• 제목/요약/키워드: corroded steel

검색결과 207건 처리시간 0.021초

Bending characteristics of corroded reinforced concrete beam under repeated loading

  • Fang, Congqi;Yang, Shuai;Zhang, Zhang
    • Structural Engineering and Mechanics
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    • 제47권6호
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    • pp.773-790
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    • 2013
  • Bending behaviors of corroded reinforced concrete (RC) beams under repeated loading were investigated experimentally. A total of twenty test specimens, including four non-corrosion and sixteen corrosion reinforced concrete beams, were prepared and tested. A numerical model for flexural and cracking behaviors of the beam under repeated loading was also developed. Effects of steel corrosion on reinforced concrete beams regarding cracking, mid-span deflection, stiffness and bearing capacity of corroded beams were studied. The impact of corrosion on bond strength as the key factor was investigated to develop the computational model of flexural capacity. It was shown from the experimental results that the bond strength between reinforcement and concrete had increased for specimen of low corrosion levels, while this effect was changed when the corrosion level was higher. It was indicated that the bearing capacity of corrosion beam increased even at a corrosion level of about 5%.

Bond strength modeling for corroded reinforcement in reinforced concrete

  • Wang, Xiaohui;Liu, Xila
    • Structural Engineering and Mechanics
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    • 제17권6호
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    • pp.863-878
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    • 2004
  • Steel corrosion in reinforced concrete structures leads to concrete cover cracking, reduction of bond strength, and reduction of steel cross section. Among theses consequences mentioned, reduction of bond strength between reinforcement and concrete is of great importance to study the behaviour of RC members with corroded reinforcement. In this paper, firstly, an analytical model based on smeared cracking and average stress-strain relationship of concrete in tension is proposed to evaluate the maximum bursting pressure development in the cover concrete for noncorroded bar. Secondly, the internal pressure caused by the expansion of the corrosion products is evaluated by treating the cracked concrete as an orthotropic material. Finally, bond strength for corroded reinforcing bar is calculated and compared with test results.

Elastic local buckling behaviour of corroded cold-formed steel columns

  • Nie Biao;Xu Shanhua;Hu WeiCheng;Chen HuaPeng;Li AnBang;Zhang ZongXing
    • Steel and Composite Structures
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    • 제48권1호
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    • pp.27-41
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    • 2023
  • Under the long-term effect of corrosive environment, many cold-formed steel (CFS) structures have serious corrosion problems. Corrosion leads to the change of surface morphology and the loss of section thickness, which results in the change of instability mode and failure mechanism of CFS structure. This paper mainly investigates the elastic local buckling behavior of corroded CFS columns. The surface morphology scanning test was carried out for eight CFS columns accelerated corrosion by the outdoor periodic spray test. The thin shell finite element (FE) eigen-buckling analysis was also carried out to reveal the influence of corrosion surface characteristics, corrosion depth, corrosion location and corrosion area on the elastic local buckling behaviour of the plates with four simply supported edges. The accuracy of the proposed formulas for calculating the elastic local buckling stress of the corroded plates and columns was assessed through extensive parameter studies. The results indicated that for the plates considering corrosion surface characteristics, the maximum deformation area of local buckling was located at the plates with the minimum average section area. For the plates with localized corrosion, the main buckling shape of the plates changed from one half-wave to two half-wave with the increase in corrosion area length. The elastic local buckling stress decreased gradually with the increase in corrosion area width and length. In addition, the elastic local buckling stress decreased slowly when corrosion area thickness was relatively large, and then tends to accelerate with the reduction in corrosion area thickness. The distance from the corrosion area to the transverse and longitudinal centerline of the plate had little effect on the elastic local buckling stress. Finally, the calculation formula of the elastic local buckling stress of the corroded plates and CFS columns was proposed.

Investigations on the behaviour of corrosion damaged gravity load designed beam-column sub-assemblages under reverse cyclic loading

  • Kanchanadevi, A.;Ramanjaneyulu, K.
    • Earthquakes and Structures
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    • 제16권2호
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    • pp.235-251
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    • 2019
  • Corrosion of reinforcement is the greatest threat to the safety of existing reinforced concrete (RC) structures. Most of the olden structures are gravity load designed (GLD) and are seismically deficient. In present study, investigations are carried out on corrosion damaged GLD beam-column sub-assemblages under reverse cyclic loading, in order to evaluate their seismic performance. Five GLD beam-column sub-assemblage specimens comprising of i) One uncorroded ii) Two corroded iii) One uncorroded strengthened with steel bracket and haunch iv) One corroded strengthened with steel bracket and haunch, are tested under reverse cyclic loading. The performances of these specimens are assessed in terms of hysteretic behaviour, energy dissipation and strength degradation. It is noted that the nature of corrosion i.e. uniform or pitting corrosion and its location have significant influence on the behaviour of corrosion damaged GLD beam-column sub-assemblages. The corroded specimens with localised corrosion pits showed in-cyclic strength degradation. The study also reveals that external strengthening which provides an alternate force path but depends on the strength of the existing reinforcement bars, is able to mitigate the seismic risk of corroded GLD beam-column sub-assemblages to the level of control uncorroded GLD specimen.

직경별 부식 철근과 콘크리트 간의 부착강도에 관한 연구 (Bond Strength between Steel and Concrete with Different Diameters in the Same Corrosion Rate)

  • 두여준;장인동;이혜린;이종구
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2020년도 가을 학술논문 발표대회
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    • pp.190-191
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    • 2020
  • The bonding of steel bar to concrete is closely related to the roughness and corrosion degree of steel bar surface. The accelerated corrosion of concrete specimens with different reinforcement diameters was carried out in this test. Through the pullout test of the corroded concrete specimens, the relationship between the bond stress and the displacement of the corroded concrete specimens under the corresponding corrosion degree was obtained. The bond stress of reinforced concrete with different size and corrosion degree are compared and analyzed to find out the influence of corrosion on the bonding property of reinforced concrete.

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부식 손상된 가시설 강재의 축압축 좌굴강도 추정에 관한 실험적 연구 (An Experimental Study on Evaluation of Axially Compressive Buckling Strength of Corroded Temporary Steel)

  • 김인태;이명진;신창희
    • 한국구조물진단유지관리공학회 논문집
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    • 제15권6호
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    • pp.135-146
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    • 2011
  • 강구조물은 주로 도장에 의해 방식처리 되고 있지만, 장기간 사용함에 따라 강재표면에 부식손상이 발생하게 된다. 이러한 부식손상은 단면감소와 이로 인한 좌굴내하력을 저하시킬 우려가 있다. 현재 다양한 등단면형상과 지지조건에 대한 좌굴강도 추정식 및 설계식이 제안되어 있으나, 부식손상으로 인한 불규칙한 변단면 강부재의 축압축 좌굴강도 평가법은 아직 확립되어 있지 않다. 본 연구에서는 부식 손상된 가시설 강부재에서 절취한 강재시편의 축압축 좌굴실험을 실시하여, 부식강재의 좌굴강도 평가에 대한 기초적 연구를 수행하였다. 본 실험에서는 먼저 가시설 주형보의 웨브로부터 시편 지지길이를 200, 300, 400, 500, 600mm로 달리한 5종류 시편을 각각 2개씩 총 10개의 강재시편을 절취하고, 화학적 방법에 의해 녹을 제거하였다. 그리고 3차원 광학 스캐너를 이용하여 $1{\times}1mm$ 간격으로 표면형상을 측정하여, 각 시편의 잔존두께를 산출하였다. 그리고 10개의 부식 손상된 시편과 부식 손상되지 않은 무부식 시편 12개를 양단 완전고정지지 조건하에서 축압축 좌굴실험을 실시하여, 부식두께감소량 및 시편의 표면형상과 축압축 좌굴강도와의 상관관계를 분석하였다. 그 결과, 부식 손상정도에 상관없는 무부식 등단면 강재와 동일하게 좌굴강도를 평가할 수 있는 불규칙 변단면 부식강재의 폭방향평균 최소두께 또는 평균잔존두께와 표준편차의 차로 계산되는 유효두께를 적용하여 축압축 좌굴강도을 추정할 수 있음을 제안하였다. 또한 이러한 결과를 실무에도 적용할 수 있도록 실용적인 부식강재의 잔존두께 측정간격도 제시하였다.

소형선박용 스테인리스강 축의 음극방식 응용 (Optimum Cathodic Protection for Stainless Steel Shaft of Small-Size Boat)

  • 배일용;박정대;강대선;이명훈;김기준
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2005년도 후기학술대회논문집
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    • pp.232-233
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    • 2005
  • Stainless steel has been stably used closed by passivity oxidation films($Cr_2O_3$) is made by neutral atmospheric environment. However, passivity oxidation films of the surface of stainless steel occasionally comes to be destroyed in seawater which is influenced by an environment having halogen ion like $Cl^-$, then, localization corrosion comes to occur. Stainless steel 304 for shaft system material of the small-size FRP fishing boat on seawater environments made an experiment on simulation of sacrifical anode(Al, Zn). Through these experiment and study, following results have been obtained ; According to the field inspection and corrosion simulation, the corrosion on the 2nd class stainless steel shaft(STS 304) in FRP fishing boat has been verified to occur by crevice corrosion and galvanic corrosion etc.. According to the comparison and analysis of Stainless steel 304 shaft materials after simulation leaving unprotected and applying cathodic protection, unprotected shaft specimen of stainless steel 304 was severely corroded, but, protected shaft specimen was not totally corroded. This result is assumed to be made by the facts that anodic reaction, $Fe{\rightarrow}Fe^{2+}$ + $2e^-$, has been restricted by the cathodic protection current of sacrificial anode material.

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과도전자탐사법에 의한 모르타르 중의 코팅 철근의 부식 측정 방법 개발 (The Development of Measuring Method of Coated Steel Corrosion in Mortar by Transient Electro-Magnetic(TEM) Method)

  • 이상호;한정섭
    • 한국해양공학회지
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    • 제13권2호통권32호
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    • pp.108-115
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    • 1999
  • To study measurement of coated steel corrosion in mortar, a transient electro-magnetic(TEM) method was adapted. The sensors were made of enamelled wire with diameter of 0.25mm(transmitter), 0.1mm(receiver) and the secondary electro motive force(EMF) was measured with SIROTEMIII. The sensors configuration was used as in loop configuration. After coated steels were corroded by the salt spray during 3, 7, 15, 25days, they were embedded in mortar which were made from sand : cement : water ratio of 2 : 1 :0.5. To investigate coated steel corrosion in mortar, the sensors were used. ( sensorl - $T_x$ : $4{\Omega}$, $R_x$ : $10{\Omega}$, $3{times}3cm$, sensor2 - $T_x$ : $8{\Omega}$, $R_x$ : $10{\Omega}$, $3{times}3cm$, sensor3 - $T_x$ : $4{\Omega}$, $R_x$ : $10{\Omega}$, $6{times}6cm$, sensor4 - $T_x$ : $8{\Omega}$, $R_x$ : $10{\Omega}$, $6{times}6cm$). The obtained results showed that the secondary EMF was decreased with specimens of 3, 7days corroded coationg steel in mortar and then increased with specccimens of 15, 25days corroded one. And it was confirmed that measurement of coated steel corrosion in mortar by a transient electro-magnetic(TEM) method is possible.

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Lateral impact behaviour of concrete-filled steel tubes with localised pitting corrosion

  • Gen Li;Chao Hou;Luming Shen;Chuan-Chuan Hou
    • Steel and Composite Structures
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    • 제47권5호
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    • pp.615-631
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    • 2023
  • Steel corrosion induces structural deterioration of concrete-filled steel tubes (CFSTs), and any potential extreme action on a corroded CFST would pose a severe threat. This paper presents a comprehensive investigation on the lateral impact behaviour of CFSTs suffering from localised pitting corrosion damage. A refined finite element analysis model is developed for the simulation of locally corroded CFSTs subjected to lateral impact loads, which takes into account the strain rate effects on concrete and steel materials as well as the random nature of corrosion pits, i.e., the distribution patterns and the geometric characteristics. Full-range nonlinear analysis on the lateral impact behaviour in terms of loading and deforming time-history relations, nonlinear material stresses, composite actions, and energy dissipations are presented for CFSTs with no corrosion, uniform corrosion and pitting corrosion, respectively. Localised pitting corrosion is found to pose a more severe deterioration on the lateral impact behaviour of CFSTs due to the plastic deformation concentration, the weakened confinement and the reduction in energy absorption capacity of the steel tube. An extended parametric study is then carried out to identify the influence of the key parameters on the lateral impact behaviour of CFSTs with localised pitting corrosion. Finally, simplified design methods considering the features of pitting corrosion are proposed to predict the dynamic flexural capacity of locally pitted CFSTs subjected to lateral impact loads, and reasonable accuracy is obtained.