• 제목/요약/키워드: blast furnace

검색결과 1,377건 처리시간 0.023초

촉진탄산염화에 의한 마그네슘계 고화제의 강도 향상 특성 (Enhancement of the Strength of MgO-Based Binder by Accelerated Carbonation)

  • 윤도윤;안준영;김철용;김태유;황인성
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권6호
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    • pp.135-145
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    • 2016
  • MgO recently has been regarded as the alternative material for replacement of cement. The aim of this study is to investigate the effects of accelerated carbonation on the strength development of MgO-based binder which is binary mixtures of magnesium oxide (MgO) with portland cement (PC) or ground granulated blast furnace slag (GGBS) or fly ash (FA). The compressive strengths of all binders were higher in the 20% $CO_2$ condition and for longer curing time. The strength were generally higher as the following order: MgO/PC > MgO/GGBS > MgO/FA system. The binder composed of 20% MgO and 80% PC showed highest compressive strength (38.0MPa) which was higher than PC. The correlation analysis of the porosity and compressive strength showed that compressive strength was higher when porosity was lower. The hydration and carbonation products of MgO including brucite ($Ca(OH)_2$), magnesite ($MgCO_3$) and nesquehonite ($MgCO_3{\cdot}3H_2O$) presumably filled the pores and contributed to strength development. Thermogravimetric analyses elucidated that 0.34 kg of $CO_2$ could be stored the 50% MgO/50% PC binder which performed the maximum $CO_2$ uptake at 20% $CO_2$ condition.

알칼리 활성반응을 이용한 플라이 애쉬/슬래그 시멘트 개발(1) - 압축강도 및 산 저항성 - (Development of Fly Ash/slag Cement Using Alkali-activated Reaction(1) - Compressive strength and acid corrosion resistance -)

  • 박상숙;강화영;한관수
    • 대한환경공학회지
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    • 제29권7호
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    • pp.801-809
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    • 2007
  • 플라이 애쉬와 고로슬래그는 알칼리 활성화시 점착성의 시멘트성 물질로 전환될 수 있는 산업부산물로서, 이 같은 시멘트성 물질의 생산은 포틀랜드 시멘트 제조시보다 에너지 소비가 적고 이산화탄소 방출도 적다. 플라이 애쉬/슬래그 시멘트의 압축강도에 대한 알칼리 활성화 조건의 영향과 이 시멘트의 산 저항 특성을 평가하기 위해 실험을 수행하였다. 두 개의 알칼리 활성화 용액, 즉 수산화나트륨과 수산화나트륨 + 물유리가 사용되었다. 물유리 농도는 모든 실험에서 압축강도에 가장 큰 영향을 미치는 인자로 나타났다. 그 다음으로 중요한 인자는 수산화나트륨 농도와 양생 온도 순이었다. 황산과 염산에 대한 FC(플라이 애쉬 시멘트)와 FSC(플라이 애쉬/슬래그 시멘트)의 산 저항성은 포틀랜드 시멘트(PC)보다 월등히 좋았다.

폴리프로필렌 섬유보강 화강토 콘크리트의 역학적 특성 (Mechanical Properties of Granite Soil Concrete with Polypropylene Fiber)

  • 남기성;전형순
    • 한국농공학회논문집
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    • 제55권1호
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    • pp.1-8
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    • 2013
  • This study will not only prove experimental dynamic properties which are classified to slump, compressive strength, tensile strength, flexure strength and toughness granite soil concrete with a fine aggregate of granite soil and blast-furnace cement and polypropylene fiber over 45 mm, but also establish a basic data in order to use environment-friendly pavement through prove useful pavement mixed with granite and polypropylene (PP) fiber which is a kind of material to prevent a dry shrinkage clack, a partial destruction and useful and light. The value of slump test was gradually increased by PP fiber volume 3 $kgf/m^3$, but compressive strength took a sudden turn for the worse from 5 $kgf/m^3$. The compressive strength indicated a range of 13.72~18.35 MPa. On the contrary to compressive strength, the tensile strength showed to decrease with rising PP fiber volume, and the tensile strength indicated a range of 1.43~1.64 MPa. The tensile strength was stronger about 2~15 % in case of mixing with PP fiber volume than normal concrete. The flexural strength indicated a range of 2.76~3.41 MPa. The flexural strength was stronger about 20 % in case of PP fiber volume 0 $kg/m^3$ than PP fiber volume 9 $kg/m^3$. The toughness indicated a range of 0~25.46 $N{\cdot}mm$ and increased proportionally with PP fiber volume. The toughness was stronger about 8.3 times in case of PP fiber volume 9 $kg/m^3$ than PP fiber volume 1 $kg/m^3$. The pavement with PP fiber volume over such a fixed quantity in the park roads and walkways can have a effect to prevent not only resistance against clack but also rip off failures.

고로슬래그를 이용한 프리캐스트 콘크리트 박스암거의 성능평가에 관한 연구 (A Study on the Performance Evaluation of Precast Concrete Box Culvert with Blast Furnace Slag)

  • 김두환;정준영;김성필;안만복;태기호
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2011년도 정기 학술발표대회
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    • pp.157-157
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    • 2011
  • 프리캐스트 콘크리트 박스 암거는 현장 타설식 암거에 비해 구조물의 고품질화 및 반복적인 대량생산으로 원가 절감과 건식화 시공으로 인한 공정의 단순화와 공기가 단축되는 이점을 지니고 있다. 따라서 본 연구는 상재 허용하중을 확보하고, 시공성 및 내구성이 뛰어나며, 경제성을 고려한 고성능 프리캐스트 박스 암거를 개발하고 향후 고성능 프리캐스트 박스 암거를 생산하기 위한 기초적인 자료를 제시하고자 하였다. 본 연구에서는 기존의 보통 포틀랜드 시멘트를 이용한 프리캐스트 박스 암거의 경제성 및 내구성, 강도특성을 개선하고자 고로슬래그를 이용하여 최적의 배합비를 산출하고, 이를 토대로 중성화, 염해, 동결융해 등의 시험을 통해 내구성을 확보하고, 휨 성능을 확인하고자 실물박스암거를 제작하여 외압강도시험을 실시하였다. 또한 구조해석을 통해 응력검토를 하였다. 내구성 검토 결과, 분말도 $6,000cm^2/g$을 가진 고로슬래그 미분말을 50%로 혼입한 콘크리트가 보통 포틀랜드 시멘트를 사용한 콘크리트보다 염화물이온 투과성에 대한 저항성 및 동결융해 저항성 등 기초물성 및 내구성이 개선됨을 알 수 있었다. 박스암거에 대한 휨 시험 결과, OPC에 비해 GFSC6의 경우는 크게 구조적 성능이 떨어지지는 않는 것으로 나타났으며, 균열양상 및 연성도에서는 우수함을 나타냈다. ABAQUS에 의한 비선형 해석 결과는 시험체의 휨 거동을 잘 묘사하는 것으로 나타났으며, 처짐의 경우 시험체의 시험결과보다 크게 나타났지만, 처짐 양상은 비슷한 것을 알 수 있었고, 벽체와 상부 슬래브에 발생하는 응력은 부재가 허용하는 균열응력값 이내로 나타남에 따라 사용하중 상태에서의 응력검토는 안전한 것으로 판단된다.

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Alkali activated ceramic waste with or without two different calcium sources

  • Zedan, Sayieda R.;Mohamed, Maha R.;Ahmed, Doaa A.;Mohammed, Aya H.
    • Advances in materials Research
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    • 제4권3호
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    • pp.133-144
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    • 2015
  • The aim of this investigation is to prepare geopolymer resin by alkali activation of ceramic waste (AACW) with different sodium hydroxide (NaOH) and liquid sodium silicate (LSS) concentrations. In order to prepare geopolymer cement, AACW was replaced by 10 and 30 % by weight (wt.,) of concrete waste (CoW) as well as 10 and 30 wt., % ground granulated blast-furnace slag (GGBFS). The results showed that, the compressive strength of AACW increases with the increase of activator content up to 15:15 wt., % NaOH: LSS. All AACW hardened specimens activated by 3:3 (MC6), 6:6 (MC12), 12:12 (MC24) and 15:15 wt., % (MC30) NaOH: LSS destroyed when cured in water for 24h. The MC18 mix showed higher resistivity to water curing. The results also showed that, the replacement of AACW containing 9:9 wt., % NaOH: LSS (MC18) by 10 (MCCo10) and 30 (MCCo30) wt., % CoWdecreased the compressive strength at all ages of curing. In contrast, the MCCo10 mix showed the lower chemically combined water content compared to MC18 mix. The MCCo30 mix showed the higher chemically combined water content compared to MC18 and MCCo10 mixes. The compressive strength and chemically combined water of all AACWmixes containing GGBFS (MCS10 and MCS30) were higher than those of AACWwith no GGBFS (MC18). As the amount of GGBFS content increases the chemically combined water increases. The x-ray diffraction (XRD) proved that as the amount of CoWcontent increases, the degree of crystallinity increases. Conversely, the replacement of AACW by GGBFS leads to increase the amorphiticity character. The infrared spectroscopy (FTIR) confirms the higher reactivity of GGBFS compared to CoW as a result of successive hydration products formation, enhancing the compaction of microstructure as observed in scanning electron microscopy (SEM).

Predicting strength development of RMSM using ultrasonic pulse velocity and artificial neural network

  • Sheen, Nain Y.;Huang, Jeng L.;Le, Hien D.
    • Computers and Concrete
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    • 제12권6호
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    • pp.785-802
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    • 2013
  • Ready-mixed soil material, known as a kind of controlled low-strength material, is a new way of soil cement combination. It can be used as backfill materials. In this paper, artificial neural network and nonlinear regression approach were applied to predict the compressive strength of ready-mixed soil material containing Portland cement, slag, sand, and soil in mixture. The data used for analyzing were obtained from our testing program. In the experiment, we carried out a mix design with three proportions of sand to soil (e.g., 6:4, 5:5, and 4:6). In addition, blast furnace slag partially replaced cement to improve workability, whereas the water-to-binder ratio was fixed. Testing was conducted on samples to estimate its engineering properties as per ASTM such as flowability, strength, and pulse velocity. Based on testing data, the empirical pulse velocity-strength correlation was established by regression method. Next, three topologies of neural network were developed to predict the strength, namely ANN-I, ANN-II, and ANN-III. The first two models are back-propagation feed-forward networks, and the other one is radial basis neural network. The results show that the compressive strength of ready-mixed soil material can be well-predicted from neural networks. Among all currently proposed neural network models, the ANN-I gives the best prediction because it is closest to the actual strength. Moreover, considering combination of pulse velocity and other factors, viz. curing time, and material contents in mixture, the proposed neural networks offer better evaluation than interpolated from pulse velocity only.

탄산화를 받은 콘크리트의 동결융해 저항성 (Resistance to Freezing and Thawing of Concrete Subjected to Carbonation)

  • 이승태;박광필
    • 한국산학기술학회논문지
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    • 제19권2호
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    • pp.623-631
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    • 2018
  • 공용중인 콘크리트 구조물의 내구성 연구는 한 가지 원인에 대한 단독열화 연구를 주로 연구하였지만 실제 구조물의 공용시기에는 두 가지 이상의 환경에 노출되어 있어 이러한 복합열화에 대한 관심이 최근 증가하고 있는 실정이다. 복합열화에 대해 일반적으로 염해와 동결융해에 대해서는 일부 연구가 진행되어 있지만 콘크리트의 양생 직후부터 발생하는 탄산화와 다른 내구성능저하에 대한 복합열화 연구는 매우 미흡한 실정이다. 특히, 탄산화를 중심으로 하는 복합열화는 탄산화의 경우 탄산화 진행시 콘크리트 조직이 치밀해진다는 문헌고찰에 따라 조직의 치밀해지는 이유로 연구가 미흡하다. 본 연구에서는 콘크리트의 탄산화 및 동결융해에 대한 복합열화를 평가 분석한 결과이다. 평가를 위하여 탄산화된 콘크리트를 동결융해 300싸이클까지 복합열화 시험을 실시하여 동탄성계수와 압축강도를 측정하였다. 그 결과 물-결합재비에 대한 영향 평가에서 35 %의 콘크리트가 55 %의 콘크리트에 비해 복합열화 성능이 낮은 것을 확인하였고, 광물질혼화재료를 사용한 경우 플라이애시와 고로슬래그미분말을 사용한 경우 동일 물-결합재비에서 보통포틀랜드 시멘트 사용 콘크리트보다 복합열화에 대한 성능이 개선되는 것으로 나타났다.

서냉슬래그 미분말을 적용한 콘크리트의 역학적 성능 및 내구성 평가 (Mechanical Properties and Durability of Concrete Incorporating Air-Cooled Slag)

  • 이승태;박광필
    • 한국산학기술학회논문지
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    • 제18권3호
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    • pp.356-363
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    • 2017
  • 고로슬래그는 제철과정에서 생산되는 산업부산물로써, 냉각방법에 따라 서냉슬래그와 급냉슬래그로 구분된다. 본 연구에서는 콘크리트 결합재로써 서냉슬래그를 시멘트에 대하여 부분 대체(0, 5, 10, 20, 30 및 40%)하여 삼성분계 시멘트 콘크리트 공시체를 제조하였으며, 강도, 흡수율, 투수공극량 등 콘크리트의 역학적 특성뿐 만 아니라, 염소이온 침투저항성, 탄산화 저항성 등 콘크리트의 내구성능을 실험적으로 평가함으로써, 서냉슬래그의 콘크리트용 혼화재료로써 적용 가능성에 대하여 고찰하고자 하였다. 본 연구를 통하여 도출된 실험결과로부터, 서냉슬래그를 약 10% 대체할 경우, 콘크리트의 성능은 만족할 만한 수준의 성능을 나타내는 것으로 조사되었다. 그러나, 서냉슬래그를 30% 이상 사용한 콘크리트는 결정질의 AS가 다량 대체됨으로 인하여 수화반응 및 포졸란 반응 등 결합재의 경화반응이 상대적으로 지연된 탓으로 인하여 역학적 성능 및 내구성이 다소 떨어지는 결과를 나타내었다. 따라서, AS를 콘크리트용 결합재로 적용하기 위한 최적 대체율이 존재하는 것으로 나타났으며, 건설재료의 경제적 및 환경적 관점에서 AS를 약 10% 정도까지 적용할 경우, 구조용 콘크리트 재료로써 적용이 가능할 것으로 판단된다.

Resistance of Cementitious Binders against a Fall in the pH at Corrosion Initiation

  • Song, Ha-Won;Jung, Min-Sun;Ann, Ki Yong;Lee, Chang-Hong
    • Corrosion Science and Technology
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    • 제8권3호
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    • pp.110-115
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    • 2009
  • At the onset of corrosion of steel in concrete, hydrogen ions usually evolve in the process of electrochemical reaction, thereby decreasing the pH of the pore solution, which can be buffered by cement hydration products, as being representatively illustrated by calcium hydroxide. Hence, a fall in the pH is dependent on properties of cement hydration (i.e. hydration products and degree of hydration). The present study tested acid neutralization capacity (ANC) of cementitious binders of OPC(Ordinary Portland Cement), 30% PFA(Pulverized Fuel Ash), 60% GGBS(Ground Granulated Blast Furnace Slag), 10% SF(Silica Fume) to quantify the resistance of cement matrix to a pH fall. Cement pastes were cast at 0.4 of a free W/C ratio with 1.5% chlorides by weight of binder in cast. Powder samples obtained crushed and ground specimen after 200 days of curing were diluted in still water combined with different levels of 1M nitric acid solution, ranging from 0.5 to 20 mol/kg. Then, the pH of diluted solution was monitored until any further change in the pH did not take place. It was seen that the pH of the diluted solution gradually decreased as the molar amount of nitric acid increased. At some particular values of the pH, however, a decrease in the pH was marginal, which can be expressed in the peak resistances to a pH fall in the ANC curve. The peaks occurred at the variations in the pH, depending on binder type, but commonly at about 12.5 in the pH, indicate a resistance of precipitated calcium hydroxide. The measurement of water soluble chloride at the end of test showed that the amount of free chloride was significantly increased at the pH corresponding to the peaks in the ANC curve, which may reflect the adsorption of hydration products to chlorides.

Impact of aggressive exposure conditions on sustainable durability, strength development and chloride diffusivity of high performance concrete

  • Al-Bahar, Suad;Husain, A.
    • Structural Monitoring and Maintenance
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    • 제2권1호
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    • pp.35-48
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    • 2015
  • The main objective of this study is to evaluate the long-term performance of various concrete composites in natural marine environment prevailing in the Gulf region. Durability assessment studies of such nature are usually carried out under aggressive environments that constitute seawater, chloride and sulfate laden soils and wind, and groundwater conditions. These studies are very vital for sustainable development of marine and off shore reinforced concrete structures of industrial design such as petroleum installations. First round of testing and evaluation, which is presented in this paper, were performed by standard tests under laboratory conditions. Laboratory results presented in this paper will be corroborated with test outcome of ongoing three years field exposure conditions. The field study will include different parameters of investigation for high performance concrete including corrosion inhibitors, type of reinforcement, natural and industrial pozzolanic additives, water to cement ratio, water type, cover thickness, curing conditions, and concrete coatings. Like the laboratory specimens, samples in the field will be monitored for corrosion induced deterioration signs and for any signs of failureover initial period ofthree years. In this paper, laboratory results pertaining to microsilica (SF), ground granulated blast furnace slag (GGBS), epoxy coated rebars and calcium nitrite corrosion inhibitor are very conclusive. Results affirmed that the supplementary cementing materials such as GGBS and SF significantly impacted and enhanced concrete resistivity to chloride ions penetration and hence decrease the corrosion activities on steel bars protected by such concretes. As for epoxy coated rebars applications under high chloride laden conditions, results showed great concern to integrity of the epoxy coating layer on the bar and its stability. On the other hand corrosion inhibiting admixtures such as calcium nitrite proved to be more effective when used in combination with the pozzolanic additives such as GGBS and microsilica.