• 제목/요약/키워드: concrete mortar

검색결과 1,658건 처리시간 0.029초

에폭시 수지 모르터의 특성에 관한 실험적 연구 (Experimental Studies on the Properties of Epoxy Resin Mortars)

  • 연규석;강신업
    • 한국농공학회지
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    • 제26권1호
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    • pp.52-72
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    • 1984
  • This study was performed to obtain the basic data which can be applied to the use of epoxy resin mortars. The data was based on the properties of epoxy resin mortars depending upon various mixing ratios to compare those of cement mortar. The resin which was used at this experiment was Epi-Bis type epoxy resin which is extensively being used as concrete structures. In the case of epoxy resin mortar, mixing ratios of resin to fine aggregate were 1: 2, 1: 4, 1: 6, 1: 8, 1:10, 1 :12 and 1:14, but the ratio of cement to fine aggregate in cement mortar was 1 : 2.5. The results obtained are summarized as follows; 1.When the mixing ratio was 1: 6, the highest density was 2.01 g/cm$^3$, being lower than 2.13 g/cm$^3$ of that of cement mortar. 2.According to the water absorption and water permeability test, the watertightness was shown very high at the mixing ratios of 1: 2, 1: 4 and 1: 6. But then the mixing ratio was less than 1 : 6, the watertightness considerably decreased. By this result, it was regarded that optimum mixing ratio of epoxy resin mortar for watertight structures should be richer mixing ratio than 1: 6. 3.The hardening shrinkage was large as the mixing ratio became leaner, but the values were remarkably small as compared with cement mortar. And the influence of dryness and moisture was exerted little at richer mixing ratio than 1: 6, but its effect was obvious at the lean mixing ratio, 1: 8, 1:10,1:12 and 1:14. It was confirmed that the optimum mixing ratio for concrete structures which would be influenced by the repeated dryness and moisture should be rich mixing ratio higher than 1: 6. 4.The compressive, bending and splitting tensile strenghs were observed very high, even the value at the mixing ratio of 1:14 was higher than that of cement mortar. It showed that epoxy resin mortar especially was to have high strength in bending and splitting tensile strength. Also, the initial strength within 24 hours gave rise to high value. Thus it was clear that epoxy resin was rapid hardening material. The multiple regression equations of strength were computed depending on a function of mixing ratios and curing times. 5.The elastic moduli derived from the compressive stress-strain curve were slightly smaller than the value of cement mortar, and the toughness of epoxy resin mortar was larger than that of cement mortar. 6.The impact resistance was strong compared with cement mortar at all mixing ratios. Especially, bending impact strength by the square pillar specimens was higher than the impact resistance of flat specimens or cylinderic specimens. 7.The Brinell hardness was relatively larger than that of cement mortar, but it gradually decreased with the decline of mixing ratio, and Brinell hardness at mixing ratio of 1 :14 was much the same as cement mortar. 8.The abrasion rate of epoxy resin mortar at all mixing ratio, when Losangeles abation testing machine revolved 500 times, was very low. Even mixing ratio of 1 :14 was no more than 31.41%, which was less than critical abrasion rate 40% of coarse aggregate for cement concrete. Consequently, the abrasion rate of epoxy resin mortar was superior to cement mortar, and the relation between abrasion rate and Brinell hardness was highly significant as exponential curve. 9.The highest bond strength of epoxy resin mortar was 12.9 kg/cm$^2$ at the mixing ratio of 1:2. The failure of bonded flat steel specimens occurred on the part of epoxy resin mortar at the mixing ratio of 1: 2 and 1: 4, and that of bonded cement concrete specimens was fond on the part of combained concrete at the mixing ratio of 1 : 2 ,1: 4 and 1: 6. It was confirmed that the optimum mixing ratio for bonding of steel plate, and of cement concrete should be rich mixing ratio above 1 : 4 and 1 : 6 respectively. 10.The variations of color tone by heating began to take place at about 60˚C, and the ultimate change occurred at 120˚C. The compressive, bending and splitting tensile strengths increased with rising temperature up to 80˚ C, but these rapidly decreased when temperature was above 800 C. Accordingly, it was evident that the resistance temperature of epoxy resin mortar was about 80˚C which was generally considered lower than that of the other concrete materials. But it is likely that there is no problem in epoxy resin mortar when used for unnecessary materials of high temperature resistance. The multiple regression equations of strength were computed depending on a function of mixing ratios and heating temperatures. 11.The susceptibility to chemical attack of cement mortar was easily affected by inorganic and organic acid. and that of epoxy resin mortar with mixing ratio of 1: 4 was of great resistance. On the other hand, when mixing ratio was lower than 1 : 8 epoxy resin mortar had very poor resistance, especially being poor resistant to organicacid. Therefore, for the structures requiring chemical resistance optimum mixing of epoxy resin mortar should be rich mixing ratio higher than 1: 4.

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플라이애시를 대량 사용한 콘크리트의 배합설계를 위한 기초적 연구 (A Fundamental Study on the Mix Design in High Volume Fly-Ash Concrete)

  • 심재형;김재환;최희용;강석표;최세진;김무한
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.641-646
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    • 2001
  • Generally, when Fly-Ash was used as replacement material of cement in concrete, it might occur retardation of setting and hardening. So, it is unable to use a large amount of Fly-Ash as replacement for cement. However, if it is used as replacement material of fine aggregate in concrete, we can use a large amount of Fly-Ash and settle a problem of natural-aggregate exhaustion. Furthermore, engineering properties of High Volume Fly-Ash Concrete Is better than that of plain concrete But, the larger Fly-Ash is replaced, the more fluidity of High Volume Fly-Ash Concrete decrease, because porous organization of Fly-Ash adsorb water and Superplasticizer. In this study, after appending additional water to High Volume Fly-Ash Concrete in proportion to weight of Fly-Ash, we intend to find proper ratio which doesn't affect strength and satisfy fluidity As a result of this study, it was found that fluidity of mortar with 25~28 percentage of additional water was satisfied with fluidity of plain mortar, and compressive strength of that was similar to plain mortar's

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간이 내화시험에 의한 석고계 모르타르의 내화성능 (Fireproof Performance of Mortar using Gypsum in Simplified Heating Test)

  • 강석표
    • 한국건축시공학회지
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    • 제11권2호
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    • pp.181-188
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    • 2011
  • 고강도콘크리트 부재 표면에 내화모르타르를 피복하여 화재시 콘크리트 표층부의 온도상승을 저감시킴으로서 내부 철근온도 상승을 억제한다. 본 논문은 간이내화시험을 통하여 시멘트 및 석고계 내화모르타르 피복 고강도콘크리트의 내부철근 온도상승을 검토하기 위한 것이다. 그 결과 석고계 내화모르타르가 시멘트계 내화모르타르보다 고강도콘크리트의 내부철근 온도상승을 저감시키는데 효과적인 것으로 나타났으며 내화모르타르 피복두께가 작을수록 시멘트계 내화모르타르와의 내부 철근 온도차이가 증가하였다. 또한 ${\alpha}$형 반수석고와 ${\beta}$형 반수석고 종류에 따른 내화모르타르의 온도상승 저감효과의 차이는 없는 것으로 나타났지만, ${\alpha}$형 반수석고 내화모르타르의 압축강도가 ${\beta}$형 반수석고 내화모르타르보다 높게 나타났다.

MMA계 아크릴 라텍스를 혼입한 폴리머시멘트 모르타르의 내구성 (Durability of Polymer-Modified Mortars Using Acrylic Latexes with Methyl Methacrylate)

  • 형원길;김완기;소양섭
    • 콘크리트학회논문집
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    • 제17권3호
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    • pp.411-418
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    • 2005
  • 본 연구에서는 MMA(methyl methacrylate)계 아크릴 라텍스를 모노머 비에 따라 합성 제조하고, 각각의 모노머 비와 폴리머 시멘트 비에 따라 폴리머시멘트 모르타르를 제작한 후, 방수성, 염화물 이온 침투 저항성, 그리고 중성화에 대한 실험을 통해 MMA계 아크릴 라텍스를 혼입한 폴리머시멘트 모르타르의 내구성을 파악하고자 하였다. 실험결과, 폴리머시멘트 모르타르의 방수성과 염화물 이온 침투 저항성은 폴리머의 종류보다는 폴리머시멘트 비에 따라 많은 영향을 받는 것으로 나타나고 있으며, 폴리머시멘트 비가 높을수록 그 저항성도 증진되었다. 또 폴리머시멘트 모르타르의 중성화에 대한 저항성은 폴리머의 종류와 폴리머시멘트 비에 따라 많은 차이를 나타내고 있으며, 보통 시멘트 모르타르에 비해 현저히 증가하는 것으로 나타났다. 모노머의 종류에 따라서는 MMA/BA를 모노머로 이용한 폴리머시멘트 모르타르가 MMA/EA를 모노머로 한 폴리머시멘트 모르타르에 비해 그 성능이 우수하게 나타났다. 특히 폴리머시멘트 모르타르의 중성화는 세공구조에 따라서도 많은 영향을 받는 것으로 나타났으며 폴리머의 자체 저항능력으로 인해 폴리머의 혼입량이 높을수록 중성화에 대한 저항성도 증진되는 것으로 나타났다. 따라서 연구결과 본 실험에서 합성제조한 MMA계 아크릴 라텍스를 이용하여 폴리머시멘트 모르타르를 제작할 경우, 방수성, 염화물 이온 침투 저항성, 그리고 중성화에 대한 저항성을 크게 향상시킬 수 있었다.

폴리머 모르타르를 이용한 콘크리트 분절 복합체의 정하중 및 충격하중에서의 거동 평가 (Behaviors of Concrete Segmented Composites Using Polymer Mortar Under Static and Impact Loadings)

  • 민경환;이진영;김미혜;윤영수
    • 한국구조물진단유지관리공학회 논문집
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    • 제15권5호
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    • pp.169-177
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    • 2011
  • 본 연구에서는 충격하중에 유리한 층 구조를 갖는 패각의 구조를 채용한 콘크리트 분절 복합체의 충격하중 성능을 평가하였다. 콘크리트 분절 복합체의 성능을 향상시키기 위해서는 콘크리트 블록 사이의 모르타르의 부착강도가 개선되어야 한다. 따라서 본 연구에서는 모르타르의 부착강도를 향상시키기 위해 폴리머 모르타르를 적용하였다. 부착강도 실험에 따라 15% 라텍스 모르타르를 선정하였고, 일반 모르타르와 라텍스 모르타르를 적용한 부재에 대한 정하중 및 저속 충격하중 실험을 수행하였다. 실험 결과 모르타르의 부착력이 향상된 분절복합체가 높은 충격하중 저항 능력을 보였다. 불연속 균열 모델을 이용한 비선형 유한요소해석과 충격하중 실험의 결과와 충격에너지 소산도가 유사하게 나타났다. 따라서 분절복합체 해석 모델의 개선을 통해 다양한 변수의 충격 저항 능력의 예상과 평가가 가능할 것으로 판단된다.

카르본산계 고성능감수제를 첨가한 시멘트 모르타르의 유동 특성 (Flow and Strength Properties of Cement Mortar Mixed with High Range Water Reducer Containing Carboxylic Acid)

  • 김화중;강인규;권영도;김우성;황재현;김원기;박기청
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1995년도 봄 학술발표회 논문집
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    • pp.142-147
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    • 1995
  • In this study, styrene-maleic anhydride copolymer (SMA) was synthesized from styrene and maleic anhydride and further reacted with sulfuric acid to obtain water-soluble SMA and the flow and strength tests of cement mortar mixed with copolymers were carried out to evaluate the capability of copolymers as high range water reducer for the concrete. It was found from flow experiment that the fluidity of cement mortar mixed with sulfonated SMA (SSMA) was larger than that miced with aminophenol-substituted SSMA (SmSMA). The decreasing rate of the flow of cement mortar mixed with SSMA and SmSMA was decreasing rate of the flow of cement mortar mixed with SSMA and SmSMA was significantly lower than that mixed with naphthalene condensate (NSC). The compressive strength of the hardened cement mortars containing 0.5% copolymers after 28 days curing was examined. The compressive strength of hardened cement mortar containing SSMA and SmSMA was increased up to 32% and 13%, respectively, when compared to the plain. As the results, the copolymers (SSMA and SmSMA) used in this study are greatly expected as a good high range water reducers for the concrete.

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천연해수에 침지된 콘크리트 내부의 철근부식거동에 미치는 염분의 영향에 관한 전기화학적 연구 (An Electrochemical Study on the Effect of Salt Affecting to Corrosion Behavior of Concrete Reinforced Steel in Natural Sea Water)

  • 김광근;류보현;점성종;김기준;문경만
    • 한국해양공학회지
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    • 제14권4호
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    • pp.23-29
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    • 2000
  • When the concrete structures were being made with sand containing chloride ion it was knows that corrosion rate of reinforced steel embedded in concrete with chloride ion was higher than that of concrete with on chloride ion. In this study, the operation of Friedel salts affecting the corrosion behavior of reinforced steel embedded in cement mortar was investigated with electrochemical view. Corrosion potential of reinforced steel embedded in cement mortar with sand containing chloride ion was shifted noble direction than that of cement mortar with no chloride ion after immersed 5 month in natural sea water and also corrosion current density decreased with shifting corrosion potential to noble direction. However Friedel salts appeared from surface to 2.5cm of inside direction of mortar specimen, which is located at 11.5$\circ$(2$\theta$) in XRD analysis and the amount of Ca(OH)2 by SEM photograph in cement mortar with chloride ion was larger than that of cement mortar with mo chloride ion. Eventually it is suggested that Friedel salts was resulted from chloride ion and it acted as the corrosion inhibitor.

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혼화제 종류에 따른 메타카올린 콘크리트의 특성 (Properties of Metakaolin Concrete containing Various Superplasticizers)

  • 안태호;김용태;강범구;김병기
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 봄 학술발표회 논문집
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    • pp.539-544
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    • 2002
  • The properties of mortar and concrete including metakaolin as a partial cement replacement were investigated in terms of fluidity and compressive strength. The results show that mortar and concrete in which 10 % of cement is replaced with metakaolin exhibit much higher compressive strength after 3 days of hydration than ordinary Portland cement, indicating that metakaolin can be used in the production of high strength concrete replacing silica fume. The type of superplasticizer largely affected on the fluidity and compressive strength of mortar and concrete including metakaolin. It was concluded that when metakaolin is used for the purpose of manufacturing high strength concrete, it is desirable to use PNS based blends rather than PNS, PMS and polycarboxylate based superplasticizer.

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포졸란계 혼화재를 혼입한 모르타르 및 콘크리트의 내염해 저항성 평가에 관한 실험적 연구 (An experimental study on the evaluation of chloride attack resistance in mortar and concrete mixed with pozzolanic admixtures)

  • 박정준;김도겸;하진규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 가을 학술발표회논문집(I)
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    • pp.461-466
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    • 2000
  • To improve the quality of concrete, we usually consider the reduction of water/cement ratio, the increase of concrete cover depth and the use of mineral admixtures. Reportedly, the use of admixtures make concrete more durable and tighten against water. But, it is needed to study more about the relationship between the admixtures and the chloride ion diffusion. Therefore, in this study, we focused on the chloride ion diffusion properties of the pozzolanic admixtures such as fly-ash, slag and silica fume which are known as being useful on chloride attack resistance when mixed into mortar or concrete. Furthermore, we treed to analyze the correlation between mortar and concrete using the admixture, which is useful for analyzing chloride ion diffusion mechanism.

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잔골재 용적비가 고유동 콘크리트의 성질에 미치는 영향 (The Influence of the Volume Contents of Sand in Mortar on the Properties of Self Compacting Concrete)

  • 최재진;유정훈
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.755-758
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    • 2004
  • Self-compactability is defined as a capability of concrete to be uniformly filled and compacted in every corners of formwork by its self-weight without vibration during placing. To evaluate the self compactability of self compacting concrete, the slump flow, the time of slump flow at 500mm and U-box apparatus testing methods are used. In this research, the fresh and hardened properties of self compacting concrete using ground granulated blast furnace slag as a part of cement were investigated for the volume contents of sand in the mortar. The workability, flowing characteristics, air content and compressive strength of concrete were tested and the results were compared with the different volume contents of sand in the mortar. In the experiment, we acquired satisfactory results at the point of flowing characteristics and strengths of self compacting concrete.

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