• 제목/요약/키워드: Reinforcing Corrosion

검색결과 259건 처리시간 0.03초

Effects of alkali solutions on corrosion durability of geopolymer concrete

  • Shaikh, Faiz U.A.
    • Advances in concrete construction
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    • 제2권2호
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    • pp.109-123
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    • 2014
  • This paper presents chloride induced corrosion durability of reinforcing steel in geopolymer concretes containing different contents of sodium silicate ($Na_2SiO_3$) and molarities of NaOH solutions. Seven series of mixes are considered in this study. The first series is ordinary Portland cement (OPC) concrete and is considered as the control mix. The rest six series are geopolymer concretes containing 14 and 16 molar NaOH and $Na_2SiO_3$ to NaOH ratios of 2.5, 3.0 and 3.5. In each series three lollypop specimens of 100 mm in diameter and 200 mm in length, each having one 12 mm diameter steel bar are considered for chloride induced corrosion study. The specimens are subjected to cyclic wetting and drying regime for two months. In wet cycle the specimens are immersed in water containing 3.5% (by wt.) NaCl salt for 4 days, while in dry cycle the specimens are placed in open air for three days. The corrosion activity is monitored by measuring the copper/copper sulphate ($Cu/CuSO_4$) half-cell potential according to ASTM C-876. The chloride penetration depth and sorptivity of all seven concretes are also measured. Results show that the geopolymer concretes exhibited better corrosion resistance than OPC concrete. The higher the amount of $Na_2SiO_3$ and higher the concentration of NaOH solutions the better the corrosion resistance of geopolymer concrete is. Similar behaviour is also observed in sorptivity and chloride penetration depth measurements. Generally, the geopolymer concretes exhibited lower sorptivity and chloride penetration depth than that of OPC concrete. Correlation between the sorptivity and the chloride penetration of geopolymer concretes is established. Correlations are also established between 28 days compressive strength and sorptivity and between 28 days compressive strength and chloride penetration of geopolymer concretes.

부식에 의한 부착저항감소를 고려한 콘크리트 교량의 균열폭 예측 (Crack Width Prediction in Concrete Bridges Considering Bond Resistances affected by Corrosion)

  • 조태준;조효남;박미연
    • 콘크리트학회논문집
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    • 제18권4호
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    • pp.543-552
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    • 2006
  • 사용성 한계상태로서의 균열폭 예측에 관한 현재의 교량설계 시방기준은, 부식의 시작과 진행에 의한 균열폭을 고려할 때 이론적으로 불충분하다. 균열폭은 하중, 부착, 미끄러짐, 그리고 철근이나 긴장재의 부식에 영향을 받게 된다. 콘크리트 교량의 생애주기 동안의 시간 의존적 일반부식을 고려하여, 균열폭 예측식을 제안하였다. 개발된 부식모델과 균열예측식은 프리스트레스트 콘크리트교량과 일반콘크리트교량의 설계시 시간단계별로 물-시멘트 비, 피복두께, 단면형상의 변화에 따른 극한한계상태와 사용성한계상태의 평가에 사용될 수 있다. 또한 기존교량의 시간단계별 극한 한계상태 및 사용성한계 상태의 평가를 통해서 정량적인 유지관리 및 잔존수명예측에 기여할 것으로 기대한다.

콘크리트용 잔골재로서 산사.해사의 활용방안에 관한 연구 (A Study on the Use of Pit Sand and Sea Sand as the Fine Aggregate in Concrete)

  • 윤상대;신의근;배수호
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1993년도 봄 학술발표회 논문집
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    • pp.40-45
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    • 1993
  • Due to the recent shortage of river sand resulting from a rapid growth of concrete construction, sea sand and pit sand are increasingly used in stead. It is , however, well noted that non-washed sea sand used in reinforced concrete causes to corrode reinforcing steel and to incur cracks in concrete, and thus eventually result in damage to concrete. Moreover, many sources of pit sand in our country are randomly used without experimental research for its applicability to concrete construction. The purpose of this research to activate the usage of pit sand and sea sand for concrete construction to solve the recent shortage of river sand. Followings have been experimentally investigated : 1)Physical properties of pit sand and sea sand, 2)Compressive strength of mortar on the weight of pit sand passing through No.200 sieve, 3) Compressive strength of mortar on the chloride content of sea sand, 4) Compressive strengths of concrete using pit sand and sea sand, respectively, 5)Corrosion propagatio in reinforcing steel on the chloride concent, of sea sand, and 6)etc.

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철근 도장용 폴리머 시멘트 슬러리의 부착 특성 (Properties of Adhesion Tension of Polymer Cement Slurry for Coated Reinforcing Bar)

  • 김현기;이철웅;장성주;김완기;소양섭
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
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    • pp.343-348
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    • 2000
  • The purpose of this study is to clarify properties adhesive strength of polymer-cement slurry for coated reinforcing bars. The epoxy coating material is superior to performance of anti-corrosion but lately age adhesive strength between concrete raise to structural problems. However, polymer dispersion with excellent performance of elasticity and adhesion can solve this problems. From the test results. adhesion of steel with polymer cement slurry using St/BA emulsion is show excellent without concerned coating thickness, and polymer cement slurry using St/BA emulsion is show adhesion in tension 1.2~2.2MPa at polymer cement ratio 50% of more.

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Magnetic Interference on the Infrastructure for a Super-speed Tube Train

  • Lee, Hyung-Woo;Jang, Seung-Yup;Kang, Bu-Byoung;Cho, Su-Yeon;Lee, Ju
    • Journal of Electrical Engineering and Technology
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    • 제6권3호
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    • pp.364-368
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    • 2011
  • The super-speed tube train was introduced to increase the speed of ground transportation. It levitates magnetically and runs in a partial vacuum tube, which significantly reduces air resistance. However, strong magnetic force sufficient to propel the massive train can affect the infrastructure. The induced eddy current produces joule heat, and raises the inside temperature of the girder, which might lead to electrochemical corrosion on the girder, thereby weakening its durability. In this paper, the authors analyzed the magnetic flux and induced eddy current in the reinforced concrete girder by using three-dimensional FEM, particularly by varying the number of reinforcing steels of the upper flange of the girder to the condition of almost the same flexural strength and reinforcing steel amount.

아크 금속 용사 표면 처리 방법에 따른 Zn-Al 금속 용사 피막의 물리적 특성 평가 (Evaluation of physical properties of Zn-Al metal coating according to arc metal spray surface treatment method)

  • 장종민;김영관;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 가을 학술논문 발표대회
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    • pp.89-90
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    • 2022
  • Arc metal spraying is a widely used method for improving the performance of construction structures such as corrosion resistance and electromagnetic wave shielding. However, when arc metal spraying is applied to a concrete structure, adhesion performance may deteriorate. Therefore, the effect of each surface treatment method on the physical properties between the arc metal spray coating and concrete was reviewed by evaluating the deposition efficiency and adhesion performance according to the arc metal spray surface treatment method (surface reinforcing agent, roughening agent, and sealing agent). As a result, it is suggested as an optimal surface treatment condition to induce non-interface failure by using a roughening agent and to improve the properties of concrete and metal coatings by applying a surface reinforcing agent and sealing agent.

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외부치장적벽돌 벽체에 대한 콘크리트 보강브라켓의 보강효과에 관한 연구 (A Study on the Strengthening effect of Concrete Reinforcement Bracket on the External Clay Brick Wall)

  • 김선우;김양중
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 봄 학술논문 발표대회
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    • pp.117-118
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    • 2020
  • The masonry structure is constructed by cement mortar binding material of brick objects and uses reinforced hardware (connected hardware or wall tie) together when building. However, over time, the corrosion of reinforced steel and the deterioration of joint mortar as well as bricks cause the risk of collapse. In particular, when the externally decorated brick wall is installed on the concrete girder for each floor, the angle bracket is not constructed or corroded, the full-layer weight load is applied to the wall of 0.5B, which is an example of full-scale or collapse. The purpose of this study is to provide numerical information on the reinforcement design by experimentally studying the structural performance of concrete reinforcement brackets that reinforce the vertical load of the exterior wall.

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Study of changes in the kinetic parameters of corrosion on the macrocell current induced by the repair of reinforced concrete structures - Results of numerical simulation

  • Mostafa Haghtalab;Vahed Ghiasi;Aliakbar Shirzadi Javid
    • Computers and Concrete
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    • 제32권3호
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    • pp.287-302
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    • 2023
  • Corrosion of reinforcing bars in reinforced concrete structures due to chloride attack in environments containing chloride ions is one of the most important factors in the destruction of concrete structures. According to the abundant reports that the corrosion rate around the repair area has increased due to the macro-cell current known as the incipient anode, it is necessary to understand the effective parameters. The main objective of this paper is to investigate the effect of the kinetic parameters of corrosion including the cathodic Tafel slope, exchange current density, and equilibrium potential in repair materials on the total corrosion rate and maximum corrosion rate in the patch repair system. With the numerical simulation of the patch repair system and concerning the effect of parameters such as electromotive force (substrate concrete activity level), length of repair area, and resistivity of substrate and repair concrete, and with constant other parameters, the sensitivity of the macro-cell current caused by changes in the kinetic parameters of corrosion of the repairing materials has been investigated. The results show that the maximum effect on the macro-cell current values occurred with the change of cathodic Tafel slope, and the effect change of exchange current density and the equilibrium potential is almost the same. In the low repair extant and low resistivity of the repairing materials, with the increase in the electromotive force (degree of substrate concrete activity) of the patch repair system, the sensitivity of the total corrosion current reduces with the reduction in the cathode Tafel slope. The overall corrosion current will be very sensitive to changes in the kinetic parameters of corrosion. The change in the cathodic Tafel slope from 0.16 to 0.12 V/dec and in 300 mV the electromotive force will translate into an increase of 200% of the total corrosion current. While the percentage of this change in currency density and equilibrium potential is 53 and 43 percent, respectively. Moreover, by increasing the electro-motive force, the sensitivity of the total corrosion current decreases or becomes constant. The maximum corrosion does not change significantly based on the modification of the corrosion kinetic parameters and the modification will not affect the maximum corrosion in the repair system. Given that the macro-cell current in addition to the repair geometry is influenced by the sections of reactions of cathodic, anodic, and ohmic drop in repair and base concrete materials, in different parameters depending on the dominance of each section, the sensitivity of the total current and maximum corrosion in each scenario will be different.

해수침지-건조 환경에 노출된 모르타르속 철근의 부식속도 평가 (Corrosion Monitoring of Reinforcing Bars in Cement Mortar Exposed to Seawater Immersion-and-dry Cycles)

  • 김제경;기성훈;이정재
    • 한국구조물진단유지관리공학회 논문집
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    • 제22권4호
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    • pp.10-18
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    • 2018
  • 본 연구는 시멘트 모르타르속에 매입된 철근주위가 건조될 때 불안정한 전류분포의 영향을 측정하고, 교류 임피던스 특성변화에 대한 영향을 고찰하는 것을 목적으로 한다. 건조과정중 철근의 전기화학적 반응을 측정하기 위해, 두 개의 철근이 매입된 3개의 시멘트 모르타르가 실험을 위해 준비되었다. 주요 변수는 20mm 모르타르 두께를 동일하게 가지도록 하여, 두 철근사이의 간격이 10, 20과 30mm가 되도록 하였다. 해양환경에서 콘크리트 구조물속의 철근 부식속도를 가정하기 위해서, 3개의 모르타르 시험체는 15 사이클의 침지-건조환경(해수에서 24시간 침지와 48시간 실온 건조)에 노출되었다. 부식전위의 변화는 건조중에 용존산소의 확산속도 증가로 인해 귀한 방향으로 이동하는 것이 관찰되었다. 침지-건조환경에서 교류 임피던스는 100kHz에서 1mHz까지 측정되었다. 철근과 모르타르사이의 계면상태를 설명하기 위해 이론적 모델이 제안되었으며, 그것은 용액저항, 전하이동저항과 CPE로 구성된 등가회로를 사용하였다. 철근의 부식이 진행됨에 따라, 저주파수 영역에서 확산 임피던스가 나타났다. 침지-건조 환경중 건조과정에서 이송차가 $45^{\circ}$에 가까워지는 현상으로써 전류분포가 불균일해지는 경향을 보였다.

Influence of corrosive phenomena on bearing capacity of RC and PC beams

  • Malerba, Pier Giorgio;Sgambi, Luca;Ielmini, Diego;Gotti, Giordano
    • Advances in concrete construction
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    • 제5권2호
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    • pp.117-143
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    • 2017
  • The attack of environmental aggressive agents progressively reduces the structural reliability of buildings and infrastructures and, in the worst exposition conditions, may even lead to their collapse in the long period. A change in the material and sectional characteristics of a structural element, due to the environmental damaging effects, changes its mechanical behaviour and varies both the internal stress redistribution and the kinematics through which it reaches its ultimate state. To identify such a behaviour, the evolution of both the damaging process and its mechanical consequences have to be taken into account. This paper presents a computational approach for the analysis of reinforced and prestressed concrete elements under sustained loading conditions and subjected to given damaging scenarios. The effects of the diffusion of aggressive agents, of the onset and development of the corrosion state in the reinforcement and the corresponding mechanical response are studied. As known, the corrosion on the reinforcing bars influences the damaging rate in the cracking pattern evolution; hence, the damage development and the mechanical behaviours are considered as coupled phenomena. The reliability of such an approach is validated in modelling the diffusion of the aggressive agents and the changes in the mechanical response of simple structural elements whose experimental behaviour is reported in Literature. A second set of analyses studies the effects of the corrosion of the tendons of a P.C. beam and explores potentially unexpected structural responses caused by corrosion under different aggressive exposition. The role of the different types and of the different positions of the damaging agents is discussed. In particular, it is shown how the collapse mode of the beam may switch from flexural to shear type, in case corrosion is caused by a localized chloride attack in the shear span.