Browse > Article
http://dx.doi.org/10.11112/jksmi.2011.15.3.155

A Study on the Evaluation of Design Compressive Strength and Flexural Strength of the Improved Deep Corrugated Steel Plate  

Sim, Jong Sung (한양대학교 토목공학과)
Lee, Hyeon Gi (한양대학교 토목공학과)
Kang, Tae Sung (삼표건설(주) 기술개발팀)
Publication Information
Journal of the Korea institute for structural maintenance and inspection / v.15, no.3, 2011 , pp. 155-162 More about this Journal
Abstract
The structures that use the bridge plates are considered to have advantages such as short work term, excellent economical efficiency and low maintenance cost. Bridge plates are being widely used for water ducts and eco-corridors as replacements of reinforced concrete ducts. Bridge plates are deep and have greater pitch as compare to conventionally deep corrugated steel plate. They are expected to be increasingly used in the future. The structures that use bridge plates have two forms, such as arch type and box type. The arch type structures are designed based on the compressive strength, and the box type structures, based on the moment in the plate member. In this study, the ultimate strength and moment strength of the connection part of the specimens were examined by their thickness. Static and bending tests used to evaluate the performance of bridge plate. Finally, These results were used in the design process.
Keywords
Bridge plate; Compressive test; Deep corrugated steel plate; Flexural test;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 유호연, "장스팬 파형강판 구조물의 설계법 개발", 한양대학교 대학원 토목공학과, 2001, pp.1-5.
2 이경모, "대골형 파형강판 휨 강도에 대한 연구", 서울산업대학교 산업대학교 구조공학과, 2003, pp.1-4.
3 이종구, 조성민, 이종관, 윤태양, "지중강판 구조물에서 볼트 균열 발생에 영향을 미치는 인자 분석", 대한토목학회 논문집, 제 27권, 2c호, 2007, pp.129-137.
4 포항산업과학연구원, "파형강판 지중암거의 설계와 시동", 1998.
5 포항산업과학연구원, "장스팬 파형강판 구조물 실용화 연구", 2002.
6 한양대학교, "강합성 빔보강 공법의 성능 점검 및 실용화 방안 연구", 2007.
7 AASHTO, "Standards Specification for Transportation Materials and Methods of Sampling and Testing", 9th Ed, 1998.
8 KS B 0801, "금속 재료 인장 시험편", 한국산업규격, 2007.
9 KS B 0802, "금속 재료 인장 시험 방법", 한국산업규격, 2007.