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http://dx.doi.org/10.7843/kgs.2010.26.11.111

Applicability of Steel-Concrete Composite Drilled Shafts by Pile Loading Tests  

Lee, Ju-Hyung (Geotechnical Engineering Research Dept., KICT)
Chung, Moon-Kyung (Geotechnical Engineering Research Dept., KICT)
Kwak, Ki-Seok (Planning & Coordination Dept., KICT)
Kim, Sung-Ryul (Dong-A University)
Publication Information
Journal of the Korean Geotechnical Society / v.26, no.11, 2010 , pp. 111-123 More about this Journal
Abstract
The steel pipe of steel-concrete composite drilled shafts increases the pile strength and induces the ductile failure by constraining the deformation of the inner concrete. In this research, pile loading tests were performed to analyze the field applicability of a steel-concrete composite drilled shafts. The test ground consisted of 5~7 m thick soil underlying rock mass. The test piles consisted of two steel-concrete composite drilled shafts, which were the concrete filled steel pipe piles with the diameter of 0.508 m, and a concrete pile with the same diameter. The test results showed that the boundary between the upper steel composite section and the lower concrete section was structurally weak and needs to be reinforced by using a inner steel cage. If the boundary is located in deep depth, which is not influenced by lateral load, the allowable strength of the lower concrete section increases, so an economical design can be performed by increasing the design load of steel-concrete composite drilled shafts.
Keywords
Composite pile; Drilled shaft; Pile loading test; Pile material strength; Steel-concrete composite drilled shafts;
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  • Reference
1 STM D 1143-81 (1981), "Standard test method for piles under static axial compressive load", American Society for Testing and Materials.
2 Fellenius B.H. (2008), Basics of foundation engineering, Electronic Edition.
3 Kilpatrick, A. E. and Rangan, B. V. (1999), 'Tests on high-strength concrete-filled steel tubular columns", ACI Structural Journal, 96(2): 268-274.
4 Loadtest (2005), Report on drilled pile load testing, TP1, TP2, TP3, TP4.
5 이주형, 선휴성, 박민경, 박재현, 곽기석 (2008), 수치해석을 이용한 국내 해상교량 현장타설말뚝의 강관지지효과. 대한토목학회 논문집, 대한토목학회, 28권 3C호, pp.149-158.
6 대한토목학회 (2008), 도로교 설계기준 해설.
7 AASHTO (2004) AASHTO LRFD Bridge Design Specifications.
8 日本道路協會 (1996), 道路橋示方書 同解設.
9 한국건설기술연구원 (2008), 고효율 하이브리드 대형 기초 공법 개발 (II).
10 한국지반공학회 (2009), 구조물 기초설계기준 해설.
11 김성렬, 이시훈, 정문경, 이주형 (2009b), "수지해석을 이용한 강관합성 현장타설말뚝의 보강효과 분석 (II)- 지반지지력", 대한토목학회 논문집, 29권 6C호, pp.267-275.
12 김성렬 이주형, 박재현, 정문경 (2009a), "수치해석을 이용한 강관합성 현장타설말뚝의 보강효과 분석(I)-재료강도", 대한토목학회 논문집, 29권 6C호, pp.259-266.