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The invention discloses a ceramic having rare earth elements and a preparation method thereof. The ceramic having the rare earth elements comprises the following components in parts by weight: 12-14 parts of flint clay, 15-18 parts of forsterite, 1-3 parts of calcium oxide, 4-6 parts of sodium oxide, 1-3 parts of titanium dioxide, 6-8 parts of purple grit mud, 35-38 parts of red clay, 30-40 parts of deionized water, 12-14 parts of kaolin, 6-8 parts of triethanolamine, 5-7 parts of rare earth elements, and 3-5 parts of auxiliaries. The rare earth elements comprise the following components in percentage by weight: 8-10% of lanthanum, 1-3% of cerium, 12-14% of praseodymium, 17-19% of neodymium, 13-17% of promethium, 2-6% of samarium, 8-15% of europium, 13-15% of dysprosium, and the balance of erbium and unavoidable impurities.
The invention discloses a ceramic having rare earth elements and a preparation method thereof. The ceramic having the rare earth elements comprises the following components in parts by weight: 12-14 parts of flint clay, 15-18 parts of forsterite, 1-3 parts of calcium oxide, 4-6 parts of sodium oxide, 1-3 parts of titanium dioxide, 6-8 parts of purple grit mud, 35-38 parts of red clay, 30-40 parts of deionized water, 12-14 parts of kaolin, 6-8 parts of triethanolamine, 5-7 parts of rare earth elements, and 3-5 parts of auxiliaries. The rare earth elements comprise the following components in percentage by weight: 8-10% of lanthanum, 1-3% of cerium, 12-14% of praseodymium, 17-19% of neodymium, 13-17% of promethium, 2-6% of samarium, 8-15% of europium, 13-15% of dysprosium, and the balance of erbium and unavoidable impurities.
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