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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
121 친환경 황토 콘크리트 조성물 및 이를 이용한 포장재 시공방법 KR1020110009706 2011-01-31 KR101080387B1 2011-11-04 유덕희; 이재현
PURPOSE: An eco-friendly loess concrete composition and a method for constructing pavement using the same are provided to improve the intensity of the concrete composition and to prevent the generation of cracks using loess, pozzolan powder, and expandable admixture. CONSTITUTION: An eco-friendly loess concrete composition includes 100-300 mesh loess powder, 10-100 mesh sand, 80-200 mesh pozzolan powder, 100-200 mesh expandable admixture, 100-200 mesh white Portland, 4000-6000 mesh blast furnace slag fine powder, 100-200 mesh anhydrous gypsum powder, 30-50 mesh citric acid powder, 50-100 mesh vinyl acetate copolymer resin, natural cellulose fiber, and zinc stearate. A method for constructing pavement using the loess concrete composition includes the following: Floor surface is stamped. 80-100 parts by weight of gravel and 15-30 parts by weight of water are mixed based on 100 parts by weight of the loess concrete composition. The particle size of the gravel is between 13 and 16m. The mixture is applied on the floor surface and is hardened.
122 모르타르 KR1020010061852 2001-10-08 KR1020030029372A 2003-04-14 김락주
PURPOSE: Provided is a mortar having sterilization, deodorization, far infrared emission and electromagnetic wave shield by using pozzolan instead of calcium carbonate contained in conventional mortar. CONSTITUTION: The mortar used for attaching tiles and wall materials to the inside and outside of construction comprises 450-600g of acryl binder, 1-3g of anti-foaming agent, 1-3g of preservative, 2-6g of dispersant, 2-7g of sodium hydroxide, 210-420g of pozzolan emitting far infrared rays and anions, 40-250g of rosin, and 40-120g of water.
123 제지잔유물을이용한푸졸라닉물질제조방법및이물질을이용한시멘트제조방법 KR1019970701181 1995-08-24 KR100364345B1 2003-02-05 요세프얀페터바이에르만; 로버트블레이에르벨트; 니콜라스부우지트; 헨드리크야코브스휼셔
A method of making a hydraulic material which contains metakaolinite and calcium hydroxide from a kaolin-containing compound. The method is performed in a fluidized bed installation having a freeboard under conditions such that the amount of calcium oxide formed is minimized. Preferably, the method is performed at a fluidized bed temperature of 780 DEG C. and a freeboard temperature of no more than 780 DEG C. By minimizing the amount of calcium hydroxide formed, the use of an additional installation for converting calcium oxide to calcium hydroxide is avoided. The starting material is typically waste paper and other residues from recycling of waste paper for reuse in the paper industry. The product may be used to form concrete having a high compression strength.
124 우신 기발생 물질 KR1020020031785 2002-06-05 KR1020020054295A 2002-07-06 심범만
PURPOSE: Vigor-giving materials comprising germanium, pozzolan and activa is provided, which shields water vein waves completely besides electromagnetic waves. CONSTITUTION: The materials giving vigor to human body comprise germanium stone, germanium powder, pozzolan stone and activa stone. The Vigor-giving materials applied to floors and walls shield water vein waves completely and electromagnetic waves by 50%.
125 친환경 특수첨가제를 이용한 다기능 고성능 콘크리트 제조방법 및 이를 이용한 콘크리트 시공방법 KR1020160070234 2016-06-07 KR101778998B1 2017-09-26 이호순
본발명은친환경특수첨가제를이용한다기능고성능콘크리트제조방법및 이를이용한시공방법에관한것으로서, 첨가제의주성분으로서친환경소재인스트로파이버와포졸란을사용하여, 콘크리트의결합력을증가시키고환경오염을방지하며다양한용도로사용할수 있도록하는데 그목적이있다. 이를위하여본 발명은, 시멘트, 물, 모래, 자갈이혼합된콘크리트조성물에있어서, 스트로파이버 30~45중량부, 구마롱수지 2~3중량부, 포졸란 45~60중량부, 건축용분말바인더 5~10중량부를포함하는첨가제가첨가되는것을특징으로한다.
126 방수기능을 가진 고강도 흙벽돌 제조방법 KR1020130096938 2013-08-14 KR1020150019745A 2015-02-25 이진희; 방기훈
본 발명에 따른 흙벽돌 제조방법은 a) 폴리머계 토양안정화제를 물에 희석하는 단계; b) 흙을 체로 치는 단계; c) 폴리머계 토양안정화제 수용액을 체질된 흙과 골고루 섞는 단계; d) 골고루 섞인 흙을 압축식 흙벽돌 제조기에 넣고 압축하는 단계; 및 e) 압축된 흙벽돌을 양생하는 단계를 포함하며, 다양한 종류의 흙에 폴리머계 토양안정화제와 포졸란 또는 파이버를 같이 적용함으로써 방수기능을 가지고, 압축강도 및 인장강도가 매우 우수하며, 폴리머계 토양안정화제만 사용하였을 때보다 양생시간이 훨씬 빠른 친환경적이고 경제적인 흙벽돌 제조방법을 제공할 수 있다.
127 일반시멘트를 사용하지 않고 천연광물인 포졸란을 이용한 몰타르 조성물 KR1020120106631 2012-09-25 KR1020140039858A 2014-04-02 김정란; 이춘식; 백우현
The purpose of the present invention is to provide a pozzolan mortar composition capable of enhancing a quality of life by giving satisfaction to contemporary people pursuing a wellbeing life by using only functional raw materials produced naturally as a mortar not including a cement composition and by making indoor environments pleasant with purification of indoor air through far infrared ray radiation, deodorizing and adsorption action, and antibacterial action, while providing a pozzolan mortar composition after affirming that gemstones produced at pozzolan mines in Shinan-gun of Jeonnam province have excellent material properties, even containing a germanium composition. The mortar composition of the present invention comprises a mixture of 30-60 wt% of a pozzolan mineral provided by pulverizing fired pozzolan mineral to a 100-300 mesh size after the pozzolan minerals of a good quality are collected and dried naturally by sun light, followed by being fired in a firing furnace at 350±50°C for 2-4 hours to remove impurities; 20-40 wt% of sand in a particle size range of 1.5±1.0 mm; 10-20 wt% of inorganic solidifying agent excluding cement provided as natural ore powders; and 2-5 wt% of fired shell powders as an antibacterial agent. [Reference numerals] (AA) Pozzolan collection; (BB) Weathering process; (CC,II) Firing; (DD) Refined pozzolan; (EE) Sand collection; (FF) Sand classification for a given particle size; (GG) Shell collection; (HH) Pulverizing; (JJ) Fired shell powder; (KK) Inorganic solidifying agent; (LL) Mortar composition
128 락테이트 활성화된 시멘트 및 활성제 조성물 KR1020127020980 2011-01-11 KR1020120128128A 2012-11-26 슈마커글렌; 파텔라제쉬쿠마
비산재의 시멘트 특성이 주의 깊게 조정된 시멘트 조성물이 기재된다. 시멘트 조성물은 시트르산 (≒ pH 2.2)과 같은 강한 산 및 염기와 알칼리 하이드록시드 (≒ pH 12-14) 및 금속 카보네이트 (≒ pH 11.6)을 포함하는 알칼리 금속 활성제를 실질적으로 포함하지 않을 수 있다. 이들 강한 화학제품의 사용은 제품의 사용 중에 산 염기 반응을 만들게 된다. 이들 강한 화학 제품 대신 락트산 염계 활성제가 반응 촉진제로서 사용된다. 붕소 화합물이 조성물 내에서 응결 지연제로서 사용될 수 있다.
129 고 내구성 투수콘크리트 포장체 및 그 포장방법. KR1020060112594 2006-11-15 KR100812751B1 2008-03-12 백성호; 김창배
A pavement method of a high durability permeable concrete pavement material is provided to increase binding strength of a base layer and a surface layer, to prevent lowering of strength, contraction and crack formation of concrete and to have excellent strength and durability. A pavement method of a high durability permeable concrete pavement material comprises the steps of: preparing recycled aggregate or crushed aggregate for a base layer; preparing permeable concrete for a base layer by mixing 5~30 weight percent binder to 70~95 weight percent recycled aggregate or crushed aggregate for a base layer; forming a base layer by paving and tamping the permeable concrete for a base layer; preparing recycled aggregate or crushed aggregate for a surface layer; preparing permeable concrete for a surface layer by mixing 5~30 weight percent binder and 2~5 weight percent paints to 65~93 weight percent recycled aggregate or crushed aggregate for a surface layer; and forming a surface layer by paving and tamping the permeable concrete for a surface layer, and coupling the permeable concrete for a surface layer to surface gaps of the base layer, wherein the binder used for the permeable concrete for the base layer and the permeable concrete for the surface layer is composed of 40~68 weight percent portland cement, 5~25 weight percent auxiliary binder, 0.03~0.3 weight percent pozzolan polymer stearate, 25~35 weight percent water and 0.00025~0.0105 weight percent high absorptive resin.
130 폐콘크리트의 재생 방법 KR1020040029818 2004-04-29 KR1020050104503A 2005-11-03 박노일; 전용진
본 발명은 폐콘크리트를 재생하는 방법에 관한 것으로서, 보다 상세히는 폐콘크리트에서 골재를 분리하고 난 후 발생하는 분말 60 ∼ 70 중량부, 포틀랜드시멘트 15 ∼ 20 중량부, 포졸란 5 ∼ 10 중량부, 실리카흄 5 ∼ 10중량부, 고로슬래그 5 ∼ 10 중량부, 초산비닐수지가 20% 함유된 초산비닐수지에멀젼 2 ∼ 5 중량부로 조성되는 것을 특징으로 하는 폐콘크리트의 재생 방법에 관한 발명이다.
131 수맥 차단 합성수지체 KR1020020026298 2002-05-13 KR1020030088620A 2003-11-20 심범만
PURPOSE: A synthetic resin body is provided to interrupt harmful water veins in an apartment room, a house or an office permanently. CONSTITUTION: The synthetic resin body for interrupting water veins is produced by mixing germanium ore with pozzolan ore and introducing the mixed ores into a polyvinyl chloride synthetic resin body.
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