Rare earth daily ceramic glaze and method using rare earth daily ceramic glaze to prepare daily ceramic
A ceramic glaze and daily-use technology, which is applied in the field of preparation of daily-use ceramics, can solve the problems of obsolete and insufficiently smooth and bright surfaces of daily-use ceramic products, and achieve the effect of smooth surface and good gloss
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Embodiment 1
[0034] This embodiment provides a rare earth ceramic glaze for daily use, and the raw material components include:
[0035] 42 parts by weight of potassium feldspar, 12 parts by weight of calcite, 16 parts by weight of quartz, 10 parts by weight of calcined talc powder, 6 parts by weight of calcined zinc oxide, 10 parts by weight of calcined spodumene, 5 parts by weight of kaolin, 3 parts by weight of alumina, 3 parts by weight of boron oxide, 5 parts by weight of lanthanum oxide, 8 parts by weight of nano-carbon fiber, 3 parts by weight of modified sepiolite, and 8 parts by weight of copper-loaded medical stone.
[0036] The modified sepiolite is prepared by the following method:
[0037] (S1) Get sepiolite, sieve after pulverizing, and obtain particle diameter and be 200 mesh sepiolite fine powder;
[0038] (S2) Add 5 times the mass of water to the sepiolite fine powder, soak for 24 hours, then place it in a reaction kettle, perform hydrothermal treatment at 100°C for 12 ho...
Embodiment 2
[0046] This embodiment provides a rare earth ceramic glaze for daily use, and the raw material components include:
[0047] 46 parts by weight of potassium feldspar, 9 parts by weight of calcite, 20 parts by weight of quartz, 8 parts by weight of calcined talcum powder, 8 parts by weight of calcined zinc oxide, 3 parts by weight of calcined spodumene, 8 parts by weight of kaolin, 2 parts by weight of alumina, 1 part by weight of boron oxide, 30 parts by weight of cerium oxide, 2 parts by weight of carbon nanofiber, 10 parts by weight of modified sepiolite, and 2 parts by weight of copper-loaded medical stone.
[0048] The modified sepiolite is prepared by the following method:
[0049] (S1) Get sepiolite, sieve after pulverizing, and obtain particle diameter and be 400 mesh sepiolite fine powder;
[0050](S2) Add 15 times the mass of water to the sepiolite fine powder, soak for 12 hours, then place it in a reaction kettle, conduct hydrothermal treatment at 300°C for 8 hours, ...
Embodiment 3
[0058] This embodiment provides a rare earth ceramic glaze for daily use, and the raw material components include:
[0059] 43 parts by weight of potassium feldspar, 11 parts by weight of calcite, 17 parts by weight of quartz, 9.5 parts by weight of calcined talcum powder, 6.5 parts by weight of calcined zinc oxide, 7 parts by weight of calcined spodumene, 6 parts by weight of kaolin, 2.8 parts by weight of alumina, 2.5 parts by weight of boron oxide, 17 parts by weight of praseodymium oxide, 6 parts by weight of nano-carbon fiber, 6 parts by weight of modified sepiolite, and 6 parts by weight of copper-loaded medical stone.
[0060] The modified sepiolite is prepared by the following method:
[0061] (S1) Get sepiolite, sieve after pulverizing, obtain particle diameter and be 300 mesh sepiolite fine powder;
[0062] (S2) Add 10 times the mass of water to the sepiolite fine powder, soak for 18 hours, then place it in a reaction kettle, perform hydrothermal treatment at 200°C ...
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Abstract
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