Construction method and application of integrated aluminum alloy formwork and insulation cantilever components

By integrating aluminum alloy formwork with insulation board pre-reinforcement, and simultaneously constructing the cantilever support and protection system, the problems of cumbersome process connections and separation of support and protection systems in traditional cantilever component construction are solved, achieving efficient and safe cantilever component construction.

CN122304498APending Publication Date: 2026-06-30XIONGAN DEV CO LTD OF THE 22ND METALLURGICAL GRP +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
XIONGAN DEV CO LTD OF THE 22ND METALLURGICAL GRP
Filing Date
2026-05-11
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Traditional cantilever construction involves cumbersome procedures, high construction time and costs, and the separation of support and protection systems leads to low construction efficiency and safety hazards.

Method used

An integrated connection of aluminum alloy formwork and insulation board pre-reinforcement is adopted, and the cantilever support and protection system is constructed simultaneously. The support and protection processes are integrated to realize the construction of cantilever components that integrate aluminum formwork and insulation.

Benefits of technology

Shorten the construction period, reduce costs, improve construction efficiency and molding quality, reduce safety hazards, and ensure the molding quality and insulation effect of cantilever components.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a construction method and application for an integrated aluminum alloy formwork and insulation cantilever component, belonging to the field of building construction technology. The invention includes: pre-assembling an insulation board and aluminum formwork to form an integrated aluminum formwork and insulation board, reinforcing it; installing a cantilever support device; connecting the integrated aluminum formwork and insulation board to the cantilever support device to form an integral structure; and sequentially carrying out rebar installation, rebar tying, concrete pouring, and curing operations to complete the overall construction of the cantilever component. This invention achieves simultaneous construction of the aluminum alloy formwork and insulation system and the cantilever component by pre-reinforcing the aluminum formwork and insulation board and integrating them with the cantilever support device, while also integrating the erection process of the support and protection system. Compared with traditional processes, this reduces the time spent on repeated formwork erection and process connection waiting, lowers labor and material inputs, and improves the construction efficiency, forming quality, and safety of high-altitude operations for cantilever components.
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