Ceramic material with low dielectric constant and preparation method of ceramic material

A technology of low dielectric constant and ceramic materials, applied in clay products, other household utensils, applications, etc., can solve the problems of easy heat cracking, insufficient hardness, high dielectric, etc., to reduce the dielectric constant, reduce porosity, reduce Effect of sintering temperature

Inactive Publication Date: 2018-11-13
冯嘉豪
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, most of the current ceramic materials have high dielectric constant, insufficient hardness, and are not heat-resistant. Even if they are heat-resistant, they are easy to be heated and chapped

Method used

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  • Ceramic material with low dielectric constant and preparation method of ceramic material

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Comparison scheme
Effect test

Embodiment 1

[0012] A low dielectric constant ceramic material, made of the following materials in proportion by weight: 60 parts of kaolin, 20 parts of anorthite, 17 parts of feldspar, 13 parts of sodium carboxymethyl cellulose, 11 parts of calcium titanate, 11 parts of polyvinyl alcohol, 9 parts of nano bismuth trioxide, 9 parts of boron oxide, 7 parts of zinc nitrate, 7 parts of magnesium cordierite, 6 parts of fluorite, 5 parts of tremolite, 4 parts of clinolite, 4 parts of pyrophyllite and 2 parts of yttrium aluminum garnet.

[0013] A preparation method of low dielectric constant ceramic material, comprising the following steps:

[0014] 1) Take 7 parts of magnesia cordierite, 6 parts of fluorite, 5 parts of tremolite, 4 parts of clinolite, 4 parts of pyrophyllite and 2 parts of yttrium aluminum garnet, and use a ball mill to grind it. The rotation rate of the ball mill should be 85% , the size of the powder is 3um, the pulverized powder is stirred and mixed with a mixer, the stirri...

Embodiment 2

[0023] A low dielectric constant ceramic material, made of the following materials in proportion by weight: 52 parts of kaolin, 26 parts of anorthite, 23 parts of feldspar, 17 parts of sodium carboxymethyl cellulose, 17 parts of calcium titanate, 17 parts of polyvinyl alcohol, 13 parts of nano bismuth trioxide, 13 parts of boron oxide, 11 parts of zinc nitrate, 9 parts of magnesium cordierite, 8 parts of fluorite, 7 parts of tremolite, 6 parts of clinolite, 6 parts of pyrophyllite and 4 parts of yttrium aluminum garnet.

[0024] A preparation method of low dielectric constant ceramic material, comprising the following steps:

[0025] 1) Take 9 parts of magnesium cordierite, 8 parts of fluorite, 7 parts of tremolite, 6 parts of clinolite, 6 parts of pyrophyllite and 4 parts of yttrium-aluminum garnet, and use a ball mill to grind it. The ball mill should have a rotation rate of 75% , the size of the powder is 1um, the pulverized powder is stirred and mixed with a mixer, the st...

Embodiment 3

[0034] A low dielectric constant ceramic material, made of the following materials in proportion by weight: 56 parts of kaolin, 23 parts of anorthite, 20 parts of feldspar, 15 parts of sodium carboxymethyl cellulose, 14 parts of calcium titanate, 14 parts of polyvinyl alcohol, 11 parts of nano bismuth trioxide, 11 parts of boron oxide, 9 parts of zinc nitrate, 8 parts of magnesium cordierite, 7 parts of fluorite, 6 parts of tremolite, 5 parts of clinolite, 5 parts of pyrophyllite and 3 parts of yttrium aluminum garnet.

[0035] A preparation method of low dielectric constant ceramic material, comprising the following steps:

[0036] 1) Take 8 parts of magnesium cordierite, 7 parts of fluorite, 6 parts of tremolite, 5 parts of clinolite, 5 parts of pyrophyllite and 3 parts of yttrium-aluminum garnet, and use a ball mill to crush it. The ball mill should have a rotation rate of 80% , the size of the powder is 2um, the pulverized powder is stirred and mixed with a mixer, the sti...

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Abstract

The invention discloses a ceramic material with a low dielectric constant. The ceramic material is prepared from the following materials in parts by weight: kaolin, anorthite, akermanite, sodium carboxymethyl cellulose, calcium titanate, polyvinyl alcohol, nanometer bismuth trioxide, boron oxide, zinc nitrate, magnesium cordierite, fluorite, tremolite, clinochlore, pyrophyllite and yttrium aluminum garnet. Zinc ions in zinc nitrate can substitute magnesium in akermanite; the akermanite having magnesium substituted with the zinc ions can be matched with boron oxide to reduce a sintering temperature, and can be matched with calcium titanate to adjust the temperature stability, thereby avoiding heating fragmentation and reducing the dielectric constant; yttrium ions in the yttrium aluminum garnet can improve particle size distribution and reduce porosity; a special octahedral six-membered rings of magnesium cordierite crystals enable the structure and performance to have adjustability; and the yttrium aluminum garnet can be matched with the magnesium cordierite to further reduce the dielectric constant and increase the stability.

Description

technical field [0001] The invention specifically relates to a low dielectric constant ceramic material and a preparation method thereof. Background technique [0002] With the rapid development of electronic information technology, the development direction of electronic devices is smaller and smaller specifications, higher stability and integration, and multi-functionality. Therefore, people are very active in the research of materials and devices related to new electronics. . Magnetics, functional dielectrics, semiconductors and other electronic materials and devices occupy a dominant position in the electronic information technology industry. Their development greatly affects people's economic and social life, so they have become the current research hotspots. Capacitor is a device used to store electric energy. It is one of the electronic components commonly used in electronic equipment. Large, irreplaceable and other characteristics. Inorganic ceramic dielectric mat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B33/13C04B33/32
CPCC04B33/13C04B33/32C04B2235/3222C04B2235/3236C04B2235/3284C04B2235/3298C04B2235/3409C04B2235/3454C04B2235/3481C04B2235/445C04B2235/9607
Inventor 冯嘉豪
Owner 冯嘉豪
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