• 제목/요약/키워드: Rapid chloride penetration test (RCPT)

검색결과 13건 처리시간 0.022초

고내구성 재료를 사용한 휨부재의 균열에 따른 염화물 침투 특성 (Characteristics of Chloride Penetration in Cracked Flexural Member using Durable Materials)

  • 진상호;김일순;김명유;양은익;이성태
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.401-404
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    • 2008
  • 균열은 콘크리트에 염소이온과 같은 유해한 물질의 침투경로가 되어 내구성에 심각한 열화를 야기한다. 따라서 고내구성 재료를 사용한 콘크리트 휨부재에서의 균열 발생에 따른 염소이온 침투특성을 검토하고자 하였다. 이를 위해, 고내구성 재료를 적용한 보에 하중을 가하여 휨균열을 도입시키고, 촉진 염화물 침투실험(RCPT)과 장기 염화물 침투실험을 실시하여 염화물 침투 특성을 파악하였다. 실험결과에 따르면, 고내구성 재료를 적용한 부재는 균열이 발생하여도 일반 콘크리트 부재에 비해 높은 염화물 침투 저항성을 보였다. 특히 고로슬래그 미분말을 적용한 경우, 균열 부재의 장기 염화물 침투 실험에서 탁월한 염화물 침투 저항성을 보였다.

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전기 영동법에 기초한 콘크리트의 급속 염소이온 확산 특성 평가 (Rapid Chloride Penetration Test for Concrete Based on the Electrochemical Method)

  • 오상균;박동천
    • 한국항해항만학회지
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    • 제34권10호
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    • pp.787-792
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    • 2010
  • 콘크리트는 물시멘트비에 상응하는 공극을 가지게 되며, 공극을 통한 염소이온의 확산을 평가하기 위하여 해안가 폭로 및 해수 침지실험이 널리 사용된다. 이상의 실험은 경우에 따라서 다년간의 시간을 요하는 경우도 있어, 최근에는 전기 영동법에 기초한 급속 염소이온 확산시험을 실시하는 경우가 많으나, 그 값이 폭로 및 침지 시험에서 얻은 값과 상이한 경우가 많아 데이터의 실용성을 높이기 위하여 그 원인 규명이 절실한 실정이다. 본 연구에서는 평가 방법으로써 Nernst-Einstein의 식을 통한 염화물 이온 이동계수의 산정방법을 사용하였으며, NT BUILD 492법 및 해수 침지실험을 통한 확산 특성과 비교하여 값의 차이에 대하여 고찰하였다. 그 결과 실험인자의 변화가 염소이온 확산에 미치는 영향은 미비한 것으로 평가되어져 실험조건에서 발생하는 영향은 거의 없는 것으로 규명되었으며, NT BUILD 492법과도 거의 동일한 값이 구해졌다. 침지실험 결과와의 상이는 염소이온 확산에서 경계조건의 차이 및 염소이온의 시멘트 수화물과의 고정화에 의한 것으로 판단되어진다.

Strength and chloride penetration of Portland cement mortar containing palm oil fuel ash and ground river sand

  • Rukzon, Sumrerng;Chindaprasirt, Prinya
    • Computers and Concrete
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    • 제6권5호
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    • pp.391-401
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    • 2009
  • This paper presents a study of the strength and chloride penetration of blended Portland cement mortar containing ground palm oil fuel ash (POA) and ground river sand (GS). Ordinary Portland cement (OPC) was partially replaced with POA and GS. Compressive strength, rapid chloride penetration test (RCPT) and chloride penetration depth of mortars were determined. The GS only asserted the packing effect and its incorporation reduced the strength and the resistance to chloride penetration of mortar. The POA asserted both packing and pozzolanic effects. The use of the blend of equal portion of POA and GS also produced high strength mortars, save cost and excellent resistance to chloride penetration owing to the synergic effect of the blend of POA and GS. For chloride depth, the mathematical model correlates well with the experimental results. The computer graphics of chloride depth of the ternary blended mortars are also constructed and can be used to aid the understanding and the proportioning of the blended system.

화상분석법을 이용한 하이브리드 콘크리트의 공극구조 특성 및 투수성 평가 (Estimation of Pore Structure Characteristic and Permeability of Hybrid Concrete by Image Analysis Method)

  • 장봉진;전범준;홍영호;배종오;임홍범
    • 한국도로학회논문집
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    • 제17권1호
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    • pp.59-67
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    • 2015
  • PURPOSES : In this study, an image analysis method is used to evaluate the pore structure characteristics and permeability of hybrid concrete. METHODS : The binder weight of hybrid concrete is set to $400kg/m^3$, $370kg/m^3$, and $350kg/m^3$, and for each value of binder weight, the pore structure and permeability of concrete mixture is evaluated. The permeability of hybrid concrete is evaluated using a rapid chloride penetration test(RCPT). RESULTS : The concrete pore structure characteristics of hybrid concrete reveals that as the binder weight is reduced, the entrained air is reduced and the entrapped air is increased. The permeability of the hybrid concrete for all values was measured to be below 1000 C, which indicates a "Very Low" level of permeability relative to the evaluation standard of KS F 2711. Additionally, as the binder weight is decreased, there is a significant increase in the permeability of chloride ions. CONCLUSIONS : In this study, the pore structure characteristics of hybrid concrete at different binder weights shows that as the binder weight is reduced, the entrained air is reduced and the entrapped air is increased. Consequently, chloride ion penetration resistance of the hybrid concrete is diminished. As a result, it is expected that this will reduce the concrete's durability.

Chloride diffusion study in different types of concrete using finite element method (FEM)

  • Paul, Sajal K.;Chaudhuri, Subrata;Barai, Sudhirkumar V.
    • Advances in concrete construction
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    • 제2권1호
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    • pp.39-56
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    • 2014
  • Corrosion in RCC structures is one of the most important factors that affects the structure's durability and subsequently causes reduction of serviceability. The most severe cause of this corrosion is chloride attack. Hence, to prevent this to happen proper understanding of the chloride penetration into concrete structures is necessary. In this study, first the mechanism of this chloride attack is understood and various parameters affecting the process are identified. Then an FEM modelling is carried out for the chloride diffusion process. The effects of fly ash and slag on the diffusion coefficient and chloride penetration depth in various mixes of concretes are also analyzed through integrating Virtual RCPT Lab and FEM.

4성분계 콘크리트의 염해 저항성능에 관한 연구 (A Study on Chloride Attack Resistibility of Quaternary Concrete)

  • 이동운;박현정
    • 한국산학기술학회논문지
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    • 제15권2호
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    • pp.1188-1194
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    • 2014
  • 본 연구의 목적은 플라이 애시, 고로슬래그 미분말, 실리카흄을 사용하여 4성분계 콘크리트의 염해 저항성능을 평가하기 위한 것이다. 본 연구에서는 압축강도, 탄성계수, 염수침지 시험, 염화물 확산계수 및 침투계수를 실시하였다. 4성분계 콘크리트의 염화물 확산계수와 침투계수는 재령 17주에 $0.032{\times}10^{-12}m^2/sec$와 650 coulomb으로 측정되었다. 또한 침지시험 결과 염화물 이온 침투깊이와 염화물량은 3.7 mm and $10.211kg/m^3$로 측정 되었다. 이러한 결과로부터 플라이 애시, 고로슬래그 미분말, 실리카흄을 사용하여 제조한 4성분계 콘크리트는 염해 저항성능과 역학적 특성이 매우 높을 것을 알 수 있었다.

Improved Durability Performances in Cement Mortar with Rice Husk Ash

  • Saraswathy, Velu;Karthick, Subbiah;Kwon, Seung-Jun
    • 한국건설순환자원학회논문집
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    • 제2권1호
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    • pp.66-73
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    • 2014
  • Currently many researches have been performed for enhancing durability of concrete. Rice husk ash has several advantages like early strength of concrete and dense pore structure. A calcium silicate hydrate (CSH) gel around the cement particles due to pozzolanic reaction of rice husk can increase the strength of concrete against cracking. Very limitedly a systematic and detailed investigation on the corrosion performance of rice husk ash and silica fume blended concrete is performed. A realistic approach has been made through compressive strength, bond strength, and split tensile strength etc. Corrosion performance was also evaluated rapid chloride ion penetration test (RCPT) and impressed voltage test, and the results were discussed in the paper.

Durability characteristics of recycled aggregate concrete

  • Saravanakumar, Palaniraj;Dhinakaran, Govindasamy
    • Structural Engineering and Mechanics
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    • 제47권5호
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    • pp.701-711
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    • 2013
  • People started to replace natural aggregate with recycled aggregate for a number of years due to disposal problem and certain other potential benefits. Though there are number of drawbacks with use of recycled aggregates like lesser modulus of elasticity, low compressive strength, increase in shrinkage, there are results of earlier studies that use of chemical and mineral admixtures improves the strength and durability of recycled concrete. The use of recycled aggregate from construction and demolition wastes is showing prospective application in construction as alternative to natural aggregates. It conserves lot of natural resources and reduces the space required for the landfill disposal. In the present research work, the effect of recycled aggregate on strength and durability aspects of concrete is studied. Grade of concrete chosen for the present work is M50 (with a characteristic compressive strength of 50 MPa). The recycled aggregates were collected from demolished structure with 20 years of age. Natural Aggregate (NA) was replaced with Recycled Aggregate (RA) in different percentages such as 25, 50 and 100 to understand its effect. The experiments were conducted for different ages of concrete such as 7, 14, 28, 56 days to assess the compressive and tensile strength. Durability characteristics of recycled aggregate concrete were studied with Rapid chloride penetration test (as per ASTMC1202), sorptivity test and acid test to assess resistance against chloride ion penetration, capillary suction and chemical attack respectively. Mix design for 50 MPa gives around 35 MPa after replacing natural aggregate with recycled aggregate in concrete mix and the chloride penetration range also lies in moderate limit. Hence it is understood from the results that replacement of NA with RA is very much possible and will be ecofriendly.

Modified electrical conductivity test method for evaluation concrete permeability

  • Pilvar, Amirreza;Ramezanianpour, Ali Akbar;Rajaie, Hosein
    • Computers and Concrete
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    • 제16권6호
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    • pp.865-880
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    • 2015
  • Standard test method for bulk electrical conductivity (ASTM C1760) provides a rapid indication of the concrete's resistance to the penetration of chloride ions by diffusion. In this paper a new approach for assessing the bulk electrical conductivity of saturated specimens of hardened concrete is presented. The test involves saturating concrete specimens with a 5 M NaCl solution before measuring the conductivity of the samples. By saturating specimens with a highly conductive solution, they showed virtually the same pore solution conductivity. Different concrete samples yield different conductivity primarily due to differences in their pore structure. The feasibility of the method has been demonstrated by testing different concrete mixtures consisting ordinary and blended cement of silica fume (SF) and calcined perlite powder (CPP). Two standard test methods of RCPT (ASTM C1202) and Bulk Conductivity (ASTM C1760) were also applied to all of the samples. The results show that for concretes containing SF and CPP, the proposed method is less sensitive towards the variations in the pore solution conductivity in comparison with RCPT and Bulk Conductivity tests. It seems that this method is suitable for the assessment of the performance and durability of different concretes containing supplementary cementitious materials.

Seawater curing effects on the permeability of concrete containing fly ash

  • Hosseini, Seyed Abbas
    • Advances in concrete construction
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    • 제14권3호
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    • pp.205-214
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    • 2022
  • Due to seawater's physical and chemical deterioration effects on concrete structures, it is crucial to investigate the durability of these structures in marine environments. In some conditions, concrete structures are exposed to seawater from the first days of construction or because of the lack of potable water, part of the concrete curing stage is done with seawater. In this research, the effects of exposure to seawater after 7 days of curing in standard conditions were evaluated. To improve the durability of concrete, fly ash has been used as a substitute for a part of the cement in the mixing design. For this purpose, 5, 15, and 30% of the mixing design cement were replaced with type F fly ash, and the samples were examined after curing in seawater. The resistance of concrete against chloride ion penetration based on the rapid chloride penetration test (RCPT), water permeability based on the depth of water penetration under pressure, and water absorption test was done. The changes in the compressive strength of concrete in different curing conditions were also investigated. The results show that the curing in seawater has slightly reduced concrete resistance to chloride ion permeation. In the long-term, samples containing FA cured in seawater had up to 10% less resistance to chloride ion penetration. The amount of reduction in chloride ion penetration resistance was more for samples without FA. Whiles, for both curing conditions in the long-term up to 15%, FA improved the chloride ion penetration resistance up to 40%. Curing in seawater slightly increased the penetration depth of water under pressure in samples containing FA, while this increase was up to 12% for samples without FA. In the long-term the compressive strength of samples cured in seawater is not much different from the compressive strength of samples cured in plain water, while at the age of 28 days, due to seawater salts' accelerating effects the difference is more noticeable.