Baseplate of integral heat-preservation and energy-saving plate and preparation method thereof

An integrated board and substrate technology, applied in the field of building decoration materials, to save construction time and labor costs, and achieve the effect of excellent performance and quality

Inactive Publication Date: 2011-08-17
易科美德(天津)环保建材有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Complex process
High production costs and waste of raw materials

Method used

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  • Baseplate of integral heat-preservation and energy-saving plate and preparation method thereof
  • Baseplate of integral heat-preservation and energy-saving plate and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A thermal insulation and energy-saving integrated board substrate, which is characterized in that it is mainly composed of a surface layer 1, a structurally reinforced fiber mesh 2, an intermediate layer 3, a structurally reinforced fiber mesh 2, and a bottom layer 4 connected in sequence, wherein:

[0029] The surface layer is mainly composed of the following materials in parts by weight of 10g each,

[0030] 10g of aluminum magnesium silicate powder, 10g of lightly burned magnesium powder, 10g of magnesium gelling material regulator,

[0031] Silica fume powder 10g, phosphoric acid or sulfate powder 10g, ore tailing powder 10g,

[0032] 10g of mineral sand or colored quartz sand, 10g of iron oxide ore powder; 10g of mineral wool fiber;

[0033] Reinforced glass fiber 10g, polypropylene fiber 10g;

[0034] The middle layer and the bottom layer are mainly composed of the following parts by weight of each 10g material,

[0035] 10g of aluminum magnesium silicate powde...

Embodiment 2

[0048] A thermal insulation and energy-saving integrated board substrate, the surface layer is mainly composed of the following materials in parts by weight of 10g each,

[0049] 500g of aluminum magnesium silicate powder, 500g of lightly burned magnesium powder, 500g of magnesium gelling material regulator,

[0050] Silica fume powder 200g, phosphoric acid or sulfate powder 100g, ore tailing powder 700g,

[0051] 700g of mineral sand or colored quartz sand, 200g of iron oxide ore powder; 300g of mineral wool fiber;

[0052] Reinforced glass fiber 300g, polypropylene fiber 300g;

[0053] The middle layer and the bottom layer are mainly composed of the following parts by weight of each 10g material,

[0054] 500g of aluminum magnesium silicate powder, 500g of lightly burned magnesium powder, 500g of puffed granules for plastic industry; 300g of magnesium cementitious material regulator, 200g of blast furnace slag powder, 300g of fly ash, 100g of phosphoric acid or sulfate pow...

Embodiment 3

[0067] A thermal insulation and energy-saving integrated board substrate, the surface layer is mainly composed of the following materials in parts by weight, each part is 10g,

[0068] 200g of aluminum magnesium silicate powder, 50g of lightly burned magnesium powder, 50g of magnesium gelling material regulator,

[0069] Silica fume powder 20g, phosphoric acid or sulfate powder 10g, ore tailing powder 70g,

[0070] 100g of mineral sand or colored quartz sand, 20g of iron oxide ore powder; 30g of mineral wool fiber;

[0071] Reinforced glass fiber 30g, polypropylene fiber 30g;

[0072] The middle layer and the bottom layer are mainly composed of the following parts by weight of each 10g material,

[0073] 200g of aluminum magnesium silicate powder, 150g of lightly burned magnesium powder, 50g of puffed granules for plastic industry; 30g of magnesium cementitious material regulator, 20g of blast furnace slag powder, 30g of fly ash, 80g of phosphoric acid or sulfate powder, qua...

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Abstract

The invention relates to a baseplate of an integral heat-preservation and energy-saving plate and a preparation method thereof, and the baseplate is characterized by mainly comprising a surface layer, a structure reinforced fibermesh, a middle layer, a structure reinforced fibermesh and a bottom layer which are sequentially connected, wherein the surface layer mainly comprises the following materials in parts by weight:. The preparation method comprises the following steps: preparing liquid raw materials and dry powder; respectively uniformly blending the dry powder, reinforcing glass fibers,poly-propylene fibers and pulps by using a uniform agitator so as to form a spare base stock; paving the surface layer, the middle layer and the bottom layer; paving the structure reinforced fibermesh between every two layers; and carrying out rolling and maintenance forming. The baseplate and preparation method thereof provided by the invention have the advantages that the natural raw materials such as tailings in the mining industry and the stone processing industry and the like and the debris puffed particles in the plastics industry are fully used, and various inorganic modified materialsare added, by carrying out low-temperature mould pressing on the materials in a certain proportion and utilizing the condensation reaction of the materials and the natural texture performance of a special mould, the baseplate of an ecological light-weight and low-carbon integral heat-preservation and energy-saving plate with natural stone or other material mechanisms can be processed by using a specially-designed processing device.

Description

technical field [0001] The invention belongs to building decoration materials, in particular to a heat-preservation and energy-saving integrated board substrate and a preparation method thereof. Background technique [0002] Today, when natural resources are increasingly scarce and the environment is repeatedly destroyed, the development and the environment are seriously out of balance, and the research on low-carbon building insulation and energy-saving products has been paid more and more attention. Modern architecture pursues "ecological", "green", "energy-saving" and "recycling". The traditional thermal insulation construction process needs to first bond the thermal insulation board to the base surface of the building's outer wall with polymer mortar, then pull the net to criticize the dust to form a rough wall surface, and then level it with paint or hang steel mesh to paste tiles, or lay it down. Multiple constructions such as hanging stone or metal plates behind the...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B32B3/12B32B5/24B32B37/06B32B37/10E04F13/075E04B2/88
Inventor 李欣涛
Owner 易科美德(天津)环保建材有限公司
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