• 제목/요약/키워드: alkali silica reaction

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콘크리트 장기 안정성을 위한 골재의 선택 (Selection of Suitable Aggregates for Long-term Stability of Concrete)

  • 양동윤;이동영
    • 자원환경지질
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    • 제28권5호
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    • pp.519-525
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    • 1995
  • Recently, there have been several cases of serious accidents on concrete structure resulting from rapid deterioration of concrete strength. On the view point of long term stability of concrete, deterioration of concrete strength is mostly due to chemical reaction between alkali and reactive aggregates (alkali-aggreagte reaction; AAR) in concrete rather than a problem of execution. For long-term stability of concrete, concrete aggregates must be carefully selected. Some of rocks used for concrete aggregates contain deleterious minerals reactive to alkali components in concrete. Most of AAR result from chemical reaction between alkali components and reactive silica minerals in aggregates (so called alkali-silica reaction; ASR). The silica minerals are as follows; quartz with seriously distorted lattice structure, volcanic glass, chalcedony, opal, cristobalite, tridymite, etc. ASR may cause expansion and cracks, further collapse in concrete structure, in a few years. In case of crushed aggregates, only a part of rock mass without reactive minerals must be produced in aggregates mine after thorough examination of the distribution of rocks with reactive minerals. In case of natural aggregates, the total content of reactive minerals must be calculated, if, the content is more than 20%, the rate should be lower by mixing other non-reactive crushed- or natural aggregates. If it is obliged to use concrete aggregates all containing deleterious minerals in a discrete area, they must be used with low alkali cement Even if it is low quality in the chemical properties, aggregates with suitable range in the physical properties can be utilized as the aggregate of other purposes.

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메타카오린의 포조란 효과에 의한 콘크리트 내 알칼리-실리카 반응 억제 효과 (The Inhibition Effect of Alkali-Silica Reaction in Concrete by Pozzolanic Effect of Metakaolin)

  • 이효민;전쌍순;황진연;진치섭;윤지해;옥수석
    • 한국광물학회지
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    • 제17권3호
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    • pp.277-288
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    • 2004
  • 알칼리-실리카반응은 시멘트 내의 알칼리와 화학적으로 불안정한 반응성 골재와의 화학반응으로서, 그 결과 콘크리트의 팽창과 균열을 발생하는 작용이다 본 연구에서는 우수한 포조란반응 특성을 나타내는 새로운 광물혼화재로 부각되고 있는 메타카오린의 알칼리-실리카반응 억제 효과에 대하여 연구하였다. 다양한 치환율로 메타카오린을 혼합한 모르타르 공시체를 제작하여, 알칼리-실리카 반응성 시험(ASTM C 1260), 압축강도 시험 및 유동성 시험을 실시하고, 시멘트 수화물에서의 구성성분 변화에 대한 XRD 정량분석을 실시하였다. 그 결과, 메타카오린의 혼합은 시멘트 페이스트내의 가용 포트랜다이트의 함량을 급속히 감소시키는 빠른 포조란반응 및 수화반응 특성을 나타내어, 알칼리-실리카 반응에 의한 팽창을 억제하고 우수한 압축강도를 발현하는 것으로 나타났다. 시멘트에 메타카오린의 혼합에 의한 알칼리-실리카 반응에 의한 팽창억제는 치환율 15% 이상, 즉 시멘트 페이스 내의 가용 포트랜다이트 함량이 약 10% 이하가 될 경우 효과적이다. 메타카오린의 혼합에 의한 알칼리-실리카 반응에 의한 팽창 억제는 유해성이 높은 알칼리-칼슘-실리카 겔의 형성이 억제된 결과와 포조란 효과에 의한 치밀하고 균질한 시멘트 페이스트 형성으로 인한 알칼리 용액의 침투가 억제된 결과에 의한 것으로 생각된다. 15% 이상의 메타카오린의 혼합은 보통의 모르타르보다 높은 초기강도를 발현하였으며, 후기강도는 전 치환율 범위에서 보통의 모르타르 이상의 아주 우수한 강도를 나타내었다. 강도발현 특징은 메타카오린에 의한 빠른 포조란반응 및 수화특성을 반영하고 있다.

Estimation of various amounts of kaolinite on concrete alkali-silica reactions using different machine learning methods

  • Aflatoonian, Moein;Mirhosseini, Ramin Tabatabaei
    • Structural Engineering and Mechanics
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    • 제83권1호
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    • pp.79-92
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    • 2022
  • In this paper, the impact of a vernacular pozzolanic kaolinite mine on concrete alkali-silica reaction and strength has been evaluated. For making the samples, kaolinite powder with various levels has been used in the quality specification test of aggregates based on the ASTM C1260 standard in order to investigate the effect of kaolinite particles on reducing the reaction of the mortar bars. The compressive strength, X-Ray Diffraction (XRD) and Scanning Electron Microscope (SEM) experiments have been performed on concrete specimens. The obtained results show that addition of kaolinite powder to concrete will cause a pozzolanic reaction and decrease the permeability of concrete samples comparing to the reference concrete specimen. Further, various machine learning methods have been used to predict ASR-induced expansion per different amounts of kaolinite. In the process of modeling methods, optimal method is considered to have the lowest mean square error (MSE) simultaneous to having the highest correlation coefficient (R). Therefore, to evaluate the efficiency of the proposed model, the results of the support vector machine (SVM) method were compared with the decision tree method, regression analysis and neural network algorithm. The results of comparison of forecasting tools showed that support vector machines have outperformed the results of other methods. Therefore, the support vector machine method can be mentioned as an effective approach to predict ASR-induced expansion.

NaCl 수용액 중에서 고로슬래그미분말의 알칼리실리카반응에 대한 팽창억제 메카니즘 (Mechanism on Suppression of Alkali Silica Reaction by Ground Granulated Blast-Furnace Slag in NaCl Solution)

  • 김창길;삼포상;강원호
    • 콘크리트학회지
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    • 제9권1호
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    • pp.115-121
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    • 1997
  • 본 연구는 NaCl 수용액 중에서 고로 슬래그미분말의 알칼리실리카반응에 대한 팽창억제 특성 및 그의 메카니즘에 관한 것이다. 실험에 사용된 NaCl 수용액의 농도는 0%(수도수), 2.8% 및 20%였으며, 골재는 안산암을 사용하였다. 슬래그는 비표면적이 $4,100cm^2/g.\;5,960cm^2/g$$7,950cm^2/g$인 3종류를 사용하였고 치환율은 시멘트중량에 대하여 40%, 60%, 70% 및 80%로 하였다. NaCl 수용액에 있어서 슬래그를 첨가한 공시체는 치환율이 많을수록 수축률은 높게 되었고 그의 값은 비표면적이 클수록 높게 나타났다. 슬래그에 의한 알카리실리카반응의 유해한 팽창의 억제는 슬래그의 첨가에 의한 경화 콘크리트의 화학적 수축에 의해서도 달성됨이 확인되었다.

Development of fine grained concretes for textile reinforced cementitious composites

  • Daskiran, Esma Gizem;Daskiran, Mehmet M.;Gencoglu, Mustafa
    • Computers and Concrete
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    • 제18권2호
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    • pp.279-295
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    • 2016
  • A new innovative composite material is textile reinforced cementitious composite (TRCC). To achieve high flexural performance researchers suggest polymer modification of TRCC matrices. In this study, nine ready mix repair mortars commonly used in construction industry and the production of TRCC elements were examined. Mechanical properties such as compressive and flexural strength, drying shrinkage were studied. Being a significant durability concern, alkali silica reaction tests were performed according to related standards. Results showed that, some ready repair mortar mixes are potentially reactive due to the alkali silica reaction. Two of the ready mortar mixes labelled as non-shrinkage in their technical data sheets showed the highest shrinkage. In this experiment, researchers designed new matrices. These matrices were fine grained concretes modified with polymer additives; latexes and redispersible powders. Two latexes and six redispersible powder polymers were used in the study. Mechanical properties of fine grained concretes such as compressive and flexural strengths were determined. Results showed that some of the fine grained concretes cast with redispersible powders had higher flexural strength than ready mix repair mortars at 28 days. Matrix composition has to be designed for a suitable consistency for planned production processes of TRCC and mechanical properties for load-carrying capacity.

알칼리 금속이 첨가된 silica-alumina 촉매에 의한 메탄올의 탈수소반응의 연구 (A Study on the Dehydrogenation of Methanol by Alkali-doped Silica-alumina Catalyst)

  • 곽종운;박진남;이호인
    • 공업화학
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    • 제7권4호
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    • pp.698-706
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    • 1996
  • 메탄올로부터 HCHO를 생성하기 위하여 연속흐름 장치하에서 알칼리금속이 혼입된 여러가지 실리카-알루미나 촉매상에서 메탄올 탈수소반응을 수행하였다. HCHO의 생성은 촉매상의 Br${\ddot{o}}$nsted산보다는 Lewis산에 의존하였다. 이를 통해 메탄올의 탈수소촉매반응은 전자반응임을 알았고, 실리카-알루미나상의 Br${\ddot{o}}$nsted산은 알칼리금속의 혼입에 의해서 중화되었으며, Br${\ddot{o}}$nsted산의 중화효과는 혼입된 알칼리금속의 전자주게능력(electron-donating capacity)에 따라 다르게 나타났다. 그리고 메탄올 탈수소반응의 활성화에너지는 촉매의 Br${\ddot{o}}$nsted산점이 K에 의해 중화되었을 때 감소하는 경향을 보여주었다.

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폐유리를 혼입한 섬유보강 콘크리트의 알카리-실리카 반응에 관한 실험적 연구 (An Experimental Study on Alkali-Silicate Reaction of Fiber Reinforced Concrete Containing Waste Glass)

  • 이봉춘;이택우;권혁준;이준;박승범
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.49-54
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    • 2001
  • Using waste glass in concrete can cause crack and strength loss by the expansion of alkali-silica reaction(ASR). In this study, ASR expansion and properties of strength were analyzed in terms of brown waste glass content, and fibers(steel fiber, polypropylene fiber) and fiber content for reduction ASR expansion due to waste glass. In this accelerated ASTM C 1260 test of waste glass, pessimum content can not be found. Also, when used the fibers with waste g1ass, there is an effect on reduction of expansion and strength loss due to ASR between the alkali in the cement paste and the silica in the waste glass. Specially, adding 1.5 vol.% of steel fiber to 20% of waste glass the expansion ratio was reduced by 40% and flexural strength was developed by up to 110% comparing with only Waste glass ( $80^{\circ}C$ $H_{2}$ O curing).

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ASR Effectiveness of High Volume Fly Ash Cementitious Systems Using Modified ASTM C 1260 Test Method

  • Shon, Chang-Seon;Kang, Soo-Geon;Kim, Young-Su
    • KCI Concrete Journal
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    • 제14권2호
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    • pp.76-80
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    • 2002
  • The role of high volume Class F fly ash in reducing expansion due to Alkali-Silica Reaction (ASR) was investigated. A series of modified ASTM C 1260 tests were performed under three different levels of NaOH normality, extending the test period to 28 days, using high- or low alkali cement, and Class F fly ash up to 58 % by mass of cement. A reactive siliceous fine aggregate was used. The test results confirm that HVFA replacement in a cementitious system significantly helps in controlling expansion caused by ASR.

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석회석미분말을 첨가한 친환경 시멘트콘크리트의 내구 특성 (Durability Characteristics of Limestone Powder added Concrete for Environment-Friendly Concrete)

  • 최우현;박철우;정원경;전범준;김규선
    • 한국구조물진단유지관리공학회 논문집
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    • 제16권5호
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    • pp.59-67
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    • 2012
  • 시멘트를 생산할 때 발생하는 이산화탄소로 인하여 콘크리트를 활용하는 건설산업의 친환경성이 문제시 되어가고 있는 실정이다. 이에 본 연구에서는 석회석미분말로 시멘트를 대체하는 기술의 기초연구로서 석회석미분말을 함유한 콘크리트의 내구특성에 관하여 특성을 파악하고자 하였다. 실험변수는 석회석미분말의 시멘트 치환률을 0%에서 25%까지 5%씩 중가하였으며 동결융해 저항성, 제설염 저항성 및 알칼리-실리카반응 저항성 등의 내구특성과 기초적인 경화특성 등을 분석하였다. 석회석미분말의 사용으로 인한 동결융해저항성, 제설제염 저항성 등의 영향은 거의 없는 것으로 나타났으며 또한 알카리-실리카반응성의 억제를 위하여도 긍정적으로 검토될 수 있을 것으로 판단된다.

Effect of Fineness Modulus of Reactive Aggregate on Alkali Silica Reaction

  • Jun, Ssang-Sun;Jin, Chi-Sub
    • International Journal of Concrete Structures and Materials
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    • 제4권2호
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    • pp.119-125
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    • 2010
  • In this study, the effects of the fineness modulus of reactive aggregate on ASR expansion and ASR products have been investigated. The reactive aggregate used was metamorphic aggregate originated from Korea. ASR tests were conducted according to accelerated mortar bar test. The morphology and chemical composition of products formed in mortar bars, 5 years after the mortar bar test had been performed, were studied by scanning electron microscopy equipped with energy dispersive spectroscopy. Test results indicated that ASR expansion of mortar bars decrease in linear proportion to the fineness modulus of reactive aggregate. SEM images indicated that mortar bars showed reactive products formed in cement paste, within air voids and within cracks through particles except for the mortar bar with the fineness modulus of 3.25. The EDS analysis of the reactive products showed presence of silica, calcium and sodium, typical of ASR product composition.