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자료유형
학술저널
저자정보
박민재 (고려대) 민정기 (한국건설생활환경시험연구원)
저널정보
대한건축학회 대한건축학회논문집 大韓建築學會論文集 第37卷 第10號(通卷 第396號)
발행연도
2021.10
수록면
227 - 234 (8page)

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초록· 키워드

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Steel-Polymer prefabricated floor system that contained infilled polymers between the shallow top and bottom steel plates was developed to apply to steel structures. The thickness of the floor system mainly has a range from 25 mm to 70 mm. Despite the shallow thickness, the floor system has great structural performance, such as bending capacity, floor vibration performance. However, the fire resistance performance of the system needed to be improved to apply to actual buildings without fire-proofing materials. With the development of the polymers adding an additive, the fire resistance performance of the system was significantly improved, and studies about the structural fire behavior of the floor system were actively conducted with experimental and numerical approaches. Nevertheless, the behavior of circular spacers that had a role in enhancing out-of-plane buckling loads and ductility under large deformations and taking advantage in the manufacturing process has not been investigated. Therefore, the thermal behavior of circular spacers under fire conditions was studied with simplified numerical methods. And, with transient heat transfer analysis including nonlinear thermal properties of steel and polymers, nonlinear thermal contact conductance of the contact area between steel and polymers, the temperature changes of unheated surfaces where the spacers were installed at or not were obtained under fire conditions. Finally, the relation equation was proposed to calculate the temperature changes according to various specifications of circular spacers. Using this proposed equation, the thermal insulation design for the spacers of steel-polymer prefabricated were carried out at the end of this paper.

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Abstract
1. 서론
2. 유한요소 해석 모델링
3. 해석 결과 및 분석
4. 결론
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