Light anion foamed ceramic and preparation method thereof

A technology of foamed ceramics and negative ions, which is applied in the field of foamed ceramics, can solve the problems of increased cost, waste, and the negative ion function of the base material can not achieve the expected effect, so as to improve whiteness, reduce the amount of fine powder, and eliminate random large The effect of bubbles

Active Publication Date: 2019-01-25
GUANGDONG KITO CERAMICS GROUP CO LTD +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Also need to have certain health care function for foamed ceramics, as release negative ion function etc., but if all add negative ion material on foamed ceramic base material and prepare negative ion foamed ceramics, the cost of product will increase a lot, and can cause unnecessary waste. Waste, such as smallpox ceiling products are often reinforced on the back of the foamed ceramic ceiling due to safety considerations, such as coating adhesive, pasting glass fiber mesh, etc., which will cover the base material and cause the negative ion function of the base material to fail. to the desired effect

Method used

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  • Light anion foamed ceramic and preparation method thereof

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preparation example Construction

[0060] Correspondingly, the present invention also discloses a method for preparing the above-mentioned lightweight negative ion foamed ceramics, which includes:

[0061] (1) prepare basic foaming powder;

[0062] (2) prepare negative ion foaming powder;

[0063] (3) the basic foaming powder material cloth that step (1) obtains is placed in the sagger for burning;

[0064] (4) the negative ion foaming powder cloth that step (2) obtains is distributed to the foaming powder surface that step (3) obtains;

[0065] (5) The powder body after the double-layer cloth is fired to obtain the finished light-weight negative ion foamed ceramic product.

[0066] Wherein, in step (5), firing curve is:

[0067] From room temperature to 400°C, use a heating rate of 9-12°C / min;

[0068] From 400°C to 850°C, use a heating rate of 8-10°C / min;

[0069] From 850°C to 950°C, use a heating rate of 1.5-4°C / min;

[0070] From 950°C to firing temperature, use a heating rate of 5-8°C / min;

[0071]...

Embodiment 1

[0076] Basic foaming powder formula:

[0077]50 parts of polishing slag, 5 parts of waste glass, 10 parts of foamed ceramic waste, 10 parts of tile waste, 5 parts of clay, 10 parts of medium-temperature sand, 5 parts of low-temperature sand, 0.1 part of debonding agent, and 1 part of foaming agent;

[0078] Among them, sodium tripolyphosphate is used as the debonding agent, and silicon carbide is used as the foaming agent;

[0079] Negative ion foaming powder formula:

[0080] 20 parts of clay, 40 parts of high-temperature sand, 30 parts of medium-temperature sand, 20 parts of low-temperature sand, 5 parts of talc, 2 parts of foaming agent, and 0.5 parts of negative ion material;

[0081] Wherein, the blowing agent adopts manganese oxide.

[0082] Preparation:

[0083] (1) prepare basic foaming powder;

[0084] (2) prepare negative ion foaming powder;

[0085] (3) the basic foaming powder material cloth that step (1) obtains is placed in the sagger for burning;

[0086] ...

Embodiment 2

[0092] Basic foaming powder formula:

[0093] 80 parts of polishing slag, 1 part of waste glass, 5 parts of foamed ceramic waste, 5 parts of tile waste, 15 parts of clay, 1 part of medium-temperature sand, 10 parts of low-temperature sand, 1 part of debonding agent, 0.1 part of foaming agent, and granules 0.1 part of pellet;

[0094] Wherein, the debonding agent adopts sodium humate, and the foaming agent adopts manganese oxide;

[0095] Negative ion foaming powder formula:

[0096] 5 parts of clay, 25 parts of high temperature sand, 30 parts of medium temperature sand, 10 parts of low temperature sand, 1 part of talc, 0.1 part of foaming agent, 1 part of debonding agent, 3 parts of negative ion material;

[0097] Among them, the foaming agent is selected from silicon carbide, and the debonding agent is selected from sodium tripolyphosphate;

[0098] Preparation:

[0099] (1) prepare basic foaming powder;

[0100] (2) prepare negative ion foaming powder;

[0101] (3) the...

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Abstract

The invention discloses light anion foamed ceramic. The light anion foamed ceramic having a double-layer structure is formed by adopting basic foaming powder and anion foaming powder. Accordingly, theinvention discloses a preparation method of the light anion foamed ceramic. By adopting layering design and only adding anions in a face layer, the utilization efficiency of an anion material is effectively improved, and the use amount of the anion material is decreased. In addition, by integrating a formula structure and a preparation process, the foamed ceramic uniform in pore density and highin strength is prepared.

Description

technical field [0001] The invention belongs to the field of foamed ceramics, and in particular relates to a lightweight negative ion foamed ceramic and a preparation method thereof. Background technique [0002] A series of waste materials such as polishing waste and waste tiles are often a major problem that plagues ceramic manufacturers; in recent years, many ceramic companies and scientific research institutions have begun to carry out a series of projects related to the utilization of ceramic resource waste; although some achievements have been made, but It mostly uses a single type of waste; the main reason is that the composition of different types of waste residues is complex and unstable; a large number of introductions can easily lead to problems such as product foaming and deformation; therefore, how to realize the comprehensive resource utilization of various waste materials in ceramic factories is an urgent need. solved problem. [0003] It is a common way to u...

Claims

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Application Information

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IPC IPC(8): C04B38/08C04B38/02C04B33/13C04B33/132C04B35/14
CPCC04B33/1305C04B33/131C04B33/132C04B33/1324C04B35/14C04B35/634C04B38/02C04B38/08C04B2235/3418C04B2235/349C04B2235/96Y02P40/60
Inventor 张国涛黄惠宁戴永刚杨景琪黄辛辰马梦兰
Owner GUANGDONG KITO CERAMICS GROUP CO LTD
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