example, when lifting glass curtain wall panels, vacuum suction cup lifting points can be used instead; when lifting steel bar bundles, multiple sets of hooks can be used for dispersed grasping.

    • Improved efficiency: Lifting multiple pieces or large building materials at a time reduces the single lifting time of the crane. In the prefabricated component factory, a crossbeam hoist can lift 4-6 prefabricated columns at the same time, which is several times more efficient than single hook lifting.

    • Safe and stable: The rigid structure and multi-hanging point design of the beam reduce the risk of swinging and flipping during the lifting of building materials. With the anti-unhooking device (such as the hook safety card), the operation is further guaranteed to be safe, and the lifting of building materials in windy open-air yards is also more reliable.

    Typical application scenarios:

    • Construction sites: Lifting prefabricated beams, plates, columns, steel components (H-shaped steel, steel trusses), bundles of steel bars and steel pipes, greatly improving the efficiency of vertical transportation. For example, in the construction of high-rise residential buildings, the prefabricated wall panels of the entire floor are lifted with beam-type slings to quickly complete the assembly of prefabricated buildings.

    • Building materials processing plants: In steel structure plants, stone processing plants, and glass plants, the finished building materials are transported and processed to facilitate loading and storage. For example, the stone plant lifts large-format granite slabs to avoid the risk of damage caused by manual handling.

    • Logistics warehousing: Ports and warehouses load and unload building material containers and batches of building materials to achieve rapid loading and unloading of ships and vehicles. For example, container terminals lift whole boxes of tiles and pipes to shorten loading and unloading time and improve logistics turnover.

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