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Energy-saving and environment-friendly material and preparation method thereof

An energy-saving, environmentally-friendly, and raw material technology, applied in the field of building materials, can solve the problems of lack of energy-saving and environmentally-friendly materials with low recycling rates, and achieve the effects of good product stability, improved fire resistance, and low cost

Inactive Publication Date: 2018-07-31
张丹丹
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] In the construction process of high-rise buildings, considering the safety of the building, the existing energy-saving and environmentally-friendly materials need to have good fire resistance and high strength in addition to good thermal insulation and high recycling rate of waste materials. However, there is currently a lack of energy-saving and environmentally friendly materials with good thermal insulation, high recycling rate, good fire resistance and low cost in the building materials market.

Method used

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  • Energy-saving and environment-friendly material and preparation method thereof

Examples

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Comparison scheme
Effect test

Embodiment 1

[0040] An energy-saving and environmentally friendly material, including the following raw materials: 5kg of diatomite, 17kg of kaolin, 8kg of volcanic ash, 6kg of fly ash, 7kg of carbide slag, 5kg of waste gas polyethylene foam, 25kg of cement, 17kg of white cotton, and 11kg of plaster powder , floating beads 7kg, rare earth 5kg, soap powder 3kg, aluminum powder 3kg, glass wool 6kg, airgel 7kg, expanded perlite 9kg, expanded vitrified microbeads 9kg, vermiculite 8kg, nano-titanium dioxide 4kg, polypropylene fiber 14kg, Nano silicon carbide 7kg, ceramic fiber 6kg, negative ion additive 1kg, foaming agent 0.6kg, flame retardant 0.7kg, water reducing agent 0.3kg, retarder 0.5kg and water 7kg.

[0041] Volcanic ash, fly ash, carbide slag and waste gas polyethylene foam are added to the raw materials. As common waste in life and industry, the reserves are large, but the recycling rate of these materials is low, resulting in the inefficient and reasonable use of resources. Excessiv...

Embodiment 2

[0066] An energy-saving and environmentally friendly material, including the following raw materials: 2kg of diatomite, 15kg of kaolin, 4kg of volcanic ash, 4kg of fly ash, 5kg of carbide slag, 3kg of waste gas polyethylene foam, 20kg of cement, 15kg of white cotton, and 10kg of plaster powder , floating beads 5kg, rare earth 2kg, soap powder 1kg, aluminum powder 2kg, glass wool 3kg, airgel 4kg, expanded perlite 7kg, expanded vitrified microbeads 6kg, vermiculite 6kg, nano-titanium dioxide 2kg, polypropylene fiber 12kg, Nano-silicon carbide 6kg, ceramic fiber 3kg, negative ion additive 0.8kg, foaming agent 0.4kg, flame retardant 0.5kg, water reducing agent 0.2kg, retarder 0.3kg and water 6kg.

[0067] Volcanic ash, fly ash, carbide slag and waste gas polyethylene foam are added to the raw materials. As common waste in life and industry, the reserves are large, but the recycling rate of these materials is low, resulting in the inefficient and reasonable use of resources. Excess...

Embodiment 3

[0092] An energy-saving and environmentally friendly material, including the following raw materials: 8kg of diatomite, 19kg of kaolin, 12kg of pozzolan, 8kg of fly ash, 9kg of carbide slag, 7kg of waste gas polyethylene foam, 30kg of cement, 19kg of white cotton, and 12kg of plaster powder , floating beads 9kg, rare earth 8kg, soap powder 5kg, aluminum powder 4kg, glass wool 9kg, airgel 10kg, expanded perlite 11kg, expanded vitrified microbeads 12kg, vermiculite 10kg, nano-titanium dioxide 6kg, polypropylene fiber 16kg, Nano silicon carbide 8kg, ceramic fiber 9kg, negative ion additive 1.2kg, foaming agent 0.8kg, flame retardant 0.9kg, water reducing agent 0.4kg, retarder 0.7kg and water 8kg.

[0093] Volcanic ash, fly ash, carbide slag and waste gas polyethylene foam are added to the raw materials. As common waste in life and industry, the reserves are large, but the recycling rate of these materials is low, resulting in the inefficient and reasonable use of resources. Exces...

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Abstract

The invention provides an energy-saving and environment-friendly material and a preparation method thereof, and relates to the field of building materials. The energy-saving and environment-friendly material is prepared from the following raw materials in parts by weight: diatomite, kaolin, volcanic ash, pulverized fuel ash, carbide slag, waste gas polyethylene foam plastic, cement, white cotton,calcined gypsum powder, a floating bead, rare earth, soap powder, aluminum powder, glass cotton, aerogel, expanded perlite, an expanded and vitrified microbead, vermiculite, nano titania, a polypropylene fiber, nano silicon carbide, a ceramic fiber, an anion additive, a foaming agent, a flame retardant, a water reducing agent, a retarder and water. The preparation method comprises the following steps of (1), weighting and taking the raw materials; (2), crushing; (3), roasting; (4), agitating; (5), mixing; (6), pouring into a mold, carrying out pressure molding, oven-drying, cooling and warehousing. The energy-saving and environment-friendly material prepared by the preparation method has the advantages of being good in heat-preservation and thermal-insulation performance, high in recyclingrate, good in fireproof resistance and low in cost.

Description

technical field [0001] The invention belongs to the field of building materials, and in particular relates to an energy-saving and environment-friendly material and a preparation method thereof. Background technique [0002] Energy saving and environmental protection materials are an important part of building materials. The existing energy-saving and environmentally friendly materials are mainly reflected in thermal insulation and reducing raw material consumption. [0003] In the construction process of high-rise buildings, considering the safety of the building, the existing energy-saving and environmentally-friendly materials need to have good fire resistance and high strength in addition to good thermal insulation and high recycling rate of waste materials. However, there is currently a lack of energy-saving and environmentally friendly materials with good thermal insulation properties, high recycling rate, good fire resistance and low cost in the building materials ma...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B28/14C04B38/02C04B38/08B28B1/52B28B3/02C04B111/20C04B111/28C04B111/40
CPCC04B28/14B28B1/52B28B1/525B28B3/02C04B38/02C04B38/08C04B2111/20C04B2111/285C04B2111/40C04B14/08C04B14/106C04B14/14C04B18/08C04B18/0427C04B16/08C04B18/248C04B7/00C04B18/082C04B14/34C04B24/08C04B22/04C04B14/42C04B14/185C04B14/22C04B14/202C04B22/06C04B16/0633C04B14/324C04B14/46C04B2103/65C04B2103/302C04B2103/22
Inventor 张丹丹
Owner 张丹丹