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Title Size Effect on Axial Compressive Strength of Concrete
Authors 이성태 ; 김민욱 ; 김진근
Page pp.153-160
ISSN 1229-5515
Keywords double cantilever beam 크기효과; 축압축강도; 편심거리; 초기 균열길이; 이중 캔틸레버 보; size effect; axial compressive strength; eccentricity length; initial crack length
Abstract In this study, the size effect on axial compressive strength for concrete members was experimentally investigated. Experiment of mode I failure, which is one of the two representative compressive failure modes, was carried out by using double cantilever beam specimens. By varying the eccentricity of applied loads with respect to the axis on each cantilever and the initial crack length, the size effect of axial compressive strength of concrete was investigated, and new parameters for the modified size effect law (MSEL) were suggested using least square method (LSM). The test results show that size effect appears for axial compressive strength of cracked specimens. For the eccentricity of loads, the influence of tensile and compressive stress at the crack tip are significant and so that the size effect is present. In other words, if the influence of tensile stress at the crack tip grows up, the size effect of concrete increases. And the effect of initial crack length on axial compressive strength is present, however, the differences with crack length are not apparent because the size of fracture process zone (FPZ) of all specimens in the high-strength concrete is similar regardless of differences of specimen slenderness.