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철골 모멘트골조로 보강된 철근콘크리트 건물의 내진성능 평가 KCI 등재

Seismic Performance Evaluation of Non-Seismic Reinforced Concrete Buildings Strengthened by Perimeter Steel Moment Frame

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한국지진공학회 (Earthquake Engineering Society of Korea)
초록

This paper is to investigate the retrofitting effect for a non-seismic reinforced concrete frame strengthened by perimeter steel moment frames with indirect integrity, which ameliorates the problems of the direct integrity method. To achieve this, first, full-scale tests were conducted to address the structural behavior of a two-story non-seismic reinforced concrete frame and a strengthened frame. The non-seismic frame showed a maximum strength of 185 kN because the flexural-shear failure at the bottom end of columns on the first floor was governed, and shear cracks were concentrated at the beam-column joints on the second floor. The strengthened frame possessed a maximum strength of 338 kN, which is more than 1.8 times that of the non-seismic specimen. A considerable decrease in the quantity of cracks for the strengthened frame was observed compared with the non-seismic frame, while there was the obvious appearance of the failure pattern due to the shear crack. The lateral-resisting capacity for the non-seismic bare frame and the strengthened frame may be determined per the specified shear strength of the reinforced columns in accordance with the distance to a critical section. The effective depth of the column may be referred to as the longitudinal length from the border between the column and the foundation. The lateral-resisting capacity for the non-seismic bare frame and the strengthened frame may be reasonably determined per the specified shear strength of the reinforced columns in accordance with the distance to a critical section. The effective depth of the column may be referred to as the longitudinal length from the border between the column and the foundation. The proposed method had an error of about 2.2% for the non-seismic details and about 4.4% for the strengthened frame based on the closed results versus the experimental results.

목차
A B S T R A C T
1. 서 론
2. 철골 모멘트골조 내진보강공법 개요
    3.1 비보강 실험체 설계
    3.2 내진보강 실험체 설계
    3.3 재료특성
    3.4 가력 및 측정방법
4. 실험결과 분석 및 설계강도식 제안
    4.1 파괴모드
    4.2 하중-변위 관계
    4.3 설계강도식 제안
5. 결 론
REFERENCES
저자
  • 김선웅(영산대학교 건축공학과) | Kim Seonwoong (Department of Architectural Engineering, Youngsan University) Corresponding author