A high net high assembly type dormitory light partition wall structure

By setting constraint members in the middle of the ALC vertical panels and using iron-framed bunk beds and cabinets as constraint members, the problem of insufficient bending stiffness of ALC interior wall panels in high-ceiling buildings was solved, and the structural stability of lightweight partition walls was improved.

CN224379189UActive Publication Date: 2026-06-19江苇
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
江苇
Filing Date
2025-07-23
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

In existing technologies, ALC interior wall panels in high-ceiling buildings suffer from insufficient bending stiffness due to the lack of central restraint, making them prone to out-of-plane buckling protrusion and shear dislocation failure.

Method used

By setting left and right restraints in the upper middle part of the ALC vertical plate, and using the iron frame bunk bed and cabinet as restraints, combined with bolt fixing, a two-way restraint is formed on the ALC vertical plate, which enhances the bending resistance in the middle.

Benefits of technology

It effectively prevents out-of-plane buckling and bulging in the middle of the ALC vertical plate due to excessive height-to-thickness ratio, improves the bending resistance of the lightweight partition wall, and ensures structural stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model aims to provide a lightweight partition wall structure for prefabricated dormitories with high ceilings, where the ALC panels of the lightweight partition wall are less prone to out-of-plane buckling and bulging in the middle. The lightweight partition wall structure for prefabricated dormitories with high ceilings includes a lightweight partition wall for separating two adjacent dormitories. This lightweight partition wall includes multiple parallel second ALC vertical panels. These second ALC vertical panels are fixed to the ceiling with connectors at their tops and to the floor with connectors at their bottoms. A left-side constraint is provided on the upper left side of the middle of each ALC vertical panel, which is fixed to the floor and blocks the left side wall of the ALC vertical panel. A right-side constraint is provided on the upper right side of the middle of each ALC vertical panel, which is fixed to the ceiling and floor and blocks the right side wall of the ALC vertical panel. This improves the bending resistance of the middle of these second ALC vertical panels and prevents out-of-plane buckling and bulging due to excessive height-to-thickness ratio.
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