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http://dx.doi.org/10.4334/JKCI.2010.22.1.041

Effects of Shore Stiffness and Concrete Cracking on Slab Construction Load I: Theory  

Hwang, Hyeon-Jong (Dept. of Architecture, Seoul National University)
Park, Hong-Gun (Dept. of Architecture, Seoul National University)
Hong, Geon-Ho (Dept. of Architectural Engineering, Hoseo University)
Im, Ju-Hyeuk (Housing Eng. Team, Samsung Engineering and Construction)
Kim, Jae-Yo (Dept. of Architectural Engineering, Kwangwoon University)
Publication Information
Journal of the Korea Concrete Institute / v.22, no.1, 2010 , pp. 41-50 More about this Journal
Abstract
Long-term floor deflection caused by excessive construction load became a critical issue for the design of concrete slabs, as a flat plate is becoming popular for tall buildings. To estimate the concrete cracking and deflection of an early age slab, the construction load should be accurately evaluated. The magnitude of construction load acting on a slab is affected by various design parameters. Most of existing methods for estimating construction load addressed only the effects of the construction period per story, material properties of early age concrete, and the number of shored floors. In the present study, in addition to these parameter, the effects of shore stiffness and concrete cracking on construction load were numerically studied. Based on the result, a simplified method for estimating construction load was developed. In the proposed method, the calculation of construction load is divided to two steps: 1)Onset of concrete placement at a top slab. 2)Removal of shoring. At each step, the construction load increment is distributed to the floor slabs according to the ratio of slab stiffness to shore stiffness. The proposed method was compared with existing methods. In a companion paper, the proposed method will be verified by the comparison with the measurements of actual construction loads.
Keywords
flat plate; construction load; crack; shore;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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