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- W2073309761 abstract "콘크리트내의 철근의 부식은 열화와 콘크리트 구조물의 조기파괴의 주된 원인이 된다. 본 연구에서는 비파괴 기법 중 전자기적 열유도방법과 적외선 열화상기법을 이용한 철근부식평가가 시도되었는데, 부식 또는 비부식된 철근의 열특성 차이를 이용한 것이다. 본 논문은 이러한 개념을 배경으로 수행한 실험적 연구이며, 유도전류를 통해 콘크리트 표면으로부터 내부 철근을 가열하고 외부의 적외선 카메라를 이용하여 표면의 온도변화를 관측한다. 피복두께가 다른 콘크리트 시편은 앞면과 배면의 피복두께를 동일하게 제조하여 앞면에서 가열과 배면에서의 온도측정을 동시에 할 수 있도록 고안되었다. IC (Impressed Current) 방법을 통하여, 철근 부식을 촉진하였으며, 적외선 화상을 통하여 온도가열과 냉각을 전 시험과정에 걸쳐 측정하였다. 본 실험을 통하여 부식/비부식 철근의 뚜렷한 온도변화를 확인하였으며, 부식된 시편에서 빠른 온도증가속도 및 냉각속도를 평가하였다. 본 연구는 콘크리트 매립철근의 비파괴적인 부식탐지의 가능성을 보여주고 있다. Steel corrosion in concrete is a main cause of deterioration and early failure of concrete structures. A novel integration of electromagnetic heat induction and infrared (IR) thermography is proposed for nondestructive detection of steel corrosion in concrete, by taking advantage of the difference in thermal characteristics of corroded and non-corroded steel. This paper focuses on experimental investigation of the concept. An inductive heater is developed to remotely heat the embedded steel from concrete surface, which is integrated with an IR camera. Concrete samples with different cover depths are prepared. Each sample is embedded with a single rebar in the middle, resulting an identical cover depth from the front and the back surfaces, which enable heat induction from one surface and IR imaging from the other simultaneously. The impressed current (IC) method is adopted to induce accelerated corrosion on the rebar. IR video images are recorded during the entire heating and cooling periods. The test results demonstrate a clear difference in thermal characteristics between corroded and non-corroded samples. The corroded sample shows higher rates of heating and cooling than those of the non-corroded sample. This study demonstrates a potential for nondestructive detection of rebar corrosion in concrete." @default.
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- W2073309761 date "2012-03-30" @default.
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- W2073309761 title "Non Destructive Technique for Steel Corrosion Detection Using Heat Induction and IR Thermography" @default.
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- W2073309761 doi "https://doi.org/10.11112/jksmi.2012.16.2.040" @default.
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