• 제목/요약/키워드: FA(Fly ash)

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플라이애시의 정제가 모르타르의 공학적 특성에 미치는 영향 (Effect of Refinement of Fly Ash on Engineering Properties of Cement Mortar)

  • 한민철;문병룡
    • 한국건설순환자원학회논문집
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    • 제5권3호
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    • pp.275-281
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    • 2017
  • 본 연구에서는 플라이애시(FA)의 정제가 시멘트 모르타르의 제반 품질에 미치는 영향을 고찰하고자 하였다. 본 연구에서 사용된 플라이애시는 원분플라이애시, 정제플라이애시, 리젝트애시 및 이들의 조합으로 5수준으로 선정하였고, 모르타르 배합비는 1: 1, 1 : 3 및 1 : 5의 3수준으로 계획하였다. 본 연구의 실험결과로 먼저 플로는 모든 배합비에서 원분인 Ra 사용시 Rf 보다 낮은 유동성을 나타내었다. 또한 Rj의 경우는 낮은 유동성을 보일 것으로 예상하였으나, Rf와 동등하거나 그 이상의 유동성을 나타내었다. 공기량의 경우 Rf와 Rj를 제외한 모든 배합이 목표 범위에 만족하지 못하였다. Ra를 사용한 배합의 경우 정제과정을 거친 Rf보다 약 41% 낮은 공기량을 나타내었으며, Rj의 경우 모르타르 내부 다공질의 이물질 등으로 인해 Rf 보다 약 19% 높은 공기량을 나타내었다. 압축강도의 경우 초기 3, 7일에서는 Plain인 OPC에 비해 낮은 압축강도를 나타내었으나, 28일 이후에는 양호한 품질인 Rf의 포졸란 반응으로 인해 여타의 FA 보다 높은 강도를 발휘하였으며, 배합비 1 : 1 및 1 : 3에서는 OPC보다 높은 강도를 확보할 수 있음을 확인하였다. 내동해성으로 정제되지 않은 FA를 사용한 경우 공기량 감소로 인해 내동해성에 취약한 것으로 분석되었다. 따라서 정제과정을 거친 양질의 FA 사용은 콘크리트의 경제적인 배합과 구조물의 안정성에도 긍정적인 기여를 할 것으로 판단되었다.

Modeling slump of concrete with fly ash and superplasticizer

  • Yeh, I-Cheng
    • Computers and Concrete
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    • 제5권6호
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    • pp.559-572
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    • 2008
  • The effects of fly ash and superplasticizer (SP) on workability of concrete are quite difficult to predict because they are dependent on other concrete ingredients. Because of high complexity of the relations between workability and concrete compositions, conventional regression analysis could be not sufficient to build an accurate model. In this study, a workability model has been built using artificial neural networks (ANN). In this model, the workability is a function of the content of all concrete ingredients, including cement, fly ash, blast furnace slag, water, superplasticizer, coarse aggregate, and fine aggregate. The effects of water/binder ratio (w/b), fly ash-binder ratio (fa/b), superplasticizer-binder ratio (SP/b), and water content on slump were explored by the trained ANN. This study led to the following conclusions: (1) ANN can build a more accurate workability model than polynomial regression. (2) Although the water content and SP/b were kept constant, a change in w/b and fa/b had a distinct effect on the workability properties. (3) An increasing content of fly ash decreased the workability, while raised the slump upper limit that can be obtained.

Effect of GGBS and fly ash on mechanical strength of self-compacting concrete containing glass fibers

  • Kumar, Ashish;Singh, Abhinav;Bhutani, Kapil
    • Advances in concrete construction
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    • 제12권5호
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    • pp.429-437
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    • 2021
  • In the era of building engineering the intensification of Self Compacting Concrete (SCC) is world-shattering magnetism. It has lot of rewards over ordinary concrete i.e., enrichment in production, cutback in manpower, brilliant retort to load and vibration along with improved durability. In the present study, the mechanical strength of CM-2 (SCC containing 10% of rice husk ash (RHA) as cement replacement and 600 grams of glass fibers per cubic meter) was investigated at various dosages of cement replacement by fly ash (FA) and GGBS. A total of 17 SCC mixtures including two control SCC mixtures (CM-1 and CM-2) were developed for investigating fresh and hardened properties in which, ten ternary cementitious blends of SCC by blending OPC+RHA+FA, OPC+RHA+GGBS and five quaternary cementitious blends (OPC+RHA+FA+GGBS) at different replacement dosages of FA and GGBS were developed with reference to CM-2. For constant water-cement ratio (0.42) and dosage of SP (2.5%), the addition of glass fibers (600 grams/m3) in CM-1 i.e., CM-2 shows lower workability but higher mechanical strength. While fly ash based ternary blends (OPC+RHA+FA) show better workability but lower mechanical strength as FA content increases in comparison to GGBS based ternary blends (OPC+RHA+GGBS) on increasing GGBS content. The pattern for mixtures appeared to exhibit higher workablity as that of the concentration of FA+GGBS rises in quaternary blends (OPC+RHA+FA+GGBS). A decrease in compressive strength at 7-days was noticed with an increase in the percentage of FA and GGBS as cement replacement in ternary and quaternary blended mixtures with respect to CM-2. The highest 28-days compressive strength (41.92 MPa) was observed for mix QM-3 and the lowest (33.18 MPa) for mix QM-5.

Determination of fracture toughness in concretes containing siliceous fly ash during mode III loading

  • Golewski, Grzegorz Ludwik
    • Structural Engineering and Mechanics
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    • 제62권1호
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    • pp.1-9
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    • 2017
  • This paper describes laboratory tests carried out to evaluate the influence of class F fly ash (FA) on fracture toughness of plain concretes, specified at the third model fracture. Composites with the additives of: 0%, 20% and 30% siliceous FA were analysed. Fracture toughness tests were performed on axial torsional machine MTS 809 Axial/Torsional Test System, using the cylindrical specimens with dimensions of 150/300 mm, having an initial circumferential notch made in the half-height of cylinders. The studies examined effect of FA additive on the critical stress intensity factor $K_{IIIc}$. In order to determine the fracture toughness $K_{IIIc}$ a special device was manufactured.The analysis of the results revealed that a 20% FA additive causes increase in $K_{IIIc}$, while a 30% FA additive causes decrease in fracture toughness. Furthermore, it was observed that the results obtained during fracture toughness tests are convergent with the values of the compression strength tests.

석회석 미분말 및 플라이애쉬 치환율 변화에 따른 고유동 콘크리트의 특성에 관한 연구 (A Study on the Properties of High Fluidity Concrete Incorporating Lime Stone Powder and Fly Ash)

  • 조병영;윤길봉;황인성;한민철;윤기원;한천구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.287-292
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    • 2001
  • This paper investigates the properties of high fluidity concrete incorporating lime stone powder and fly ash. Lime stone powder(LSP) and fly ash(FA) contents are varied with. According to test results, as LSP and FA contents increase, fluidity, air content and placeability shows a declining tendency. For the temperature history, both LSP and FA have favorable effects on reducing hydration heat, moreover, LSP reduces hydration heat more than FA. LSP shows undesirable strength loss as its content increases. FA also decreases the strength at early age, but it enhances later age strength. Accordingly LSP is expected to improve the quality at fresh concrete and reduce hydration heat, while it causes strength loss.

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FA 함량이 다른 열활성 플라이애쉬 시멘트 시스템 (Thermally Activated Fly Ash Cement System with Different FA Contents)

  • 왕자호;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2021년도 가을 학술논문 발표대회
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    • pp.114-115
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    • 2021
  • In this study, the effects of thermal activation on the compressive strength and water absorption of fly ash-cement systems were studied. The results show that the increase in curing temperature improves the early-age compressive strength and reduces its water absorption.

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Fly Ash를 혼입한 콘크리트의 재령에 따른 강도와 염화물 저항능력간의 상관관계 평가 (Evaluation of Relationship between Strength and Resistance to Chloride in Concrete Containing Fly Ash with Ages)

  • 윤용식;박재성;황철성;권성준
    • 한국구조물진단유지관리공학회 논문집
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    • 제21권4호
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    • pp.53-60
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    • 2017
  • 화력발전의 부산물인 플라이 애쉬는 포졸란 반응을 통하여 조직구조를 개선하고 장기 강도 및 염화물 저항성에 매우 효과적이다. 본 연구에서는 28일 및 180일 재령의 보통 포틀랜트 시멘트 및 FA를 혼입한 콘크리트에 대하여 압축강도 및 염화물 저항성을 평가하였으며, 재령의 증가에 따른 상관성을 평가하였다. 이를 위해, 물-결합재비(W/B)를 37%, 42%, 47%의 3가지 수준, Fly Ash를 시멘트 중량의 0%, 30%, 50%의 3가지 수준으로 나누어 총 9가지 배합을 설정하였으며, 28일 및 180일 재령 시, 압축강도, Tang's method에 의한 촉진확산계수, 그리고 ASTM C 1202, KS F 2711을 통한 통과전하량을 측정하였다. Fly Ash 혼입율이 클수록, W/B가 낮을수록 염화물 저항성(확산계수 및 통과전하량)이 개선되었는데, 모든 FA 50 배합에서 염화물 저항성은 재령 28일 대비 재령 180일에서 약 15% 수준으로 감소하였다. 이는 FA의 포졸란 반응으로 인해 공극구조가 더 치밀해져 나타난 결과이며, 염해 저항성이 강도보다 시간에 더욱 의존적임을 알 수 있다. 재령 180일 이후, FA를 혼입한 배합에서 강도와 염해저항성의 뚜렷한 선형관계가 관측되었다.

Resistance to Corrosion of Reinforcement of High Volume Fly Ash Concrete

  • Kwon, S.O.;Bae, S.H.;Lee, H.J.;Lee, K.M.;Jung, S.H.
    • Corrosion Science and Technology
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    • 제13권6호
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    • pp.209-213
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    • 2014
  • Due to the increasing of interest about the eco-friendly concrete, it is increased to use concretes containing by-products of industry such as fly ash(FA), ground granulated blast furnace slag(GGBFS), silica fume(SF), and etc. Especially, these are well known for improving the resistances to reinforcement corrosion in concrete and decreasing chloride ion penetration. The purpose of this experimental research is to evaluate the resistance against corrosion of reinforcement of high volume fly ash(HVFA) concrete which is replaced with high volume fly ash for cement volume. For this purpose, the concrete test specimens were made for various strength level and replacement ratio of FA, and then the compressive strength and diffusion coefficient for chloride ion of them were measured for 28, 91, and 182 days, respectively. Also, corrosion monitoring by half cell potential method was carried out for the made lollypop concrete test specimens to detect the time of corrosion initiation for reinforcement in concrete. As a result, it was observed from the test results that the compressive strength of HVFA concrete was decreased with increasing replacement ratio of FA but long-term resistances against reinforcement corrosion and chloride ion penetration of that were increased.

Strength prediction and correlation of concrete by partial replacement of fly ash & silica fume

  • Kanmalai C. Williams;R. Balamuralikrishnan
    • Advances in concrete construction
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    • 제16권6호
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    • pp.317-325
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    • 2023
  • Strength prediction and correlation of concrete is done using experimental and analytical methods. Main objective is to correlate the experimental and simulated values of compressive strength of concrete mix using Fly Ash (FA) and Silica Fume (SF) by partial replacement of cement in concrete. Mix proportion was determined using IS method for M40grade concrete. Hundred and forty-seven cubes were cast and tested using Universal Testing Machine (UTM). Genetic Algorithm (GA) model was developed using C++ program to simulate the compressive strength of concrete for various proportions of FA and SF replacements individually at 3% increments. Experiments reveal that 12 percent silica fume replacement produced maximum compressive strength of 35.5 N/mm2, 44.5 N/mm2 and 54.8 N/mm2 moreover 9 percent fly ash replacement produced a maximum strength of 31.9 N/mm2, 37.6 N/mm2 and 51.8 N/mm2 during individual material replacement of concrete mix. Correlation coefficient for each curing period of fly ash and silica fume replaced mix were acquired using trend lines. The correlation coefficient is found to be approximately 0.9 in FA and SF replaced mix irrespective of the mix proportion and age of concrete. A higher and positive correlation was found between the experimental and simulated values irrespective of the curing period in all the replacements.

고로슬래그 미분말 2종 및 석고에 의한 플라이애시 치환 콘크리트의 품질 향상 (Improving Quality of Fly ash Replace Concrete by Second-Class Blast Furnace Slag Powder and Gypsum)

  • 전규남;이정아;최성용;백대현;한민철;한천구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2009년도 춘계 학술논문 발표대회 학계
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    • pp.97-100
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    • 2009
  • This study is a basic experiment to complement the problems in decrease of strength in case we change lots of fly ash("FA" here in after) in ordinary portland cement("OPC" here in after). Mixing plaster that is known to be effective in improvement in hydration of blast furnace slag powder("BS" here in after). After FA changed concrete is mixed, the study physical proporties such as compression strength, increased proportionaly. When second-class BS 5 % and gypsum 2 % changed, compare to OPC strength approximately 120 % was recorded after one day. In FA 20 % case, according to the ratio of gypsum changed results showed similar trend, but compared to FA 10 % changed concrete, expression strength improvement was lower.

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