• 제목/요약/키워드: Alkali-Silica Reaction(ASR)

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쇄석 골재의 알칼리-실리카 반응에 관한 실험적 연구( 제 2보 : 첨가알칼리량 및 종류가 알칼리-실리카 반응에 미치는 영향) (A Experimental Study on the Alkali-Silica Reaction of Crushed Stones (Part 2 : The Influence of the Alkali Content and the Kind of Added Alkali to the Alkali-Silica Reaction))

  • 이영수;윤재환;정재동;노재호;이양수;조일호
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1993년도 가을 학술발표회 논문집
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    • pp.108-112
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    • 1993
  • The term Alkali-Silica Reaction (ASR) is used to describe a reaction between certain siliceous aggregates and hydroxyl ions present in the pore fluid of a concrete. The ASR is affected by the content of alkali, the particle size and the content of reactive aggregate, water-cement ratio, humidity, temperature and so on. In this paper, the fluence of alkali content and kind of added alkali to the ASR was studied. As a result, the more the content of alkali was increased, the more the mortar-bar was expand and the expansion of mortar-bar was showed differently with the added alkali kinds, The reaction products by ASR were observed by SEM(Scanning Electron Microscope) and analyzed by EDXA(Energy Dispersive X-ray Analysis) also and showed a gel composed of alkali(Na+, K+), silica and calcium.

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Modelling of Alkali-Silica Reaction Effects on Mechanical Property Changes of Concrete

  • Kim, Jung Joong;Fan, Tai;Reda Tah, Mahmoud M.;Lim, Nam-Hyoung
    • International Journal of Railway
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    • 제8권2호
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    • pp.42-45
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    • 2015
  • Alkali-silica reaction (ASR) is a chemical reaction in concrete that alkalis in cement react with reactive silica in aggregate in the presence of water. When ASR takes place, it produces gels that absorb water and expand. Swelling of ASR gels can damage concrete and cause cracking and volume expansion in concrete structure. In this paper, mechanical consequences of ASR on concrete are simulated by a finite element (FE) analysis. An FE model of concrete is built. The evolution of concrete mechanical properties subjected to ASR is achieved by FE analyses. The constitutive model of concrete is attained via the FE analysis. A case study is used to demonstrate the proposed method. The simulated results using the proposed model are in good agreement with the observations of concrete with ASR reported in the literature. The results can be used for a basic research to enhance durability of concrete slab tracks and concrete railway sleepers.

폐유리 잔골재가 고강도 모르타르의 역학적 특성 및 알칼리-실리카 반응(ASR), ASR 후, 잔류 역학적 특성에 미치는 영향 (Effect of Waste Glass Fine Aggregate on Mechanical Properites and Alkali-Silica Reaction(ASR), After ASR Residual Mechanical Properties of High Strength Mortar)

  • 유하민;김규용;손민재;사수이;이예찬;남정수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 가을 학술논문 발표대회
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    • pp.31-32
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    • 2020
  • This study measured the mechanical performance and residual strength of high strength/normal strength mortar mixed with waste glass fine aggregate after alkali-silica reaction and alkali-silica reaction. As a result, the effect of improving the slip phenomenon of the waste glass fine aggregate in the high-strength mortar was not significant, but rather the amount of ASR was increased.

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A Case Study of Concrete Pavement Deterioration by Alkali-Silica Reaction in Korea

  • Hong, Seung-Ho;Han, Seung-Hwan;Yun, Kyong-Ku
    • International Journal of Concrete Structures and Materials
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    • 제1권1호
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    • pp.75-81
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    • 2007
  • The concrete pavement of the Seohae Highway in Korea has suffered from serious distress, only four to seven years after construction. Deterioration due to Alkali-Silica Reaction (ASR) has seldom been reported per se in Korea, because the aggregate used for the cement concrete has been considered safe against alkali-silica reaction so far. The purpose of this study is to examine the deterioration caused by an alkali-silica reaction of concrete pavement in Korea. The investigation methods included visual inspection and Automatic Road Analyzer (ARAN) analysis of surface cracks, coring for internal cracks, stereo microscopic analysis, scanning electronic microscope (SEM) analysis, and electron dispersive X-ray spectrometer (EDX) analysis. The results are presented as follows: the crack pattern of the concrete pavement in Korea was longitudinal cracking, map cracking or D-cracking. Local areas of damage were noticed four to five years after construction. The cracks started from edges or joints and spread out to slabs. The most intensive cracking was observed at the intersection of the transverse and longitudinal joints. Where cracking was the most intense, pieces of concrete and aggregate had spalled away from top surface and joint interface area. The progress of deterioration was very fast. The reaction product of alkali-silica gel was clearly identified by its generally colorless, white, or very pale yellow hue seen through a stereo optical microscopy. The typical locations of the reaction product were at the interface between aggregate and cement paste in a shape of a rim, within aggregate particles in the cracks, and in the large void in the cement paste. Most of the white products were found at interface or internal aggregates. SEM and EDX analysis confirmed that the white gel was a typical reaction product of ASR. The ASR gel in Korea mainly consisted of Silicate (Si) and Potassium (K) from the cement. The crack in the concrete pavement was caused by ASR. It seems that Korea is no longer safe from alkali-silica reaction.

순환/재생골재의 잔류 모르타르 성분이 알칼리 실리카 반응성에 미치는 영향 평가 (The Effect of the Residual Mortar of Recycled Concrete Aggregate on Alkali Silica Reaction)

  • 김정현;김남호;양성철
    • 한국도로학회논문집
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    • 제17권4호
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    • pp.19-24
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    • 2015
  • PURPOSES : The objective of this study is to evaluate the effect of the residual mortar of recycled concrete aggregate on the expansion behavior during alkali silica reaction (ASR). METHODS: In order to evaluate the net effect of residual mortar on ASR expansion behavior, two aggregate samples with the same original virgin aggregate source but different residual mortar volumes were used. ASTM C1260 test was used to evaluate the ASR expansion behavior of these two aggregates and the original virgin aggregate. RESULTS: The greater the amount of residual mortar in recycled concrete aggregates, the less is the induced ASR expansion. Depending on the amount of residual mortar in recycled concrete aggregate, the ASR expansion of recycled concrete aggregate may be less than half of that of the original virgin aggregate. CONCLUSIONS: The residual mortar of recycled concrete aggregate may lead to the under estimation of the ASR expansion behavior of the original virgin aggregate.

폐유리 잔골재 대체율이 물시멘트비가 다른 모르타르의 역학적 특성 및 알칼리 -실리카 반응에 미치는 영향 - (Effect of the replacement rates of Waste Glass Fine Aggregate on the Mechanical Properties and Alkali - Silica Reaction of Mortars with different W/C Ratio -)

  • 유하민;김규용;남정수;손민재;사수이;이예찬
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 봄 학술논문 발표대회
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    • pp.195-196
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    • 2020
  • This study evaluated the mechanical properties and alkali silica reaction of mortar according to the mixing ratio of waste glass. As a result, as the mixing ratio of the waste glass increased, the compressive and flexible strength of the mortar decreased due to the slip of aggregate, and the alkali-silica reaction(ASR) increased. So, it is considered that research is needed to prevent slip and ASR of the waste glass aggregate in order to use the waste glass as a fine aggregate for concrete.

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쇄석 골재의 알칼리-실리카 반응에 관한 실험적 연구 (An Experimental Study on the Alkali-Silica Reaction of Crushed Stones)

  • 윤재환;정재동;이영수
    • 콘크리트학회지
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    • 제6권2호
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    • pp.108-117
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    • 1994
  • 국내에서는 아직 알칼리-골재 반응으로 인한 피해가 보고되지는 않았지만, 해사와 쇄석의 사용이 증가하고 있어 이에 대한 연구가 시급히 진행되어야 할 것으로 사료되어, 화학법(KS F 2545, ASTMC 289)과 모르터바법(KS F 2546, ASTM C 227)을 중심으로 실험을 행하여 국내산 쇄석1종과 국외산 쇄석 1종이 유해로 판정되었으며, 첨가알칼리성량 및 종류를 달리하여 실시한 모르터바법 시험결과 첨가 알카리로 NaCl사용시 가장 높은 팽창을 하였다. 또한, 모르터바의 표면 및 내부의 반응생성물을 SEM에 의한 관찰과 EDXA에 의한 성분분석을 실시하여 알칼리와 실리카성분으로 이루어진 알칼리 실리케이트 겔임이 판명되어 국내에서 알칼리 반응성을 나타내는 골재의 존재가 처음으로 확인되었다.

미세 강섬유의 구속력이 모르타르의 알칼리-실리카 반응에 미치는 영향 (Effect of Mechanical Restraint due to Steel Microfibers on Alkali-Silica Reaction in Mortars)

  • 이종구
    • 콘크리트학회논문집
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    • 제19권5호
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    • pp.577-584
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    • 2007
  • Steel microfiber (SMF)가 알칼리-실리카 반응 (ASR)에 미치는 영향을 두 가지 종류 (부순 오팔과 직경이 일정한 pyrex 막대)의 반응 골재를 사용하여 알아보았다. ASR에 의한 균열은 기준 모르타르에서 쉽게 발견되었으나 SMF 모르타르의 균열은 아주 제한적이었다. SMF의 균열 진전 제어 메커니즘을 통하여 ASR에 의한 모르타르의 강도 저하와 팽창을 효과적으로 막을 수 있었고, ASR 생성물들의 유동성이 저하됨을 알 수 있었다. ASR 생성물의 성분을 microprobe 분석과 ICP 분광계를 이용하여 알아보았다. SMF의 구속 효과는 액체상태인 ASR 생성물의 높은 나트륨이 온과 규소이온의 농도를 초래하였으며, 높은 이온의 농도는 ASR 알칼리-실리카 반응성을 저하하는 원인으로 생각되어 진다.

폐유리 및 산업부산물을 혼입한 모르터의 ASR에 관한 실험적 연구 (An Experimental Study on Alkali-Silica Reaction of Mortar Containing Waste Glass and By-products)

  • 이봉춘;권혁준;김정환;이준;박승범
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.93-98
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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 clear waste glass grading, and by-products(fly ash, blast-furnace slag) and by-products content for reduction ASR expansion due to waste glass. In this accelerated ASTM C 1260 test of waste glass, pessimum grading can be found. Also, when the by-products are used with waste glass, 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.

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폐유리 골재를 혼입한 모르터의 알칼리 실리카 반응에 관한 연구 (Alkali-Silica Reaction of Mortar Containing Waste Glass Aggregates)

  • 박승범;이봉춘;권혁준
    • 콘크리트학회논문집
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    • 제13권3호
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    • pp.213-220
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    • 2001
  • 콘크리트에 폐유리의 사용은 알칼리 실리카 반응(ASR)의 팽창으로 균열과 강도저하를 일으킬 수 있다. 본 연구에서는 폐유리의 혼입률과 색상(갈색, 녹색) 및 폐유리로 인해 발생되는 ASR팽창을 저감시키기 위해 섬유의 종류(강섬유, 폴리프로필렌섬유)와 섬유혼입률에 따른 ASR팽창과 강도특성을 분석하였다. 연구결과 녹색의 폐유리가 팽창량이 비교적 작기 때문에 갈색의 폐유리보다 더욱 유용하며, ASTNM C 1260의 시험에 있어서 폐유리의 혼입으로 인한 퍼시멈(pessimum)량은 발견되지 않았다. 또한, 폐유리와 함께 섬유의 혼입은 폐유리의 실리카와 시멘트 페이스트의 알칼리 사이의 ASR로 인한 팽창과 강도 저하를 저감시키는데 효과적인 것으로 나타났다. 특히 폐유리 혼입률 20%에 대해서 강섬유를 1.5vol.% 혼입하였을 경우 팽창은 40%까지 감소하였으며 휨강도는 폐유리만을 혼입한 것(8$0^{\circ}C$ $H_2O$ 양생)에 비해 110%의 강도발현을 나타내었다.