• Title/Summary/Keyword: High Fluidity Concrete

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Spalling Properties of High Strength Concrete Made with Various Aspect Ratios and Fiber Contents of Nylon Fiber (나일론 섬유의 형상비 및 혼입률 변화에 따른 고강도 콘크리트의 폭렬특성)

  • Song, Yong-Won;Heo, Young-Sun;Lee, Seong-Yeun;Hann, Chang-Pyung;Yang, Seong-Hwan;Han, Cheon-Goo
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2007.04a
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    • pp.55-58
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    • 2007
  • This study investigates the spatting properties of high strength concrete, $60\sim80MPa$ class, designed with diverse aspect ratios and fiber content of nylon(NY). Test showed that increase of fiber content and aspect ratio in concrete decreased the fluidity of fresh concrete, especially for 1580 and 3000 aspect ratio of fiber. As for the compressive and tensile strength, adding NY fiber did not significantly affect the values In the range of high strength. After completing the fire test, the specimens containing both 750 and 1000 aspect ratios of fiber protected the spatting occurrence even in 0.05vol.% of fiber content. This specimens indicated the residual compressive strength ratio at 37%, showing the most favorable value among other specimens. Therefore, it is demonstrated that to protect the spalling in high strength concrete considering the effective fluidity, strength and economic efficiency altogether, adding 0.05vol.% of NY fiber with 750 aspect ratio Is beneficial.

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A Study on the Early Quality Improvement of Concrete Incorporating CSA Admixture (CSA에 의한 콘크리트의 초기품질향상에 관한 연구)

  • Pei Chang-Chun;Lee Gun-Cheol;Park Jae Myoung;Lee Se Hyoen;Han Cheon-Goo
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2005.05a
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    • pp.25-28
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    • 2005
  • This study shows the early quality improvement of concrete with calcium sulfa aluminate(CSA). For the properties of slump, plain concrete incorporating BS $35\%$ and UP $15\%$ resulted in high fluidity compared with OPC without any admixture. As displacement ratio of CSA increased. the fluidity decreased. The fluidity also declined with setting time. Increase of incorporation ratio of CSA declined bleeding and accelerated setting time. Importantly, using more CSA helped to improve early compressive strength and decrease drying shrinkage. In term of water curing, drying shrinkage hardly ever occurred.

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Effects of Portland Cement Characters and Working Temperature on the Physical Properties of Cement Mortars (시멘트의 특성과 사용 온도가 모르터의 물성에 미치는 영향)

  • 김원기;김창은
    • Journal of the Korean Ceramic Society
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    • v.37 no.5
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    • pp.410-417
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    • 2000
  • In this study the effects of specifics surface area of cement, addition amount of gypsum and substitution ratio of gypsum anhydrite ont he physical properties of cement mortars were investigated by measruements of setting time, flow, compressive strength and hydration heat evolution rate. The results showed that fluidity of mortars was increased by 40 wt.% of maximum flow change with the decreasing specific surface area of cement from 3,500$\textrm{cm}^2$/g to 3,300${\pm}$50$\textrm{cm}^2$/g and affected by the relationship between the cement and balancing between the chemical activityof cement and solubility of calcium sulfate are desirable to prevent the fluidity of concrete from decreasing by high temperature in summer season.

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A Study on the Factors Affecting the High Fluid Mortar Containing Ground Granulated Blast-furnace Slag (고로슬래그 미분말을 함유한 고유동 모르터의 유동성상에 미치는 영향 요인에 관한 연구)

  • Kim, Jae-Hun;Yoon, Sang-Chun;Jee, Nam-Yong
    • Journal of the Korea Institute of Building Construction
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    • v.2 no.4
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    • pp.145-152
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    • 2002
  • High fluid concrete unlike OPC concrete is made with various material, and the phase of fresh concrete is considerably different. In order to understand fluidity phase and mix properties of high fluid concrete, concrete is required to access as suspension structure which consists of aggregate and paste. The focus of this paper is to analyze the test results and quantify the effect of mix proportions of mortar and fineness modulus of sand on the properties of fresh mortar. The effect of water-binder ratio. sand-binder ration. contents of ggbs (by mass of total cementitious materials). and various contents of water reducing agent on the yield stress and plastic viscosity of the mix is studied. Based on the experimental results, the fellowing conclusions can be drawn: (1) The mixing time needed for high fluid mortar was approximately two times more than that of ordinary portland mortar. (2) The fluidity phase of mortar could be explained by yield stress of mix and the fluidity of mortar. (3) As the content of ggbs increased, yield stress of mortar was decreased and plastic viscosity of it was increased. (4) For the high fluid mortar, it was appeared that sand-binder ratio should be below 1.5.

The Properties of High Flowing Concrete with the Kind and Content of Limestone Powder (석회석 미분말의 종류 및 함유율 변화에 따른 고유동 콘크리트의 특성)

  • 조중동;홍상희;조병영;장기영;한천구
    • Proceedings of the Korea Concrete Institute Conference
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    • 1999.10a
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    • pp.267-270
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    • 1999
  • In this paper, the application of limestone powder, which produced by being gathered electrically in the process of manufacturing of cement, to high fluidity concrete are investigated. According to the experimental results, especially, high viscosity and the loss of air content are accomplished by applying limestone powder as the partial substitution of fine aggregates. In case of hardened concrete, high compressive strength can be achieved by using limestone powder.

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New Method for evaluation the Segregation Resistance of High-Fluidity Concrete (고유동 콘크리트의 새로운 재료분리 저항성 평가방법에 관한 제안)

  • 한천구;김기철
    • Magazine of the Korea Concrete Institute
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    • v.10 no.2
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    • pp.147-154
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    • 1998
  • 고유동 콘크리트의 특성을 판정하기 위한 방법으로서 기존에 알려진 재료분리 판정 방법은 매우 복잡하고 번거로운 실험방법으로 실무 적용에 많은 어려움이 있다. 그런데, 고유동 콘크리트의 유동성 측정 방법에는 슬럼프 플로우를 주로 측정하고, 슬럼프는 변화가 작아서 배제되고 있는 실정이나, 재료분리된 양상을 살펴보면 슬럼프 플로우는 큰 반면, 슬럼프는 작은 양상을 보이고 있다. 따라서 본 연구에서는 고유동 콘크리트의 재료분리 저항성을 슬럼프와 슬럼프 플로우의 조합으로 간단히 평가할 수 있는지 그 가능여부를 검토하고자 하였다. 연구 결과 슬럼프 플로우에 대한 슬럼프의 비는 양호한 재료분리의 평가지표로 이용할 수 있는데, 이 값을 2.5 이하로 유지하면 실무에서의 고유동 콘크리트는 양호한 재료분리 저항성을 관리할 수 있을 것으로 사료된다.

The Study on Fluidity and Strength Properties of High Strength Concrete Utilizing Crushed Sand (부순모래를 사용한 고강도콘크리트의 유동성 및 강도특성에 관한 연구)

  • Shin, Hong-Chol;Park, Sang-Joon;Ahn, Nam-Shik;Lee, Eui-Hak;Kang, Hoon
    • Proceedings of the Korea Concrete Institute Conference
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    • 2005.11a
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    • pp.383-386
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    • 2005
  • This paper is to investigate the effect of W/B, blend ratio of crushed sand with sea sand on fluidity and strength properties of high strength concrete utilizing crushed sand. W/B set up 0.25, 0.30, 0.35 and the blend ratio of crushed sand with sea sand set up 0:100, 30:70, 50:50, 70:30, 100:0 The results of this study are summarized as the follows; 1) The increase of the blend rate of crushed sand, affected on the enhancement of flow, the increase of dosage of SP and water content, but the decrease S/a 2) Compressive strength is increased when crushed sand $30\~70\%$ was replaced with sea sand. 3) The optimal replacement percentage of crushed sand is $50\%$ with sea sand.

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Rheological Properties of Cement Mixed with Fine Blast Furnace Slag Powder Blended Cement (미세 고로슬래그 분말을 혼합한 시멘트의 레올로지 특성)

  • 박춘근;김남호;김학연
    • Proceedings of the Korea Concrete Institute Conference
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    • 2003.11a
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    • pp.31-35
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    • 2003
  • High-Flowability Concrete has many advanced properties and been focused on their workability. Because of the difficulty in understanding of the quality of High-Flowablity Concrete just using slump properties, many studies have been carried out rheological properties influenced on concrete fluidity. In this paper, for the purpose of expecting some level of rheological properties, the change of rheological properties of High-Flowability Concrete with dosages and types of superplasticizer, and various addition amounts addictives were investigated.

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An Experimental Study on the Fluidity and Strength Properties of Multi Component Ultra-High Strength Concrete (다성분계 초고강도콘크리트의 유동특성 및 강도특성에 관한 실험적 연구)

  • Kim, Dong-Pai;Choi, Se-Jin;Lee, Seong-Yeon;Lee, Sang-Soo;Song, Ha-Young;Kim, Eul-Yong
    • Proceedings of the Korea Concrete Institute Conference
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    • 2006.11a
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    • pp.449-452
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    • 2006
  • In this study, recently, more highly effective construction materials are needed for a reasonable cause and economical structure system is required as the construction structures become more multi storied, large-sized and diversified. Also, the experiment was not carried out to investigate and analyzed the strength properties and flowability of ultra-high strength accroding to the types of mineral admixtures. Therefore, this is an experimental study to compare and analyze the influence of cementitious materials type on the fluidity and the strength properties of ultra-high strength concrete. For this purpose, it has decided to do the mix proportions of concrete according to the type of cementitious materials (fly ash, blsat furnace slag, silica fume, slag cement) and W/B(23.5, 27.5, 31.5%) has selected. And then we conducted an experiment to find out basic properties of the ultra-high strength concrete such as slump-flow, O-lot and the age of specimens(3, 7, 28, 56days) for compressive strength.

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Evaluation of Optimum Mix Proportion and Filling Performance of High-fluidity Concrete for SCP Module charging (SCP 모듈 충전용 고유동 콘크리트의 최적배합 도출 및 채움성능 평가)

  • Park, Gi-Joon;Kim, Sung-Wook;Park, Jung-Jun;Lee, Dong-Gyu
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.3
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    • pp.452-459
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    • 2017
  • In recent years, to reduce self-weight of structural elements, the use of SCP (Steel Concrete Plate) instead of prestressed concrete is increasing. Because SCP has a complicated sectional shape and includes a large number of studs, the use of high-fluidity concrete is required. Therefore, in this study, to prevent the restrained shrinkage behavior by the stud, the effects of using an expansive agent (EA) and shrinkage reducing agent (SRA) were investigated, and the optimal mixture proportions to maximize the filling capacity were determined based on the fine aggregate ratio. The test results indicated that the combined use of EA and SRA exhibited the smallest shrinkage. The ratio of the crushed sand and washed sea sand was determined to be 5:5, and the proper fine aggregate ratio was found to be 55.6%, because when the ratio was too high, a decrease in strength and an increase in shrinkage strain were expected. The high-fluidity concrete effectively filled the large-sized SCP module.