Abstract

설계시의 결함, 사용 중의 손상, 극한 환경에 장기간 노출에 따른 열화로 인해, 콘크리트 구조물의 성능은 감소된다. 본 논문은 8개 구역을 가진 대도시 철도 고가교에 대한 현장조사를 수행하고 내구성 평가를 수행한 연구이다. 대상 구조물에 대하여, 현장조사를 수행하여 내구성능을 평가하였으며, 사용상의 문제점을 도출하였다. 또한 내구지수-환경지수 산정법을 이용하여 현 상태의 상부구조 및 하부구조에 대한 내구성 확보기간을 평가하였으며, 이상적인 준공상태를 가정한 조건으로 도출된 내구성 확보기간과 비교하였다. 대상 구조물은 RC T형교, PSC 거더교, RC 박스교, 라멘교 등이 포함되어 있었으며, 각 구조형식에 따른 문제점을 분석하였다. PSC 거더의 단부균열, PSC 거더의 휨균열, 외부강선보강 정착부 균열, RC 박스의 휨균열, RC T형교의 휨균열을 주된 문제점으로 평가되었으며, 이를 패턴화하여 원인을 제시하였다. 본 연구는 각 구간의 열화에 따른 보수시기의 계획에 효과적인 자료로 사용되어질 수 있다. Because of the defect in design, damage in using period, and deterioration in long term exposure to severe environmental condition, degradation of performance in RC (Reinforced Concrete) structures has occurred. This paper contains durability performance evaluation in railway bridges which covers eight districts through field investigation. For the target structures, durability performance is evaluated and the critical problems in use are derived. Additionally, service lifes for the deteriorated structures are evaluated through Durability-Environment index method based on the results from field investigation, and the results are compared with those from the condition assuming the structures without defect, damage, and deterioration. The target structures which consist of RC T girder, PSC girder, RC box, and Rahmen are investigated and the critical damage patterns are derived. They are evaluated to be cracks in PSC girder end, flexural cracks in PSC girder, crack around EPT anchor, and flexural cracks in RC T girder and RC box. The reasons for the critical patterns are also investigated. This study can be utilized for the repair planning considering the different district and the structure types.

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