CN105732048A - Far-infrared ceramic product and preparation method thereof - Google Patents
Far-infrared ceramic product and preparation method thereof Download PDFInfo
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- CN105732048A CN105732048A CN201610083034.0A CN201610083034A CN105732048A CN 105732048 A CN105732048 A CN 105732048A CN 201610083034 A CN201610083034 A CN 201610083034A CN 105732048 A CN105732048 A CN 105732048A
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- infrared ray
- energy mineral
- mineral powder
- ray ceramic
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- 239000000919 ceramic Substances 0.000 title claims abstract description 76
- 238000002360 preparation method Methods 0.000 title claims description 17
- 238000004519 manufacturing process Methods 0.000 title description 9
- 239000000843 powder Substances 0.000 claims abstract description 58
- 229910052500 inorganic mineral Inorganic materials 0.000 claims abstract description 47
- 239000011707 mineral Substances 0.000 claims abstract description 47
- 229910052761 rare earth metal Inorganic materials 0.000 claims abstract description 10
- 150000002910 rare earth metals Chemical class 0.000 claims abstract description 10
- 239000002994 raw material Substances 0.000 claims description 20
- GWEVSGVZZGPLCZ-UHFFFAOYSA-N Titan oxide Chemical compound O=[Ti]=O GWEVSGVZZGPLCZ-UHFFFAOYSA-N 0.000 claims description 14
- 239000000463 material Substances 0.000 claims description 12
- 229910010293 ceramic material Inorganic materials 0.000 claims description 10
- 238000003756 stirring Methods 0.000 claims description 10
- 229910052692 Dysprosium Inorganic materials 0.000 claims description 7
- PWHULOQIROXLJO-UHFFFAOYSA-N Manganese Chemical compound [Mn] PWHULOQIROXLJO-UHFFFAOYSA-N 0.000 claims description 7
- KBQHZAAAGSGFKK-UHFFFAOYSA-N dysprosium atom Chemical compound [Dy] KBQHZAAAGSGFKK-UHFFFAOYSA-N 0.000 claims description 7
- 229910052732 germanium Inorganic materials 0.000 claims description 7
- GNPVGFCGXDBREM-UHFFFAOYSA-N germanium atom Chemical compound [Ge] GNPVGFCGXDBREM-UHFFFAOYSA-N 0.000 claims description 7
- 229910052748 manganese Inorganic materials 0.000 claims description 7
- 239000011572 manganese Substances 0.000 claims description 7
- 239000004408 titanium dioxide Substances 0.000 claims description 7
- 229910052613 tourmaline Inorganic materials 0.000 claims description 7
- 229940070527 tourmaline Drugs 0.000 claims description 7
- 239000011032 tourmaline Substances 0.000 claims description 7
- 239000000203 mixture Substances 0.000 claims description 5
- 239000004575 stone Substances 0.000 claims description 2
- 230000000694 effects Effects 0.000 abstract description 5
- 230000032683 aging Effects 0.000 abstract description 3
- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 abstract description 3
- 229910052760 oxygen Inorganic materials 0.000 abstract description 3
- 239000001301 oxygen Substances 0.000 abstract description 3
- 230000002285 radioactive effect Effects 0.000 abstract description 2
- 239000000126 substance Substances 0.000 abstract 2
- 208000035240 Disease Resistance Diseases 0.000 abstract 1
- 230000003471 anti-radiation Effects 0.000 abstract 1
- 230000003111 delayed effect Effects 0.000 abstract 1
- 150000002500 ions Chemical class 0.000 abstract 1
- 230000005855 radiation Effects 0.000 description 6
- 239000006185 dispersion Substances 0.000 description 3
- 238000000034 method Methods 0.000 description 3
- 239000002245 particle Substances 0.000 description 3
- 150000001450 anions Chemical class 0.000 description 2
- 210000004556 brain Anatomy 0.000 description 2
- 238000001514 detection method Methods 0.000 description 2
- 201000010099 disease Diseases 0.000 description 2
- 208000037265 diseases, disorders, signs and symptoms Diseases 0.000 description 2
- 230000005284 excitation Effects 0.000 description 2
- 238000000746 purification Methods 0.000 description 2
- 229910052705 radium Inorganic materials 0.000 description 2
- HCWPIIXVSYCSAN-UHFFFAOYSA-N radium atom Chemical compound [Ra] HCWPIIXVSYCSAN-UHFFFAOYSA-N 0.000 description 2
- 238000012356 Product development Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 229910052793 cadmium Inorganic materials 0.000 description 1
- BDOSMKKIYDKNTQ-UHFFFAOYSA-N cadmium atom Chemical compound [Cd] BDOSMKKIYDKNTQ-UHFFFAOYSA-N 0.000 description 1
- 231100000739 chronic poisoning Toxicity 0.000 description 1
- 238000004140 cleaning Methods 0.000 description 1
- 238000005034 decoration Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000018109 developmental process Effects 0.000 description 1
- 238000004090 dissolution Methods 0.000 description 1
- QSHDDOUJBYECFT-UHFFFAOYSA-N mercury Chemical compound [Hg] QSHDDOUJBYECFT-UHFFFAOYSA-N 0.000 description 1
- 238000005457 optimization Methods 0.000 description 1
- 230000004223 radioprotective effect Effects 0.000 description 1
- 238000010998 test method Methods 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
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- C04B—LIME, MAGNESIA; SLAG; CEMENTS; COMPOSITIONS THEREOF, e.g. MORTARS, CONCRETE OR LIKE BUILDING MATERIALS; ARTIFICIAL STONE; CERAMICS; REFRACTORIES; TREATMENT OF NATURAL STONE
- C04B35/00—Shaped ceramic products characterised by their composition; Ceramics compositions; Processing powders of inorganic compounds preparatory to the manufacturing of ceramic products
- C04B35/622—Forming processes; Processing powders of inorganic compounds preparatory to the manufacturing of ceramic products
- C04B35/626—Preparing or treating the powders individually or as batches ; preparing or treating macroscopic reinforcing agents for ceramic products, e.g. fibres; mechanical aspects section B
- C04B35/62605—Treating the starting powders individually or as mixtures
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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
- C03C—CHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
- C03C8/00—Enamels; Glazes; Fusion seal compositions being frit compositions having non-frit additions
- C03C8/14—Glass frit mixtures having non-frit additions, e.g. opacifiers, colorants, mill-additions
- C03C8/20—Glass frit mixtures having non-frit additions, e.g. opacifiers, colorants, mill-additions containing titanium compounds; containing zirconium compounds
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- C04B35/00—Shaped ceramic products characterised by their composition; Ceramics compositions; Processing powders of inorganic compounds preparatory to the manufacturing of ceramic products
- C04B35/622—Forming processes; Processing powders of inorganic compounds preparatory to the manufacturing of ceramic products
- C04B35/626—Preparing or treating the powders individually or as batches ; preparing or treating macroscopic reinforcing agents for ceramic products, e.g. fibres; mechanical aspects section B
- C04B35/62605—Treating the starting powders individually or as mixtures
- C04B35/6261—Milling
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- C04B2235/00—Aspects relating to ceramic starting mixtures or sintered ceramic products
- C04B2235/02—Composition of constituents of the starting material or of secondary phases of the final product
- C04B2235/30—Constituents and secondary phases not being of a fibrous nature
- C04B2235/32—Metal oxides, mixed metal oxides, or oxide-forming salts thereof, e.g. carbonates, nitrates, (oxy)hydroxides, chlorides
- C04B2235/3224—Rare earth oxide or oxide forming salts thereof, e.g. scandium oxide
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- C04B2235/00—Aspects relating to ceramic starting mixtures or sintered ceramic products
- C04B2235/02—Composition of constituents of the starting material or of secondary phases of the final product
- C04B2235/30—Constituents and secondary phases not being of a fibrous nature
- C04B2235/32—Metal oxides, mixed metal oxides, or oxide-forming salts thereof, e.g. carbonates, nitrates, (oxy)hydroxides, chlorides
- C04B2235/3231—Refractory metal oxides, their mixed metal oxides, or oxide-forming salts thereof
- C04B2235/3232—Titanium oxides or titanates, e.g. rutile or anatase
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- C04B2235/32—Metal oxides, mixed metal oxides, or oxide-forming salts thereof, e.g. carbonates, nitrates, (oxy)hydroxides, chlorides
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- C04B2235/30—Constituents and secondary phases not being of a fibrous nature
- C04B2235/32—Metal oxides, mixed metal oxides, or oxide-forming salts thereof, e.g. carbonates, nitrates, (oxy)hydroxides, chlorides
- C04B2235/3287—Germanium oxides, germanates or oxide forming salts thereof, e.g. copper germanate
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- C04B2235/34—Non-metal oxides, non-metal mixed oxides, or salts thereof that form the non-metal oxides upon heating, e.g. carbonates, nitrates, (oxy)hydroxides, chlorides
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- Life Sciences & Earth Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
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- Radiation-Therapy Devices (AREA)
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Abstract
The invention provides a far-infrared ceramic product.The far-infrared ceramic product comprises a body layer and a glaze layer making contact with the body layer.The far-infrared ceramic product further comprises energy mineral substance powder which is dispersed in the body layer or the glaze layer.The energy mineral substance powder is added in the far-infrared ceramic product and can release 4-16 micron far-infrared rays, after the released far-infrared rays are absorbed by a human body, the oxygen content of the human body can be increased, cells can return to life, and therefore disease resistance can be improved, and ageing can be delayed.The far-infrared rays can stimulate rare earth ore to release weak radioactive rays, negation ions are made, the far-infrared rays can be antistatic and shield ultraviolet and electromagnetic waves, and therefore the far-infrared ceramic product has the anti-radiation effect.
Description
Technical field
The present invention relates to ceramic technical field, more specifically, relate to a kind of far-infrared ray ceramic goods and system thereof
Preparation Method.
Background technology
Along with people's living standard and the raising of life taste, people are to public place, living space, daily life and doctor
Treat the environment optimization of facility and purify growing interest.And ceramic is closed the most widely as the decoration ornaments of indoor and outdoor
Note, people are more and more higher to the requirement of ceramic, and therefore, Production of Ceramics factory accelerates the paces of new product development, no
Break and put out a new product, with satisfied different consumer demands.
Existing health-care ceramic glaze has the pottery in water resistant, smooth, easy cleaning and the advantage, and ceramic such as attractive in appearance
Tableware various shapes especially, moist and color is bright and beautiful, is most families first-selections of buying tableware.But, color
There is multiple insalubrious element in glaze, such as lead, hydrargyrum, radium, cadmium etc., and radioactive element radium can kill white especially
Cell, affects health.If using underproof ceramic product for a long time, the harmful element meeting dissolution in colored glaze, and
Along with food enters human body, chronic poisoning can be caused.Meanwhile, such as the ceramic of floor tile etc, there is the strongest radiation
Property, serious harm people's is healthy, and therefore, the ceramic with health care is following ceramic development
Main way.
Summary of the invention
It is an object of the invention to provide a kind of far-infrared ray ceramic goods and preparation method thereof, so that ceramic can discharge
Effect of far infrared.
In order to solve above-mentioned technical problem, the present invention provides following technical scheme:
A kind of far-infrared ray ceramic goods, described far-infrared ray ceramic goods include body layer and contact with described body layer
Glaze layer, it is described that described far-infrared ray ceramic goods also include that energy mineral powder, described energy mineral powder are dispersed in
In body layer or described glaze layer.
Preferably, the quality of described energy mineral powder accounts for the 12%-20% of described far-infrared ray ceramic quality of item.
Preferably, each component in described energy mineral powder includes according to mass fraction: titanium dioxide 20%-30%, germanium
Ore 10%-20%, dysprosium Ore 5%-15%, rare earth 10%-20%, manganese ore 5%-10%, tourmaline 25%-35%.
Preferably, each component in described energy mineral powder includes according to mass percent: titanium dioxide 30%, germanium ore deposit
Stone 10%, dysprosium Ore 10%, rare earth 10%, manganese ore 5%, tourmaline 35%.
A kind of preparation method of far-infrared ray ceramic goods, described preparation method includes:
S01: weigh raw material according to the mass fraction of each component in described energy mineral powder, described raw material is ground respectively
Pulverize, sieve, form raw material powder, standby;
S02: put into by described raw material powder in blender and stir, and mix homogeneously, form energy mineral powder;
S03: choose high-quality Ceramic Material or glaze, joins described Ceramic Material or described by described energy mineral powder
In glaze, stir, form pottery just material;
S04: material at the beginning of described pottery is fashioned into pottery first product, and described pottery first product is fired, obtain far infrared
Line ceramic.
Preferably, the sieve plate including using 1000-2000 mesh that sieves described in sieves.
Preferably, the temperature fired described in is 1300-1500 DEG C.
The invention provides a kind of far-infrared ray ceramic goods, described far-infrared ray ceramic goods include body layer and with described
The glaze layer that body layer contacts, described far-infrared ray ceramic goods also include energy mineral powder, described energy mineral
Powder is dispersed in described body layer or described glaze layer.The far-infrared ray ceramic goods that the present invention provides with the addition of energy ore deposit
Material powder, and energy mineral powder can discharge the far infrared of 4 μm-16 μm, the far infrared discharged is inhaled by human body
Hydrone can be made after receipts to produce resonance, become separate aqueous, improve the oxygen content of health, cell can rejuvenate, essence
God is more prosperous without obstacle, brains is more flexible, and then can improve resistance against diseases, slow down aging;Meanwhile, far-infrared engergy excitation rare-earth
The lonizing radiation that Ore release is faint, and by the micropartical ionizing in air, thus manufacture anion, and far-infrared engergy
Enough antistatic, cover ultraviolet and electromagnetic wave, and then the beneficially purification of air and the health of human body, so that the present invention
The far-infrared ray ceramic goods provided have the effect of radioprotective, health care.The far-infrared ray ceramic goods that the present invention provides
Preparation method process is simple, easily operated, is conducive to manufacturing production on a large scale.
Accompanying drawing explanation
For the technical scheme being illustrated more clearly that in the embodiment of the present invention, required use in embodiment being described below
Accompanying drawing be briefly described, it should be apparent that, for those of ordinary skills, do not paying creative labor
On the premise of Dong, it is also possible to obtain other accompanying drawing according to these accompanying drawings.
Fig. 1 is the schematic flow sheet of the preparation method of the far-infrared ray ceramic goods that the embodiment of the present invention provides;
Fig. 2 is the infrared wavelength radiation detection figure of the far-infrared ray ceramic goods that the embodiment of the present invention provides.
Detailed description of the invention
Far-infrared ray ceramic goods that the embodiment of the present invention provides and preparation method thereof, so that ceramic can discharge the reddest
Effect of outside line.
For the technical scheme making those skilled in the art be more fully understood that in the embodiment of the present invention, and the present invention is made to implement
The above-mentioned purpose of example, feature and advantage can become apparent from understandable, below in conjunction with the accompanying drawings to the technology in the embodiment of the present invention
Scheme is described in further detail.
The invention provides a kind of far-infrared ray ceramic goods, these far-infrared ray ceramic goods include body layer and and body layer
The glaze layer contacted, far-infrared ray ceramic goods also include that energy mineral powder, energy mineral powder are dispersed in body layer
Or in glaze layer.When preparing the far-infrared ray ceramic goods that the present invention provides, the quality of energy mineral powder accounts for far infrared
The 12%-20% of line ceramic quality.The flow chart of the far-infrared ray ceramic article fabrication methods that the present invention provides refer to
Accompanying drawing 1, and specific examples below is all based on accompanying drawing 1.
Embodiment 1
Embodiments provide a kind of far-infrared ray ceramic goods, these far-infrared ray ceramic goods include body layer and with
The glaze layer that body layer contacts, far-infrared ray ceramic goods also include energy mineral powder, and the dispersion of energy mineral powder
At body layer, wherein, the quality of energy mineral powder accounts for the 12% of far-infrared ray ceramic goods gross mass, and energy mineral
Each component in matter powder includes according to mass fraction: titanium dioxide 30%, germanium Ore 10%, dysprosium Ore 10%, rare earth 10%,
Manganese ore 5%, tourmaline 35%.
The preparation method of the far-infrared ray ceramic goods that the embodiment of the present invention provides includes:
S101: weigh raw material according to the mass fraction of each component in described energy mineral powder, described raw material is ground respectively
Pulverize, sieve, form the raw material powder that particle diameter is 2000 mesh, standby;
S102: put into by described raw material powder in blender and stir, and mix homogeneously, form energy mineral powder;
S103: choose high-quality Ceramic Material or glaze, joins described Ceramic Material or described by described energy mineral powder
In glaze, stir, form pottery just material;
S104: material at the beginning of described pottery is fashioned into pottery first product, and by described pottery first product under the conditions of temperature is 1300 DEG C
It is fired, obtains far-infrared ray ceramic goods.
Embodiment 2
Embodiments provide a kind of far-infrared ray ceramic goods, these far-infrared ray ceramic goods include body layer and with
The glaze layer that body layer contacts, far-infrared ray ceramic goods also include energy mineral powder, and the dispersion of energy mineral powder
At glaze layer, wherein, the quality of energy mineral powder accounts for the 20% of far-infrared ray ceramic goods gross mass, and energy mineral
Each component in matter powder includes according to mass fraction: titanium dioxide 20%, germanium Ore 20%, dysprosium Ore 5%, rare earth 20%,
Manganese ore 10%, tourmaline 25%.
The preparation method of the far-infrared ray ceramic goods that the embodiment of the present invention provides includes:
S201: weigh raw material according to the mass fraction of each component in described energy mineral powder, described raw material is ground respectively
Pulverize, sieve, form the raw material powder that particle diameter is 1000 mesh, standby;
S202: put into by described raw material powder in blender and stir, and mix homogeneously, form energy mineral powder;
S203: choose high-quality Ceramic Material or glaze, joins described Ceramic Material or described by described energy mineral powder
In glaze, stir, form pottery just material;
S204: material at the beginning of described pottery is fashioned into pottery first product, and by described pottery first product under the conditions of temperature is 1500 DEG C
It is fired, obtains far-infrared ray ceramic goods.
Embodiment 3
Embodiments provide a kind of far-infrared ray ceramic goods, these far-infrared ray ceramic goods include body layer and with
The glaze layer that body layer contacts, far-infrared ray ceramic goods also include energy mineral powder, and the dispersion of energy mineral powder
At body layer, wherein, the quality of energy mineral powder accounts for the 15% of far-infrared ray ceramic goods gross mass, and energy mineral
Each component in matter powder includes according to mass fraction: titanium dioxide 25%, germanium Ore 15%, dysprosium Ore 15%, rare earth 11%,
Manganese ore 6%, tourmaline 28%.
The preparation method of the far-infrared ray ceramic goods that the embodiment of the present invention provides includes:
S301: weigh raw material according to the mass fraction of each component in described energy mineral powder, described raw material is ground respectively
Pulverize, sieve, form the raw material powder that particle diameter is 1500 mesh, standby;
S302: put into by described raw material powder in blender and stir, and mix homogeneously, form energy mineral powder;
S303: choose high-quality Ceramic Material or glaze, joins described Ceramic Material or described by described energy mineral powder
In glaze, stir, form pottery just material;
S304: material at the beginning of described pottery is fashioned into pottery first product, and by described pottery first product under the conditions of temperature is 1500 DEG C
It is fired, obtains far-infrared ray ceramic goods.
According to GB/T 7287-2008 " infrared radiation heater test method ", far infrared prepared by above-described embodiment 1-3
Ceramic carries out infrared radiation wavelength detection, result as shown in Figure 2, far-infrared ray ceramic goods prepared by embodiment 1-3
All can produce the far-infrared ray power light wave of 4 μm-16 μm.
The far-infrared ray ceramic goods that the present invention provides with the addition of energy mineral powder, and energy mineral powder can discharge
The far infrared of 4 μm-16 μm, the far infrared discharged can make hydrone produce resonance, become only after being absorbed by the body
Vertical hydrone, improves the oxygen content of health, and cell can rejuvenate, and spirit is more prosperous without obstacle, brains is more flexible, and then can carry
High resistance against diseases, slow down aging;Meanwhile, the lonizing radiation that the release of far-infrared engergy excitation rare-earth Ore is faint, and by air
In micropartical ionizing, thus manufacture anion, and far infrared can antistatic, cover ultraviolet and electromagnetic wave,
And then the beneficially purification of air and the health of human body, so that the far-infrared ray ceramic goods that the present invention provides have anti-spoke
The effect penetrated and keep healthy.The preparation method process of the far-infrared ray ceramic goods that the present invention provides is simple, easily operated, has
It is beneficial to manufacture production on a large scale.
Invention described above embodiment, is not intended that limiting the scope of the present invention.Any the present invention's
Amendment, equivalent and the improvement etc. made within spirit and principle, should be included within the scope of the present invention.
Claims (7)
1. far-infrared ray ceramic goods, it is characterised in that described far-infrared ray ceramic goods include body layer and with institute
Stating the glaze layer that body layer contacts, described far-infrared ray ceramic goods also include energy mineral powder, described energy mineral
Matter powder is dispersed in described body layer or described glaze layer.
Far-infrared ray ceramic goods the most according to claim 1, it is characterised in that the matter of described energy mineral powder
Amount accounts for the 12%-20% of described far-infrared ray ceramic quality of item.
Far-infrared ray ceramic goods the most according to claim 1 and 2, it is characterised in that described energy mineral powder
In each component include according to mass fraction:
Titanium dioxide 20%-30%, germanium Ore 10%-20%, dysprosium Ore 5%-15%, rare earth 10%-20%, manganese ore 5%-10%,
Tourmaline 25%-35%.
Far-infrared ray ceramic goods the most according to claim 3, it is characterised in that in described energy mineral powder
Each component includes according to mass percent: titanium dioxide 30%, germanium Ore 10%, dysprosium Ore 10%, rare earth 10%, manganese ore
Stone 5%, tourmaline 35%.
5. the preparation method of far-infrared ray ceramic goods as claimed in claim 3, it is characterised in that described preparation
Method includes:
S01: weigh raw material according to the mass fraction of each component in described energy mineral powder, by described raw material grounds travel respectively
Broken, sieve, form raw material powder, standby;
S02: put into by described raw material powder in blender and stir, and mix homogeneously, form energy mineral powder;
S03: choose high-quality Ceramic Material or glaze, joins described Ceramic Material or described glaze by described energy mineral powder
In material, stir, form pottery just material;
S04: material at the beginning of described pottery is fashioned into pottery first product, and described pottery first product is fired, obtain far infrared
Ceramic.
The preparation method of far-infrared ray ceramic goods the most according to claim 5, it is characterised in that described in sieve bag
Include and use the sieve plate of 1000-2000 mesh to sieve.
The preparation method of far-infrared ray ceramic goods the most according to claim 5, it is characterised in that described in fire
Temperature is 1300-1500 DEG C.
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CN106495485A (en) * | 2016-10-21 | 2017-03-15 | 青岛首创嘉业工贸有限公司 | A kind of active ceramic granule and preparation method thereof |
CN108310670A (en) * | 2018-02-28 | 2018-07-24 | 常州迪力卫生材料有限公司 | A kind of internal heat type sweat-steaming house |
CN113461331A (en) * | 2021-07-13 | 2021-10-01 | 佛山欧神诺陶瓷有限公司 | Ceramic glaze material with far infrared radiation function and ceramic rock plate |
CN116409983A (en) * | 2023-01-04 | 2023-07-11 | 曾国华 | Novel health ceramic product and preparation process thereof |
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JP2008024545A (en) * | 2006-07-20 | 2008-02-07 | Tsuchida Yasuhiro | Method of manufacturing glaze |
CN101328081A (en) * | 2008-06-06 | 2008-12-24 | 牛崇光 | Manufacturing process of negative ion far infrared multifunctional ceramic decorative ground and wall brick |
CN201472837U (en) * | 2009-07-28 | 2010-05-19 | 林淳 | Ceramic ware |
CN105126255A (en) * | 2015-07-03 | 2015-12-09 | 世泰富兴(北京)贸易有限公司 | Health-care crystal/glass artware and preparation method thereof |
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CN1392115A (en) * | 2002-08-13 | 2003-01-22 | 河北工业大学 | Multifunctinoal health ceramic material and its preparing method and use |
JP2008024545A (en) * | 2006-07-20 | 2008-02-07 | Tsuchida Yasuhiro | Method of manufacturing glaze |
CN101328081A (en) * | 2008-06-06 | 2008-12-24 | 牛崇光 | Manufacturing process of negative ion far infrared multifunctional ceramic decorative ground and wall brick |
CN201472837U (en) * | 2009-07-28 | 2010-05-19 | 林淳 | Ceramic ware |
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CN106495485A (en) * | 2016-10-21 | 2017-03-15 | 青岛首创嘉业工贸有限公司 | A kind of active ceramic granule and preparation method thereof |
CN108310670A (en) * | 2018-02-28 | 2018-07-24 | 常州迪力卫生材料有限公司 | A kind of internal heat type sweat-steaming house |
CN113461331A (en) * | 2021-07-13 | 2021-10-01 | 佛山欧神诺陶瓷有限公司 | Ceramic glaze material with far infrared radiation function and ceramic rock plate |
CN116409983A (en) * | 2023-01-04 | 2023-07-11 | 曾国华 | Novel health ceramic product and preparation process thereof |
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