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CN-224213621-U - Modularized ALC plate mounting structure

CN224213621UCN 224213621 UCN224213621 UCN 224213621UCN-224213621-U

Abstract

The utility model discloses a modularized ALC plate mounting structure which comprises a splicing frame, a first splicing steel bar, a second splicing steel bar and a reinforcing component, wherein the splicing frame is in butt joint with the side face of an ALC plate, the first splicing steel bar and the second splicing steel bar are inserted into the splicing frame and the ALC plate at intervals, the reinforcing component is arranged on at least one side of the splicing frame and comprises a plug and a pull belt, the plug is arranged at the end parts of the first splicing steel bar and the second splicing steel bar and is pressed into the splicing frame, the pull belt is in butt joint with the adjacent plug, and the middle part of the pull belt is positioned on the surface of the splicing frame through a positioning column. The ALC plate is installed in a modularized mode, on the basis of inner grafting and outer grafting of the spliced frame and the ALC plate, two splicing steel bars are used for penetrating and obliquely inserting the spliced frame and the ALC plate, the modularized splicing strength is further improved, the outer side of the plug exerts inward elastic force through the stretching straps distributed in a wave mode, and pretightening force is formed on the splicing steel bars, so that limiting and anti-falling of the splicing steel bars are achieved, and the splicing structural strength is further improved.

Inventors

  • WANG HUI
  • MENG LEI
  • CHEN SAI
  • ZHONG WEIBO

Assignees

  • 苏州威利士建筑装饰工程有限公司

Dates

Publication Date
20260508
Application Date
20250519

Claims (8)

  1. 1. A modular ALC plate mounting structure, comprising: A splice frame interfacing sides of the ALC panel; the first splicing reinforcing steel bars and the second splicing reinforcing steel bars are inserted in the splicing frame and the ALC plate at intervals along the height direction of the splicing frame; the reinforcing component is arranged on at least one side of the splicing frame and comprises a plug and a pull belt, the plug is arranged at the end parts of the first splicing reinforcing steel bars and the second splicing reinforcing steel bars and is pressed into the splicing frame, the pull belt is abutted to the adjacent plug, and the middle part of the pull belt is positioned on the surface of the splicing frame through a positioning column.
  2. 2. The modularized ALC plate mounting structure according to claim 1, wherein the splicing frame comprises a longitudinal plate, an outer limiting plate and an inner limiting plate, wherein the outer limiting plate and the inner limiting plate are respectively arranged at the end part and the middle part of the longitudinal plate, the side surfaces of the ALC plate are spliced on the longitudinal plate, the two outer limiting plates are clamped at the edge of the end surface of the ALC plate, and the inner limiting plate is spliced in a preset groove at the side surface of the ALC plate.
  3. 3. The modularized ALC plate mounting structure according to claim 2, wherein the middle parts of the first inserting reinforcing bars and the second inserting reinforcing bars are inserted into the corresponding first inserting grooves on the longitudinal plate respectively, and the end parts of the first inserting bars and the second inserting grooves of the outer limiting plates, the third inserting grooves of the inner limiting plates and the preset grooves of the ALC plate are inserted outwards.
  4. 4. The modular ALC plate mounting structure of claim 3, wherein the plug is embedded in the third slot.
  5. 5. The modular ALC plate mounting structure of claim 1, wherein the first and second patch cords are symmetrically and diagonally inserted in the splice frame and ALC plate.
  6. 6. The modular ALC plate mounting structure of claim 1, wherein the plugs and pull straps are laid in a wave shape.
  7. 7. The modular ALC panel mounting structure of claim 1, wherein the draw tape is embedded in a first detent of the splice frame surface.
  8. 8. The modular ALC plate mounting structure of claim 1, wherein the locating posts are positioned within second locating slots of the splice frame surface by reinforcing bars extending through the splice frame.

Description

Modularized ALC plate mounting structure Technical Field The utility model relates to the technical field of building decoration, in particular to a modularized ALC board mounting structure. Background ALC board, namely autoclaved lightweight concrete board has stronger anti-seismic, heat preservation, heat insulation and sound insulation properties, is often used as wallboard, and is generally assembled by splicing a plurality of single boards and prefabricated members. The existing ALC plate and splicing prefabricated members are fixed by bolts, and due to size errors of plates, the bolts are difficult to align and are easy to separate, and the modularized assembly efficiency is low, and the structural stability and the structural strength are insufficient. Disclosure of utility model The utility model aims to solve the problems that bolts are difficult to align and are easy to separate out due to plate size errors, and the modularized assembly efficiency is low, and the structural stability and the structural strength are insufficient in the existing ALC plate mounting structure. In order to achieve the above purpose, the utility model adopts the following technical scheme that the modularized ALC board mounting structure comprises: A splice frame interfacing sides of the ALC panel; the first splicing reinforcing steel bars and the second splicing reinforcing steel bars are inserted in the splicing frame and the ALC plate at intervals along the height direction of the splicing frame; the reinforcing component is arranged on at least one side of the splicing frame and comprises a plug and a pull belt, the plug is arranged at the end parts of the first splicing reinforcing steel bars and the second splicing reinforcing steel bars and is pressed into the splicing frame, the pull belt is abutted to the adjacent plug, and the middle part of the pull belt is positioned on the surface of the splicing frame through a positioning column. As a further description of the above technical solution: The splicing frame comprises a longitudinal plate, an outer limiting plate and an inner limiting plate, wherein the outer limiting plate and the inner limiting plate are respectively arranged at the end part and the middle part of the longitudinal plate, the side faces of the ALC plate are spliced on the longitudinal plate, the two outer limiting plates are clamped at the edge of the end face of the ALC plate, and the inner limiting plate is inserted into a preset groove in the side face of the ALC plate. As a further description of the above technical solution: The middle parts of the first inserting reinforcing steel bars and the second inserting reinforcing steel bars are inserted into the corresponding first slots on the longitudinal plates respectively, and the end parts of the first inserting reinforcing steel bars and the second inserting reinforcing steel bars are inserted into the second slots of the outer limiting plates, the third slots of the inner limiting plates and the preset slots of the ALC plates outwards. As a further description of the above technical solution: The plug is embedded in the third slot. As a further description of the above technical solution: The first inserting reinforcing steel bars and the second inserting reinforcing steel bars are symmetrically and obliquely inserted on the splicing frame and the ALC plate in the arrangement direction. As a further description of the above technical solution: The plugs and the pull belts are distributed in a wave shape. As a further description of the above technical solution: the pull belt is embedded into the first positioning groove on the surface of the splicing frame. As a further description of the above technical solution: The positioning columns are positioned in the second positioning grooves on the surface of the splicing frame through reinforcing steel bars, and the reinforcing steel bars penetrate through the splicing frame. In summary, due to the adoption of the technical scheme, compared with the prior art, the utility model has the following The beneficial effects are that: The ALC plate is installed in a modularized mode, on the basis of inner grafting and outer grafting of the spliced frame and the ALC plate, two splicing steel bars are used for penetrating and obliquely inserting the spliced frame and the ALC plate, the modularized splicing strength is further improved, the outer side of the plug exerts inward elastic force through the stretching straps distributed in a wave mode, and pretightening force is formed on the splicing steel bars, so that limiting and anti-falling of the splicing steel bars are achieved, and the splicing structural strength is further improved. Drawings In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed in the embodiments will be briefly described below, it being understood that the following drawings only illustrate so