Fluorite slag-containing aerated concrete block

A technology of air-entrained concrete and fluorite slag, applied in ceramic products, other household appliances, household appliances, etc., can solve the problems of low social utilization rate, unfavorable environmental protection and health, etc. Effect

Active Publication Date: 2013-01-16
沛县铸本混凝土有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The current social utilization rate of fluorite slag is small,

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] An aerated concrete block whose raw material contains fluorite slag, which is made from the following weight (kg) raw materials according to the conventional manufacturing process of aerated concrete block: fly ash 25, cement 5, quicklime 10, modified Nano powder 5, volcanic rock powder 2, heavy calcium powder 1, gypsum 3, aluminum powder 0.1, flat plus 0.008, oxidized paraffin soap 0.08, soda ash 0.3, bentonite 0.5, zinc stearate 0.3, aluminum hydroxide 0.013, sodium hexametaphosphate 0.1. Appropriate amount of water;

[0027] The preparation method of the modified nano-powder is as follows: mix 8kg calcium carbonate, 1kg quartz sand, 1kg red mud, 4kg fluorite slag, and 3kg diatomaceous earth, burn them at 700°C for 5 hours, and grind them into nanometer powder. Powder, mixed with 2% epoxidized triglyceride and 2% dioctyl maleate equivalent to the weight of the powder, stirred evenly, dried, and crushed into powder to obtain the product;

[0028] The preparation metho...

Embodiment 2

[0032] An aerated concrete block whose raw material contains fluorite slag, which is made from the following weight (kg) raw materials according to the conventional manufacturing process of aerated concrete block: fly ash 25, cement 10, quicklime 15, modified Nano powder 4, volcanic rock powder 2, heavy calcium powder 1, gypsum 3, aluminum powder 0.1, flat plus 0.002, oxidized paraffin wax soap 0.03, soda ash 0.5, bentonite 0.8, zinc stearate 0.3, aluminum hydroxide 0.01, sodium hexametaphosphate 0.05, appropriate amount of water;

[0033] The preparation method of the modified nano-powder is as follows: 9kg of calcium carbonate, 1.5kg of quartz sand, 2kg of red mud, 2.5kg of fluorite slag, and 3kg of diatomaceous earth are mixed and burned at 600°C for 4 hours, and then ground into nano powder, mixed with 1% epoxidized triglyceride and 1% dioctyl maleate equivalent to the weight of the powder, stirred evenly, dried, and crushed into powder.

[0034] The preparation method of...

Embodiment 3

[0041] An aerated concrete block whose raw material contains fluorite slag, which is made from the following weight (kg) raw materials according to the conventional manufacturing process of aerated concrete block: fly ash with a fineness of 200 mesh 25, cement 10, Quicklime 15, modified nano powder 5, volcanic rock powder 2, heavy calcium powder with a fineness of 100 mesh 1, gypsum 3, aluminum powder 0.1, flat plus 0.002, oxidized paraffin wax soap 0.03, soda ash 0.5, bentonite with a fineness of 180 mesh 0.8, Zinc stearate 0.3, aluminum hydroxide 0.01, sodium hexametaphosphate 0.05, appropriate amount of water;

[0042]The preparation method of the modified nano-powder is as follows: mix 8kg calcium carbonate, 1kg quartz sand, 2kg red mud, 2.5kg fluorite slag, and 3kg diatomaceous earth, burn them at 700°C for 4 hours, and grind them into Nano powder, mixed with 1% epoxidized triglyceride and 1% dioctyl maleate equivalent to the weight of the powder, stirred evenly, dried, a...

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Abstract

The invention discloses a fluorite slag-containing aerated concrete block. The fluorite slag-containing aerated concrete block is prepared from the following raw materials by the conventional process for preparing the aerated concreted block: 25 to 30 weight parts of coal ash, 5 to 10 weight parts of cement, 10 to 15 weight parts of quick lime, 5 to 10 weight parts of modified nano powder, 5 to 10 weight parts of volcanic rock powder, 3 to 5 weight parts of gypsum, 0.05 to 0.1 weight part of aluminum powder, 0.02 to 0.08 weight part of peregal, 0.03 to 0.08 weight part of oxyparaffin soap, 0.3 to 0.5 weight part of soda ash, 0.5 to 0.8 weight part of bentonite, 0.3 to 0.5 weight part of zinc stearate, 0.01 to 0.03 weight part of aluminum hydroxide, 0.05 to 0.1 weight part of sodium hexametaphosphate and an appropriate amount of water. Nano mineral powder is added, so that the volume weight of the brick, and the energy consumption are reduced; the aerated brick is high in thermal insulation performance and sound insulation performance; compared with the conventional aerated concrete block, the fluorite slag-containing aerated concrete block has the advantages that the thermal insulation performance and the sound insulation performance are improved obviously; the raw materials are mixed according to an optimized formula; and the intensity and the freezing resistance of the brick are improved obviously.

Description

technical field [0001] The invention relates to the field of bricks, in particular to an aerated concrete block whose raw material contains fluorite slag. Background technique [0002] Air-entrained concrete is a new type of wall building material. It is unique in that it is a very lightweight new type of building wall material for thermal insulation. The air-entrained concrete technology started a hundred years ago, and my country's technology started relatively late, 40 years behind foreign countries. However, the development of my country's air-entrained concrete industry is indeed very rapid. Now the technical level of domestic air-entrained concrete technology has reached the international advanced level. [0003] The biggest advantage of aerated concrete is that it saves land resources and does not need to waste a lot of arable land, and its raw materials come from a wide range of sources, such as ash, slag, fly ash and coal gangue, etc. are all raw materials for aera...

Claims

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Application Information

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IPC IPC(8): C04B28/00C04B38/02
Inventor 晋元龙陈德全
Owner 沛县铸本混凝土有限公司
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