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Spalling Reduction Method of High Strength Reinforced Concrete Columns Using Fibers  

Yoo, Suk-Hyeong (진주산업대학교 건축학부)
Publication Information
Fire Science and Engineering / v.23, no.4, 2009 , pp. 7-12 More about this Journal
Abstract
As the concrete strength increases the degree of damage caused by the spalling becomes more serious because of the permeability. It is reported that the polypropylene (PP) fiber has an important role in protecting concrete from spalling. However, the excessive usage of PP fiber would not useful in spalling control and would decrease the workability of ultra high strength concrete. The high-temperature behaviors of high-strength reinforced concrete columns with various dosage of PP fibers and three types of fire endurance fibers were observed this study. In results, the ratio of unstressed residual strength of columns, in case of concrete strength 60MPa, increases as the dosage of PP fiber increases from 0% to 0.2%, however, the effect of fiber dosage on residual strength of column barely changes above 0.2% and in case of concrete strength 120MPa, PVA fiber is the most suitable fire endurance fiber in accounting fire endurance performance and workability.
Keywords
Spalling; Fiber; High-strength concrete; Polypropylene fiber; PVA;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 김무한, 윤현도, 유재철, 강선종, 김규용, '초고강도 콘크리트의 내화성능에 관한 일본건설사의 연구동향 및 성능인증 현황', 콘크리트학회지, Vol.17, No.5, pp.60-75(2005)
2 한천구, 지석원, 김경민, 허영선, 김성환, 'PP 및 PVA섬유를 혼입한 고성능 콘크리트의 내화성능 분석', 대한건축학회논문집, 22권, 10호, pp.77-84(2006)
3 Zdenek P. Bazant and Maurice F. Kaplan, 'Concrete at High Temperatures: Material Properties and Mathematical Models', Prentice Hall(1996)
4 L. Sarvaranta and E. Mikkola, 'Fiber Mortar Composites under Fire Conditions: Effects of Ageing and Moisture Content of Specimens', Mater Struct. 27, pp.532-538(1994)   DOI   ScienceOn
5 Pierre Kalifa, 'High-Temperature behaviour of HPC with Polypropylene Fibers from Spalling to Microstructures', Cement and Concrete Research, Jun., pp.1487-1499(2001)
6 NISTIR 5934, 'Fire Performance of High-Strength Concrete: A Report of the State-of-the-Art', NIST, Dec.(1996)
7 Jae H. Chung and Gary R. Consolazio, 'Finite Element Stress Analysis of a Reinforced Highstrength Concrete Column in Severe Fires', Computers and Structures, March, pp.1338-1352(2006)
8 D. Bentz, 'Fibers, Percolation and Spalling of High Performance Concrete', ACI Material Journal, March, pp.351-359(2000)