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Modularized wall for assembly integrated house

An integrated house and modular technology, applied in the direction of walls, floors, building components, etc., can solve the problems of large construction waste, large quality of components, dust pollution of the environment, etc., to increase thermal insulation, save the decoration process, and improve efficiency. Effect

Inactive Publication Date: 2018-02-02
蒋化明
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The connection of all these components can only be semi-modularized and semi-factory, and then assembled on site, which still requires cumbersome and a lot of manual on-site production, and it cannot be 100% factory-produced and integrated with other types of work, such as It is impossible to integrate water supply and drainage, circuit and decoration systems, so the efficiency of building construction is low; at the same time, due to the high quality of each component, the transportation cost is high; secondly, there is a large amount of construction waste, and a large amount of dust pollutes the environment during the construction process. Recycling and other issues; again, there are still problems such as the structure is not stable enough, the life of the house is short, etc.

Method used

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  • Modularized wall for assembly integrated house
  • Modularized wall for assembly integrated house
  • Modularized wall for assembly integrated house

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] refer to Figure 1-6 , a modular wall for prefabricated integrated houses, including a steel structure frame and a filling layer 108 filled in the steel structure frame; the filling layer 108 is provided with a pair of water pipe operation holes 104, and a pair of water pipe operation holes 104 The holes 104 are respectively located on opposite sides of the filling layer 108 and are symmetrical about the axis. A first water conduit 109 is embedded in the filling layer, and the two ends of the first water conduit 109 are respectively located in a pair of water pipe operation holes 104; the filling layer 108 is provided with a pair of electric wire operation holes 113, and the pair of electric wire operation holes 113 are respectively located on the opposite sides of the filling layer 108 and are symmetrical about the axis. The filling layer 108 is embedded with electric wires 114, and the two ends of the electric wires 114 are respectively connected with mutually matching...

Embodiment 2

[0036] This embodiment is on the basis of embodiment 1:

[0037] The filling layer 108 is also buried with a second water pipe 112 , the second water pipe 112 vertically intersects with the first water pipe 109 and conducts, and the two ends of the second water pipe 112 are provided with water pipe operation holes 104 . The purpose is to facilitate the design of the water guiding system in the house. Adding the second water guiding pipe 112 provides more options for the design of the water guiding system. At the same time, when the first water guiding pipe 109 or the second water guiding pipe 112 is not included When using a water system, both ends need to be sealed. The size of all water pipe operation holes 104 is 200mm×200mm.

Embodiment 3

[0039] This embodiment is on the basis of embodiment 1:

[0040] The steel structure frame includes a pair of first channel steel 101 and a pair of second channel steel 102, the first channel steel 101 and the second channel steel 102 form a rectangular frame structure, and the legs of a pair of first channel steel 101 Set opposite to each other, the legs of a pair of second channel steel 102 are set opposite to each other; two reinforcing ribs 103 are arranged along the width direction of the rectangular frame structure, and the reinforcing ribs 103 are evenly distributed in the length direction of the rectangular frame structure; The first channel steel 101 is provided with 6 threaded holes uniformly distributed along its length direction, and the threaded holes are located on the axis of symmetry of the first channel steel 101 along the length direction; the second channel steel 102 is provided with 5 A threaded hole uniformly distributed along its length direction, and the...

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Abstract

The invention discloses a modular wall for an assembled integrated house, which comprises a steel structure frame and a filling layer filled in the steel structure frame; a pair of water pipe operation holes are arranged in the filling layer, and a first As for the aqueduct, the two ends of the first aqueduct respectively extend into a pair of water pipe operation holes; a pair of electric wire operation holes are arranged in the filling layer, and electric wires are embedded in the filling layer, and the two ends of the electric wires are respectively connected with matching sub-plugs and The female socket, the sub-plug and the female socket are respectively located in a pair of wire operation holes; the inner wall decorative layer and the outer wall decorative layer are arranged on both sides of the filling layer, and the inner wall decorative layer is composed of an insulation layer, a waterproof layer and a decorative layer. The exterior wall decoration layer is composed of insulation layer, waterproof layer and self-adhesive reflective layer. The modular wall integrates water pipes, wires and decorative layers, and the water guiding, circuit and decorative systems are easy to install. When the modular wall is used to splice walls, the efficiency is high, the structure is stable, the life of the house is long, and the construction cost is low.

Description

technical field [0001] The invention relates to the technical field of house construction, in particular to a modular wall used for an assembled integrated house. Background technique [0002] At present, the walls of prefabricated houses are composed of aerated brick walls, concrete prefabricated walls, lightweight cement foam partition panels, silicic acid plates, gypsum board partition walls and wooden wall panels. The connection of all these parts can only be semi-modularized and semi-factory, and then assembled on site, which still requires cumbersome and a lot of manual on-site production, and it cannot be 100% factory-produced and integrated with other types of work, such as It is impossible to integrate water supply and drainage, electrical circuits and decoration systems, so the efficiency of building construction is low; at the same time, due to the high quality of each component, the transportation cost is high; secondly, there is a large amount of construction wa...

Claims

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Application Information

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IPC IPC(8): E04B2/58E04F13/075E04B1/68
CPCE04B2/58E04B1/68E04F13/0875E04F2290/04
Inventor 丁菁
Owner 蒋化明
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