1. 1) Hirashima, T., Kinoshita, K., Yoshida, T., Suzuki, J., Ozaki, F., Kimura, K. and Murakami, Y.: Membrane action of floor slabs in fire (Part 1): Load-bearing fire tests of a composite flooring system composed of RC slabs and an unprotected steel beam, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol. 86, No. 785, pp. 1106-1116, 2021.7 (in Japanese) 平島岳夫, 木下晃一, 吉田徹, 鈴木淳一, 尾崎文宣, 木村慧, 村上行夫: 床スラブの火災時メンブレン作用(その 1), RC スラブと無耐火被覆鋼梁による合成床システムの載荷加熱実験, 日本建築学会構造系論文集 第 86巻, 第 785 号, pp.1106-1116, 2021.7
2. 2) Architectural Institute of Japan, Design Recommendations for Composite Constructions, 2010.11 (in Japanese) 日本建築学会: 各種合成構造設計指針・同解説, 2010.11
3. 3) Composite Slab Industrial Association: Daijinnintei-muhifuku-taikakouzouyuka Gouseisurabu-no-sekkei-sekou-manual, 2005.3 合成スラブ工業会: 大臣認定・無被覆耐火構造床 合成スラブの設計・施工マニュアル, 2005.3
4. 4) British Steel plc, Swinden Technology Centre: A European Joint Research Programme, The Behaviour of Multi-Storey Steel Framed Buildings in Fire, 1999
5. 5) Linus C. S. Lim, Membrane Action in Fire Exposed Concrete Floor Systems, Ph D thesis, University of Canterbury, 2003.4