CN221422421U - Light sound insulation heat preservation wallboard - Google Patents

Light sound insulation heat preservation wallboard Download PDF

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Publication number
CN221422421U
CN221422421U CN202323616855.0U CN202323616855U CN221422421U CN 221422421 U CN221422421 U CN 221422421U CN 202323616855 U CN202323616855 U CN 202323616855U CN 221422421 U CN221422421 U CN 221422421U
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CN
China
Prior art keywords
heat preservation
board body
framework
wall
skeleton
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Application number
CN202323616855.0U
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Chinese (zh)
Inventor
杨宽义
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Shandong Xinlian Dividend Energy Saving Technology Co ltd
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Shandong Xinlian Dividend Energy Saving Technology Co ltd
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Abstract

The utility model discloses a light sound insulation and heat preservation wallboard, which comprises a board body, wherein a plugboard for combining the board body is arranged on one side of the board body, a supporting component for enhancing the strength of the wallboard is arranged in the board body, the supporting component comprises a first framework, second frameworks are symmetrically arranged on the outer wall of the first framework, first steel wires for enhancing the stability of the board body are arranged on the side edges of a plurality of second frameworks, second steel wires for enhancing the connection of the first steel wires are sleeved on the outer wall of the first steel wires.

Description

Light sound insulation heat preservation wallboard
Technical Field
The utility model relates to the technical field of assembled building wallboards, in particular to a light sound-insulation heat-preservation wallboard.
Background
The development of assembled buildings is a necessary trend of the development of the building industry in China. The assembled wallboard with high performance is an important component of an assembled building, and the assembled partition board widely adopted at present comprises a light slat, a framework sandwich partition wall, a light decoration and assembly integrated board and the like, and the light sound insulation and heat preservation wallboard is a building material for inner and outer walls of the building and has the characteristics of light weight, sound insulation, heat preservation and the like.
The lightweight sound insulation and heat preservation wallboard is widely applied to houses, commercial buildings, public facilities and other places. The light-weight sound-insulation heat-preservation wallboard not only can improve the comfort level of indoor environment, but also can reduce energy consumption and noise pollution and improve the overall performance of a building, but is easy to deform or damage when bearing heavy pressure, has limited compressive strength and is easy to damage in the using process, so that the light-weight sound-insulation heat-preservation wallboard needs to be designed to solve the problem.
Disclosure of utility model
The utility model aims to provide a lightweight sound-insulation heat-preservation wallboard so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a light sound insulation heat preservation wallboard, includes the plate body, one side of plate body is provided with the picture peg that is used for the composite board body, the inside of plate body is provided with the supporting component who is used for reinforcing wallboard intensity, supporting component includes first skeleton, the outer wall symmetry of first skeleton is provided with the second skeleton, and is a plurality of the side of second skeleton all is provided with the first steel wire that is used for strengthening plate body stability, a plurality of the outer wall cover of first steel wire is equipped with the second steel wire that is used for strengthening first steel wire connection.
Preferably, the middle part of first skeleton has seted up the inner chamber, the middle part of inner chamber is provided with the sound-absorbing piece that is used for the sound insulation, the mounting groove has been seted up to the inside of plate body, first skeleton and second skeleton all set up in the inside of mounting groove.
Preferably, a slot for combining the plate body is formed in the other side of the plate body, a friction layer for enhancing connection stability is arranged on the inner wall of the slot, and the side edge of the plugboard is connected with the outer wall of the friction layer in a sliding penetrating manner.
Preferably, the inside of the plate body and the outer walls of the first framework and the second framework are provided with heat insulation layers for heat insulation of the plate body.
Preferably, the inside of plate body and be located the side of heat preservation and second skeleton and be provided with the buffer layer that is used for plate body shock attenuation.
Preferably, a waterproof layer for wallboard waterproofing is arranged in the board body and on the side edge of the first steel wire.
Preferably, the outer wall of the plate body is provided with a wear-resistant layer for enhancing the wear resistance of the plate body.
The utility model has the technical effects and advantages that:
The utility model utilizes the structural design of the supporting component, the inside of the plate body is provided with the first framework, the outer wall of the first framework is fixedly connected with the second framework, the first framework and the second framework are designed to facilitate the strength of the plate body to be reinforced from the inside, the plate body is supported from the inside, the outer wall of the second framework is provided with the first steel wire, the outer wall of the first steel wire is sleeved with the second steel wire, and the design is designed to strengthen the connection stability of the first framework and the second framework with the plate body and strengthen the tensile strength of the plate body.
Drawings
FIG. 1 is a schematic diagram of the main structure of the present utility model.
FIG. 2 is a schematic view of a support assembly according to the present utility model.
Fig. 3 is an enlarged schematic view of the structure of fig. 1a according to the present utility model.
Fig. 4 is a schematic structural view of a connecting assembly according to the present utility model.
In the figure: 1. a plate body; 101. a wear-resistant layer; 2. inserting plate; 3. a slot; 301. a friction layer; 4. a first skeleton; 401. a second skeleton; 402. a sound-absorbing block; 403. a first steel wire; 404. a second steel wire; 405. an inner cavity; 5. a shock absorbing layer; 6. a heat preservation layer; 7. and a waterproof layer.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The utility model provides a light sound-insulation heat-preservation wallboard as shown in fig. 1-3, which comprises a board body 1, wherein a plugboard 2 for combining the board body 1 is arranged on one side of the board body 1, a supporting component for enhancing the strength of the wallboard is arranged in the board body 1, the supporting component comprises a first framework 4, second frameworks 401 are symmetrically arranged on the outer walls of the first frameworks 4, first steel wires 403 for enhancing the stability of the board body 1 are arranged on the side edges of the second frameworks 401, and second steel wires 404 for enhancing the connection of the first steel wires 403 are sleeved on the outer walls of the first steel wires 403.
It should be noted that, the side of the second framework 401 is provided with a first steel wire 403 which is transversely placed, and a plurality of second steel wires 404 for fixing the first steel wire 403 are wound on the outer wall of the first steel wire 403, so that the stability of connection between the first framework 4 and the second framework 401 and the board body 1 is enhanced, and the tensile strength of the board body 1 is enhanced.
Specifically, the middle part of first skeleton 4 has seted up inner chamber 405, and the middle part of inner chamber 405 is provided with the sound-absorbing piece 402 that is used for the sound insulation, and the mounting groove has been seted up to the inside of plate body 1, and first skeleton 4 and second skeleton 401 all set up in the inside of mounting groove.
It should be noted that, the design of the installation groove is for being convenient for the installation of first skeleton 4 and second skeleton 401, and the design of sound absorption piece 402 is for being convenient for board body 1 gives sound insulation, reduces noise pollution in the in-process of using, improves the wholeness ability of building, and the sound absorption piece 402 adopts the design of polyvinyl acetate foam material, and the design is for both guaranteeing the sound absorption performance of board body 1 like this, can also guarantee the portability of board body 1 simultaneously.
Specifically, slot 3 for the combination board body 1 is offered to the opposite side of board body 1, and the inner wall of slot 3 is provided with the friction layer 301 that is used for reinforcing connection stability, and the side of picture peg 2 and the outer wall slip of friction layer 301 alternate to be connected.
It should be noted that, the inner wall of the slot 3 and the outer wall of the plugboard 2 are connected in a sliding and penetrating manner, so that the board body 1 can be conveniently combined in the using process, a friction layer 301 is arranged at the joint of the slot 3 and the plugboard 2, and the friction layer 301 is designed to strengthen the connection stability of the slot 3 and the plugboard 2, so that the board body 1 is not easy to fall off in the combining and connecting process.
Further, an insulation layer 6 for insulation of the board body 1 is arranged inside the board body 1 and located on the outer walls of the first framework 4 and the second framework 401.
It should be noted that, the outer wall of first skeleton 4 and the tip fixed connection of second skeleton 401, first skeleton 4 and second skeleton 401 all set up in the inside of plate body 1, the design is in order to be convenient for from inside reinforcing plate body 1's intensity, support plate body 1 from inside, heat preservation 6 adopts the hollow ceramic material design of micro-nano level, have better light and heat preservation and insulation's effect, and can cut and customize as required, design heat preservation 6 to the outer wall of first skeleton 4 and second skeleton 401, the design is in order to be convenient for plate body 1 keeps warm at the in-process of using, can fine improvement indoor cold and hot bridge's production and mould proof flower ensure the comfort level of environment, improve the wholeness ability of building.
Further, a shock-absorbing layer 5 for shock absorption of the board body 1 is arranged inside the board body 1 and on the side edges of the heat-insulating layer 6 and the second framework 401.
It should be noted that the shock-absorbing layer 5 is designed in a honeycomb structure, and this structure has advantages in terms of high energy absorption and shock resistance. When external forces are applied to the sheet, the honeycomb structure disperses and absorbs energy, thereby reducing the transmission of impact forces to the interior of the object. This design can effectively reduce vibration and noise, provide better protection and comfort, and the shock-absorbing layer 5 is designed by plastic material, which can provide good shock-absorbing effect and is relatively light.
Further, a waterproof layer 7 for waterproof the wallboard is provided inside the board body 1 and at the side of the first steel wire 403.
The waterproof layer 7 is made of polymer emulsion, and the waterproof layer 7 is designed to achieve the purpose of enhancing the waterproof property of the board body 1.
Further, the outer wall of the plate body 1 is provided with a wear-resistant layer 101 for enhancing the wear resistance of the plate body 1.
It should be noted that, the wear-resistant layer 101 is made of polyurethane paint, which has excellent wear resistance and chemical resistance, is suitable for applications requiring high wear resistance, can form a hard protective film, and has good weather resistance, and the wear-resistant layer 101 is designed to enhance the wear resistance of the board body 1, and prolong the service life of the board body 1.
In the in-service use, the inside of plate body 1 is provided with first skeleton 4, the outer wall fixedly connected with second skeleton 401 of first skeleton 4, the design of first skeleton 4 and second skeleton 401 is in order to be convenient for from inside reinforcing plate body 1's intensity, from inside supporting plate body 1, inner chamber 405 has been seted up at the middle part of first skeleton 4, the inside of inner chamber 405 is provided with sound absorbing block 402, the design is in order to be convenient for plate body 1 gives sound insulation, the outer wall of second skeleton 401 is provided with first steel wire 403, the outer wall cover of first steel wire 403 is equipped with second steel wire 404, the design is in order to strengthen the stability that first skeleton 4 and second skeleton 401 and plate body 1 are connected like this, the tensile strength of reinforcing plate body 1, the outer wall of first skeleton 4 and second skeleton 401 is provided with heat preservation 6, the design is in order to be convenient for plate body 1 can keep warm at the in-process of using like this.
Finally, it should be noted that: the foregoing description is only illustrative of the preferred embodiments of the present utility model, and although the present utility model has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements or changes may be made without departing from the spirit and principles of the present utility model.

Claims (7)

1. The utility model provides a light sound insulation heat preservation wallboard, includes plate body (1), one side of plate body (1) is provided with picture peg (2) that are used for composite board body (1), a serial communication port, the inside of plate body (1) is provided with the supporting component who is used for reinforcing wallboard intensity, supporting component includes first skeleton (4), the outer wall symmetry of first skeleton (4) is provided with second skeleton (401), a plurality of the side of second skeleton (401) all is provided with first steel wire (403) that are used for strengthening plate body (1) stability, a plurality of the outer wall cover of first steel wire (403) is equipped with second steel wire (404) that are used for strengthening first steel wire (403) and connect.
2. The lightweight sound insulation and heat preservation wallboard according to claim 1, wherein an inner cavity (405) is formed in the middle of the first framework (4), a sound absorption block (402) for sound insulation is arranged in the middle of the inner cavity (405), an installation groove is formed in the board body (1), and the first framework (4) and the second framework (401) are both arranged in the installation groove.
3. The lightweight sound insulation and heat preservation wallboard according to claim 1, wherein a slot (3) for combining the board body (1) is formed in the other side of the board body (1), a friction layer (301) for enhancing connection stability is arranged on the inner wall of the slot (3), and the side edge of the plugboard (2) is connected with the outer wall of the friction layer (301) in a sliding and penetrating mode.
4. The lightweight sound insulation and heat preservation wallboard according to claim 1, wherein the heat preservation layer (6) for heat preservation of the board body (1) is arranged inside the board body (1) and positioned on the outer walls of the first framework (4) and the second framework (401).
5. The lightweight sound insulation and heat preservation wallboard according to claim 4, wherein a shock absorption layer (5) for shock absorption of the board body (1) is arranged inside the board body (1) and on the side edges of the heat preservation layer (6) and the second framework (401).
6. A lightweight sound-insulating thermal-insulating wall panel according to claim 1, characterized in that the inside of the panel body (1) and at the side of the first steel wire (403) is provided with a waterproof layer (7) for waterproofing the wall panel.
7. A lightweight sound-insulating thermal-insulating wall panel according to claim 1, characterized in that the outer wall of the panel body (1) is provided with a wear layer (101) for enhancing the wear resistance of the panel body (1).
CN202323616855.0U 2023-12-29 Light sound insulation heat preservation wallboard Active CN221422421U (en)

Publications (1)

Publication Number Publication Date
CN221422421U true CN221422421U (en) 2024-07-26

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