Process for manufacturing surface decoration layer of ceramic
A ceramic surface and manufacturing method technology, which is applied to the manufacturing field of ceramic surface decorative layers, can solve the problems of difficulty in controlling the clarity of the color of underglaze blue and white pigments, the best state of crystallization, high fluidity, and inability to obtain the color. Vivid, bluish, high-definition effects
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0025] In the present embodiment, 40 kg of feldspar, 24 kg of terrazzo, 20 kg of zinc oxide, 15 kg of dolomite, and 1 kg of cobalt tetroxide are taken. Add 60 kg of water, 150 kg of ball milling balls, and wet ball milling for 24 hours. The fineness is controlled at 0.03% remaining on the 10,000-hole sieve, and the obtained slurry is the three-dimensional crystal art glaze slurry of the present invention. Take 39 kg of cobalt oxide, 14 kg of zinc oxide, 26 kg of quartz, and 21 kg of feldspar, calcinate them, grind them through a 3 million-mesh sieve, and the obtained material is underglaze blue and white pigment.
[0026] After passing the inspection of the ceramic body, put a layer of ordinary high-temperature glaze on the ceramic body, and then kiln at 1310°C to obtain ceramics, then take a small part of underglaze blue and white pigment, mix it with water, and paint decorative patterns on the ceramics. Let dry. The specific gravity of the glaze slurry of the three-dimensi...
Embodiment 2
[0030] In the present embodiment, 32 kilograms of feldspar, 30 kilograms of terrazzo, 18 kilograms of zinc oxide, 18.5 kilograms of dolomite, and 1.5 kilograms of tricobalt tetroxide are taken. Add 50 kg of water, 150 kg of ball milling balls, and wet ball milling for 22 hours. The fineness is controlled at 0.03% remaining on the 10,000-hole sieve, and the obtained slurry is the three-dimensional crystal art glaze of the present invention. Take 30 kilograms of cobalt oxide, 20 kilograms of zinc oxide, 30 kilograms of quartz, and 20 kilograms of feldspar, calcinate them, grind them through a 3 million mesh sieve, and the obtained material is underglaze blue and white pigment.
[0031] After passing the inspection of the ceramic body, put a layer of ordinary high-temperature glaze on the ceramic body, and then kiln at 1300°C to obtain ceramics, then take a small part of underglaze blue and white pigment, mix it with water, and paint decorative patterns on the ceramics. Let dry....
Embodiment 3
[0035] In this embodiment, 35 kg of feldspar, 25 kg of terrazzo, 19.5 kg of zinc oxide, 20 kg of dolomite, and 0.5 kg of tricobalt tetroxide are taken. Add 70 kg of water, 250 kg of ball milling balls, and wet ball milling for 20 hours. The fineness is controlled at 0.03% remaining on the 10,000-hole sieve, and the obtained slurry is the three-dimensional crystal art glaze of the present invention. Take 40 kg of cobalt oxide, 10 kg of zinc oxide, 25 kg of quartz, and 25 kg of feldspar, calcinate them, grind them through a 3 million-mesh sieve, and the obtained material is underglaze blue and white pigment.
[0036] After passing the inspection of the ceramic body, put a layer of ordinary high-temperature glaze on the ceramic body, and then kiln at 1320°C to obtain ceramics, then take a small part of underglaze blue and white pigment, mix it with water, and draw decorative patterns on the ceramics. Let dry. The specific gravity of the glaze slurry of the three-dimensional cry...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com