Dielectric ceramic material and preparation method thereof
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[0019] The preparation method of the above-mentioned dielectric ceramic material comprises the following steps: (a) stirring and mixing the aluminum oxide, zinc oxide, calcium oxide, tungsten oxide and magnesium oxide in the formula amount, pulverizing to nanometer level, drying and granulating;
[0020] (b) pre-calcining the product of step (a) at 900-1100° C., crushing to nano-scale, drying and granulating;
[0021] (c) Pressing the product of step (b) into shape, and sintering at 1200-1350°C for 4-8 hours.
[0022] Preferred embodiment of the present invention will be described in detail below:
Embodiment 1
[0024] This embodiment provides a dielectric ceramic material, which contains the following components: 300g of aluminum oxide, 200g of zinc oxide, 350g of calcium oxide, 100g of tungsten oxide, and 50g of magnesium oxide; the preparation method is as follows:
[0025] (a) Stir and mix the aluminum oxide, zinc oxide, calcium oxide, tungsten oxide and magnesium oxide in the formula quantity, pulverize to the nanometer level (you can also pulverize each and mix uniformly, adopt the Chinese utility model whose application number is 201721295493.1 equipment; or a commercially available horizontal sand mill), sampling and testing to ensure that the product is within the nanometer size range (if the test fails, the above operations can be repeated); granulate after drying at 120 ° C;
[0026] (b) pre-calcining the product of step (a) at 900-1100° C., crushing to nano-scale, drying and granulating;
[0027] (c) Pressing the product of step (b) into shape, and sintering at 1200-1350°C...
Embodiment 2
[0029] This embodiment provides a dielectric ceramic material, which is basically the same as that in Embodiment 1, except that it contains the following components: 400 g of aluminum oxide, 180 g of zinc oxide, 270 g of calcium oxide, 120 g of tungsten oxide, and magnesium oxide 30g.
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Abstract
Description
Claims
Application Information
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