Method of preparing infrared ceramics vitrified brick
A technology of infrared ceramics and vitrified bricks, applied in the direction of ceramic forming machines, ceramic material production, manufacturing tools, etc., to achieve the effects of cost reduction, effective waste utilization and environmental protection
Inactive Publication Date: 2007-10-24
JINGDEZHEN CERAMIC INSTITUTE
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Problems solved by technology
The architectural ceramic vitrified brick with high infrared radiation at room temperature not only has a good decorative effect, but also can purify the living environment of human beings, and has antibacterial and health effects on the human body. It is an excellent environment-friendly building material. , however, so far, people have not found an ideal preparation method for infrared ceramic vitrified tiles
Method used
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Embodiment 1~6
[0010] Example 1
[0011] Example 1
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Abstract
The invention discloses a making method of infrared ceramic glassing brick, which comprises the following steps: adopting normal natural mineral such as feldspar, caoline and so on as raw material; adding at least one of chromite slag and copper waste; grinding; balling; sieving; drying; graining; moulding; sintering; polishing; obtaining the product with 8-14um infrared band irradiating rate at 0. 86-0. 94 under normal temperature. The invention saves cost greatly with new hygienic and antibiotic function, which possesses high-effective waste utility and environment-protective meaning.
Description
technical field [0001] The invention belongs to the technical field of infrared ceramic building materials, and in particular relates to a preparation method of infrared ceramic vitrified bricks. Background technique [0002] Infrared ceramics refer to ceramics with high emissivity and high radiation intensity within a certain range of infrared bands. Since infrared radiation is easily absorbed by objects and converted into heat, infrared ceramics have been widely developed as a new type of light-to-heat conversion functional material in recent years. [0003] At present, the high-emissivity radiation materials on the market are mostly infrared radiation ceramics of the transition element compound series and low-expansion infrared radiation ceramics such as cordierite and mullite series, carbides, nitrides and borides, etc., which have been widely used in the industry. High-temperature energy-saving coatings for furnaces and high-purity insulating ename...
Claims
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IPC IPC(8): C04B33/04C04B33/132B28B1/00
CPCY02P40/60
Inventor 顾幸勇罗婷陈云霞李月明江向平张爱华
Owner JINGDEZHEN CERAMIC INSTITUTE
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