KR19990083963A - The way of Far infrared Ray mineralpoweder pelletizing - Google Patents

The way of Far infrared Ray mineralpoweder pelletizing Download PDF

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Publication number
KR19990083963A
KR19990083963A KR1019990037225A KR19990037225A KR19990083963A KR 19990083963 A KR19990083963 A KR 19990083963A KR 1019990037225 A KR1019990037225 A KR 1019990037225A KR 19990037225 A KR19990037225 A KR 19990037225A KR 19990083963 A KR19990083963 A KR 19990083963A
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South Korea
Prior art keywords
far
infrared
products
pelletizing
present
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KR1019990037225A
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Korean (ko)
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이종택
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이종택
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Priority to KR1019990037225A priority Critical patent/KR19990083963A/en
Publication of KR19990083963A publication Critical patent/KR19990083963A/en
Priority to KR1020000010374A priority patent/KR20000058212A/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01JCHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
    • B01J2/00Processes or devices for granulating materials, e.g. fertilisers in general; Rendering particulate materials free flowing in general, e.g. making them hydrophobic

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicines Containing Material From Animals Or Micro-Organisms (AREA)
  • Radiation-Therapy Devices (AREA)

Abstract

본 발명 , 원적외선 방사 미네랄 석분 페레타이징 (pelletizing) 방안은 원적외선 방사 암석들을 분체공학에 의한 극미세 고도분말화 하고 이것들의 불순물을 정재 한 후 필요에 따른 규격별로 그래뉼(granule)화 혹은 페레타이징(pelletizing)화 해 다양한 원적외선 방사 관련 제품에 응용하려는 목적이다. 본 발명의 제품 응용을 위해서 우선 최소 300∼600 매쉬(mashed)한 원적외선 방사 석분말을 용도에 따라 고 밀도(High-density), 중밀도(Medium-density) 그리고 플러피(fluffy) 상태의 저밀도와 규격별 사이즈(size)화 그리고 경도의 차이에 따른 규격화 등을 통해서 사용과 보관의 용이성과 건조를 통한 반영구적 사용을 위해 페레타이즈(pelletize)화 한다.In the present invention, the far-infrared radiant mineral stone ferretizing (pelletizing) method is to make the ultra-infrared ultrafine powders of the far-infrared radiating rocks by powder engineering, and after refining these impurities, granulate or fertilize according to the specifications as necessary. It is intended to be applied to various far-infrared radiation related products by pelletizing. For the application of the present invention, at least 300 to 600 mashed far-infrared radiant stone powders are first used in high-density, medium-density, and fluffy conditions. Through sizeization and standardization according to the difference in hardness, it is pelletized for ease of use and storage and semi-permanent use through drying.

본 발명의 응용범위는 대단히 광번위한 것으로 악취제거를 위한 탈취 제품류와 수질 개선 제품, 원적외선 방사 악세사리, 생리대 등의 건강 제품류 약리효과 제품류 등등의 다양한 제품에 적용 할 수 있다.The scope of application of the present invention is very broad, and can be applied to various products such as deodorizing products for removing odors, water quality improving products, far infrared radiation accessories, physiological effect products, sanitary napkins and the like.

Description

원적외선 방사 미네랄 석분 페레타이징 방안{The way of Far infrared Ray mineralpoweder pelletizing}The way of Far infrared Ray mineralpoweder pelletizing

발명이 속하는 원적외선 방사를 위한 종래 관련 기술은 원석을 작게 부순것이나 석분말화 한 것 그리고 일부는 섬유에 코팅한 것 등이 있다. 석분말을 이용하여 미용비누를 만든 것과 섬유에 1%정도 녹여 코팅하여 원사를 만들어 침구류나 의복에 적용하고 있는 정도이나 불순물을 정재 하는 기술이 미약하고 석분의 낭비가 심하여 때론 원료를 일정 비율이하로 첨가하게 됨으로 본래의 원적외선 방사율 이하로 떨어진다.Conventional related arts for the far-infrared radiation to which the invention pertains include crushing small stones, pulverizing stones and coating some of them with fibers. It is made of beauty soap using stone powder and melted about 1% on fiber and coated to make yarn and applied to bedding or clothes, and the technology of refining impurities is weak and waste of stone powder is severe. By addition it falls below the original far-infrared emissivity.

본 발명, 원적외선 방사 미네랄 석분 페레타이징(pelletizing) 방안은 상기와 같은 문제점을 보완하여 보다 다양한 제품군에 응용하는 것이 발명의 목적이다. 따라서 본 발명은 분체공학을 이용하여 고순도 미세분말을 생산하고 이것을 정재하고 불순물을 제거하여 필요한 용도나 성능에 따라서 차등적으로 다음과 같이 구별한다. 밀도의 차이에 따라 고밀도(High-density), 중밀도(medium-density) 그리고 저밀도(fluffy) 상태와 사이즈(size)별, 경도 별로 구별해서 생산한다.The present invention, the far-infrared radiation mineral fine powder pelletizing (pelletizing) method to solve the above problems is to apply to a wider range of products. Therefore, the present invention differentially distinguishes according to the required use or performance by producing high purity fine powder using powder engineering, refining it and removing impurities. According to the density difference, high-density, medium-density, and fluffy state, size and hardness are produced.

이러한 기술은 원활한 원적외선 방사와 미네랄의 효과를 높이기 위해 사용되는 기존기술인 분말화의 한계를 극복할 수 있는 것으로 다양한 제품류에 응용할 수있다.This technology can overcome the limitation of powdering, which is a conventional technique used to enhance the far infrared radiation and the effect of minerals, and can be applied to various products.

본 발명은 원적외선 방사 미네랄 암석 가공에 관한 방안으로써 그 구성은 분체공학에 의해 가공된 원적외선 미세 석분말이 일차적인 구성이고 이차적인 구성은 용도에 따라 사이즈별 경도별, 밀도별로 나누어 구성되고 사용목적에 따라 점차적으로 함유된 미네랄 성분을 삭제 , 혼합 첨가하거나 , 원적외선 방사율을 서로 조절에 따라 다양한 구성이 될 수 있다.The present invention is a method for processing far-infrared radiant mineral rock, the composition of which is a far-infrared fine stone powder processed by powder engineering is the primary configuration and the secondary configuration is divided by hardness and density by size and purpose according to the purpose of use. Gradually, the mixed minerals can be added, mixed, or controlled to adjust far-infrared emissivity.

이상에서 상술한 바와 같이 본 발명은 원적외선 방사 미네랄 암석 가공에 관한 방안으로써 원적외선 방사율의 극대화와 함유미네랄 원소의 영향을 높이기 위해 분말화 하여 사용하는데 한계를 극복하여 다양한 관련 약리효과 응용 제품을 개발 할 수 있는 효과가 크다.As described above, the present invention can develop various related pharmacological effect application products by overcoming the limitation of using powdered powder to maximize the far-infrared emissivity and increase the influence of the containing mineral element as a method for processing far-infrared radiation mineral rock. The effect is great.

뿐만 아니라 페레타이즈(pelletize)화한 상태 그 자체로 탈취제품이나 기타 제품으로 사용할 수도 있어 상품화 효과도 있다.In addition, it can be used as a deodorizing product or other products by itself in a pelletized state, which has a commercialization effect.

Claims (1)

원적외선 방사 미네랄 암석들의 분말을 용도별, 규격별 입자화(pelletizing)혹은 그래뉼(Granule)화 하는 방안Pelletizing or granulating powder of far-infrared radiation mineral rocks by use and specification
KR1019990037225A 1999-02-09 1999-09-02 The way of Far infrared Ray mineralpoweder pelletizing KR19990083963A (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
KR1019990037225A KR19990083963A (en) 1999-09-02 1999-09-02 The way of Far infrared Ray mineralpoweder pelletizing
KR1020000010374A KR20000058212A (en) 1999-02-09 2000-03-02 Far-infrared ray emitting Sanitary goods

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1019990037225A KR19990083963A (en) 1999-09-02 1999-09-02 The way of Far infrared Ray mineralpoweder pelletizing

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KR19990083963A true KR19990083963A (en) 1999-12-06

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR910002731A (en) * 1989-07-21 1991-02-26 홍수천 Far infrared radiation ceramic particle manufacturing method
KR920016108A (en) * 1991-02-21 1992-09-24 최성규 Aromatic deodorant composition and tag using same
KR960006899A (en) * 1994-08-25 1996-03-22 정태근 Ceramic steaming method and device
KR19990000231A (en) * 1997-06-03 1999-01-15 김순규 Construction materials using loess, its manufacturing method and mobile house using the same

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR910002731A (en) * 1989-07-21 1991-02-26 홍수천 Far infrared radiation ceramic particle manufacturing method
KR920016108A (en) * 1991-02-21 1992-09-24 최성규 Aromatic deodorant composition and tag using same
KR960006899A (en) * 1994-08-25 1996-03-22 정태근 Ceramic steaming method and device
KR19990000231A (en) * 1997-06-03 1999-01-15 김순규 Construction materials using loess, its manufacturing method and mobile house using the same

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