JP2005015334A - 遠赤外線照射作用のナノ特性釉薬 - Google Patents
遠赤外線照射作用のナノ特性釉薬 Download PDFInfo
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- C—CHEMISTRY; METALLURGY
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- 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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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
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- C03C8/16—Glass frit mixtures having non-frit additions, e.g. opacifiers, colorants, mill-additions with vehicle or suspending agents, e.g. slip
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- C—CHEMISTRY; METALLURGY
- C03—GLASS; MINERAL OR SLAG WOOL
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Abstract
【解決手段】遠赤外線照射作用のナノ特性釉薬は、35-65%の溶剤、1-3
5%の融剤、0-25%の耐火剤、0.5-30%の遠赤外線粉剤及び0.5-10%のナノ材料から構成される。そこに更に水を加えて研磨し、350±20g/200ccの濃度、細かさの程度は200〜325目の釉薬にし、陶磁の生素地もしくは白素地の表面に被せ、陶磁生素地もしくは白素地を1120から135℃の温度で焼結する。
【選択図】図2
Description
A.溶剤は、長石、ホウ素もしくは石英粉から構成され、そのうち、ホウ素は、ホウ酸、ホウ砂、ケイ酸ホウ素もしくはホウ素化合物から抽出する。その比率は、釉薬含量の約35%〜65%である。
B.融材は、炭酸カルシウム、炭酸バリウム、炭酸リチウム、炭酸マグネシウム、酸化亜鉛もしくは滑石粉から構成される。その比率は、釉薬含量の約1〜35%である。
C.耐火剤は、高嶺土もしくは蛙目土から構成される。その比率は、釉薬含量の0〜25%である。
D.粘着剤は、38.42%の二酸化ケイ素、17.13%の酸化マグネシウムとケイ酸ホウ素、0.69%の酸化アルミニウム、0.11%の酸化鉄、3.25%の酸化カルシウム、4.96%の酸化ナトリウム、0.07%の酸化カリウム、0.72%の酸化リチウム及び24.84%の無機樹脂から構成される。その比率は、釉薬含量の0.1%〜5%である。
E.遠赤外線粉材は、ジルコニウム元素の遠赤外線粉材である。その比率は、釉薬含量の約0.5%〜30%である。
F.ナノ材料は、銀、ケイ素、アルミニウム、ナトリウム、カリウム、マグネシウム、カルシウム、メタン、鉄、リチウム元素の合成物あるいはその酸化物である。その比率は、釉薬含量の約0.5%〜10%である。
1.放射形態は放射波で、空気伝動を必要としない。
2.浸透力が人の皮下組織に深く達し、肌の内部から体を強化する。
3.共鳴、吸収の形態は、遠赤外線の波長が人体に必要な遠赤外線の波長に近く(約4〜50um)、物質が照射されると、内部分子は共振共鳴作用を発し、人が吸収して体の機能を活性化する。
1.新陳代謝を促進:血液循環不良を改善し、血圧を案適させ、神経系統を調和させ、長期に有害な蓄積物を排出し、疾病を防止する。
2.癌細胞増殖を予防:「温熱療法」は遠赤外線の医学に対する大きな貢献となった。癌細胞を有効に抑制、死滅させる。
3.老化予防、老化遅延:細胞を活性化すると、内部代謝が正常になり、外部皮膚の毛穴に化粧品や空気中の塵埃を残しにくくする。
4.細胞再生力を向上、細胞再生力を活性化し、頭をすっきりさせ、免疫力を向上させ、生殖能力にも相当な効果がある。
B 生素地もしくは白素地
1 ナノ特性釉薬
Claims (10)
- 遠赤外線照射作用のナノ特性釉薬において、
そのナノ特性釉薬は、
35-65%の溶剤、1-35%の融剤、0-25%の耐火剤、0.1-5%の粘着剤、0.5-30%の遠赤外線粉剤及びO.5-10%のナノ材料から構成され、すべての比率は重量に対する百分率であることを特徴とする遠赤外線照射作用のナノ特性釉薬。 - 前記溶剤は、長石、ホウ素、ホウ酸、ホウ砂、ケイ酸ホウ素と石英粉中の一種もしくは数種であることを特徴とする請求項1記載の遠赤外線照射作用のナノ特性釉薬。
- 前記ホウ素は、ホウ酸、ホウ砂、ケイ酸ホウ素もしくはホウ素化合物から抽出することを特徴とする請求項2記載の遠赤外線照射作用のナノ特性釉薬。
- 前記融剤は、炭酸カルシウム、炭酸バリウム、炭酸リチウム、炭酸マグネシウム、酸化亜鉛もしくは滑石粉中の一種もしくは数種であることを特徴とする請求項1記載の遠赤外線照射作用のナノ特性釉薬。
- 前記耐火剤は、高嶺土もしくは蛙目土中の一種もしくは二種であることを特徴とする請求項1記載の遠赤外線照射作用のナノ特性釉薬。
- 前記粘着剤は、二酸化ケイ素、酸化マグネシウム、酸化アルミニウム、酸化鉄・酸化カルシウム・酸化ナトリウム、酸化カリウム、酸化リチウム及び無機樹脂から構成されることを特徴とする請求項1記載の遠赤外線照射作用のナノ特性釉薬。
- 前記粘着剤は、38.42%の二酸化ケイ素、17.13%の酸化マグネシウム、0.69%の酸化アルミニウム、0.11%の酸化鉄、3.25%の酸化カルシウム、4.96%の酸化ナトリウム、0.07%の酸化カリウム、0.72%の酸化リチウム及び24.84%の無機樹脂から構成されることを特徴とする請求項1記載の遠赤外線照射作用のナノ特性釉薬。
- 前記遠赤外線粉剤は、ジルコニウム元素であることを特徴とする請求項1記載の遠赤外線照射作用のナノ特性釉薬。
- 前記ナノ材料は、銀、ケイ素、アルミニウム、ナトリウム、カリウム、マグネシウム、カルシウム、メタン、鉄、リチウム元素の合成物あるいはその酸化物であることを特徴とする請求項1記載の遠赤外線照射作用のナノ特性釉薬。
- 遠赤外線照射作用のナノ特性釉薬は、これらを混合した後に水を加え、350±20g/200ccの濃度、細かさの程度は200〜325目の釉薬に設定し、
それを被覆し、陶磁の生素地もしくは白素地の表面に被せ、陶磁生素地もしくは白素地を1120から135℃の温度で焼結すると、遠赤外線照射作用、且つナノ特性を具えた陶磁製品となることを特徴とする請求項1から9記載の遠赤外線照射作用のナノ特性釉薬。
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TW092117735A TWI250139B (en) | 2003-06-27 | 2003-06-27 | Nano glaze with far infrared radiation functions |
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