One-way shear strength of circular voided reinforced concrete floor slabs

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WEB OF SCIENCE

15
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SCOPUS

21

초록

Generally, voided reinforced concrete floor slabs in building structures have a lower shear strength compared with solid slabs owing to the reduction in their cross-sectional area. This study shows that the void shape and material of the void-shaper also influence the shear strength of voided slabs. To verify these assumptions, one-way shear tests were conducted for four test specimens. The first was a conventional solid slab and the others were voided slabs. The voids had toroidal or 'doughnut' shapes as well as non-doughnut shapes. The void-shaper was made of polypropylene plastic and glass-fibre-reinforced plastic. The test results showed that the shear strength of doughnut-type voided slabs was 73-78% of a solid slab and was superior to that of existing voided slabs. The shear crack angle changed with the void shape. A finite-element analysis was conducted to evaluate the influence of these parameters on the shear behaviour of the doughnut-type voided slab.

키워드

buildingsconcrete structuresslab & platesstress analysisstructures and designBuildingsConcrete constructionConcrete slabsFiber reinforced plasticsFloorsPolypropylenesStress analysisCross sectional areaIn-buildingsShear behaviourShear crackShear testsSolid slabsTest specimensVoid shapecrete structurefinite element methodreinforced concreteshear strengthstress analysisstructural componentReinforced concrete
제목
One-way shear strength of circular voided reinforced concrete floor slabs
저자
Chung, Joo-HongChoi, Hyun-KiLee, Seung-ChangChoi, Chang-Sik
DOI
10.1680/stbu.14.00044
발행일
2015-05
유형
Article
저널명
Proceedings of the Institution of Civil Engineers: Structures and Buildings
168
5
페이지
336 ~ 350