• 제목/요약/키워드: Strength Development at Early Age

검색결과 129건 처리시간 0.034초

초기재령에서 동결을 받은 고로슬래그 콘크리트의 강도발현특성에 관한 실험적 연구 (An Experimental Study on Strength Properties of Concrete Using Blast-Furnace Slag Subjected to Freezing at Early Age)

  • 최성우;반성수;유득현;최봉주
    • 콘크리트학회논문집
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    • 제15권1호
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    • pp.43-51
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    • 2003
  • 동절기 콘크리트 시공에 있어서 낮은 외기온에 따른 콘크리트의 강도발현이 저하되며, 동결 및 융해에 따른 콘크리트의 내부조직의 이상으로 인해 내구성이 저하하는 것으로 알려져 있다. 따라서 한중콘크리트 제조시 조기강도를 확보하기 위해 혼화재의 사용을 경시하고 있는 실정이다. 본 연구는 한중콘크리트의 제조시 혼화재의 사용에 따른 초기동해의 영향을 평가하기 위한 실험을 실시한 것으로서, 초기동해를 입히기 위한 실험 조건으로서, 본 연구는 초기 재령에서 콘크리트에 영향을 미치는 동결온도 및 동결지속시간, 초기양생시간에 따른 혼화재를 사용한 콘크리트의 강도발현특성을 검토하였으며, 실험조건으로서 초기양생기간을 비빔 직후, 12, 24, 48시간, 동결시간을 12, 24, 48시간, 동결온도는 -1, -10, $-15^{\circ}C$로 설정하여 실험을 실시하였다. 본 연구의 실험결과 고로슬래그 미분말의 대체율이 증가할수록 초기재령에서의 강도발현은 지연되는 것으로 나타났으나, 응결을 고려할 경우 고로슬래그 미분말 대체율 20%까지는 거의 차이가 없는 것으로 나타났다. 또한 동결에 따른 강도발현특성을 살펴보면, 비빔 직후 동결시킨 경우에서는 동결온도와 상관없이 재령 28일에 있어서 동결 받지 않은 경우의 80%를 발현하는 것으로 나타났으나, 12시간 이상 양생을 실시한 후 동결시킨 경우에 있어서는 동결온도 및 동결시간과 상관없이 동결시키지 않은 경우와 거의 유사한 강도를 발현하는 것으로 나타났으며, 모든 실험조건에서 혼화재를 사용한 경우에 있어서는 고로슬래그 미분말에 의한 강도회복효과가 매우 큰 것으로 나타났다. 따라서 동절기 초기재령에서 적절한 양생을 실시한다면, 한중콘크리트 제조시 고로슬래그 및 플라이애시와 같은 혼화재의 사용에 따른 콘크리트의 성능향상 효과가 매우 클 것으로 사료된다.

경화촉진제를 사용한 콘크리트의 초기강도 발현 특성 검토 (Investigation of Early-Age Concrete Strength Development Using Hardening Accelerator)

  • 김규용;김용로;박종호
    • 콘크리트학회논문집
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    • 제28권3호
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    • pp.309-316
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    • 2016
  • 본 연구에서는 21~27 MPa 수준의 콘크리트를 대상으로 하여, 양생온도 및 단위결합재량에 따른 초기강도 발현 특성을 검토한 후, 초기강도를 개선하기 위한 방안으로 시멘트의 응결 및 경화를 촉진할 수 있는 경화촉진제의 종류에 따른 성능을 검토하였다. 검토 결과 본 연구의 범위에서는 수용성 무기염이 유기염에 비해 상대적으로 경화촉진 효과가 우수하였으며, 사용량이 낮은 범위에서는 수용성 무기염에 의한 $C_3S$의 수화 반응촉진효과가 초기강도 발현에 효과적인 것으로 나타났다. 또한, 경화촉진제 중에서는 Pt(Potassium thiocyanate)의 촉진효과가 가장 우수하였으며, 양생온도 $15^{\circ}C$ 조건에서도 약 25시간에 초기동해 제어 강도 확보가 가능하여 공기단축 효과를 기대할 수 있고, 양생온도 $5^{\circ}C$에서도 양생온도 $10^{\circ}C$ 조건의 Plain과 유사한 시간에 5MPa 확보가 가능하여, 동일한 공기를 고려할 경우 연료비용 및 $CO_2$ 가스 발생 저감 등의 효과를 기대할 수 있을 것으로 판단된다.

시스템 거푸집 적용을 위한 고강도 콘크리트의 양생온도별 조기강도 발현성상 (Development of Early-Strength of High-Strength Concrete According to Curing Temperature for Application of System Form)

  • 김무한;이승훈;강석표;길배수;주지현
    • 콘크리트학회논문집
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    • 제13권6호
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    • pp.536-543
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    • 2001
  • 고강도콘크리트를 시스템 거푸집 공법에 적용하는데 있어 거푸집 탈형시기가 일반 거푸집과 비교하여 상대적으로 빠르기 때문에 공기단축을 위해서는 조기재령에서의 압축강도 발현성상을 파악하는 것이 중요하다. 따라서, 본 논문에서는 양생온도별 배합조건에 따른 고강도콘크리트의 응결성상 및 시스템 거푸집 탈형이 이루어지는 조기재령에서의 압축강도 발현성상을 비교.분석함으로써 실제 건설생산현장에서 고강도콘크리트를 시스템 거푸집공법에 적용하는데 있어 거푸집 탈형시점에 대한 정량적인 판단기준을 확립할 수 있는 기초적 자료를 제시하고자 한다. 본 실험결과 슬립폼 공법을 적용하는데 있어 필수적인 조기강도 확보를 위한 양생온도 범위 및 배합조건을 알 수 있었고, 조기재령에서의 압축강도 발현성상 고찰을 통해 시스템 거푸집 탈형시점을 결정하는데 있어 기초자료를 제시할 수 있었다.

고온조건하에서 플라이애시를 사용한 콘크리트의 압축강도증진 해석 (Estimation of Compressive Strength of Fly Ash Concrete subjected to High Temperature)

  • 한민철
    • 한국건축시공학회지
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    • 제6권3호
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    • pp.99-105
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    • 2006
  • In this paper, the estimation of compressive strength of concrete incorporating fly ash subjected to high temperature is discussed. Ordinary Portland cement and fly ash cement(30% of fly ash) were used, respectively. Water to binder ration ranging from 30% to 60% and curing temperature ranging from $20^{\circ}C{\sim}65^{\circ}C$ were also adopted for the experimental parameters. According to results, at the high temperature, FAC had higher strength development at early age than OPC concrete and it kept its high strength development at later age due to accelerated pozzolanic reaction subjected to high temperature. For strength estimation, Logistic model based on maturity equation and Carino model based on equivalent age were applied to verify the availability of estimation model. It shows that fair agreements between calculated values and measured values were obtained evaluating compressive strength with logistic curve. The application of logistic model at high temperature had remarkable deviations in the same maturity. Whereas, the application of Carino model showed good agreements between calculated values and measured ones regardless of type of cement and W/B. However, some correction factors should be considered to enhance the accuracy of strength estimation of concrete.

고온환경 조건하에서 고로슬래그를 사용한 콘크리트의 압축강도 증진 해석 (Estimation of Compressive Strength of Concrete Using Blast Furnace Slag Subjected to High Temperature Environment)

  • 한민철;신병철
    • 한국환경과학회지
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    • 제16권3호
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    • pp.347-355
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    • 2007
  • In this paper, estimation of the compressive strength of the concrete incorporating blast furnace slag subjected to high temperature was discussed. Ordinary Portland cement and blast furnace slag cement (BSC;30% of blast furnace slag) were used, respectively. Water to binder ratio ranging from 30% to 60% and curing temperature ranging from $20^{\circ}C{\sim}65^{\circ}C$ were also chosen for the experimental parameters, respectively. At the high temperature, BSC had higher strength development at early age than OPC concrete and it kept its high strength development at later age due to accelerated latent hydration reaction subjected to high temperature. For the strength estimation, the Logistic model based on maturity equation and the Carino model based on equivalent age were applied to verify the availability of estimation model. It was found that fair agreements between calculated values and measured values were obtained evaluating compressive strength with logistic curve. The application of logistic model at high temperature had remarkable deviations in the same maturity. Whereas, the application of Carino model showed good agreements between calculated values and measured ones regardless of type of cement and W/B. However, some correction factors should be considered to enhance the accuracy of strength estimation of concrete.

폴리머 콘크리트의 압축 및 휨강도 발현 특성 (Compressive and Flexural Strength Development Characteristics of Polymer Concrete)

  • 김남길;연규석
    • 한국농공학회논문집
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    • 제60권1호
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    • pp.101-110
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    • 2018
  • This study experimentally investigated the compressive and flexyral strength development characteristics of polymer concrete using four different type polymeric resins such as unsaturated polyester, vinyl ester, epoxy, and PMMA (polymethyl methacrylate) as binders. The test results show that the average compressive strength of those four different polymer concretes was 88.70 MPa, the average flexural strength was 20.30 MPa. Those test results show that compressive and flexural strengths of polymer concrete were much stronger than compressive and flexural strengths of ordinary Portland cement concrete. In addition, the relative gains of the compressive strength development at the age of 24 hrs compared to the age of 168 hrs were 68.6~88.3 %. Also, the relative gains of the flexural strength development at the age of 24 hrs compared to the age of 168 hrs were 73.8~93.4 %. These test results show that compressive and flexural strengths of each polymer concrete tested in this study were developed at the early age. Moreover, the prediction equations of compressive and flexural strength developments regarding the age were determined. The determined prediction equations could be applied to forecast the compressive and flexural strength developments of polymer concrete investigated in this study because those prediction equations have the high coefficients of correlation. Last, the relations between the compressive strength and the flexural strength of polymer concrete were determined and the flexural/compressive strength ratios were from 1/4 to 1/5. These results show that polymer concretes investigated in this study were appropriate as a flexural member of a concrete structure because the flexural/compressive strength ratios of polymer concrete were much higher than the flexural/compressive strength ratios of Portland cement concrete.

양생온도변화에 따른 콘크리트의 재료역학적 특성 (Mechanical Properties of Concrete with Different Curing Temperature)

  • 김진근;한상훈;양은익;조명석;우상균
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.117-124
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    • 1997
  • In this study, mechanical properties of type V cement concrete with different curing temperature were investigated. The tests for mechancial properties, i.e., compressive strength and modulus of elasticity, were carried out on two kinds of type V cement concrete mixes. concrete cylinders cured at 10, 23, 35 and 50℃ were tested at 1, 3, 7 and 8 days. The 'rate constant model' was used to described the combined effects of time and temperature on compressive strength development. Test results show that concrete subjected to high temperature at early age attains greater strength than concrete to low temperature but eventually attains lower later-age strength than that. With type V cement concrete, the linear and Arrhenius rate constant models both accurately describe the development of relative strength as afunction of the equivalent age.

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EFFECT OF HEAT CURING METHODS ON THE TEMPERATURE HISTORY AND STRENGTH DEVELOPMENT OF SLAB CONCRETE FOR NUCLEAR POWER PLANT STRUCTURES IN COLD CLIMATES

  • Lee, Gun-Che;Han, Min-Cheol;Baek, Dae-Hyun;Koh, Kyung-Taek
    • Nuclear Engineering and Technology
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    • 제44권5호
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    • pp.523-534
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    • 2012
  • The objective of this study was to experimentally investigate the effect of heat curing methods on the temperature history and strength development of slab concrete exposed to $-10^{\circ}C$. The goal was to determine proper heat curing methods for the protection of nuclear power plant structures against early-age frost damage under adverse (cold) conditions. Two types of methods were studied: heat insulation alone and in combination with a heating cable. For heat curing with heat insulation alone, either sawdust or a double layer bubble sheet (2-BS) was applied. For curing with a combination of heat insulation and a heating cable, an embedded heating cable was used with either a sawdust cover, a 2-BS cover, or a quadruple layer bubble sheet (4-BS) cover. Seven different slab specimens with dimensions of $1200{\times}600{\times}200$ mm and a design strength of 27 MPa were fabricated and cured at $-10^{\circ}C$ for 7 d. The application of sawdust and 2-BS allowed the concrete temperature to fall below $0^{\circ}C$ within 40 h after exposure to $-10^{\circ}C$, and then, the temperature dropped to $-10^{\circ}C$ and remained there for 7 d owing to insufficient thermal resistance. However, the combination of a heating cable plus sawdust or 2-BS maintained the concrete temperature around $5^{\circ}C$ for 7 d. Moreover, the combination of the heating cable and 4-BS maintained the concrete temperature around $10^{\circ}C$ for 7 d. This was due to the continuous heat supply from the heating cable and the prevention of heat loss by the 4-BS. For maturity development, which is an index of early-age frost damage, the application of heat insulation materials alone did not allow the concrete to meet the minimum maturity required to protect against early-age frost damage after 7 d, owing to poor thermal resistance. However, the combination of the heating cable and the heat insulating materials allowed the concrete to attain the minimum maturity level after just 3 d. In the case of strength development, the heat insulation materials alone were insufficient to achieve the minimum 7-d strength required to prevent early-age frost damage. However, the combination of a heating cable and heat insulating materials met both the minimum 7-d strength and the 28-d design strength owing to the heat supply and thermal resistance. Therefore, it is believed that by combining a heating cable and 4-BS, concrete exposed to $-10^{\circ}C$ can be effectively protected from early-age frost damage and can attain the required 28-d compressive strength.

Modeling of Compressive Strength Development of High-Early-Strength-Concrete at Different Curing Temperatures

  • Lee, Chadon;Lee, Songhee;Nguyen, Ngocchien
    • International Journal of Concrete Structures and Materials
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    • 제10권2호
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    • pp.205-219
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    • 2016
  • High-early-strength-concrete (HESC) made of Type III cement reaches approximately 50-70 % of its design compressive strength in a day in ambient conditions. Experimental investigations were made in this study to observe the effects of temperature, curing time and concrete strength on the accelerated development of compressive strength in HESC. A total of 210 HESC cylinders of $100{\times}200mm$ were tested for different compressive strengths (30, 40 and 50 MPa) and different curing regimes (with maximum temperatures of 20, 30, 40, 50 and $60^{\circ}C$) at different equivalent ages (9, 12, 18, 24, 36, 100 and 168 h) From a series of regression analyses, a generalized rate-constant model was presented for the prediction of the compressive strength of HESC at an early age for its future application in precast prestressed units with savings in steam supply. The average and standard deviation of the ratios of the predictions to the test results were 0.97 and 0.22, respectively.

활성제를 사용한 슬래그 미분말 혼합 모르타르의 강도 (Strength of Alkali-Activated GGBF Slag Mortar)

  • 문한영;신화철;권태석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.481-486
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    • 2001
  • Ground granulated blast-furnace slag shows very high strength when proper alkali-activator exists. This paper deals with setting time, heat evolution rate and the strength development of alkali-activated slag cement activated by KOH, Ca(OH$)_{2}$, $Na_{2}$ $So_{4}$ , and alum(potassium aluminum sulfate). Alkali-activated slag mortar is studied by comparison with GGBF slag cement mortar. The experimental results indicate that for moisture curing at $25^{\circ}C$, the addiction of either 4% $Na_{2}$ $So_{4}$ or 4% alum increases the strength of GGBF slag cement mortar consisting of 50% GGBF slag and 50% portland cement at early age. Strength of activated GGBF slag cement mortars at 1, 3 and 7 days exceeded that of GGBF slag cement mortar. A conduction calorimeter was used to monitor early age hydration.

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