• 제목/요약/키워드: Chloride penetration test

검색결과 268건 처리시간 0.026초

FA 및 BFS를 다량 혼입한 콘크리트의 염분침투성 (Chloride Penetration of Concrete Mixed with High Volume Fly Ash and Blast Furnace Slag)

  • 박기철;임남기
    • 한국구조물진단유지관리공학회 논문집
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    • 제19권1호
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    • pp.90-99
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    • 2015
  • 본 연구에서는 최근 콘크리트구조물의 장기내구성을 목적으로 건설 분야에 적극적인 적용이 검토되고 있는 FA 및 BFS를 다량 혼입한 콘크리트의 역학적 및 염분침투성을 실험적으로 검토하여 다음과 같은 결론을 얻었다. FA 및 BFS의 강도시험결과 FA 콘크리트는 FA4000 및 5000을 각각 30% 혼입한 것이 OPC 대비 높은 강도증가율을 나타내는 것으로 파악되었다. 또한, BFS 콘크리트는 BFS8000을 30, 50% 혼입한 콘크리트가 OPC 대비 동등이상의 강도가 확인되었다. FA 및 BFS의 염분침투시험 결과에서는 FA4000 및 5000을 각각 30% 혼입한 콘크리트의 확산계수가 OPC 대비 평균 6.5% 정도 확산계수를 억제할 수 있는 것으로 파악되었다. 또한, BFS 콘크리트의 경우는 BFS6000 및 8000을 각각 50% 혼입한 것이 OPC 대비 각각 253 및 336% 정도 염화물이온의 확산을 효과적으로 억제할 수 있는 것으로 파악되어 BFS의 경우 다량 치환에 따른 염분침투저항성을 극대화시키기 위해서는 50% 정도 혼입하는 것이 가장 유효한 것으로 확인되었다. 한편, FA 및 BFS 콘크리트의 압축강도와 확산계수의 관계에서는 강도가 증가할수록 확산계수는 감소하는 경향이 파악되었다. 본 연구에서는 장기내구성 및 염분침투억제를 목적으로 FA 및 BFS를 콘크리트에 혼입한 결과, FA의 경우는 치환율을 30% 이하로 콘크리트에 혼입하는 것이 가장 유효한 것으로 파악되었다. 한편, BFS의 경우는 분말도가 높을수록 또한, 치환율은 50% 이하의 범위에서 콘크리트에 혼입할 경우 OPC 대비 동등 이상의 강도는 물론 염화물이온의 확산을 보다 효과적으로 억제 할 수 있을 것으로 확인되었다.

포졸란재 함유 콘크리트의 세공구조와 염화물이온 침투 저항성 (Resistance In Chloride ion Penetration and Pore Structure of Concrete Containing Pozzolanic Admixtures)

  • 소양섭;소형석
    • 콘크리트학회논문집
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    • 제14권1호
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    • pp.100-109
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    • 2002
  • 본 연구에서는 콘크리트의 염화물이온 침투 저항성에 미치는 포졸란재의 사용 효과를 평가하고자 물-결합재비와 혼화재의 종류 및 치환율, 양생기간을 변수로 제작된 각 콘크리트에 대해 세공용적, 염화물이온 투과성, 10% 염화나트륨용액 침지실험을 실시하여 보통콘크리트와 비교ㆍ분석하였으며 염화물이온 투과성과 세공구조 및 염화물이온 침투깊이의 상호관계를 검토하였다. 연구결과, 포졸란재의 사용은 콘크리트 내 세공들의 전체용적의 감소보다 모세관공극(50nm이상) 용적의 큰 감소에 더욱 효과적이었으며 이러한 효과로부터 포졸란 함유 콘크리트의 염화물이온 침투 저항성은 동일 배합의 보통콘크리트보다 매우 우수하게 나타났다. 콘크리트의 염화물이온 투과성은 콘크리트의 전세공용적에 관련하고 있지만 상관계수가 낮았으며 오히려 침투 및 확산이 용이한 모세관공극의 용적비(세공경 분포)에 더욱 관련하고 있었으며 침지실험에 의한 염화물이온 침투 깊이와 높은 상관관계를 나타내어 콘크리트의 염화물이온 침투 저항성 평가에 기초자료로서 활용될 수 있을 것으로 판단된다.

Experimental Investigation of Electrochemical Corrosion and Chloride Penetration of Concrete Incorporating Colloidal Nanosilica and Silica Fume

  • Garg, Rishav;Garg, Rajni;Singla, Sandeep
    • Journal of Electrochemical Science and Technology
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    • 제12권4호
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    • pp.440-452
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    • 2021
  • Enhancement of durability and reduction of maintenance cost of concrete, with the implementation of various approaches, has always been a matter of concern to researchers. The integration of pozzolans as a substitute for cement into the concrete is one of the most desirable technique. Silica fume (SF) and colloidal nanosilica (CS) have received a great deal of interest from researchers with their significant performance in improving the durability of concrete. The synergistic role of the micro and nano-silica particles in improving the main characteristics of cemented materials needs to be investigated. This work aims to examine the utility of partial substitution of cement by SF and CS in binary and ternary blends in the improvement of the durability characteristics linked to resistance for electrochemical corrosion using electrical resistivity and half-cell potential analysis and chloride penetration trough rapid chloride penetration test. Furthermore, the effects of this silica mixture on the compressive strength of concrete under normal and aggressive environment have also been investigated. Based on the maximum compression strength of the concrete, the optimal cement substituent ratios have been obtained as 12% SF and 1.5% CS for binary blends. The optimal CS and SF combination mixing ratios has been obtained as 1.0% and 12% respectively for ternary blends. The ternary blends with substitution of cement by optimal percentage of CS and SF exhibited decreased rate for electrochemical corrosion. The strength and durability studies were found in consistence with the microstructural analysis signifying the beneficiary role of CS and SF in upgrading the performance of concrete.

침투형 Nano-Coat를 이용한 콘크리트 열화 방지 적용성 평가 (Evaluation of Applicability of penetrating-type Nano-Coat for Preventing Deterioration of Concrete)

  • 이준희;김조순;심양모;이승우
    • 한국도로학회논문집
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    • 제19권2호
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    • pp.7-15
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    • 2017
  • PURPOSES : Infiltration of moisture, polluted material, and deicer into concrete, accompanied by freeze and thaw can cause significant deterioration of concrete pavement. In order to protect concrete from deterioration, it is necessary to prevent the infiltration of these concrete external materials. The moisture-repellent agent, which is a surface treatment and maintenance material added to concrete structures to render them water resistant, has advantages such as prevention of water infiltration and security against air permeation. Nano-coat, which is referred to as silicon hydride, is typically used as a moisture-repellent agent. Therefore, in this study, an attempt is made to use penetration-type Nano-coat as an alternative in order to evaluate its applicability through environmental resistance tests. METHODS : This study aimed to evaluate the applicability of penetration-type Nano-coat, which can provide water repellency to concrete, in concrete pavements, through various environmental resistance tests such as freezing and thawing resistance, chloride ion penetration resistance, and surface scaling resistance tests. The applicability of penetration-type Nano-coat was demonstrated based on the specification of KS F 2711, KS F 2456, and ASTM C 672. RESULTS :In the case of penetration-type Nano-coat applied on sound concrete, an increase in concrete durability was demonstrated by the negligible chloride ion penetrability and the absence of scaling, as revealed by visual observation of the surface, after 50 cycles of scaling resistance test. In addition, test result of the application of penetration-type Nano-coat on deteriorated concrete established that concrete surface pretreated by grinding provided improved durability than non-treated concrete. CONCLUSIONS :This study indicates that penetration-type Nano-coat is applicable as an effective alternative, to increase the durability of concrete structures. In addition, it was known that pretreatment of deteriorated concrete surface, such as grinding, is required to improve the long-term performance of concrete pavement.

광물질 혼화재가 콘크리트의 염소이온 확산계수에 미치는 영향 (Influence of Mineral Admixtures on the Diffusion Coefficient for Chloride Ion in Concrete)

  • 배수호;박재임;이광명;최성
    • 대한토목학회논문집
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    • 제29권4A호
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    • pp.347-353
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    • 2009
  • 콘크리트 내의 염소이온 침투에 영향을 미치는 정성적인 주요 인자로는 물-결합재비, 시멘트 종류, 재령, 주위 환경의 염소이온 농도 및 건습조건 등이 있다. 이에 따라 이 연구에서는 염소이온 확산실험을 통해 시멘트 종류 및 환경조건이 염소이온 확산특성에 미치는 영향을 조사하였다. 이를 위하여 물-결합재비 32%, 38% 및 43%에 대해서 보통 포틀랜드 시멘트(OPC), 2성분계 시멘트(BBC) 및 3성분계 시멘트(TBC) 각각을 사용한 콘크리트의 확산계수를 측정하였으며, 또한 물-결합재비 43%에 대해서 표준양생 및 해양환경에 폭로된 콘크리트의 확산계수를 측정하였다. 그 결과, 염소이온 침투 저항성은 물-결합재비가 감소함에 따라 증가하고, 2성분계 및 3성분계 시멘트를 사용한 콘크리트의 침투 저항성이 OPC 콘크리트에 비하여 우수한 것으로 나타났다. 따라서, 염해환경에 노출된 철근콘크리트 구조물의 내구수명을 증진시키기 위하여 광물질 혼화재를 혼입한 2성분계 혹은 3성분계 시멘트의 사용이 요구된다. 한편, 현장 폭로 시편의 염소이온 침투 저항성은 일정하지 않은 대기온도 하에서 염소이온의 침투, 파랑 및 건습반복의 영향으로 표준양생 시편의 경우보다 다소 저하되는 것으로 나타났다.

철근 콘크리트 시험편의 철근방식에 관한 측정법 (Corrosion Measurements on Reinforcing Rebars in Reinforced Concrete Specimen)

  • 이강균;장지원;한기훈;정영수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 가을 학술발표회 논문집
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    • pp.281-286
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    • 1997
  • Recent construction activities and maintenance of marine facilities have been accelerating to keep up with rapid economic growth in Korea. Marine concrete structures are exposed to salts an chloride from ocean environments. The corrosion of reinforcement steel caused by chloride-penetration into concrete may severely effect the durability of concrete structures. The objective of this research is to develop a durable concrete by investigating the corrosion resistance of various corrosion protection systems utilizing different water/cement ratio, silica fumes, corrosion inhibitors and etc. A tow-year verification test on various corrosion protection systems has been doing in the laboratory and at the seaside. Corrosion investigations on reinforcement steel are now under progress for more than 180 concrete specimen. Corrosion-related measurements include macrocell corrosion current, instant-off voltage between corroding and noncorroding reinforcement, chloride contents, the corroded surface areas on the reinforcement steel, and etc. A low level of corrosion is investigated on reinforcement steels in concrete specimen made with corrosion inhibitors or applied aqueous impregnating corrosion inhibitors into their surface, even though high chloride contents of concrete specimen.

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댐 시설물 수중구조체 보수용 패칭재료의 적용 가능성 평가 (Evaluation of Underwater Dam Concrete Structure Repair by Patching Material)

  • 김완영
    • 한국농공학회논문집
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    • 제51권6호
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    • pp.77-81
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    • 2009
  • This study was performed to evaluate applicability of patching materials for underwater dam concrete structure. Two kinds of patching materials was investigated. Laboratory experimentals were conducted by workability, compressive strength, bond strength, chloride ion penetration, abrasion resistance. Test results showed that the most performances are relatively good except chloride ion penetration.

염소이온 투과시험에 의한 콘크리트 제품의 강도 추정 (The Strength Estimation of Precast Concrete Products by the Chloride Ion Penetration Test)

  • 장문기
    • 한국농공학회지
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    • 제41권6호
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    • pp.82-89
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    • 1999
  • This paper present the strength estimation of precast concrete products by chloride ion penetration method. The relation between the strength of precast concrete product and the ion passing charge is linear and a numerical model of FCK =515.96-0.201Q is prposed. The results showe good agreement at about 9.0% error ration with the estimated model results for real precast concrete product.

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탄산화 및 동결융해 현상이 콘크리트 중의 염소이온 확산에 미치는 영향 연구 (Influence of Carbonation and Freezing-thawing on the Chloride Diffusion in Concrete)

  • 김동백;권기준;정상화;복훈
    • 한국안전학회지
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    • 제22권3호
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    • pp.57-64
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    • 2007
  • Recently, the corrosion of concrete structures has received great attention related with the deterioration of sea-side structures, such as new airport, bridges, and nuclear power plants. In this regards, many studies have been done on the chloride attack in concrete structures. However, those studies were confined mostly to the single deterioration due to chloride only, although actual environment is rather of combined type. The purpose of the present study is, therefore, to explore the influences of carbonation and freezing-thawing action to chloride attack in concrete structures. The test results indicate that the chloride penetration is more pronounced than the case of single chloride attack when the carbonation process is combined with the chloride attack. It is supposed that the chloride ion concentration of carbonation region is higher than the sound region because of the separation of fixed salts. Though the use of fly ash pronounces the chloride ion concentration in surface, amounts of chloride ion penetration into deep region decreases with the use of fly ash. The small reduction of relative dynamic elastic modulus induced from freezing-thawing increases the chloride ion penetration depths much. The present study allows more realistic assessment of durability for such concrete structures which are subjected to combined attacks of both chlorides and carbonation or freezing-thawing but the future studies for combined environment will assure the precise assessment.