• 제목/요약/키워드: Curing age

검색결과 429건 처리시간 0.02초

순환 유동층 보일러 애시의 촉진탄산화에 의한 탄소포집 특성 (Characteristics of Carbon Capture by the Accelerated Carbonation Method of Circulating Fluidized Bed Combustion Ash)

  • 최영철;유성원
    • 한국구조물진단유지관리공학회 논문집
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    • 제25권5호
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    • pp.165-172
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    • 2021
  • 이 연구는 건설재료로 활용 가능성이 높은 다양한 무기계 재료의 탄소포집에 대한 성능 평가를 목적으로 한다. 이러한 목적을 위해 광물탄산화가 가능한 보통포틀랜드 시멘트(OPC), 고로슬래그 미분말(GGBS), 순환유동층 보일러 애시(CFBC)의 탄산화 반응에 대한 특성 변화를 분석하였다. 촉진 탄산화 실험을 통해 모든 재료에 대한 탄산화 양생을 수행하였으며, 탄산화 재령에 따라 열중량 분석에 의해 탄소포집량을 정량분석하였다. 모든 재료에서 탄소포집 효과가 확인되었고, 실험결과 탄소포집량은 CFBC, OPC, GGBS 순으로 나타났다. CFBC, OPC, GGBS의 28일 탄소포집량은 각각 9.4 wt.%, 3.9 wt.%, wt.1.3 %이다. 탄소포집은 탄산화 초기에 빠르게 발생하였으며, 재령이 증가함에 따라 느리게 발생하였다. SEM 이미지 분석을 통해, 모든 실험체에서 탄산화 양생에 의해 발생된 추가적인 생성물은 탄산칼슘(CaCO3)으로 나타났다.

알칼리 자극제의 종류 및 치환율이 고로슬래그 미분말 모르타르의 압축강도에 미치는 영향 (Effect of Types and Replacement Ratio of Alkali Activator on Compressive Strength of Ground Granulated Blast Furnace Slag Mortar)

  • 김래환;김규용;김종희;이보경;조봉석
    • 한국건설순환자원학회논문집
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    • 제2권4호
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    • pp.360-366
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    • 2014
  • 본 연구에서는 알칼리 자극제의 종류 및 치환율이 고로슬래그 미분말 모르타르의 압축강도에 미치는 영향에 대해 검토하였다. 알칼리 자극제의 종류는 NaOH, $Ca(OH)_2$, $Na_2SO_4$, KOH의 4수준이며, 치환율은 각각 7.5, 10, 12.5, 15%의 4수준으로 설정하였다. 실험결과, 재령 1일의 표준, 고온양생조건에서 NaOH, KOH가 $Ca(OH)_2$, $Na_2SO_4$에 비해 압축강도의 발현이 크게 나타났다. 알칼리 자극제의 종류에 관계없이 pH가 높을수록 압축강도도 높게 나타나는 경향을 나타냈으며 이는 슬래그가 물과 접하면 슬래그 입자표면에 불투수성 피막이 형성되는데 이러한 불투수성 피막을 알칼리 자극제가 파괴시켜 수화반응을 촉진시킨 것으로 판단된다. 또한 1일 재령의 경우에는 고온양생의 압축강도가 표준양생의 압축강도에 비해 다소 높게 나타났으며 재령 28일의 경우에는 고온양생의 압축강도가 표준양생의 압축강도와 비슷하거나 다소 낮은 결과를 보였다.

Development of Polymer-Modified Cementitious Self-Leveling Materials for Thin Coat

  • Kim, Wan-Ki;Do, Jeong-Yun;Soh, Yang-Seob
    • KCI Concrete Journal
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    • 제13권2호
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    • pp.58-66
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    • 2001
  • Recently, polymer-modified mortar has been studied for proposed use on industrial floors as top coat with thin thickness, typically 5~15mm. The purpose of this study is to evaluate basic properties of self-leveling materials using polymer dispersions as kinds of SBR, PAE, St/BA with thin coat (under 3mm). Superplasticizer and thickener have been included in the mixes to reduce bleeding and drying shrinkage as well as to facilitate the workability required. The self-leveling materials using four types of polymer dispersion are prepared with polymer-cement ratio which respectively range from 50% and 75%, and tested for basic characteristics such as unit weight, air content, flow, consistency change and adhesion in tension. From the test results, the self-leveling materials using PAE emulsion at curing age of 28days are almost equal to those of conventional floor using urethane and epoxy resin. The adhesion in tension of self-leveling mortars using SBR latex and PAE emulsion at curing age of 3days is over 17 kgf/cm$^2$(1.67MPa). Consistency change is strongly dependent on the type of polymer dispersion. It is concluded that the self-leveling materials using polymer dispersions can be used in the same manner as conventional floor using thermosetting resin in practical applications, in the selection of polymer dispersions.

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An experimental investigation on dynamic properties of various grouted sands

  • Hsiao, Darn-Horng;Phan, Vu To-Anh;Huang, Chi-Chang
    • Geomechanics and Engineering
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    • 제10권1호
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    • pp.77-94
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    • 2016
  • Cyclic triaxial and resonant column tests were conducted to understand the beneficial effects of various grouted sands on liquefaction resistance and dynamic properties. The test procedures were performed on a variety of grouted sands, such as silicate-grouted sand, silicate-cement grouted sand and cement-grouted sand. For each type of grout, sand specimen was mixed with a 3.5% and 5% grout by volume. The specimens were tested at a curing age of 3, 7, 28 and 91 days, and the results of the cyclic stress ratio, the maximum shear modulus and the damping ratio were obtained during the testing program. The influence of important parameters, including the type of grout, grout content, shear strain, confining pressure, and curing age, were investigated. Results indicated that sodium silicate grout does not improve the liquefaction resistance and shear modulus; however, silicate-cement and cement grout remarkably increased the liquefaction resistance and shear modulus. Shear modulus decreased and damping ratio increased with an increase in the amplitude of shear strain. The effect of confining pressure on clean sand and sodium silicate grouted sand was found to be insignificant. Furthermore, a nonlinear regression analysis was used to prove the agreement of the shear modulus-shear strain relation presented by the hyperbolic law for different grouted sands, and the coefficients of determination, $R^2$, were nearly greater than 0.984.

Soil stabilization by ground bottom ash and red mud

  • Kim, Youngsang;Dang, My Quoc;Do, Tan Manh;Lee, Joon Kyu
    • Geomechanics and Engineering
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    • 제16권1호
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    • pp.105-112
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    • 2018
  • This paper presents results of a compressive investigation conducted on weathered soil stabilized with ground bottom ash (GBA) and red mud (RM). The effects of water/binder ratio, RM/GBA ratio, chemical activator (NaOH and $Na_2SiO_3$) and curing time on unconfined compressive strength of stabilized soils were examined. The results show that the water/binder ratio of 1.2 is optimum ratio at which the stabilized soils have the maximum compressive strength. For 28 days of curing, the compressive strength of soils stabilized with alkali-activated GBA and RM varies between 1.5 MPa and 4.1 MPa. The addition of GBA, RM and chemical activators enhanced strength development and the rate of strength improvement was more significant at the later age than at the early age. The potential environmental impacts of stabilized soils were also assessed. The chemical property changes of leachate from stabilized soils were analyzed in terms of pH and concentrations of hazardous elements. The observation revealed that the soil mixture with ground bottom ash and red mud proved environmentally safe.

저온환경에서의 양생시트 변화에 따른 콘크리트의 온도이력 특성 (Temperature History of the Concrete Corresponding to Various Curing Sheets in the Low Temperature)

  • 백대현;홍석민;한민철;한천구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.781-784
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    • 2008
  • 본 연구에서는 저온 환경에서 단열양생시트 변화에 따른 콘크리트의 온도이력 및 강도특성을 검토하였다. 실험결과 -5$^{\circ}$C에서 노출과 air cap포장지의 경우 초기 24시간 이내로 콘크리트의 온도가 영하의 온도로 저하되어 초기동해가 발생되었다. 반면, 비닐+부직포의 경우 초기 24시간이내의 최저온도가 약 3$^{\circ}$C로 영상의 온도를 유지하였고 이중버블시트의 경우 약 7$^{\circ}$C로 나타나 양호한 단열 보온성능을 나타내었다. 코어압축강도를 측정한 결과 비닐+부직포와 이중버블시트로 양생한 시험체의 압축강도가 양생초기의 우수한 단열효과로 인해 다른 시험체의 압축강도보다 높게 나타났다.

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Effect of ground granulated blast furnace slag on time-dependent tensile strength of concrete

  • Shariq, M.;Prasad, J.
    • Computers and Concrete
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    • 제23권2호
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    • pp.133-143
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    • 2019
  • The paper presents the experimental investigations into the effect of ground granulated blast furnace slag (GGBFS) on the time-dependent tensile strength of concrete. The splitting and flexural tensile strength of concrete was determined at the ages of 3, 7, 28, 56, 90, 150 and 180 days using the cylindrical and prism specimens respectively for plain and GGBFS concrete. The amount of cement replacement by GGBFS was 0%, 40% and 60% on the weight basis. The maximum curing age was kept as 28 days. The results showed that the splitting and flexural tensile strength of concrete containing GGBFS has been found lower than the plain concrete at all ages and for all mixes. The tensile strength of 40 percent replacement has been found higher than the 60 percent at all ages and for all mixes. The rate of gain of splitting and flexural tensile strength of 40 percent GGBFS concrete is found higher than the plain concrete and 60 percent GGBFS concrete at the ages varying from 28 to 180 days. The experimental results of time-dependent tensile strength of concrete are compared with the available models. New models for the prediction of time-dependent splitting and flexural tensile strength of concrete containing GGBFS are proposed. The present experimental and analytical study will be helpful for the designers to know the time-dependent tensile properties of GGBFS concrete to meet the design requirements of liquid retaining reinforced and pre-stressed concrete structures.

Assessment of compressive strength of cement mortar with glass powder from the early strength

  • Wang, Chien-Chih;Ho, Chun-Ling;Wang, Her-Yung;Tang, Chi
    • Computers and Concrete
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    • 제24권2호
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    • pp.151-158
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    • 2019
  • The sustainable development principle of replacing natural resources with renewable material is an important research topic. In this study, waste LCD (liquid crystal display) glass powder was used to replace cement (0%, 10%, 20% and 30%) through a volumetric method using three water-binder ratios (0.47, 0.59, and 0.71) to make cement mortar. The compressive strength was tested at the ages of 7, 28, 56 and 91 days. The test results show that the compressive strength increases with age but decreases as the water-binder ratio increases. The compressive strength slightly decreases with an increase in the replacement of LCD glass powder at a curing age of 7 days. However, at a curing age of 91 days, the compressive strength is slightly greater than that for the control group (glass powder is 0%). When the water-binder ratios are 0.47, 0.59 and 0.71, the compressive strength of the various replacements increases by 1.38-1.61 times, 1.56-1.80 times and 1.45-2.20 times, respectively, during the aging process from day 7 to day 91. Furthermore, a prediction model of the compressive strength of a cement mortar with waste LCD glass powder was deduced in this study. According to the comparison between the prediction analysis values and test results, the MAPE (mean absolute percentage error) values of the compressive strength are between 2.79% and 5.29%, and less than 10%. Thus, the analytical model established in this study has a good forecasting accuracy. Therefore, the proposed model can be used as a reliable tool for assessing the design strength of cement mortar from early age test results.

강섬유 보강 콘크리트의 조기 재령에서의 휨 인성 발현에 관한 연구 (Investigation of Flexural Toughness Development of Steel Fiber Reinforced Concrete at Early Ages)

  • 이창준;신성우
    • 한국안전학회지
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    • 제24권6호
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    • pp.103-110
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    • 2009
  • Since the mechanical properties of cement-based materials are time-dependent due to the prolonged cement hydration process, those of fiber reinforced concrete(FRC) may also be time-dependent. Toughness is one of important properties of FRC. Therefore, it should be investigated toughness development of FRCs with curing ages to fully understand the time-dependent characteristics of FRCs. To this end, the effect of curing ages on flexural toughness development of steel fiber reinforced concrete is studied. Three point bending test with notched beam specimen was adapted for this study. Hooked-end steel fiber(DRAMIX 40/30) was used as a fiber ingredient to investigate w/c ratio and fiber volume fraction effect on toughness development during curing. Three different water-cement ratios(0.44, 0.5 and 0.6) and fiber volume fractions(0%, 0.5% and 1%) were used as influence factors. Each mixture specimens were tested at five different ages, 0.5, 1, 3, 7 and 28 days. The study shows that flexure toughness development with age is quite different than other concrete material properties such as compressive strength. The study also shows that the toughness development trend correlates more closely to water/cement ratio than to fiber volume fraction.

Experimental study on geopolymer concrete prepared using high-silica RHA incorporating alccofine

  • Parveen, Parveen;Singhal, Dhirendra;Jindal, Bharat Bhushan
    • Advances in concrete construction
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    • 제5권4호
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    • pp.345-358
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    • 2017
  • This paper describes the experimental investigation carried out to develop geopolymer concrete using rice husk ash (RHA) along with alccofine. The study reports the fresh and hardened properties of the geopolymer concrete (GPC) activated using alkaline solution. GPC were prepared using different RHA content (350, 375 and $400kg/m^3$), the molarity of the NaOH (8, 12 and 16M). The specimens were cured at $27^{\circ}C$ and $90^{\circ}C$. GPC was activated using NaOH, $Na_2SiO_3$, and alccofine. Prepared GPC samples were tested for compressive and splitting tensile strengths after 3, 7 and 28 days. RHA was suitable to produce geopolymer concrete. Results indicate that behavior of GPC prepared with RHA is similar to fly ash based GPC. Workability and strength can be improved by incorporating the alccofine. Further, alccofine and heat curing improve the early age properties of the GPC. Heat curing is responsible for the initial polymerization of GPC which leads to high workability and improved mechanical properties of the GPC. High strength can be achieved by using the high concentration alkaline solution in terms of molarity and at elevated heat curing. Further, RHA based geopolymer concrete has tremendous potential as a substitute for ordinary concrete.