• 제목/요약/키워드: compressive strength loss

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고온을 받은 고강도 콘크리트의 강도특성 (Strength Properties of High-Strength Concrete Exposed at High Temperature)

  • 윤현도;김규용;한병찬
    • 콘크리트학회논문집
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    • 제14권5호
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    • pp.698-707
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    • 2002
  • 본 연구에서는 건축물에 발생된 화재와 같이 단기간에 빠르게 가열되는 조건하에 고강도 콘크리트의 압축강도특성을 구명하기 위하여 기존의 내화실험결과를 수집 및 분석하며 아울러 현행 노출온도에 따른 압축강도의 상관관계 기준식의 고강도 콘크리트에 적용 가능성을 검토하고자 한다. 노출온도에 따른 고강도 콘크리트의 압축강도 변화 특성은 내화실험방법(재하, 비재하 및 비재하 잔여 강도실험) 및 골재종류(천연 및 경량골재)에 따라 다르게 나타나므로 실험방법 및 골재종류별로 나누어 비교 및 분석하였다. 고강도 콘크리트의 압축강도 특성은 보통강도와는 노출온도에 따라 다르게 나타났으며 노출온도 약 2$0^{\circ}C$에서 40$0^{\circ}C$범위에서 보통강도 콘크리트보다 급격하게 압축강토가 저하되었으며 40$0^{\circ}C$ 이상에서는 큰 차이를 보이지 않았다. 80$0^{\circ}C$에서 고강도 콘크리트의 압축강도는 상온 압축강도의 30%까지 감소되었다. 노출온도에 따른 압축강도 및 탄성계수 변화에 대한 실험결과와 유럽 기준을 비교하여 볼 때 현행 기준식은 안전측이지 못하므로 화재에 노출된 고강도 콘크리트의 압축강토 및 탄성계수 평가에 적응 가능성이 결여된 것으로 평가되었다.

붕규산유리 및 비정질 붕소강 섬유를 혼입한 콘크리트의 역학적 성능 및 중성자 차폐성능 평가 (Mechanical Properties and Neutron Shielding Rate of Concrete with Borosilicate-Glasses and Amorphous Boron Steel Fiber)

  • 이준철
    • 한국건설순환자원학회논문집
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    • 제4권3호
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    • pp.269-275
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    • 2016
  • 본 연구에서는 붕규산 유리와 비정질 붕소강 섬유를 혼입한 콘크리트의 역학적 성능 및 중성자 차폐성능을 평가하였다. 잔골재를 붕규산 유리로 치환한 콘크리트와 비정질 붕소강 섬유를 보강한 콘크리트를 제조하여 압축강도, 정탄성계수, 압축인성, 휨강도, 휨인성, 중성자 차폐성능을 평가하였다. 실험결과, Plain 콘크리트와 대비하여 붕규산 유리를 혼입한 콘크리트의 경우 압축강도 및 휨강도는 저하되었으나, 중성자 차폐성능은 향상되는 것으로 나타났다. 비정질 붕소강 섬유를 혼입한 콘크리트의 경우 Plain 콘크리트와 대비하여 압축인성 및 휨인성이 증진되었으며 중성자 차폐성능도 향상되는 것으로 나타났다.

An experimental and numerical analysis of concrete walls exposed to fire

  • Baghdadi, Mohamed;Dimia, Mohamed S.;Guenfoud, Mohamed;Bouchair, Abdelhamid
    • Structural Engineering and Mechanics
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    • 제77권6호
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    • pp.819-830
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    • 2021
  • To evaluate the performance of concrete load bearing walls in a structure under horizontal loads after being exposed to real fire, two steps were followed. In the first step, an experimental study was performed on the thermo-mechanical properties of concrete after heating to temperatures of 200-1000℃ with the purpose of determining the residual mechanical properties after cooling. The temperature was increased in line with natural fire curve in an electric furnace. The peak temperature was maintained for a period of 1.5 hour and then allowed to cool gradually in air at room temperature. All specimens were made from calcareous aggregate to be used for determining the residual properties: compressive strength, static and dynamic elasticity modulus by means of UPV test, including the mass loss. The concrete residual compressive strength and elastic modulus values were compared with those calculated from Eurocode and other analytical models from other studies, and were found to be satisfactory. In the second step, experimental analysis results were then implemented into structural numerical analysis to predict the post-fire load-bearing capacity response of the walls under vertical and horizontal loads. The parameters considered in this analysis were the effective height, the thickness of the wall, various support conditions and the residual strength of concrete. The results indicate that fire damage does not significantly affect the lateral capacity and stiffness of reinforced walls for temperature fires up to 400℃.

실리카흄을 혼합한 고강도콘크리트의 강도향상을 위한 실험적 연구 (An Experimental Study for Improving the Strength of High Strength Concrete with Silica Fume)

  • 문한영;문대중;신승호
    • 대한토목학회논문집
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    • 제14권5호
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    • pp.1069-1080
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    • 1994
  • 콘크리트의 고강도화 요구에 부응하기 위하여 단위시멘트량을 크게 증가시키고 고성능감수제를 사용하여 물-시멘트비를 대폭 감소시킨 고강도콘크리트가 제조되고 있다. 본 연구에서는 콘크리트의 강도를 더욱 향상시키기 위한 목적으로 실리카흄과 석고를 사용하여 콘크리트를 제조하므로써 재령 28 일과 91일의 압축강도가 각각 $1,058kg/cm^2$, $1,170kg/cm^2$되는 고강도를 얻었다. 그러나 인장강도와 탄성계수는 압축강도의 증가에 비하여 크게 향상되지 않았다. 그리고 굳지 않은 고강도콘크리트의 경과시간에 따른 슬럼프 손실과 콘크리트의 내부 온도상승이 기존의 콘크리트보다 큰 점 등이 해결되야 할 문제점이라 생각되었다.

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많은 양의 플라이애쉬를 혼입한 콘크리트의 굳기전 특성 및 강도 발현 (Fresh Properties and Strength Development of High Volume Fly Ash Concrete)

  • 이진용;최수홍;강석화;이광명
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1998년도 가을 학술발표회 논문집(I)
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    • pp.99-104
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    • 1998
  • A study is carried out to investigate the characteristics of concrete various level(0~60%) of fly ash. These results indicate that compressive strength of fly ash concrete seems to be slightly higher than that of ordinary concrete between 7 and 28 days, thereafter the strength of fly ash concrete is significantly higher. In fresh properties of the fly ash concrete, the loss of slump and air content with time up to 120 minutes is lower, but the setting time is increased with increasing fly ash content.

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고로슬래그 분말을 혼화재로 사용한 고강도콘크리트의 기초적 성질에 대한 연구 (A Study on the Fundamental Properties of High-Strength Concrete Using Ground Granulated Blast-Furnace Slag as an Admixture)

  • 문한영;최연왕;문대중;송용규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1995년도 봄 학술발표회 논문집
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    • pp.30-35
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    • 1995
  • This paper presents fundamental experiment for the properties of high performance concrete in its fresh and hardened state made with ground granulated blast-furnace (GGBF) slag. The result is that the effect of decreasing xoncrete temperature is to the mixing ratio of GGBF slag, but it presents disadvantage in the slump loss phase. In addition to, we know that the splitting tensile strength, compressive strength and elastic modulus of concrete mixed with high fineness GGBF slag are increased at age 28days.

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응결지연성 혼화제를 이용한 시멘트 모르터의 응결 및 역학적 특성 (Setting and mechanical Properties of Cement Mortar Useing Retarding Agents)

  • 심보길;김상우;윤치환;한민철;한천구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
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    • pp.89-92
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    • 2000
  • In this paper, setting and mechanical properties of cement mortar using retarding agents are investigated. According to the experimental results, as dosage of retarding agents increases, flow and ar content of mortar are shown to be higher. Flow loss of mortar using retarding type water reducing agents is larger than that using gluconic acid by 3 times. As for setting time it is found that mortar using gluconic acid takes much longer setting time than that using retarding type water reducing agent. In case of compressive strength, when retarding agent is applied, cement mortar gains high strength compared with that of plain mortar. However, we can not measure compressive strength of cement mortar contaning more than 0.6% of gluconic acid.

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프리믹스 및 포스트믹스 시멘트를 혼입시간이 콘크리트의 압축강도에 미치는 영향 (Effect of Mixing Time of Pre-Mixed Cement and Post-Mixed Cement on the Strength Development of the Concrete)

  • 백성진;이혁;한준희;김종;한민철
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.137-138
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    • 2023
  • This study proposed the optimal mixing time for pre-mixed cement and post mixed cement using the statistical analysis method of box plots. Pre-mixed cement can prevent material seegregation, strength loss, and quality variation if mixed for at least 60 seconds, and the data median is shown to be within the box range. Post-mixed cement should be mixed for at least 180 seconds to prevent material segregation, strength loss, and quality variation, and compressive strength tends to increase with longer vibrating times. Therefore, it is suggested that using pre-mixed cement can shorten the vibrating time and increase the productivity of the concrete.

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성형압력이 Soil-Cement의 강도 및 내구성에 미치는 영향에 관한 연구 (A Study on the Effects of Molding Pressure on the Compressive Strength and Durability of Soil-Cement Mixture)

  • 서원명;고재군
    • 한국농공학회지
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    • 제20권1호
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    • pp.4575-4591
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    • 1978
  • In order to investigate the effects of grain size distribution, cement content, and molding pressure on the strength and durability of soil-cement mixtures, a laboratory test of soil cement mixtures was performed at four levels of cement content, five levels of molding pressure, and four levels of normal curing periods. The results are summarized as follows: 1. Optimum moisture contents in loam soil and maximum dry density in sand soil increased with the increase of cement content, but in others, both optimum moisture contents and maximum dry density were changed ununiformly. 2. When the specimens were molded with molding pressure, 50kg/$\textrm{cm}^2$, strength of soil cement mixture with cement content, 2 and 4 per cent, was lower than the strength of soil cement mixture without cement content by more than 40 to 50 per cent. 3. The strength of soil-cement molded with molding pressure, 100kg/$\textrm{cm}^2$, was higher than the strength of soil-cement molded with M.D.D. obtained from standard compaction test more than 40 per cent in sand loam cement and 50 per cent in loamy cement. 4. There was highly significant positive correlation among molding pressure, cement content and unconfined compressive strentgh and so the following multiple regression equations were obtained. Loam: fc=1.9693C+0.197P-0.84 Sandy loam: fc=2.9065C+0.235P-0.77 5. When the specimens were molded with molding pressure, 20 to 100kg/$\textrm{cm}^2$, the regression equation between the 28-day and 7-day strenght was obtained as follows. Loam : q28=1.1050q7+7.59(r=0.9147) Sandy loam : q28=1.3905q7+3.17 (r=0.9801) 6. At the cement contents of above 50 per cent, the weight losses by freeeze-thaw test were negligible. At the cement content of below 8 per cent the weight losses were singnificantly high under low molding pressure and remarkably decreased with the increase of molding pressure up to 80kg/$\textrm{cm}^2$. 7. Resistance to damage from water and to absorption of water were not improved by molding pressure alone, but when the soil was mixtured with cement above 6 per cent, damage seldoms occurred and absorbed less than 5 per cent of water. 8. There was highly significant inverse-corelationship between the compressive strength of soil cement mixtures and their freeze-thaw loss as well as water absorption. By the regression equation methods, the relationships between them were expessed as followed fc=-7.3206Wa+115.6(r=0.9871) log fc=-0.0174L+1.59(r=0.7709) where fc=unconfined compressive stregth after 28-days curing. kg/$\textrm{cm}^2$ Wa=water absorption, % L : freeze-thaw loss rate, %

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Soil-Cement의 물리적 성질에 관한 연구 (A Study on the Physical Characteristics of Soil-Cement)

  • 조진구
    • 한국농공학회지
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    • 제16권3호
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    • pp.3533-3538
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    • 1974
  • This study was attempted in order to search for physical properties of sail cement. In this study, soil samples were specified according to soil particle analysis and used for compaction, strength, abrasion, absorption tests respectively according to different cement contents. Cement content sused in each treatment were 6%, 8%, 10% and 12% of total weight of soil-consent mixture. In the test, compressise strengths of the specimens were measured at the following ages; 3 days, 7-days, 14-days, 21-days and 28-days. Abrasion and absorption tests of the specimens were carried out at the 7-days age only. The results obtained from the tests are summarized as follows; 1. As the cement contents were in creased, the compressive strengths of soil-cement were almost proportionally increased. 2. The Compressive strength of soil-cement was not always proporportional to ages. The gradient of compressive strength of the soil-cement was steeper as the cement content was rucreased. 3. As the cement content was increased, the amount of the weight loss of the samples due to the abrasion was decreased remarkably, giving no abrasion for about 8% of the cement content. 4. As the cement content was increased, the absorption ratio of the specimens was not changed remarkably.

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