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Method for manufacturing synthetic decorative display art porcelain by plastic and pearl powder

A technology of art porcelain and manufacturing method, which is applied in the direction of decorative art, decorative structure, clay products, etc., can solve the problems of high raw material cost, high energy consumption, difficulty in adapting to aesthetic psychology, etc., and achieve increased product added value, enhanced firmness, unbreakable effect

Active Publication Date: 2013-05-08
GUANGDONG SITONG GROUP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the above-mentioned methods are difficult to form the effect of natural texture and rich and lively tones, and it is difficult to adapt to the aesthetic psychology of today's society, especially ceramic lovers in Europe and the United States, and the cost of raw materials is high, and the energy consumption is also high.
Ceramic handicrafts prepared by traditional methods have no market advantage in terms of products or prices, and cannot meet the needs of customers for decorations. Therefore, it is of great significance to research and develop new decorative methods for ceramic handicrafts.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] (1) Selection of porcelain clay: choose ordinary medium-temperature firing porcelain clay, and its composition includes (by weight percent): SiO 2 65, Al 2 o 3 24, Fe 2 o 3 0.18, MgO 0.29, TiO 2 0.03, CaO 0.3, K 2 O 3.9, Na 2 O 1.8 and IL4.5, the moisture content of porcelain clay is 26%;

[0018] (2) Processing of porcelain biscuits: add porcelain clay to water, water glass and sodium humate, the ratio of addition is (% by weight): porcelain clay: water: water glass: sodium humate=94 : 0.8 : 5 : 0.2, then stir with a mixer for 2 hours, pass through a 100-mesh vibrating screen; prepare a gypsum mold for grouting, and after drying, sinter in a ceramic kiln to make a porcelain green body. The sintering temperature is controlled at 1265°C , the sintering time is 6.5 hours, and the porcelain vase blank is made:

[0019] (3) Sculpture forming: first use plaster to sculpt round florets with a diameter of 36mm, then make steel molds, and then pour the plastic into ...

Embodiment 2

[0022] (1) Selection of porcelain clay: choose ordinary medium-temperature firing porcelain clay, and its composition includes (by weight percent): SiO 2 62, Al 2 o 3 25.42, Fe 2 o 3 0.16, MgO 0.20, TiO 2 0.02, CaO 0.2, K 2 O 4.0, Na 2 O 2.0 and IL6.0, the moisture content of porcelain clay is 26%;

[0023] (2) Processing of porcelain biscuits: add porcelain clay to water, water glass and sodium humate, the ratio of addition is (% by weight): porcelain clay: water: water glass: sodium humate=94 : 0.8 : 5 : 0.2, then stirred with a mixer for 1.8 hours, passed through a 100-mesh vibrating sieve; prepared a gypsum mold for grouting molding, and after drying, fired it in a ceramic kiln to make a porcelain green body, and the sintering temperature was controlled at 1250°C , the sintering time is 7 hours, and the porcelain vase green body is made:

[0024] (3) Sculpture molding: first use gypsum to sculpt a round floret with a diameter of 36mm, then make a steel mold, th...

Embodiment 3

[0027] (1) Selection of porcelain clay: choose ordinary medium-temperature firing porcelain clay, and its composition includes (by weight percent): SiO 2 68, Al 2 o 3 22, Fe 2 o 3 0.20, MgO 0.38, TiO 2 0.04, CaO 0.4, K 2 O 4.38, Na 2 O 1.6 and IL3.0, the moisture content of porcelain clay is 25-26%;

[0028] (2) Processing of porcelain biscuits: add porcelain clay to water, water glass and sodium humate, the ratio of addition is (% by weight): porcelain clay: water: water glass: sodium humate=94 : 0.8 : 5 : 0.2, then stirred with a mixer for 1.9 hours, passed through a 100-mesh vibrating sieve; prepared a gypsum mold for grouting, and after drying, sintered in a ceramic kiln to make a porcelain green body. The sintering temperature was controlled at 1280 ° C, and the Time 6 hours;

[0029] (3) Sculpture molding: first use gypsum to sculpt florets, then make steel molds, then pour plastic into steel molds by thermoforming, spray the formed plastic florets with pearl...

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PUM

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Abstract

The invention relates to a method for manufacturing synthetic decorative display art porcelain by plastic and pearl powder. The method comprises the steps of: selecting petuntse, processing China biscuit, machining the plastic, decorating the China plain greys by the plastic and the pearl powder, and the like. The display art porcelain manufactured by using the method is good in third dimension, vivid, and true to nature; and the appearance of the art porcelain is like lacquer and metal, and caters to the aesthetic psychologies of pursuit of fashion and variety of moderns. By adopting the method, an energy source can be saved; the cost can be reduced; and the technical additional value of the art porcelain is improved.

Description

technical field [0001] The invention relates to a manufacturing method of a ceramic handicraft, in particular to a manufacturing method of plastic and pearl powder synthetic decorative furnishing art porcelain. Background technique [0002] Decoration is inseparable from the surface of ceramic handicrafts, and high-level decoration plays a very important role in improving the quality and grade of products. The decoration of ceramic products involves many fields such as materials, crafts, and fine arts. Traditionally, the surface decoration methods of ceramic products include glaze decoration, color decoration (such as overglaze color, underglaze color, in-glaze color, printing applique) and liquid pigment ( Such as gold water, rainbow material, bleed paint) decoration, etc. However, the above-mentioned methods are difficult to form the effect with natural texture and rich and lively tone, and it is difficult to adapt to the aesthetic psychology of today's society, especiall...

Claims

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Application Information

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IPC IPC(8): B44C3/04C04B33/24C04B33/13
Inventor 蔡镇通杨伟蔡怿榕
Owner GUANGDONG SITONG GROUP
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