KR200271175Y1 - Non-combustible interior and exterior panels using foamed pearlite and vermiculite - Google Patents

Non-combustible interior and exterior panels using foamed pearlite and vermiculite Download PDF

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Publication number
KR200271175Y1
KR200271175Y1 KR2020010029103U KR20010029103U KR200271175Y1 KR 200271175 Y1 KR200271175 Y1 KR 200271175Y1 KR 2020010029103 U KR2020010029103 U KR 2020010029103U KR 20010029103 U KR20010029103 U KR 20010029103U KR 200271175 Y1 KR200271175 Y1 KR 200271175Y1
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South Korea
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pearlite
lightweight
interior
water glass
vermiculite
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KR2020010029103U
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Korean (ko)
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이상현
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이상현
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Abstract

본 고안은 발포된 진주암, 질석 입자를 원료로 하여 불연 경량 내, 외장 패널 및 실내 칸막이 판을 제조하는 것으로서, 상세하게는 진주암과 질석을 분쇄하여 분쇄된 입자를 발포시켜 경량화하고, 경량화 된 입자를 물유리와 혼합하고 그 혼합된 것을 고주파를 주사하여 내, 외장 패널 및 실내 칸막이를 제작하는 것에 관한 것으로 현대인의 안전과 건축물을 제작시 시공자의 편리성과 소비자에게 시공비의 부담을 줄이고 안전에 도움을 주고자하는데 그 목적을 두고 있다.The present invention manufactures non-combustible lightweight inner, exterior panels and interior partition boards using foamed pearlite and vermiculite particles. It is about making internal, exterior panels and interior partitions by mixing with water glass and injecting the mixture into high frequency. It is to help the safety of the modern people and reduce the burden of construction cost to consumers and to help the safety when building buildings. The purpose is to.

Description

발포된 진주암과 질석을 이용한 불연 내, 외장제 패널{omitted}Non-flammable, exterior panel using foamed pearlite and vermiculite {omitted}

화제의 위험에서 벗어나 인간 생명의 안전과 경비절감.Freeing from the dangers of the topic, the safety and cost savings of human life.

본 고안은 발포된 진주암, 질석 입자를 원료로 하여 불연 경량 내, 외장 패널 및 실내 칸막이 판을 제조하는 것으로서, 상세하게는 진주암과 질석을 분쇄하여 분쇄된 입자를 발포시켜 경량화하고, 경량화 된 입자를 물유리와 혼합하여 내, 외장 패널 및 실내 칸막이를 제조하는 것에 관한 것이다.The present invention manufactures non-combustible lightweight inner, exterior panels and interior partition boards using foamed pearlite and vermiculite particles. The invention relates to the manufacture of interior, exterior panels and interior partitions by mixing with water glass.

일반적으로 건축용 패널 내부에는 양쪽에 철판을 두고 스티로폴 입자나, 폴리우레탄 수지 스폰지, 유리솜(석면) 등을 삽입하여 패널이 제조되어 왔다. 그러나 상기와 같은 충진제의 재료들 중 스티로폴 입자 및 폴리우레탄으로 제작되어진 패널은 열에 매우 약하여 화재 발생의 위험이 많고 화재가 발생하였을 때 유독가스도 함께 발생하여 인명 피해의 원인이 되기도 하였고, 유리솜은 불연소재이기는 하나 패널 제작시 발생되는 유리가루 분진 발생으로 인해 제작자 및 건축시 작업자에게도 유리가루 분진으로 인한 문제점이 발생되고 있다.Generally, panels have been manufactured by inserting styropol particles, polyurethane resin sponges, glass wool (asbestos), etc. with iron plates on both sides of a building panel. However, the panels made of styropol particles and polyurethane among the filler materials are very weak to heat, so there is a high risk of fire, and toxic gas is also generated when a fire occurs, which may cause human injury, and glass wool is non-combustible. Although it is a material, due to the generation of glass dust generated during panel production, there is a problem caused by glass powder dust even for manufacturers and construction workers.

본 고안은 위와 같은 종래의 문제점을 해결하기 위하여 이루어진 것으로 생산공정, 건축 설치 작업 등에서 인체에 완전 무해하며, 화재 발생시 불에 타지 않고 유해 가스 또한 발생되지 않기 때문에 그 패널을 소비자들에게 제공하여 환경과 사람을 보호할 수 있도록 하는데 그 목적을 두고 있다.The present invention was made to solve the above-mentioned conventional problems, and it is completely harmless to the human body in the production process, building installation work, etc., and because the fire does not burn and no harmful gas is generated, the panel is provided to consumers by providing the environment and Its purpose is to protect people.

상기 목적을 달성하기 위하여 광석의 종류인 진주암과 질석을 적당한 크기로 분쇄하고, 분쇄된 진주암 및 질석 입자를 섭씨 800∼1200 ℃로 소성하여 진주암, 질석입자에 기공을 형성시킨 후 냉각시켜 질석 발포 입자를 제조하고,To achieve the above purpose, pulverized pearlite and vermiculite, which is a kind of ore, are pulverized to an appropriate size, and the pulverized pearlite and vermiculite particles are calcined at 800 to 1200 ° C. to form pores in pearlite and vermiculite particles, followed by cooling. Manufacturing the

상기 얻어진 진주암과 질석 발포 입자를 물유리와 혼합하고 그 혼합되어진 것을 외장제는 철판 또는 스텐레스판을 내장제는 종이 등 두장의 마감재료 사이에 충진하고 고주파를 주사하여 내, 외장제 패널을 제조하는 것을 제공하는데 있다.The obtained pearl rock and vermiculite foam particles are mixed with water glass, and the mixed agent is filled with an iron plate or a stainless plate, and an inner agent is filled between two finishing materials such as paper, and the high frequency is scanned to provide an inner and outer panel. It is.

상기의 패널의 강도를 강하게 하기 위하여 진주암과 질석과 물유리를 혼합되어진 중간에 철망, 철심, 유리섬유 등을 삽입하여 제작되어 질 수도 있다.In order to increase the strength of the panel may be produced by inserting a wire mesh, iron core, glass fiber, etc. in the middle of the mixture of pearlite, vermiculite and water glass.

양쪽의 철판 사이에 발포된 진주암과 질석을 충진Filled with foamed pearlite and vermiculite between the iron plates on both sides

본 고안의 구성 및 작용을 설명하면 다음과 같다.Referring to the configuration and operation of the subject innovation is as follows.

외장제 패널의 경우는 진주암과 질석 발포입자와 무, 유기물 접착제와 혼합하여 두장의 철판 또는 스텐레스판 사이에 충진하고, 더 강한 강도를 요구할 시는 진주암과 질석 발포입자와 물유리 사이에 철망, 철심, 유리섬유 등을 삽입하여 불연 패널판을 제조하는 것으로 구성되어 진다.In case of exterior panel, it is mixed between pearlite and vermiculite foam particles and radish and organic adhesive, and is filled between two sheets of iron or stainless steel, and wire mesh, iron core, It consists of manufacturing a nonflammable panel board by inserting glass fiber etc.

내장제 패널은 진주암과 질석 발포입자를 황토, 게르마늄, 숯 등과 함께 물유리를 함께 혼합하여 인체에 이로운 원적외선 바이오가 발생되는 불연 패널을 제조하는 것으로 구성되어 진다.The interior panel is made of non-combustible panel that generates far-infrared bio-products that are beneficial to human body by mixing water glass with pearlite and vermiculite foam particles together with ocher, germanium and charcoal.

또한 외장제의 경우는 철판 및 스텐레스판 등을 사용함으로 다른 문제점은 발생되지 않으나, 내장제의 경우는 종이, 천, 벽지 등으로 마감을 처리하기 때문에 표면에 대한 불연은 현재까지는 실현 할 수가 없는 상황이다. 현 불연소재로 개발된 천 등은 일반건축물에 적용되기는 고단가 임으로 적용하기가 어려운 상황이다.In addition, in case of the exterior material, other problems are not caused by using iron plate and stainless steel plate, but in the case of interior material, since the finish is processed by paper, cloth, wallpaper, etc., the non-combustibility of the surface cannot be realized until now. . Currently, non-combustible fabrics are difficult to apply because they are expensive to be applied to general buildings.

본 고안의 내, 외장제 패널에 충진되어지는 진주암 및 질석 발포입자와 물유리는 내장제에 사용되는 진주암 및 질석 발포입자 및 황토, 게르마늄, 숯 등과 함께 물유리를 함께 혼합물의 배합 비율은 사용용도에 따라 변화 할 수가 있기 때문에 상세한 표기는 하지 않았다.The mixing ratio of pearlite and vermiculite foamed particles and water glass filled in the inner and exterior panels of the present invention and water glass together with pearlite and vermiculite foamed particles and ocher, germanium, charcoal, etc. I could not do the detailed notation.

본 고안은 근복적으로 생산 공정에서 시공등의 공정에서 작업자에게 전혀 무해하며, 사용 기간 내내 인체에도 무해하게 되며 특히 내장제의 경우는 원적외선이 방출되는 황토, 게르마늄 등이 혼합되어 인체에 이로운 패널을 제공하여 환경 보호 및 인체를 보호할 수 있는 고안인 것이다.The present invention is almost harmless to the worker in the process of production and construction, and also harmless to the human body throughout the period of use, and especially in the case of the interior material, the ocher, germanium, etc. which emit far infrared rays are mixed to provide a beneficial panel to the human body It is designed to protect the environment and the human body.

Claims (6)

발포 경량화한 진주암, 질석 입자를 주재료로 물유리와 혼합하고 고주파로 경화시켜 양쪽의 철판 또는 스텐레스판 사이에 충진하여 건축 내, 외장제 불연 패널.Non-flammable panels for interior and exterior construction by mixing lightweight lightweight pearlite and vermiculite particles with water glass as the main material and hardening them at high frequency to fill between the iron or stainless steel plates on both sides. 발포 경량화한 진주암, 질석 입자를 주재료로 물유리와 혼합하고 경화시켜 철판 또는 스텐레스판에 30∼100mm의 두께 또는 필요한 두께로 고주파로 경화시킨 건축 내, 외장제 불연 패널.Non-flammable panels for interior and exterior use in which lightweight and lightweight foamed pearlite and vermiculite particles are mixed with water glass as the main material and cured, and hardened at high frequency to a thickness of 30 to 100 mm or required thickness on an iron plate or stainless steel plate. 발포 경량화한 진주암, 질석 입자를 주재료로 물유리와 혼합하여 요구하는 형틀에 주입하여 고주파를 주사하여 경화시킨 건축 내, 외장제 불연 패널.Non-flammable panel for interior and exterior of building, in which foamed lightweight pearlite and vermiculite particles are mixed with water glass as the main material and injected into the required mold, and cured by scanning high frequency. 발포 경량화한 진주암, 질석 입자, 황토, 세라믹, 참숯, 게르마늄을 물유리와 혼합하여 요구하는 형태를 유지하고 고주파로 경화시킨 건축 내장제 불연 패널.Non-flammable panels for building interiors in which foamed lightweight pearlite, vermiculite particles, ocher, ceramic, charcoal and germanium are mixed with water glass to maintain the required shape and harden at high frequency. 발포 경량화한 진주암, 질석 입자, 황토, 세라믹, 참숯, 게르마늄을 물유리와 혼합하여 요구하는 형태를 유지하고 고주파로 경화시킨 실내 칸막이판.Interior partition board hardened at high frequency by mixing lightweight lightweight pearlite, vermiculite particles, ocher, ceramic, charcoal and germanium with water glass. 삭제delete
KR2020010029103U 2001-09-20 2001-09-20 Non-combustible interior and exterior panels using foamed pearlite and vermiculite KR200271175Y1 (en)

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20030025443A (en) * 2001-09-20 2003-03-29 김환성 Method for manufacturing non-flammable and exterior panels using vermiculite
KR20030032601A (en) * 2001-10-18 2003-04-26 오판원 Method of manufacturing exterior panels in non-flammable by heating and curing with high frequency and infrared rays
KR20040021435A (en) * 2002-09-04 2004-03-10 이근호 A structural sandwitch panel in which foam yellow soil is formed
KR100444274B1 (en) * 2002-03-06 2004-08-16 이승훈 A Prefabricated Panel of Fire Prevention
KR100468033B1 (en) * 2002-04-04 2005-01-24 주식회사 솔세라믹 Porous insulation panel for building interior material and its production method
KR100734237B1 (en) * 2006-11-02 2007-07-02 방승기 Method for manufacturing vermiculite panel and apparatus for mixing binder
KR100783662B1 (en) * 2007-02-12 2007-12-07 해 식 김 Panel
KR100798124B1 (en) 2007-08-09 2008-01-28 김영식 Noncombustible panel for construction
KR100799244B1 (en) * 2006-04-11 2008-01-29 김동수 Method for manufacturing bottom structure between floors of building using porous material for insulation and absorption of sound, method for manufacturing side wall structure of building using the same
KR100799243B1 (en) 2007-09-11 2008-01-29 김동수 Method for manufacturing bottom structure between floors of building using porous material for insulation and absorption of sound, method for manufacturing side wall structure of building using the same
KR100800314B1 (en) * 2007-04-11 2008-02-05 해 식 김 Ceiling panel for h-beam
KR100900894B1 (en) * 2007-04-11 2009-06-04 해 식 김 Ceiling panel for a ship

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20030025443A (en) * 2001-09-20 2003-03-29 김환성 Method for manufacturing non-flammable and exterior panels using vermiculite
KR20030032601A (en) * 2001-10-18 2003-04-26 오판원 Method of manufacturing exterior panels in non-flammable by heating and curing with high frequency and infrared rays
KR100444274B1 (en) * 2002-03-06 2004-08-16 이승훈 A Prefabricated Panel of Fire Prevention
KR100468033B1 (en) * 2002-04-04 2005-01-24 주식회사 솔세라믹 Porous insulation panel for building interior material and its production method
KR20040021435A (en) * 2002-09-04 2004-03-10 이근호 A structural sandwitch panel in which foam yellow soil is formed
KR100799244B1 (en) * 2006-04-11 2008-01-29 김동수 Method for manufacturing bottom structure between floors of building using porous material for insulation and absorption of sound, method for manufacturing side wall structure of building using the same
KR100734237B1 (en) * 2006-11-02 2007-07-02 방승기 Method for manufacturing vermiculite panel and apparatus for mixing binder
KR100783662B1 (en) * 2007-02-12 2007-12-07 해 식 김 Panel
KR100800314B1 (en) * 2007-04-11 2008-02-05 해 식 김 Ceiling panel for h-beam
KR100900894B1 (en) * 2007-04-11 2009-06-04 해 식 김 Ceiling panel for a ship
KR100798124B1 (en) 2007-08-09 2008-01-28 김영식 Noncombustible panel for construction
KR100799243B1 (en) 2007-09-11 2008-01-29 김동수 Method for manufacturing bottom structure between floors of building using porous material for insulation and absorption of sound, method for manufacturing side wall structure of building using the same

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