• 제목/요약/키워드: Inorganic Admixture

검색결과 35건 처리시간 0.023초

지하구조물 취약부에 적용한 천연 무기질계 분말형 혼화제의 누수저감효과 (The Leakage Reduction of Natural Inorganic Powder Compound Applying Subsurface Structural Weak Part)

  • 윤성환;서현재;이혜령;박진상;오상근
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2011년도 춘계 학술논문 발표대회 1부
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    • pp.19-22
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    • 2011
  • For underground structures that are exposed to environmental conditions, the declination of the durability of concrete occurs easily because of leakages from high hydraulic pressure and the frequent contact of water due to environmental factors. Therefore this study is to confirm that the leakage reduction of natural inorgnic powder compound applying subsurface structural weak part and make the performance improvement of concrete as an objective. The test was done by making the rebar, flat tie, nail and film infiltration and each of its water tank and cylindrical test body then after pouring water to each of the test body, the test observe the change of the water tank surface absorbed condition and leakage of each specimen with respect to time. As a conclusion, the test was observed that this water proofing admixture has better watertightness from the beginning of the setting time(when it hardens), the ettringite and the thaumasite generates a large quantity of hydration products that controls the formation in a large opening and the CSH produced by pozzolan reaction makes a dent at this opening.

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하수슬러지 소각재를 이용한 무기바인더 개발 I (Development of Inorganic Binder Using Ash from Sewage Sludge Incinerator I)

  • 이현주
    • 대한환경공학회지
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    • 제36권12호
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    • pp.843-850
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    • 2014
  • 본 연구는 국내 하수처리장에서 발생하는 감량화/안정화된 소각재를 무기바인더로 재이용하기 위하여 수행하였다. 실험은 무소성 공정으로 진행하였으며, Sewage Sludge Ash를 시멘트, Geobond 등의 바인더와 모래를 혼합하여 페이스트 시편과 몰탈 시편으로 성형하였다. 성형 후 양생과정을 거친 시편을 압축강도를 측정한 결과 KS 기준치 22.54 Mpa ($229.7kg/cm^2$)을 상회하고, 하수슬러지 소각재(SSA) 첨가율은 약 10~40%까지 가능한 것으로 나타나 개발하고자 한 하수슬러지 소각재를 무기바인더인 시멘트, Geobond의 대체 물질로 재활용이 가능함을 입증하였다.

Study on the Waterproofing Performance of FGD Gypsum Building Products from Inorganic-Organic Composite Additives

  • Ding, Yi;Fang, Youchun;Ren, Qifang;Fang, Hui;Zhang, Qicai;Oh, Won-Chun
    • 한국재료학회지
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    • 제25권11호
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    • pp.590-597
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    • 2015
  • In this article, poly methyl triethoxy silane was compounded with an inorganic waterproof admixture at a certain ratio to improve the performance of gypsum products; a new type of high-efficiency compound water-proofing additive was also investigated. Furthermore, the waterproof mechanism and the various properties on the hardened gypsum plaster were investigated in detail by XRD and SEM. The results show that the intenerate coefficient of gypsum plaster increased to more than 0.9; the water absorbing rate decreased to less than 10 %. Both the bending strength and the compressive strength of gypsum plaster increased by various degrees. The intenerate coefficient reached a maximum value of 0.73 and the strength of the samples showed almost no change when 5% cement alone was added. In this new type of the high-efficiency compound with waterproof additive, the optimal technological parameters for formulas were obtained to be: 5% cement, 18 % mineral powder, and 0.8% poly methyl triethoxy silane, to compound gypsum plaster. Meanwhile, the production of high performance gypsum as a building material has become possible.

고유동화제와 시멘트 혼화용 무기미분체가 첨가된 시멘트 페이스트의 유동성 변화 (Fluidity Changes of Cement Paste added Superplasticizer and Inorganic Fine Powders for Cement Admixture)

  • 김도수;정흥호;박병배;노재성
    • 한국세라믹학회지
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    • 제37권8호
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    • pp.751-759
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    • 2000
  • Effects of the dosage change, from 0 to 2.0 wt% based on cement weight, of naphthalenic (NSF) and polycarboxylic(NT-2) superplasticizers, on the fluidity of cement paste substituted by 10 wt% II-anhydrite and fly ash respectively as well as II-anhydrite and fly ash itself were investigated. Dispersion properties between particles in suspension were investigated by zeta potential test. Initial fluidity and slump loss in the paste system were observed through mini-slump and apparent viscosity changes with elapsed time. Zeta potential on the particle surface was a tendency to increase according to increasing of NSF dosage. Especially, zeta potential of fly ash has the highest value among all particles equivalent to NSF dosage. In the fluidity of cement paste substituted by inorganic particles, the specimen with substitution of 10 wt% II-anhydrite and fly ash for cement was more effective than cement itself to improve initial fluidity and retain stable fluidity of cement paste. In addition, effect of NT-2 and NSF to improve the fluidity of cement paste, addition of 1.0 wt% NT-2 was more effective than 1.5wt% NSF.

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Fly Ash 및 Meta-Kaolin을 활용한 내화성 마감재의 고온특성 (High Temperature Properties of Fire Protection Materials Using Fly Ash and Meta-Kaolin)

  • 송훈;추용식;이종규;도정윤
    • 한국세라믹학회지
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    • 제47권3호
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    • pp.223-231
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    • 2010
  • The serious issue of tall building is to ensure the fire-resistance of high strength concrete. The fire resistant finishing method is necessarily essential in order to satisfy the fire resistance time of 3 h required by the law. The fire resistant finishing method is installed by applying a fire resistant material as a method of shotcrete or a fire resistant board to high strength concrete surface. This method can reduce the temperature increase of the reinforcement embedded in high strength concrete at high temperature due to the installation thickness control. This study is interested in identifying the effectiveness of inorganic alumino-silicate compounds including the inorganic admixture such as fly ash and meta-kaolin as the fire resistant finishing materials through the analysis of fire resistance and components properties at high temperature. The study results show that the fire resistant finishing material composed of fly ash and meta-kaolin has the thermal stability of the slight decrease of compressive strength at high temperature. These thermal stability is caused by the ceramic binding capacity induced by alkali activation reaction by the reason of the thermal analysis result not showing the decomposition of calcium hydrate. Inorganic compounds composed of fly ash and meta-kaolin is evaluated to be very effective as the fire resistance material for finishing to protect the concrete substrate by the reason of those simplicity in both application and manufacture. The additional study about the adhesion in the interface with concrete substrate is necessary for the purpose of the practical application.

CSA계 팽창재 및 무기질 혼화재를 이용한 고성능 콘크리트의 특성에 관한 연구 (A Study on the Properties of High Performance Concrete Using CSA Expansive Additives and Inorganic Admixtures)

  • 한천구;반호용;전병채;홍상희
    • 콘크리트학회지
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    • 제11권1호
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    • pp.141-148
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    • 1999
  • 최근 개발되고 있는 고유동, 고강도 및 고내구성을 발휘하는 고성능 콘크리트는 현대개념에 부응하는 양호한 품질을 발휘하는 이면에 물결합재비가 작고 단위결합재량이 많은 배합일수록 비경제적 및 건주수축과 자기수축이 대단히 커진다는 것이 보고되고 있고, 경우에 따라서는 자기수축만으로도 균열이 발생하는 일이 지적되고 있다. 따라서 본 연구에서는 무기질 혼화재인 플라이애쉬, 실리카 흄 및 플라이애쉬:실리카 흄 치환비 변화로써 워커빌리티등 각종품질의 향상과 구조물에 발생되는 건조수축 및 자기수출 균열을 CSA계 팽창재로 방지하므로써, 경제적이고 저균열${\cdot}$고품질인 고성능 콘크리트를 개발하고자 하였다. 연구결과 팽창재 혼입율 5%, F.A:S.F 15:5로 치환하면 유동성 및 강도특성이 양호하면서 건조수축 및 자기수축 보상효과가 있는 양호한 고성능 콘크리트가 성취될 수 있음을 알 수 있었다.

균열 자기치유형 혼화재 적용 콘크리트의 수축균열 평가 (Evaluation on the shrinkage crack of concrete with crack self-healing agent)

  • 홍석범;유조형;김우재
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2014년도 춘계 학술논문 발표대회
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    • pp.82-83
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    • 2014
  • Concrete with self-healing admixture can reduce the crack width by using a compound for chemical reaction with incoming water and carbon dioxide through the crack. Also, concrete with self-healing admixtures can reduce early-age shrinkage crack by using a inorganic expansive agent. In this research, we perform the basic workability test and compressive test. Also, We measure the drying shrinkage of concrete specimen. Finally, we make mock-up (3m X 3m X 0.23m) and monitor the crack width and length for 3 months.

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규불화염계 혼화제가 콘크리트의 물성에 미치는 영향 (Effects of inorganic fluosilicate agent on the properties of concrete)

  • 이상호;문한영
    • 한국구조물진단유지관리공학회 논문집
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    • 제9권3호
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    • pp.187-194
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    • 2005
  • 일반 무기계방수제의 경우 지하구조물에서 수분이 있을 경우, 용출되어 방수성을 잃어버리는 경우가 있고, 유기계의 경우에는 유기실리콘을 물에 유화시켜 사용하는 것으로 분산이 어려운 단점이 있다. 이러한 문제점을 향상, 개선시키기 위한 목적으로 무기계 규불화염을 주 원료로 하는 방수혼화제를 사용하여 시공성, 경제성, 내구성을 증진시킨 콘크리트의 제조를 시도하였다. 시험결과 미소수화열의 경우 WP의 사용량이 증가할수록 수화발열량이 감소하고, 지연되는 현상이 나타나 서중 콘크리트 혹은 댐과 같은 매스 콘크리트의 지연제로도 사용이 가능함을 확인할 수 있었다. 그리고, 압축강도시험을 해 본 결과, 치환율이 증가할수록 압축강도가 약 10%정도까지 증가되는 것으로 나타났다. 이는 콘크리트의 내부공극을 더욱 치밀하게 충진하여 나타난 결과라고 판단된다. 투수시험의 경우 WP가 혼입된 경우 금속불화물의 미립자가 형성되어 일반 콘크리트보다 방수효과가 현저히 뛰어남을 확인할 수 있었다. 내부공극시험을 실시해본 결과 WP의 첨가로 경화조직이 치밀해지고, 모세관 공극 존재에 의한 조직의 결함이 매우 억제되는 결과로부터 공극량이 상당히 감소됨을 확인하였다. 상기의 시험들을 통하여 무기계 구체 방수제를 사용한 콘크리트의 경우 방수성능을 보다 경제적으로 향상시킬 수 있고, 보다 뛰어난 수밀성을 가진 콘크리트를 제조할 수 있음을 확인할 수 있었다.

시멘트산업에서 무기질 산업 폐·부산물의 재활용 (The Recycling of Inorganic Industrial Waste in Cement Industry)

  • 강승규;남기웅;서형남;김남중;민경소;정호수;오희갑
    • 청정기술
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    • 제6권1호
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    • pp.61-69
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    • 2000
  • 본 연구에서는 시멘트 산업에서 이용 가능한 무기질 산업폐기물의 발생현황 및 물성을 조사하여 시멘트원료, mineralizer/flux, 시멘트 혼합재, 특수시멘트 제조원료 등 용도별 재활용 방안을 결정하고 적용실험을 하였다. 산업폐기물의 시멘트 원료로의 이용에 있어, 철질원료 대체용으로는 Cu-slag, Zn-slag, 전기로 슬래그 및 전로 슬래그 등이, 규석질 원료의 대체용으로 폐주물사가 사용되었다. 제당회사에서 발생되는 $CaF_2$가 주성분인 폐소석회와 아연제련 공정에서 부산되는 폐기물인 jarosite를 mineralizer/flux로 사용하여 클린커의 소성온도를 약 $100{\sim}150^{\circ}C$ 낮출 수 있었다. 혼합재료의 이용에 있어, Cu-slag와 STS sludge를 혼합 첨가한 경우 시멘트 혼합재로서의 충분한 물성을 얻을 수 있었고, fly ash 및 석회석도 시멘트의 혼합재로 적당량 첨가함으로서 시멘트의 성능을 향상시킬 수 있었다. 특수 시멘트의 원료로의 이용에 있어서는, 알루미늄 폐슬러지를 원료로 속경성 클린커를 제조하고 이를 이용하여 2시간내에 $300kg/cm^2$강도를 발현하는 초속경 시멘트를 제조하였고, 두 종류의 도시쓰레기 소각회를 원료로 이용하여 $C_3S(3CaO{\cdot}SiO_2)$$C_{11}A_7{\cdot}CaCl_2(11CaO{\cdot}7Al_2O_3{\cdot}CaCl_2)$가 주요 광물인 시멘트를 제조할 수 있었다.

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MgCO3와 사문석을 사용한 마그네시아 시멘트의 무기 첨가제 영향 (Effect of Inorganic Admixture for Magnesia Cement Using MgCO3 and Serpentine)

  • 이종규;소정섭
    • 한국재료학회지
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    • 제25권2호
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    • pp.75-80
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    • 2015
  • The carbon dioxide($CO_2$) released while producing building materials is substantial and has been targeted as a leading contributor to global climate change. One of the most typical method to reducing $CO_2$ for building materials is the addition of slag and fly ash, like pozzolan material, while another method is reducing $CO_2$ production by carbon negative cement development. The MgO-based cement was from the low-temperature calcination of magnesite required less energy and emitted less $CO_2$ than the manufacturing of Portland cements. It is also believed that adding reactive MgO to Portland-pozzolan cements could improve their performance and also increase their capacity to absorb atmospheric $CO_2$. In this study, the basic research for magnesia cement using $MgCO_3$ and magnesium silicate ore (serpentine) as main starting materials, as well as silica fume, fly ash and blast furnace slag for the mineral admixture, were carried out for industrial waste material recycling. In order to increase the hydration activity, $MgCl_2$ was also added. To improve hydration activity, $MgCO_3$ and serpentinite were fired at $700^{\circ}C$ and autoclave treatment was conducted. In the case of $MgCO_3$ as starting material, hydration activity was the highest at firing temperature of $700^{\circ}C$. This $MgCO_3$ was completely transferred to MgO after firing. This occurred after the hydration reaction with water MgO was transferred completely to $Mg(OH)_2$ as a hydration product. In the case of using only $MgCO_3$, the compressive strength was 3.5MPa at 28 days. The addition of silica fume enhanced compressive strength to 5.5 MPa. In the composition of $MgCO_3$-serpentine, the addition of pozzolanic materials such as silica fume increased the compression strength. In particular, the addition of $MgCl_2$ compressive strength was increased to 80 MPa.