Method for preparing split joint buckled type building block composite energy-saving wall board

A technology of wallboards and building blocks, which is applied in the field of preparation of energy-saving wallboards combined with buckle-type building blocks, can solve the problems of increasing decoration procedures, affecting decoration progress and moving in time, and achieves fast construction and installation, good sound and heat insulation effects, and energy saving The effect of installation costs

Inactive Publication Date: 2008-12-17
朱春生
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Lightweight wall panels are composed of front and rear surface layers on both sides and a filling layer in the middle. The front and rear surface layers are generally calcium boards, and the filling layer is made of expanded perlite powder, polystyrene particles and lightweight concrete. The front and rear surface layers (calcium board) of the wallboard are relatively rough outward, so after each time the lightweig

Method used

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  • Method for preparing split joint buckled type building block composite energy-saving wall board
  • Method for preparing split joint buckled type building block composite energy-saving wall board
  • Method for preparing split joint buckled type building block composite energy-saving wall board

Examples

Experimental program
Comparison scheme
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Example Embodiment

[0063] Example 1:

[0064] A method for preparing an energy-saving wallboard combined with spliced ​​buckle-type building blocks, characterized by:

[0065] A. First use hard plastic, aluminum alloy, stainless steel, aluminum plastic, wood plastic or plastic steel to press into the side panel 3 at one time, and the two ends of the side panel 3 are processed with wall panels spliced ​​by the splicing buckle 7 or splicing buckle 8 The splicing groove 4 and the panel splicing groove 5, and the direction of the wallboard splicing groove 4 and the panel splicing groove 5 are opposite;

[0066] B. Insert the front panel 1 and the rear panel 2 into the panel splicing grooves 5 at both ends of the four side panels 3, so that the front panel 1, the rear panel 2 and the four side panels 3 are combined to form an integral hollow wall panel frame ;

[0067] C. Add cement to the recycled polyphenylene foam particles, perlite or the mixture of recycled polystyrene foam particles and perli...

Example Embodiment

[0073] Example 2:

[0074] The preparation method of embodiment 2 is basically the same as embodiment 1, the difference is:

[0075] The top in the panel splicing groove 5 of each side panel 3 is processed with a side panel inner groove 9 that allows the front panel 1 and the rear panel 2 to be flush with the side panel 3, and the front panel 1 and the rear panel 2 face outwards The edges of the four sides are processed with panel edge grooves 10 that cooperate with the inner grooves 9 of the side plates.

Example Embodiment

[0076] Example 3:

[0077] The preparation method of embodiment 3 is substantially the same as embodiment 1, the difference is:

[0078] In the middle of each side plate 3, there is a wire slot 11 for threading wires.

[0079] Two adjacent wall panels are spliced ​​through the splicing buckle 12 .

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Abstract

The invention discloses a preparation method for an assembled buckle-typed building block combination energy-saving wall plate, which is characterized in that a front panel and a rear panel are respectively inserted into panel assembly troughs which are arranged at two ends of four side plates, thus leading the front panel, the rear panel and the four side plates to be assembled together to form a whole hollow wall plate frame; subsequently, a pasty middle filling layer is injected into the hollow wall plate frame through small holes on the upper side plate by a tunnel high-pressure pouring method; after the pouring operation is completed, the solidification is carried out on a conveyor belt; subsequently, the filling layer is smoothly arranged and cured for a certain time; subsequently, the finished product is gained after the packaging is completed. The preparation method of the invention has the advantages of being directly used as screen walls, light weight, high strength, good heat preservation and sound insulation effects, good surface decoration effect, waterproofing and dust-proofing, beauty, saving decoration procedure, thus quickening the decoration progress and the construction time.

Description

technical field [0001] The invention relates to building materials, in particular to a method for preparing an energy-saving wallboard combined with spliced ​​and buckled building blocks. Background technique [0002] Due to the emergence of a large number of modern high-rise buildings and ecological residences, coupled with people's fast-paced work and lifestyle, lightweight wall panels are being used due to their excellent properties such as light weight, convenient construction, waterproof, moisture-proof, sound insulation, and heat insulation. Widely used in decoration industry. Lightweight wall panels are composed of front and rear surface layers on both sides and a filling layer in the middle. The front and rear surface layers are generally calcium boards, and the filling layer is made of expanded perlite powder, polystyrene particles and lightweight concrete. The front and rear surface layers (calcium board) of the wallboard are relatively rough outward, so after eac...

Claims

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Application Information

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IPC IPC(8): E04C2/34E04C2/38E04C2/52E04C2/284
Inventor 朱春生
Owner 朱春生
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